Acute Lung Injury, Acute Respiratory Distress Syndrome, Respiratory Failure
Conditions
Keywords
Acute Lung Injury, Acute Respiratory Distress Syndrome, Respiratory Failure, Cytomegalovirus seropositive, Infection, Intravenous Ganciclovir, Non-immunocompromised, Valganciclovir
Brief summary
To evaluate whether administration of ganciclovir reduces serum IL-6 levels (i.e. reduction between baseline and 14 days post-randomization) in immunocompetent adults with severe sepsis or trauma associated respiratory failure. Primary Hypotheses: \- In CMV seropositive adults with severe sepsis or trauma , pulmonary and systemic CMV reactivation amplifies and perpetuates both lung and systemic inflammation mediated through specific cytokines, and contributes to pulmonary injury and multiorgan system failure, AND \- Prevention of CMV reactivation with ganciclovir decreases pulmonary and systemic inflammatory cytokines that are important in the pathogenesis of sepsis and trauma related complications.
Detailed description
Critical illness due to severe sepsis and trauma are major causes of morbidity and mortality, and a substantial economic burden in the United States and worldwide. Despite advances in clinical care, patients with sepsis and trauma-associated respiratory failure represent specific populations with high rates of adverse outcomes. The etiology of respiratory failure in patients with severe sepsis and trauma is multifactorial, but acute lung injury (ALI) is one of the leading causes, and is associated with prolonged ICU and hospital stays, mortality, and long-term sequelae. Other than general supportive care, few specific interventions other than lung protective ventilation have been shown to improve outcomes in such patients. New approaches for understanding the pathogenesis and developing better therapies are urgently needed. Acute Lung Injury (ALI) is a syndrome consisting of acute hypoxemic respiratory failure with bilateral pulmonary infiltrates that is associated with both pulmonary and nonpulmonary risk factors (eg. sepsis, trauma) and that is not due primarily to left atrial hypertension. Although a distinction between ALI and a more severe subtype (termed acute respiratory distress syndrome (ARDS) has been made, the pathogenesis, risk factors, and outcomes appear to be similar and for the purposes of this protocol, the term acute lung injury \[ALI\] will be used to encompass both entities. Accepted consensus definitions of ALI have been introduced and are now widely used for laboratory and clinical investigations of ALI. Acute Lung Injury (ALI) is defined as: * PaO2/FiO2 \<300 * Bilateral pulmonary infiltrates on chest x-ray * Pulmonary Capillary Wedge Pressure \<18mmHg or no clinical evidence of increased left atrial pressure Although a broad range of risk factors for ALI have been described, those that account for the majority of cases include: sepsis, pneumonia, trauma, and aspiration. It is well established that severe trauma is recognized as a precipitating cause of ALI. Recent studies have demonstrated that the incidence of acute lung injury (ALI) is much higher than previously thought, with an estimated age-adjusted incidence of 86 per 100,000 persons per year, resulting in an estimated \ 190,000 cases annually in the US. The clinical and health care system impact of ALI is substantial, with an estimated 2,154,000 intensive care unit (ICU) days, 3,622,000 hospital days, and 75,000 deaths in 2000, and is expected to grow significantly given the marked age-related incidence and the aging population. Although general improvements in ICU care over the last 2 decades have led to a trend towards lower mortality due to certain ALI-associated risk factors (trauma, aspiration), the most common causes of ALI, sepsis and pneumonia, remain associated with high mortality rates of \ 25-35%. Mortality in ALI is most commonly due to secondary infections/sepsis and multiorgan system failure rather than primary respiratory failure due to hypoxemia, highlighting the systemic nature of ALI. Even among initial survivors of ALI, substantial pulmonary and nonpulmonary functional impairment remains for months to years. Specifically, a proportion of those who survive the initial insult are at risk for prolonged mechanical ventilation and ICU/hospital stay, and the risk factors remain poorly defined. It has been hypothesized that a 2nd hit may predispose certain patients to greater morbidity in this setting. Despite intensive basic and clinical investigation, only a single intervention (low-tidal volume \[lung protective\] ventilation) is generally accepted to decrease mortality in ALI, while multiple other strategies have failed to improve survival either in early clinical studies or definitive efficacy trials. Thus, given the high incidence and continued substantial clinical impact of ALI despite improvements in general medical/ICU care, and limited proven options other than lung-protective ventilation, new approaches to understanding the pathophysiology and identifying novel targets for intervention in ALI are a high priority. Overly intense, persistent and dysregulated pulmonary and systemic inflammation has emerged as the leading hypothesis for the pathogenesis of ALI and its complications, but the contributory factors and mechanisms are incompletely defined. Several carefully-conducted prospective human studies have shown an association between specific inflammatory biomarkers in blood and BALF (both the initial levels at onset and changes over time) and important clinical outcomes in ALI. \[Animal models have also demonstrated an association between inflammatory cytokines and non-pulmonary organ injury and dysfunction\] In addition, one of the most important interventions (low-tidal volume \[lung protective\] ventilation) shown to decrease mortality in ALI is associated with reductions in inflammatory cytokines (IL-6, IL-8) in blood and bronchoalveolar lavage fluid \[BALF\]. Cytomegalovirus (CMV) is a ubiquitous virus in humans worldwide, and has been linked to adverse clinical outcomes including prolongation of mechanical ventilation, increased length of stay, and mortality in multiple studies of critically-ill, apparently immunocompetent, seropositive adults. Cytomegalovirus (CMV) is a human herpes virus known to infect more than 50-90% of US adults and is known to be a major cause of morbidity and mortality in immunocompromised patients. CMV infection can be acquired through multiple means, including: mother-to-child (in utero, breast milk), infected body fluids (saliva, genital secretions), blood transfusion or organ transplant. The prevalence of CMV infection increases with age throughout life such that by age 90, \ 90% of persons will have acquired CMV infection. In immunocompetent persons, following primary infection by any of the routes noted above, CMV is controlled by the immune system and establishes latency (dormancy) in multiple organs/cell-types for the life of the host. In particular, the lung represents one of the largest reservoirs of latent CMV in seropositive hosts, and may explain the propensity for CMV-associated pulmonary disease in predisposed hosts. During periods of immunosuppression (or as a result of specific stimuli such as TNF-α, LPS, or catecholamines that are commonly associated with critical illness & sepsis \[CMV can reactivate from latency (preferentially in the lung) to produce active infection (viral replication). In persons with impaired cellular immunity, reactivation can progress to high-grade CMV replication and commonly leads to tissue injury and clinically-evident disease such as CMV pneumonia. Lower-grade CMV reactivation that is otherwise clinically silent (subclinical) can also be detected in apparently immunocompetent persons with critical illness using sensitive techniques such as PCR. In addition, even low-level, otherwise asymptomatic subclinical CMV reactivation can produce significant biologic effects both in vitro and in vivo, such as inflammation, fibrosis and immunosuppression. Each of these biologic effects of subclinical CMV infection has either previously been demonstrated (inflammation, fibrosis) or could theoretically be important (immunosuppression) in sepsis-associated ALI and its complications. These biological effects of CMV have been shown to occur through various mediators and other indirect means \[Importantly, several important CMV-associated adverse clinical outcomes in transplant populations \[allograft rejection, secondary infections\] are not necessarily accompanied by overt CMV disease and can only be detected by relatively sensitive means of virus detection such as PCR. Reactivation of CMV in apparently immunocompetent patients with critical illness due to a broad range of causes has been documented in multiple prior studies using a variety of virologic techniques. The specific triggers for CMV reactivation from latency have been identified and are known to be elevated in patients with sepsis and acute lung injury \[A prospective study in intubated patients with sepsis from Germany reported more than 60% rate of CMV DNA detection in tracheal aspirates. In addition to CMV reactivation in sepsis, CMV reactivation has also been demonstrated specifically in lung and blood of patients with acute lung injury. Retrospectively testing samples collected in a prospective observational cohort study of patients at risk of developing ARDS, CMV reactivation (ie. CMV DNA by PCR) was detected in BALF and/or plasma of 2/5 \[40%\] of subjects who developed ARDS, in sequential samples from 7/20 \[35%\] patients with ARDS, but not in patients at risk but who did not develop ARDS (0/5) \[Limaye 2009 unpublished data\]. In a separate study, CMV reactivation was retrospectively assessed by PCR in BALF of 88 subjects enrolled in a randomized trial of fish oil for treatment of ALI. Seropositivity at baseline (ie. evidence of latent CMV infection) in the cohort was 65% (similar to prior age-related estimates), and CMV reactivation (ie. CMV DNA by PCR) was detected in BALF of 12/57 \[21%\] patients \[Limaye unpublished data 2009\]. Several lines of evidence have linked CMV reactivation with adverse clinical outcomes in non-immunosuppressed adults with critical illness. In a recent meta-analysis, CMV reactivation (compared to no reactivation) was associated with a 2-fold increased odds of mortality in ICU patients. In addition to mortality, recent studies have demonstrated a strong and independent association between CMV reactivation and increased hospital and ICU length of stay and duration of mechanical ventilation.
Interventions
For first 5 days, dosing of intravenous ganciclovir is 10 mg/kg daily, given as 5 mg/kg every 12 hours (adjusted for renal function). After first 5 days (up to 28 days) IV ganciclovir 5 mg/kg QD ( adjusted for renal function). A minimum interval of 6 hours is required between the first and second dose.
For first 5 days, dosing of intravenous placebo is daily, given every 12 hours. After first 5 days (up to 28 days), IV placebo QD. A minimum interval of 6 hours is required between the first and second dose. The placebo is an IV solution that does not contain any active medications.
Sponsors
Study design
Eligibility
Inclusion criteria
1. Subject/next of kin informed consent 2. Age \>= 18 years 3. CMV IgG seropositive. The following tests are acceptable: * FDA licensed test in a local lab approved by the coordinating center (FHCRC, Seattle, WA). * Test in central study lab (ARUP, Salt Lake City, UT) * A report that patient has previously been tested and found to be CMV seropositive at any time (a credible next of kin report is acceptable; confirmatory test will be done but results are not required for randomization) 4. Intubated and requiring mechanical positive pressure ventilation (including Acute Lung Injury/ARDS (EA Consensus Definition)) 5. Meets criteria for either: 1. Severe sepsis criteria (as defined in appendix G) within a 24-hour time period within the 120 hour window OR 2. Trauma with respiratory failure and an ISS score \> 15 within a 24 hour time period, and within the 120 hour window (where mechanical ventilation is not due solely to a head injury) 6. On the day of randomization (by local criteria): * Not eligible for SBT (use of sedation and/or vasopressor does not specifically contraindicate SBT),or * Failed SBT
Exclusion criteria
1. BMI \> 60 (1st weight during hospital admission) 2. Known or suspected immunosuppression, including: * HIV+ (i.e. prior positive test or clinical signs of suspicion of HIV/AIDS; a negative HIV test is not required for enrollment) * stem cell transplantation: * within 6 months after autologous transplantation or * within 1 years after allogeneic transplantation (regardless of immunosuppression) * greater than 1 year of allogeneic transplantation if still taking systemic immunosuppression or prophylactic antibiotics (e.g. for chronic graft versus host disease) Note: if details of stem cell transplantation are unknown, patients who do not take systemic immunosuppression and do not take anti-infective prophylaxis are acceptable for enrollment and randomization. * solid organ transplantation with receipt of systemic immunosuppression (any time). * cytotoxic anti-cancer chemotherapy within the past three months (Note: next-of-kin estimate is acceptable). * congenital immunodeficiency requiring antimicrobial prophylaxis (e.g. TMP-SMX, dapsone, antifungal drugs, intravenous immunoglobulin). * receipt of one or more of the following in the indicated time period: * within 6 months: alemtuzumab, antithymocyte/antilymphocyte antibodies * within 3 months: immunomodulator therapy (TNF-alpha antagonist, rituximab, tocilizumab, IL1 receptor antagonist and other biologics) * within 30 days: * corticosteroids \> 10 mg/day (chronic administration, daily average over the time period) * topical steroids are permissible * use of hydrocortisone in stress doses up to 100 mg four times a day (400mg/daily) for up to 4 days prior to randomization is permissible * use of temporary short-term (up to 2 weeks) increased doses of systemic steroids (up tp 1 mg/kg) for exacerbation of chronic conditions are permissible. * methotrexate (\> 10.0 mg/week) * azathioprine (\> 75 mg/day) Note: if no information on these agents is available in the history and no direct or indirect evidence exists from the history that any condition exists that requires treatment with these agents (based on the investigator's assessment), the subject may be enrolled. For all drug information, next-of-kin estimates are acceptable. See Appendix D for commonly prescribed immunosuppressive agents. 3. Expected to survive \< 72 hours (in the opinion of the investigator) 4. Has been hospitalized for \> 120 hours (subjects who are transferred from a chronic care ward, such as a rehabilitation unit, with an acute event are acceptable). 5. Pregnant or breastfeeding (either currently or expected within one month). Note: for women of childbearing age (18-60 years, unless documentation of surgical sterilization \[hysterectomy, tubal ligation, oophorectomy\]), if a pregnancy test has not been done as part of initial ICU admission work-up, it will be ordered stat and documented to be negative before randomization. Both urine and blood tests are acceptable. 6. Absolute neutrophil count \< 1,000/mm3 (if no ANC value is available, the WBC must be \> 2500/mm3) 7. Use of cidofovir within seven (7) days of patient randomization. The use of the following antivirals is permitted under the following conditions: * Ganciclovir, foscarnet, high-dose acyclovir, or valacyclovir until the day of randomization * Acyclovir as empiric therapy for central nervous system HSV or VZV infection until the diagnosis can be excluded * For enrolled patients during the active study drug phase, acyclovir, famciclovir, valacyclovir for treatment of HSV or VZV infection as clinically indicated. 8. Currently enrolled in an interventional trial of an investigational therapeutic agent known or suspected to have anti-CMV activity, or to be associated with significant known hematologic toxicity (Note: confirm eligibility with one of the study medical directors at the coordinating site). 9. At baseline patients who have both a tracheostomy, and have been on continuous 24-hour chronic mechanical ventilation. 10. Patients with Child Class C Cirrhosis. 11. Patients with pre-existing interstitial lung disease.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Serum IL-6 Level | Baseline and Day 14 | Change between baseline and 14 days post-randomization between placebo & ganciclovir groups |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| CMV Disease | by 180 days post-randomization | Need to be biopsy-proven |
| Number of Participants With CMV Reactivation at 28 Days in Plasma | at 28 days post-randomization | Number of participants in baseline negatives with CMV reactivation at any level at day 28 |
| BAL Levels of IL-6 | at 7 days post-randomization | Levels of IL-6 from BALs at 7 days post-randomization |
| Number of Participants With Organ System Failure at 14 Days | at 14 days post-randomization | Number of participants experiencing organ system failure at 14 days |
| Grade 3 AEs or Higher | by 35 days post-randomization | Number of patients with greater than one AE of grade 3 or more |
| SF-36 Health Survey | at 1 day post-randomization | Physical Component Summary of SF-36. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability. |
| Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma | at 28 days post-randomization | Number of participants with CMV reactivation \>1,000 IU per mL at day 28 in plasma |
| Incidence of CMV Reactivation at Any Level at 28 Days in Throat | at 28 days post-randomization | CMV reactivation in baseline negatives at any level at day 28 in throat |
| Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat | at 28 days post-randomization | Number of participants with CMV reactivation \>1,000 IU per mL at day 28 in throat |
| CMV AUC in Blood | Day 0 to 28 days post-randomization | CMV AUC in blood from day 0 to day 28 |
| CMV AUC in Throat | Day 0 to 28 days post-randomization | CMV AUC in Throat from day 0 to day 28 |
| CMV Peak Viral Load in Blood | at 28 days post-randomization | CMV Peak Viremia in blood at day 28 |
| BAL Levels of IL-8 | at 7 days post-randomization | Levels of IL-8 in BALs at day 7 |
| BAL Levels of TNFa | at 7 days post-randomization | Levels of TNFa in BALs at day 7 |
| Plasma Levels of IL-6 | at 7 days post-randomization | Plasma levels of IL-6. |
| Plasma Levels of IL-8 | at 7 days post-randomization | Levels of IL-8 in plasma at day 7 |
| Plasma Levels of TNF a | at 7 days post-randomization | Plasma levels of TNF a at day 7.Cytokines are summarized on log 10 scale. When logged value is negative, the raw value would be less than 1. |
| Plasma Levels of Soluble ICAM-1 | at 28 days post-randomization | Plasma levels of soluble ICAM-1 at day 28 |
| Peak Plasma Levels of Soluble ICAM-1 | Day 0 to 28 days post-randomization | Peak Plasma levels of soluble ICAM-1 from day 0 to day 28 |
| Peak Plasma Levels of TNF-a | at 28 days post-randomization | Peak Plasma levels of TNF-a at day 28 |
| Peak Plasma Levels of IL-10 | at 28 days post-randomization | Peak Plasma levels of IL-10 at day 28 |
| Peak Plasma Levels of IL-8 | at 28 days post-randomization | Peak Plasma levels of IL-8 at day 28 |
| Peak Plasma Levels of IL-6 | at 28 days post-randomization | Peak Plasma levels of IL-6 at day 28 |
| AUC Plasma Levels of IL-6 | Day 0 to 28 days post-randomization | AUC Plasma levels of IL-6 from day 0 to day 28 |
| AUC Plasma Levels of IL-8 | Day 0 to 28 days post-randomization | AUC Plasma levels of IL-8 from day 0 to day 28 |
| AUC Plasma Levels of IL-10 | at 28 days post-randomization | AUC Plasma levels of IL-10 from day 0 to day 28 |
| AUC Plasma Levels of TNF-a | at 28 days post-randomization | AUC Plasma levels of TNF-a from day 0 to day 28 |
| AUC Plasma Levels of Soluble ICAM-1 | at 28 days post-randomization | AUC Plasma levels of soluble ICAM-1 from day 0 to day 28 |
| Length of Stay | by 180 days post-randomization | Hospital days alive and not hospitalized by day 180 |
| Organ System Failure at 28 Days | at 28 days post-randomization | Number of participants with organ system failure at 28 days |
| Duration of Mechanical Ventilation as Assessed by Ventilator Free Days | at 28 days post-randomization | Number of days of mechanical ventilation duration as assessed by ventilator free days |
| Duration of Mechanical Ventilation as Assessed by Ventilator Days | at 28 days post-randomization | Number of days of mechanical ventilation duration as assessed by ventilator days |
| Bacteremia and/or Fungemia | at 28 days post-randomization | Number of participants with bacteremia and/or fungemia |
| Mortality | at 60 days post-randomization | Mortality at 60 days post randomization |
| Mortality at 180 Days | at 180 days post-randomization | Mortality at 180 days post-randomization |
| SF-36 Functional Assessment Physical Component | at 180 days post-randomization | Physical Component Summary at 180 days post- randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability |
| SF-36 Functional Assessment Mental Component | at 180 days post-randomization | Mental Component Summary at 180 days post-randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability |
| SF-36 Functional Assessment Mental Component on Day 1 | at 1 day post-randomization | SF-36 Mental Component Summary at 1 day post-randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability |
| Patients With Serious Adverse Events | by 35 days post-randomization | Number of patients with Serious Adverse Events by day 35 |
| Time to Neutropenia | by 35 days post-randomization | Time to neutropenia by 35 days post-randomization |
| Use of Granulocyte-colony Stimulating Factor | by 35 days post-randomization | Number of participants requiring Granulocyte-colony stimulating factor |
| Renal Insufficiency | by 35 days post-randomization | Number of patients experiencing a glomerular filtration rate \< 60mL/min at day 35 |
| Red Blood Cell Transfusions Required Per Patients | by 35 days post-randomization | Red blood cell transfusions required per patients by day 35 |
| Platelet Transfusions | by 35 days post-randomization | Platelet transfusions per patient |
| Clinical Outcomes | at 14 days post-randomization | Composite of survival status and \>7 days ventilation status, and IL-6 levels. In the composite analysis, the endpoint is composed by death, ventilation status and change of cytokine. |
| Bacteremia and Fungemia Outcomes | at 7 days post-randomization | Bacteremia and fungemia outcomes among subjects who survive at least 7 days |
| Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets | at 7 through 14 days post-randomization | Bacteremia and fungemia events among subjects who are mechanically ventilated for at least 7 through 14 days after randomization |
| Overall Mortality | at 7 days post-randomization | Overall mortality amongst subjects who survive at least 7 days after randomization |
| Number of Mechanical Ventilated Days | at 7 days post-randomization | Number of mechanical ventilated days amongst subjects who survive at least 7 days after randomization |
| Number of Ventilator-free Days | at 7 days post-randomization | Number of ventilator-free days amongst subjects who survive at least 7 days after randomization |
| Number of Days in the ICU | at 7 days post-randomization | Number of days in the ICU amongst subjects who survive at least 7 days after randomization |
| Number of ICU-free Days | at 7 days post-randomization | Number of ICU-free days amongst subjects who survive at least 7 days after randomization |
| Number of Days in the Hospital | at 7 days post-randomization | Number of days in the hospital amongst subjects who survive at least 7 days after randomization |
| Number of Days Alive and Not in the ICU | by 28 days post-randomization | Number of ICU days alive and not in the ICU by day 28 |
| Mortality Among Subjects Mechanically Ventilated From Day 7 to 14 | 28 days | Mortality among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of Mechanically Ventilated Days Among Subjects by Day 28 | 28 days | Number of mechanically ventilated days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of Ventilator-free Days Among Subjects by Day 28 | 28 days | Number of ventilator-free days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of Days in ICU Amongst Subjects by Day 28 | 28 days | Number of days in ICU amongst subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of ICU-free Days Amongst Subjects by Day 28 | 28 days | Number of ICU-free days amongst subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of Hospital-free Days Among Subjects by Day 28 | 28 days | Number of hospital-free days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization |
| Number of Hospital-free Days | at 7 days post-randomization | Number of hospital-free days amongst subjects who survive at least 7 days after randomization |
Countries
United States
Participant flow
Participants by arm
| Arm | Count |
|---|---|
| IV Ganciclovir 5mg/kg IV twice daily for 5 days, then followed by either IV ganciclovir or oral valganciclovir once daily until hospital discharge
IV Ganciclovir: For first 5 days, dosing of intravenous ganciclovir is 10 mg/kg daily, given as 5 mg/kg every 12 hours (adjusted for renal function). After first 5 days (up to 28 days) IV ganciclovir 5 mg/kg QD ( adjusted for renal function). A minimum interval of 6 hours is required between the first and second dose. | 84 |
| Placebo normal saline IV twice daily for 5 days, then followed by either IV normal saline or oral placebo once daily until hospital discharge
Placebo: For first 5 days, dosing of intravenous placebo is daily, given every 12 hours. After first 5 days (up to 28 days), IV placebo QD. A minimum interval of 6 hours is required between the first and second dose.
The placebo is an IV solution that does not contain any active medications. | 76 |
| Total | 160 |
Baseline characteristics
| Characteristic | IV Ganciclovir | Placebo | Total |
|---|---|---|---|
| Age, Continuous | 55.2 years | 58.2 years | 56.6 years |
| Region of Enrollment United States | 84 participants | 76 participants | 160 participants |
| Sex: Female, Male Female | 35 Participants | 36 Participants | 71 Participants |
| Sex: Female, Male Male | 49 Participants | 40 Participants | 89 Participants |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk |
|---|---|---|
| deaths Total, all-cause mortality | 10 / 84 | 11 / 72 |
| other Total, other adverse events | 0 / 84 | 0 / 72 |
| serious Total, serious adverse events | 0 / 84 | 0 / 72 |
Outcome results
Serum IL-6 Level
Change between baseline and 14 days post-randomization between placebo & ganciclovir groups
Time frame: Baseline and Day 14
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Serum IL-6 Level | -0.79 pg/mL | Standard Deviation 0.65 |
| Placebo | Serum IL-6 Level | -0.79 pg/mL | Standard Deviation 0.69 |
AUC Plasma Levels of IL-10
AUC Plasma levels of IL-10 from day 0 to day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | AUC Plasma Levels of IL-10 | 0.36 IU*day/mL | Standard Deviation 0.36 |
| Placebo | AUC Plasma Levels of IL-10 | 0.35 IU*day/mL | Standard Deviation 0.38 |
AUC Plasma Levels of IL-6
AUC Plasma levels of IL-6 from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | AUC Plasma Levels of IL-6 | 0.68 IU*day/mL | Standard Deviation 0.49 |
| Placebo | AUC Plasma Levels of IL-6 | 0.75 IU*day/mL | Standard Deviation 0.51 |
AUC Plasma Levels of IL-8
AUC Plasma levels of IL-8 from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | AUC Plasma Levels of IL-8 | 1.15 IU*day/mL | Standard Deviation 0.45 |
| Placebo | AUC Plasma Levels of IL-8 | 1.13 IU*day/mL | Standard Deviation 0.42 |
AUC Plasma Levels of Soluble ICAM-1
AUC Plasma levels of soluble ICAM-1 from day 0 to day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | AUC Plasma Levels of Soluble ICAM-1 | 4.78 IU*day/mL | Standard Deviation 0.98 |
| Placebo | AUC Plasma Levels of Soluble ICAM-1 | 4.65 IU*day/mL | Standard Deviation 1.25 |
AUC Plasma Levels of TNF-a
AUC Plasma levels of TNF-a from day 0 to day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | AUC Plasma Levels of TNF-a | -0.14 IU*day/mL | Standard Deviation 0.28 |
| Placebo | AUC Plasma Levels of TNF-a | -0.14 IU*day/mL | Standard Deviation 0.25 |
Bacteremia and Fungemia Outcomes
Bacteremia and fungemia outcomes among subjects who survive at least 7 days
Time frame: at 7 days post-randomization
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| IV Ganciclovir | Bacteremia and Fungemia Outcomes | number of events | 15 events |
| IV Ganciclovir | Bacteremia and Fungemia Outcomes | number of no events | 67 events |
| Placebo | Bacteremia and Fungemia Outcomes | number of events | 9 events |
| Placebo | Bacteremia and Fungemia Outcomes | number of no events | 55 events |
Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets
Bacteremia and fungemia events among subjects who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: at 7 through 14 days post-randomization
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| IV Ganciclovir | Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets | number of events | 6 events |
| IV Ganciclovir | Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets | number of no events | 24 events |
| Placebo | Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets | number of events | 9 events |
| Placebo | Bacteremia and Fungemia Outcomes in Mechanically Ventilated Subjets | number of no events | 24 events |
Bacteremia and/or Fungemia
Number of participants with bacteremia and/or fungemia
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Bacteremia and/or Fungemia | with bacteremia and /or fungemia | 15 Participants |
| IV Ganciclovir | Bacteremia and/or Fungemia | without bacteremia and /or fungemia | 69 Participants |
| Placebo | Bacteremia and/or Fungemia | with bacteremia and /or fungemia | 11 Participants |
| Placebo | Bacteremia and/or Fungemia | without bacteremia and /or fungemia | 61 Participants |
BAL Levels of IL-6
Levels of IL-6 from BALs at 7 days post-randomization
Time frame: at 7 days post-randomization
Population: The protocol was modified to remove the inclusion of BALs, thus these numbers reflect the total BALs performed prior to the modification.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | BAL Levels of IL-6 | 1.01 log 10 pg/mL | Standard Deviation 0.78 |
| Placebo | BAL Levels of IL-6 | 1.66 log 10 pg/mL | Standard Deviation 1.26 |
BAL Levels of IL-8
Levels of IL-8 in BALs at day 7
Time frame: at 7 days post-randomization
Population: The protocol was modified to remove the inclusion of BALs, thus these numbers reflect the total BALs performed prior to the modification.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | BAL Levels of IL-8 | 2.21 log 10 pg/mL | Standard Deviation 0.66 |
| Placebo | BAL Levels of IL-8 | 2.61 log 10 pg/mL | Standard Deviation 1.22 |
BAL Levels of TNFa
Levels of TNFa in BALs at day 7
Time frame: at 7 days post-randomization
Population: The protocol was modified to remove the inclusion of BALs, thus these numbers reflect the total BALs performed prior to the modification.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | BAL Levels of TNFa | 0.18 log 10 pg/mL | Standard Deviation 0 |
| Placebo | BAL Levels of TNFa | 0.46 log 10 pg/mL | Standard Deviation 0.49 |
Clinical Outcomes
Composite of survival status and \>7 days ventilation status, and IL-6 levels. In the composite analysis, the endpoint is composed by death, ventilation status and change of cytokine.
Time frame: at 14 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Clinical Outcomes | Number of patients with composite endpoint | 42 Participants |
| IV Ganciclovir | Clinical Outcomes | Number of patients without composite endpoint | 42 Participants |
| Placebo | Clinical Outcomes | Number of patients with composite endpoint | 49 Participants |
| Placebo | Clinical Outcomes | Number of patients without composite endpoint | 23 Participants |
CMV AUC in Blood
CMV AUC in blood from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | CMV AUC in Blood | 0.11 IU*day/mL | Standard Deviation 0.39 |
| Placebo | CMV AUC in Blood | 0.39 IU*day/mL | Standard Deviation 0.69 |
CMV AUC in Throat
CMV AUC in Throat from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | CMV AUC in Throat | 0.03 IU*day/mL | Standard Deviation 0.14 |
| Placebo | CMV AUC in Throat | 0.17 IU*day/mL | Standard Deviation 0.52 |
CMV Disease
Need to be biopsy-proven
Time frame: by 180 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | CMV Disease | Biopsy proven CMV disease | 0 Participants |
| IV Ganciclovir | CMV Disease | No Biopsy proven CMV disease | 84 Participants |
| Placebo | CMV Disease | Biopsy proven CMV disease | 0 Participants |
| Placebo | CMV Disease | No Biopsy proven CMV disease | 72 Participants |
CMV Peak Viral Load in Blood
CMV Peak Viremia in blood at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | CMV Peak Viral Load in Blood | 0.24 log 10 IU/mL | Standard Deviation 0.67 |
| Placebo | CMV Peak Viral Load in Blood | 0.89 log 10 IU/mL | Standard Deviation 1.21 |
Duration of Mechanical Ventilation as Assessed by Ventilator Days
Number of days of mechanical ventilation duration as assessed by ventilator days
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Duration of Mechanical Ventilation as Assessed by Ventilator Days | 6.95 days | Standard Deviation 6.16 |
| Placebo | Duration of Mechanical Ventilation as Assessed by Ventilator Days | 8.5 days | Standard Deviation 7.17 |
Duration of Mechanical Ventilation as Assessed by Ventilator Free Days
Number of days of mechanical ventilation duration as assessed by ventilator free days
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Duration of Mechanical Ventilation as Assessed by Ventilator Free Days | 18.71 days | Standard Deviation 9.08 |
| Placebo | Duration of Mechanical Ventilation as Assessed by Ventilator Free Days | 15.97 days | Standard Deviation 9.72 |
Grade 3 AEs or Higher
Number of patients with greater than one AE of grade 3 or more
Time frame: by 35 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Grade 3 AEs or Higher | number with AE greater than grade 3 | 11 Participants |
| IV Ganciclovir | Grade 3 AEs or Higher | number without AE greater than grade 3 | 73 Participants |
| Placebo | Grade 3 AEs or Higher | number with AE greater than grade 3 | 10 Participants |
| Placebo | Grade 3 AEs or Higher | number without AE greater than grade 3 | 62 Participants |
Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat
Number of participants with CMV reactivation \>1,000 IU per mL at day 28 in throat
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat | CMV reactivation >1,000 in IU per mL | 0 Participants |
| IV Ganciclovir | Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat | No CMV reactivation >1,000 IU per mL in throat | 80 Participants |
| Placebo | Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat | CMV reactivation >1,000 in IU per mL | 1 Participants |
| Placebo | Incidence of CMV Reactivation >1,000 IU Per mL at 28 Days in Throat | No CMV reactivation >1,000 IU per mL in throat | 66 Participants |
Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma
Number of participants with CMV reactivation \>1,000 IU per mL at day 28 in plasma
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma | CMV viremia >1,000 copies per mL | 0 Participants |
| IV Ganciclovir | Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma | No CMV viremia >1,000 copies per mL | 77 Participants |
| Placebo | Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma | CMV viremia >1,000 copies per mL | 5 Participants |
| Placebo | Incidence of CMV Reactivation >1,000 IU Per mL at Day 28 in Plasma | No CMV viremia >1,000 copies per mL | 62 Participants |
Incidence of CMV Reactivation at Any Level at 28 Days in Throat
CMV reactivation in baseline negatives at any level at day 28 in throat
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Incidence of CMV Reactivation at Any Level at 28 Days in Throat | CMV reactivation at any level at day 28 in throat | 2 Participants |
| IV Ganciclovir | Incidence of CMV Reactivation at Any Level at 28 Days in Throat | No CMV reactivation at any level at day 28in throa | 78 Participants |
| Placebo | Incidence of CMV Reactivation at Any Level at 28 Days in Throat | CMV reactivation at any level at day 28 in throat | 6 Participants |
| Placebo | Incidence of CMV Reactivation at Any Level at 28 Days in Throat | No CMV reactivation at any level at day 28in throa | 61 Participants |
Length of Stay
Hospital days alive and not hospitalized by day 28
Time frame: by 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Length of Stay | 9.96 days | Standard Deviation 8.52 |
| Placebo | Length of Stay | 8.72 days | Standard Deviation 8.24 |
Length of Stay
Hospital days alive and not hospitalized by day 180
Time frame: by 180 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Length of Stay | 145.13 days | Standard Deviation 47.63 |
| Placebo | Length of Stay | 145.94 days | Standard Deviation 47.88 |
Mortality
Mortality at 60 days post randomization
Time frame: at 60 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Mortality | dead | 13 Participants |
| IV Ganciclovir | Mortality | alive | 71 Participants |
| Placebo | Mortality | dead | 12 Participants |
| Placebo | Mortality | alive | 60 Participants |
Mortality Among Subjects Mechanically Ventilated From Day 7 to 14
Mortality among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| IV Ganciclovir | Mortality Among Subjects Mechanically Ventilated From Day 7 to 14 | number of events | 9 events |
| IV Ganciclovir | Mortality Among Subjects Mechanically Ventilated From Day 7 to 14 | number of no events | 21 events |
| Placebo | Mortality Among Subjects Mechanically Ventilated From Day 7 to 14 | number of events | 6 events |
| Placebo | Mortality Among Subjects Mechanically Ventilated From Day 7 to 14 | number of no events | 27 events |
Mortality at 180 Days
Mortality at 180 days post-randomization
Time frame: at 180 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Mortality at 180 Days | dead | 18 Participants |
| IV Ganciclovir | Mortality at 180 Days | alive | 66 Participants |
| Placebo | Mortality at 180 Days | dead | 19 Participants |
| Placebo | Mortality at 180 Days | alive | 53 Participants |
Number of Days Alive and Not in the ICU
Number of ICU days alive and not in the ICU by day 28
Time frame: by 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Days Alive and Not in the ICU | 10.02 days | Standard Deviation 6.84 |
| Placebo | Number of Days Alive and Not in the ICU | 10.97 days | Standard Deviation 8.23 |
Number of Days in ICU Amongst Subjects by Day 28
Number of days in ICU amongst subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Days in ICU Amongst Subjects by Day 28 | 16.73 days | Standard Deviation 5.75 |
| Placebo | Number of Days in ICU Amongst Subjects by Day 28 | 17.79 days | Standard Deviation 7.41 |
Number of Days in the Hospital
Number of days in the hospital amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Days in the Hospital | 6.21 days | Standard Deviation 4.85 |
| Placebo | Number of Days in the Hospital | 5.53 days | Standard Deviation 4.9 |
Number of Days in the ICU
Number of days in the ICU amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Days in the ICU | 10.20 days | Standard Deviation 6.82 |
| Placebo | Number of Days in the ICU | 11.83 days | Standard Deviation 8.32 |
Number of Hospital-free Days
Number of hospital-free days amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Hospital-free Days | 10.22 days | Standard Deviation 8.47 |
| Placebo | Number of Hospital-free Days | 9.87 days | Standard Deviation 8.09 |
Number of Hospital-free Days Among Subjects by Day 28
Number of hospital-free days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Hospital-free Days Among Subjects by Day 28 | 3.54 days | Standard Deviation 5.15 |
| Placebo | Number of Hospital-free Days Among Subjects by Day 28 | 4.59 days | Standard Deviation 5.55 |
Number of ICU-free Days
Number of ICU-free days amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of ICU-free Days | 15.38 days | Standard Deviation 27 |
| Placebo | Number of ICU-free Days | 13.89 days | Standard Deviation 25 |
Number of ICU-free Days Amongst Subjects by Day 28
Number of ICU-free days amongst subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of ICU-free Days Amongst Subjects by Day 28 | 7.73 days | Standard Deviation 18 |
| Placebo | Number of ICU-free Days Amongst Subjects by Day 28 | 8.15 days | Standard Deviation 18 |
Number of Mechanically Ventilated Days Among Subjects by Day 28
Number of mechanically ventilated days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Mechanically Ventilated Days Among Subjects by Day 28 | 13.4 days | Standard Deviation 6.12 |
| Placebo | Number of Mechanically Ventilated Days Among Subjects by Day 28 | 14.42 days | Standard Deviation 6.64 |
Number of Mechanical Ventilated Days
Number of mechanical ventilated days amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Mechanical Ventilated Days | 7.05 days | Standard Deviation 6.19 |
| Placebo | Number of Mechanical Ventilated Days | 9.05 days | Standard Deviation 7.4 |
Number of Participants With CMV Reactivation at 28 Days in Plasma
Number of participants in baseline negatives with CMV reactivation at any level at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Number of Participants With CMV Reactivation at 28 Days in Plasma | CMV viremia at any level | 3 Participants |
| IV Ganciclovir | Number of Participants With CMV Reactivation at 28 Days in Plasma | no CMV viremia at any level | 74 Participants |
| Placebo | Number of Participants With CMV Reactivation at 28 Days in Plasma | CMV viremia at any level | 23 Participants |
| Placebo | Number of Participants With CMV Reactivation at 28 Days in Plasma | no CMV viremia at any level | 44 Participants |
Number of Participants With Organ System Failure at 14 Days
Number of participants experiencing organ system failure at 14 days
Time frame: at 14 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Number of Participants With Organ System Failure at 14 Days | with organ failure | 0 Participants |
| IV Ganciclovir | Number of Participants With Organ System Failure at 14 Days | without organ failure | 84 Participants |
| Placebo | Number of Participants With Organ System Failure at 14 Days | with organ failure | 2 Participants |
| Placebo | Number of Participants With Organ System Failure at 14 Days | without organ failure | 70 Participants |
Number of Ventilator-free Days
Number of ventilator-free days amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Ventilator-free Days | 19.17 days | Standard Deviation 8.7 |
| Placebo | Number of Ventilator-free Days | 17.97 days | Standard Deviation 8.37 |
Number of Ventilator-free Days Among Subjects by Day 28
Number of ventilator-free days among subjects by day 28 who are mechanically ventilated for at least 7 through 14 days after randomization
Time frame: 28 days
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Number of Ventilator-free Days Among Subjects by Day 28 | 11.4 days | Standard Deviation 8.29 |
| Placebo | Number of Ventilator-free Days Among Subjects by Day 28 | 12.45 days | Standard Deviation 7.26 |
Organ System Failure at 28 Days
Number of participants with organ system failure at 28 days
Time frame: at 28 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Organ System Failure at 28 Days | with organ failure | 0 Participants |
| IV Ganciclovir | Organ System Failure at 28 Days | without organ failure | 84 Participants |
| Placebo | Organ System Failure at 28 Days | with organ failure | 2 Participants |
| Placebo | Organ System Failure at 28 Days | without organ failure | 70 Participants |
Overall Mortality
Overall mortality amongst subjects who survive at least 7 days after randomization
Time frame: at 7 days post-randomization
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| IV Ganciclovir | Overall Mortality | number of alive | 66 events |
| IV Ganciclovir | Overall Mortality | number of deaths | 16 events |
| Placebo | Overall Mortality | number of deaths | 11 events |
| Placebo | Overall Mortality | number of alive | 53 events |
Patients With Serious Adverse Events
Number of patients with Serious Adverse Events by day 35
Time frame: by 35 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Patients With Serious Adverse Events | Number of patients with a Serious adverse event | 0 Participants |
| IV Ganciclovir | Patients With Serious Adverse Events | Number of patients without a Serious adverse event | 84 Participants |
| Placebo | Patients With Serious Adverse Events | Number of patients with a Serious adverse event | 0 Participants |
| Placebo | Patients With Serious Adverse Events | Number of patients without a Serious adverse event | 72 Participants |
Peak Plasma Levels of IL-10
Peak Plasma levels of IL-10 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Peak Plasma Levels of IL-10 | 0.88 log 10 pg/mL | Standard Deviation 0.52 |
| Placebo | Peak Plasma Levels of IL-10 | 0.82 log 10 pg/mL | Standard Deviation 0.49 |
Peak Plasma Levels of IL-6
Peak Plasma levels of IL-6 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Peak Plasma Levels of IL-6 | 1.57 log 10 pg/mL | Standard Deviation 0.78 |
| Placebo | Peak Plasma Levels of IL-6 | 1.56 log 10 pg/mL | Standard Deviation 0.78 |
Peak Plasma Levels of IL-8
Peak Plasma levels of IL-8 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Peak Plasma Levels of IL-8 | 1.67 log 10 pg/mL | Standard Deviation 0.65 |
| Placebo | Peak Plasma Levels of IL-8 | 1.66 log 10 pg/mL | Standard Deviation 0.44 |
Peak Plasma Levels of Soluble ICAM-1
Peak Plasma levels of soluble ICAM-1 from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Peak Plasma Levels of Soluble ICAM-1 | 5.52 log 10 pg/mL | Standard Deviation 0.2 |
| Placebo | Peak Plasma Levels of Soluble ICAM-1 | 5.57 log 10 pg/mL | Standard Deviation 0.27 |
Peak Plasma Levels of TNF-a
Peak Plasma levels of TNF-a at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Peak Plasma Levels of TNF-a | 0.16 log 10 pg/mL | Standard Deviation 0.3 |
| Placebo | Peak Plasma Levels of TNF-a | 0.17 log 10 pg/mL | Standard Deviation 0.36 |
Plasma Levels of IL-6
Plasma levels of IL-6 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of IL-6 | 0.35 log 10 pg/mL | Standard Deviation 0.51 |
| Placebo | Plasma Levels of IL-6 | 0.59 log 10 pg/mL | Standard Deviation 0.7 |
Plasma Levels of IL-6
Plasma levels of IL-6.
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of IL-6 | 0.87 log 10 pg/mL | Standard Deviation 0.84 |
| Placebo | Plasma Levels of IL-6 | 0.92 log 10 pg/mL | Standard Deviation 0.62 |
Plasma Levels of IL-8
Plasma levels of IL-8 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of IL-8 | 1.09 log 10 pg/mL | Standard Deviation 0.46 |
| Placebo | Plasma Levels of IL-8 | 1.27 log 10 pg/mL | Standard Deviation 0.46 |
Plasma Levels of IL-8
Levels of IL-8 in plasma at day 7
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of IL-8 | 1.38 log 10 pg/mL | Standard Deviation 0.6 |
| Placebo | Plasma Levels of IL-8 | 1.38 log 10 pg/mL | Standard Deviation 0.35 |
Plasma Levels of Soluble ICAM-1
Plasma levels of soluble ICAM-1 at day 28
Time frame: at 28 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of Soluble ICAM-1 | 5.34 log 10 pg/mL | Standard Deviation 0.19 |
| Placebo | Plasma Levels of Soluble ICAM-1 | 5.48 log 10 pg/mL | Standard Deviation 0.22 |
Plasma Levels of Soluble ICAM-1
Plasma levels of soluble ICAM-1 at day 7
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of Soluble ICAM-1 | 5.43 log 10 pg/mL | Standard Deviation 0.21 |
| Placebo | Plasma Levels of Soluble ICAM-1 | 5.45 log 10 pg/mL | Standard Deviation 0.31 |
Plasma Levels of TNF a
Plasma levels of TNF a at day 7.Cytokines are summarized on log 10 scale. When logged value is negative, the raw value would be less than 1.
Time frame: at 7 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of TNF a | -0.07 log 10 pg/mL | Standard Deviation 0.36 |
| Placebo | Plasma Levels of TNF a | -0.1 log 10 pg/mL | Standard Deviation 0.35 |
Plasma Levels of TNF a
Plasma levels of TNF a from day 0 to day 28
Time frame: Day 0 to 28 days post-randomization
Population: Cytokines are summarized on a log 10 scale. When the logged value is negative, the raw value would be less than 1.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | Plasma Levels of TNF a | -0.06 log 10 pg/mL | Standard Deviation 0.37 |
| Placebo | Plasma Levels of TNF a | -0.11 log 10 pg/mL | Standard Deviation 0.27 |
Platelet Transfusions
Platelet transfusions per patient
Time frame: by 35 days post-randomization
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| IV Ganciclovir | Platelet Transfusions | 1 transfusions |
| Placebo | Platelet Transfusions | 1 transfusions |
Red Blood Cell Transfusions Required Per Patients
Red blood cell transfusions required per patients by day 35
Time frame: by 35 days post-randomization
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| IV Ganciclovir | Red Blood Cell Transfusions Required Per Patients | 2 transfusions |
| Placebo | Red Blood Cell Transfusions Required Per Patients | 1 transfusions |
Renal Insufficiency
Number of patients experiencing a glomerular filtration rate \< 60mL/min at day 35
Time frame: by 35 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Renal Insufficiency | Glomerular filtration rate less than 60 mL/min | 36 Participants |
| IV Ganciclovir | Renal Insufficiency | Glomerular filtration rate greater than 60 mL/min | 48 Participants |
| Placebo | Renal Insufficiency | Glomerular filtration rate less than 60 mL/min | 41 Participants |
| Placebo | Renal Insufficiency | Glomerular filtration rate greater than 60 mL/min | 31 Participants |
SF-36 Functional Assessment Mental Component
Mental Component Summary at 180 days post-randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability
Time frame: at 180 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | SF-36 Functional Assessment Mental Component | 45.55 scores on a scale | Standard Deviation 11.52 |
| Placebo | SF-36 Functional Assessment Mental Component | 44.08 scores on a scale | Standard Deviation 12.25 |
SF-36 Functional Assessment Mental Component on Day 1
SF-36 Mental Component Summary at 1 day post-randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability
Time frame: at 1 day post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | SF-36 Functional Assessment Mental Component on Day 1 | 43.83 scores on a scale | Standard Deviation 12 |
| Placebo | SF-36 Functional Assessment Mental Component on Day 1 | 42.73 scores on a scale | Standard Deviation 13.78 |
SF-36 Functional Assessment Physical Component
Physical Component Summary at 180 days post- randomization. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability
Time frame: at 180 days post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | SF-36 Functional Assessment Physical Component | 35.51 scores on a scale | Standard Deviation 11.38 |
| Placebo | SF-36 Functional Assessment Physical Component | 38.17 scores on a scale | Standard Deviation 10.96 |
SF-36 Health Survey
Physical Component Summary of SF-36. The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability.
Time frame: at 1 day post-randomization
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| IV Ganciclovir | SF-36 Health Survey | 36.37 scores on a scale | Standard Deviation 10.93 |
| Placebo | SF-36 Health Survey | 35 scores on a scale | Standard Deviation 11.28 |
Time to Neutropenia
Time to neutropenia by 35 days post-randomization
Time frame: by 35 days post-randomization
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| IV Ganciclovir | Time to Neutropenia | 0 days |
| Placebo | Time to Neutropenia | 0 days |
Use of Granulocyte-colony Stimulating Factor
Number of participants requiring Granulocyte-colony stimulating factor
Time frame: by 35 days post-randomization
| Arm | Measure | Category | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|---|
| IV Ganciclovir | Use of Granulocyte-colony Stimulating Factor | Number of patients that required GCSF | 0 Participants |
| IV Ganciclovir | Use of Granulocyte-colony Stimulating Factor | Number of patients that did not require GCSF | 84 Participants |
| Placebo | Use of Granulocyte-colony Stimulating Factor | Number of patients that required GCSF | 0 Participants |
| Placebo | Use of Granulocyte-colony Stimulating Factor | Number of patients that did not require GCSF | 72 Participants |