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Efficacy of Recombinant Human Clara Cell 10 Protein (rhCC10) Administered to Premature Neonates With Respiratory Distress Syndrome

Efficacy of Recombinant Human Clara Cell Protein (rhCC10) Administered to Premature Neonates With Respiratory Distress Syndrome

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01941745
Enrollment
88
Registered
2013-09-13
Start date
2013-10-31
Completion date
2017-08-25
Last updated
2019-09-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Bronchopulmonary Dysplasia, Respiratory Distress Syndrome in Premature Infant

Brief summary

Bronchopulmonary Dysplasia (BPD) is a multi-factorial disease process that is the end result of an immature, surfactant deficient lung that has been exposed to hyperoxia, mechanical ventilation and infection. These conditions initiate an inflammatory response characterized by elevated inflammatory cell infiltrates and proinflammatory cytokines that lead to the development of significant acute and chronic lung injury. The study drug, rhCC10, is a recombinant version of natural human CC10 protein. Native CC10 is produced primarily by non-ciliated respiratory epithelial cells, called Clara cells and is the most abundant protein in the mucosal fluids in normal healthy lungs. The purpose of this study is to evaluate the pharmacokinetics, safety, tolerability and anti-inflammatory effects of a single intratracheal (IT) dose of rhCC10 to intubated premature infants receiving positive pressure ventilation for treatment of respiratory distress syndrome (RDS) to prevent long term respiratory complications referred to as bronchopulmonary dysplasia, and, more recently, as Chronic Pulmonary Insufficiency of Prematurity (CPIP; asthma, cough, wheezing, multiple respiratory infections). CC10 regulates inflammatory responses and protects the structural integrity of pulmonary tissue while preserving pulmonary mechanical function during various insults (eg. viral infection, bacterial endotoxin, ozone, allergens, hyperoxia). Together these properties suggest that administration of rhCC10 may help to facilitate development of normal airway epithelia and prevent the inflammation that leads to CPIP in these infants. This study is funded by the FDA Office of Orphan Product Development (OOPD).

Detailed description

Recombinant human CC10 protein (rhCC10) is a novel therapeutic agent used to prevent the development of chronic respiratory morbidity (CPIP; repeated respiratory infections, asthma, re-hospitalizations) in preterm infants. Native CC10 is a natural anti-inflammatory and immunomodulatory factor produced by Clara Cells in the lung and is the most abundant protein in respiratory mucosa. Animal data demonstrate that a single intratracheal dose of rhCC10 administered shortly after birth reduces lung inflammation (important biomarkers linked to lung injury in preterm infants), promotes normal lung development, preserves lung architecture, improves pulmonary function, suppresses the response to endotoxin and enhances resistance to pulmonary infections. In preterm infants who die or develop lung inflammation and subsequent bronchopulmonary dysplasia (BPD), both the concentration and activity of CC10 are significantly reduced indicating that CC10 is essential for preventing lung injury and promoting normal lung development. In a small phase I study, rhCC10 significantly decreased several indices of pulmonary inflammation in the lungs of premature infants who were at risk of developing BPD and associated CPIP. The drug appeared to be safe, well-tolerated, and reduce risk of re-hospitalization due to respiratory illness for 9-10 months after a single intratracheal dose at the time of birth (0/11 rhCC10-treated infants vs. 3/6 placebo-treated). This supports the protective role of rhCC10 against damage from hyperoxia, mechanical ventilation, inflammation, and infection in the immature lung. A more normal airway epithelium will produce significantly more endogenous CC10, with both factors contributing to enhanced resistance to infections, less asthma, and improved long-term respiratory outcome. We propose to conduct a Phase 2 clinical trial to evaluate rhCC10 in extremely premature infants (\<29 weeks gestation) for the prevention of BPD and CPIP. This will be a randomized, double-blind, placebo-controlled dose escalation study in 88 premature infants. A single intratracheal dose of study drug (rhCC10 or placebo) will be administered to preterm infants receiving surfactant and mechanical ventilation for treatment of RDS. Infants will be followed to evaluate safety, pharmacokinetics, and short and long term efficacy of this approach. Safety will be evaluated through serious adverse event (SAE) and adverse event monitoring and by Bayley neurodevelopmental assessments at 18 months corrected gestational age (CGA). Efficacy measurements will include the primary combined endpoint of alive without evidence of CPIP through 12 months CGA (defined by parental diaries and pulmonary questionnaires) comparing rhCC10 treated to placebo controls. The availability of a therapy which prevents lung injury, promotes lung development, and prevents serious respiratory infections and asthma in high risk preterm infants would be a highly significant advancement in care.

Interventions

DRUGHalf normal saline

2 ml/kg

DRUGLow Dose rhCC10

1.5 mg/kg study drug (rhCC10)

DRUGHigh dose rhCC10

5 mg/kg in 2 ml/kg

Sponsors

Brigham and Women's Hospital
CollaboratorOTHER
Therabron Therapeutics, Inc.
CollaboratorINDUSTRY
Baystate Medical Center
CollaboratorOTHER
Poznan University of Medical Sciences
CollaboratorOTHER
SP ZOZ Szpital Uniwersytecki w Krakowie Oddizat Neonatologii
CollaboratorUNKNOWN
Instytut Centrum Zdrowia Matki Polki Klinika Neonatologii
CollaboratorUNKNOWN
Tufts Medical Center
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
TRIPLE (Subject, Caregiver, Investigator)

Eligibility

Sex/Gender
ALL
Age
24 Weeks to 29 Weeks
Healthy volunteers
No

Inclusion criteria

* Age less than or equal to 24 hours; * Birth weight 600 - 1250 grams; * Gestational age 24-29 weeks (not less than 24 weeks); at birth based on best estimate using obstetrical sonography (first or second trimester), solid dating criteria, or Ballard examination; * Birth weight appropriate for gestational age; * 5 minute Apgar score \>5; * Diagnosis of neonatal RDS based on clinical and radiographic criteria; * Requiring intubation and mechanical ventilation for treatment of RDS; * Received at least one dose of surfactant (prophylaxis or rescue); and * Written informed consent is obtained from at least one of the infant's parents or legal guardians (see section 6.2) prior to enrollment of the subject. The parent(s) or legal guardian(s) must agree to all study-related procedures and evaluations.

Exclusion criteria

* 5 minute Apgar score of ≤ 5; * Major congenital anomaly (chromosomal, renal, cardiac, hepatic, neurologic, or pulmonary malformations; minor anomalies such as cleft lip/palate are permitted); * Evidence of severe neonatal depression (as defined by cord blood acid-base balance (pH) ≤ 7.00 and/or an Apgar score of \< 4 at 10 minutes); * Evidence of congenital infection; * Requires a major surgical procedure prior to administration of Study drug * Enrollment in any other study involving administration of another investigational drug; * Any condition which could preclude receiving study drug or performing any study-related procedures; * Use of postnatal corticosteroids prior to administration of r-hCC10, except as specified in the protocol; * Use of inhaled nitric oxide prior to administration of r-hCC10; * Mother is known to be seropositive for HIV (per maternal medical records); * Parent or guardian is unable or unwilling to complete the study diary; * Parent or guardian is unable to bring the infant back to the study center for follow-up evaluations.

Design outcomes

Primary

MeasureTime frameDescription
Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)12 Months Corrected Gestational Age (*no imputation for missing data)Number of events of survived participants without one or more of the CPIP components defined below: 1. Medical/ER visits (CPIP-DV): At least one non-routine medical visit for respiratory causes. 2. Respiratory re-hospitalizations (CPIP-RH): One or more re-hospitalizations for respiratory causes. 3. Respiratory Symptoms (CPIP-SS): Evidence of respiratory symptoms (e.g. coughing and wheezing) or use of respiratory medications by parental diaries or pulmonary questionnaires. 4. Respiratory Medications (CPIP-RM): Administration of respiratory medications (including oxygen). CPIP is defined as the presence of one or more parent-reported outcomes at 12 months CGA, validated by Respiratory diaries (presence of wheezing, coughing, and/or respiratory medication use ≥2 days per week for 3 consecutive weeks), and Pulmonary questionnaires (decrease in respiratory illness requiring medications, unscheduled medical visits and/or ER or hospital admissions).

Secondary

MeasureTime frameDescription
Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)6 months Corrected Gestational AgeNumber of events of survived participants, graded as not having 1, 2, 3, or 4 of the CPIP components defined below: Medical/ER visits (CPIP-DV): ≥1 non-routine medical visit(s) for respiratory causes. Respiratory re-hospitalizations (CPIP-RH): ≥1 re-hospitalization(s) for respiratory causes Respiratory Symptoms (CPIP-SS): Parent-reported evidence of respiratory symptoms (e.g. coughing and wheezing) or use of respiratory medications Respiratory Medications (CPIP-RM): Administration of respiratory medications (including oxygen) A participant graded without 4 CPIP components is considered in better health than a participant graded without 1 CPIP component. CPIP components were parent-validated via respiratory diaries (wheezing, coughing, and/or respiratory medication use ≥2 days/wk for 3 consecutive wks), and pulmonary questionnaires (decrease in respiratory illness requiring medications, unscheduled medical visits and/or ER or hospital admissions).
Safety and Efficacy - Number of Participants With Adverse EventsAdverse events are monitored through 36 wks post-menstrual age (PMA)The safety of the study drug was assessed by accounting the number of participants with Adverse Events (AEs) in the treatment and placebo groups.
Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age36 weeks post-menstrual ageShort term efficacy evaluations involve number of neonates with oxygen requirement at 36 weeks post menstrual age.

Countries

United States

Participant flow

Recruitment details

Recruitment spanned October 2013 - August 2017 at ICUs at Tufts Medical Center (Boston, MA), Brigham and Women's Hospital (Boston, MA), and BayState Medical Center (Springfield, MA). Three hospital sites in Poland were later added for the second high-dose/high dose placebo cohort of 44 neonates.

Pre-assignment details

No washout/run-in events to report.

Participants by arm

ArmCount
Placebo (Associated w/ Low Dose Cohort)
Dosage: Single dose of half normal saline at 2 ml/kg Administration: once intratracheally within the first 24 hours of life, and once within 4 hours of the first dose of exogenous surfactant (CurosurfTM) Enrollment: 22 participants
22
Low Dose (rhCC10)
Dosage: 1.5 mg/kg study drug rhCC10 in 2 ml/kg Administration: once intratracheally within the first 24 hours of life, and once within 4 hours of the first dose of exogenous surfactant (CurosurfTM) Enrollment: 22 participants
22
Placebo (Associated w/ High Dose Cohort)
Dosage: Single dose of half normal saline at 2 ml/kg Administration: once intratracheally within the first 24 hours of life, and once within 4 hours of the first dose of exogenous surfactant (CurosurfTM) Enrollment: 23 participants
21
High Dose (rhCC10)
Dosage: 5 mg/kg of rhCC10 given in 2 ml/kg Administration: once intratracheally within the first 24 hours of life, and once within 4 hours of the first dose of exogenous surfactant (CurosurfTM) Enrollment: 23 participants
23
Total88

Baseline characteristics

CharacteristicTotalLow Dose (rhCC10)High Dose (rhCC10)Placebo (Associated w/ Low Dose Cohort)Placebo (Associated w/ High Dose Cohort)
Age, Customized26.6 weeks
STANDARD_DEVIATION 1.2
26.5 weeks
STANDARD_DEVIATION 1.1
26.6 weeks
STANDARD_DEVIATION 1.2
26.1 weeks
STANDARD_DEVIATION 1.3
27.0 weeks
STANDARD_DEVIATION 1.3
Ethnicity (NIH/OMB)
Hispanic or Latino
22 Participants7 Participants5 Participants5 Participants5 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
0 Participants0 Participants0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
66 Participants15 Participants18 Participants17 Participants16 Participants
Mean birth weight874.5 grams
STANDARD_DEVIATION 168.2
859.3 grams
STANDARD_DEVIATION 140.9
867.2 grams
STANDARD_DEVIATION 187.2
877.4 grams
STANDARD_DEVIATION 170.9
885.5 grams
STANDARD_DEVIATION 173.9
Median 5 min APGAR score7 Scores on a scale7 Scores on a scale7 Scores on a scale8 Scores on a scale7 Scores on a scale
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
34 Participants10 Participants5 Participants13 Participants6 Participants
Race (NIH/OMB)
White
54 Participants12 Participants18 Participants9 Participants15 Participants
Region of Enrollment
Poland
22 participants0 participants12 participants0 participants11 participants
Region of Enrollment
United States
65 participants22 participants11 participants22 participants10 participants
Sex: Female, Male
Female
40 Participants8 Participants12 Participants12 Participants8 Participants
Sex: Female, Male
Male
48 Participants14 Participants11 Participants10 Participants13 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
0 / 222 / 222 / 215 / 23
other
Total, other adverse events
22 / 2222 / 2221 / 2123 / 23
serious
Total, serious adverse events
16 / 2217 / 2217 / 2119 / 23

Outcome results

Primary

Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)

Number of events of survived participants without one or more of the CPIP components defined below: 1. Medical/ER visits (CPIP-DV): At least one non-routine medical visit for respiratory causes. 2. Respiratory re-hospitalizations (CPIP-RH): One or more re-hospitalizations for respiratory causes. 3. Respiratory Symptoms (CPIP-SS): Evidence of respiratory symptoms (e.g. coughing and wheezing) or use of respiratory medications by parental diaries or pulmonary questionnaires. 4. Respiratory Medications (CPIP-RM): Administration of respiratory medications (including oxygen). CPIP is defined as the presence of one or more parent-reported outcomes at 12 months CGA, validated by Respiratory diaries (presence of wheezing, coughing, and/or respiratory medication use ≥2 days per week for 3 consecutive weeks), and Pulmonary questionnaires (decrease in respiratory illness requiring medications, unscheduled medical visits and/or ER or hospital admissions).

Time frame: 12 Months Corrected Gestational Age (*no imputation for missing data)

Population: Subjects were recruited from Tufts Medical Center, Brigham and Women's Hospital, Baystate Medical Center, Ginekologiczno-Położniczy Szpital Kliniczny Uniwersytetu Medycznego (UM), Instytut Centrum Zdrowia Matki Polski and Samodzielny Publiczny Zakład Opieki Zdrowotnej Szpital Uniwersytecki w Krakowie (USA, Poland).

ArmMeasureGroupValue (NUMBER)
Placebo (Associated w/ Low Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-SS (Respiratory Symptoms)2 Number of events
Placebo (Associated w/ Low Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-DV (Medical/ER visits)8 Number of events
Placebo (Associated w/ Low Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RM (Respiratory Medications10 Number of events
Placebo (Associated w/ Low Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RH20 Number of events
Placebo (Associated w/ Low Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP events (-DV, -RH, -SS, -RM)1 Number of events
Low Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-SS (Respiratory Symptoms)3 Number of events
Low Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RH12 Number of events
Low Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RM (Respiratory Medications7 Number of events
Low Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-DV (Medical/ER visits)2 Number of events
Low Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP events (-DV, -RH, -SS, -RM)1 Number of events
Placebo (Associated w/ High Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP events (-DV, -RH, -SS, -RM)3 Number of events
Placebo (Associated w/ High Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-DV (Medical/ER visits)6 Number of events
Placebo (Associated w/ High Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RH11 Number of events
Placebo (Associated w/ High Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-SS (Respiratory Symptoms)6 Number of events
Placebo (Associated w/ High Dose Cohort)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RM (Respiratory Medications6 Number of events
High Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP events (-DV, -RH, -SS, -RM)3 Number of events
High Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RM (Respiratory Medications5 Number of events
High Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-RH10 Number of events
High Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-DV (Medical/ER visits)6 Number of events
High Dose (rhCC10)Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 12 Months Corrected Gestational Age (CGA)Survived with no CPIP-SS (Respiratory Symptoms)5 Number of events
Secondary

Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)

Number of events of survived participants, graded as not having 1, 2, 3, or 4 of the CPIP components defined below: Medical/ER visits (CPIP-DV): ≥1 non-routine medical visit(s) for respiratory causes. Respiratory re-hospitalizations (CPIP-RH): ≥1 re-hospitalization(s) for respiratory causes Respiratory Symptoms (CPIP-SS): Parent-reported evidence of respiratory symptoms (e.g. coughing and wheezing) or use of respiratory medications Respiratory Medications (CPIP-RM): Administration of respiratory medications (including oxygen) A participant graded without 4 CPIP components is considered in better health than a participant graded without 1 CPIP component. CPIP components were parent-validated via respiratory diaries (wheezing, coughing, and/or respiratory medication use ≥2 days/wk for 3 consecutive wks), and pulmonary questionnaires (decrease in respiratory illness requiring medications, unscheduled medical visits and/or ER or hospital admissions).

Time frame: 6 months Corrected Gestational Age

Population: Subjects were recruited from Tufts Medical Center, Brigham and Women's Hospital, Baystate Medical Center, Ginekologiczno-Położniczy Szpital Kliniczny UM, Instytut Centrum Zdrowia Matki Polski and Samodzielny Publiczny Zakład Opieki Zdrowotnej Szpital Uniwersytecki w Krakowie (USA, Poland).

ArmMeasureGroupValue (NUMBER)
Placebo (Associated w/ Low Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 2 CPIP components10 Number of Events
Placebo (Associated w/ Low Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 4 CPIP components21 Number of Events
Placebo (Associated w/ Low Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 3 CPIP components15 Number of Events
Placebo (Associated w/ Low Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 1 CPIP component4 Number of Events
Low Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 2 CPIP components6 Number of Events
Low Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 3 CPIP components11 Number of Events
Low Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 4 CPIP components16 Number of Events
Low Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 1 CPIP component3 Number of Events
Placebo (Associated w/ High Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 3 CPIP components10 Number of Events
Placebo (Associated w/ High Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 4 CPIP components17 Number of Events
Placebo (Associated w/ High Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 1 CPIP component7 Number of Events
Placebo (Associated w/ High Dose Cohort)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 2 CPIP components8 Number of Events
High Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 1 CPIP component4 Number of Events
High Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 3 CPIP components10 Number of Events
High Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 4 CPIP components14 Number of Events
High Dose (rhCC10)Long Term Efficacy - Survival Without Evidence of Chronic Pulmonary Insufficiency of Prematurity (CPIP) at 6 Months Corrected Gestational Age (CGA)Survived without 2 CPIP components7 Number of Events
Secondary

Safety and Efficacy - Number of Participants With Adverse Events

The safety of the study drug was assessed by accounting the number of participants with Adverse Events (AEs) in the treatment and placebo groups.

Time frame: Adverse events are monitored through 36 wks post-menstrual age (PMA)

Population: Subjects were recruited from Tufts Medical Center, Brigham and Women's Hospital, Baystate Medical Center, Ginekologiczno-Położniczy Szpital Kliniczny UM, Instytut Centrum Zdrowia Matki Polski and Samodzielny Publiczny Zakład Opieki Zdrowotnej Szpital Uniwersytecki w Krakowie (USA, Poland).

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Placebo (Associated w/ Low Dose Cohort)Safety and Efficacy - Number of Participants With Adverse Events22 Participants
Low Dose (rhCC10)Safety and Efficacy - Number of Participants With Adverse Events22 Participants
Placebo (Associated w/ High Dose Cohort)Safety and Efficacy - Number of Participants With Adverse Events21 Participants
High Dose (rhCC10)Safety and Efficacy - Number of Participants With Adverse Events23 Participants
Secondary

Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age

Short term efficacy evaluations involve number of neonates with oxygen requirement at 36 weeks post menstrual age.

Time frame: 36 weeks post-menstrual age

Population: Subjects were recruited from Tufts Medical Center, Brigham and Women's Hospital, Baystate Medical Center, Ginekologiczno-Położniczy Szpital Kliniczny UM, Instytut Centrum Zdrowia Matki Polski and Samodzielny Publiczny Zakład Opieki Zdrowotnej Szpital Uniwersytecki w Krakowie (USA, Poland).

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Placebo (Associated w/ Low Dose Cohort)Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age8 Participants
Low Dose (rhCC10)Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age10 Participants
Placebo (Associated w/ High Dose Cohort)Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age8 Participants
High Dose (rhCC10)Short Term Efficacy - Number of Neonates With Oxygen Requirement at 36 Weeks Post Menstrual Age4 Participants

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026