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Percutaneous RVAD to Preemptively Treat Right Heart Failure Post-LVAD

Percutaneous RVAD to Preemptively Treat Right Heart Failure Post-LVAD

Status
Terminated
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04458103
Enrollment
161
Registered
2020-07-07
Start date
2020-05-12
Completion date
2023-06-01
Last updated
2024-07-09

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

Conditions

Heart Failure

Brief summary

Prior studies have shown that left ventricular assist device (LVAD) implantation commonly results in right ventricular failure (RVF). Right ventricular dysfunction and failure after LVAD implantation is known to increase morbidity and mortality and contribute to longer post-implant hospital length of stay. Since RVF is difficult to predict and can have harmful effects such as increased ICU stay, adverse outcomes, and mortality, it could be beneficial to preemptively treat patients through preoperative or intraoperative percutaneous right ventricular assist device (RVAD) placement to prevent RVF. This trial will include both a prospective interventional cohort and a retrospective control cohort. The prospective interventional cohort will consist of patients undergoing LVAD implantation at Massachusetts General Hospital. These patients will preemptively receive an RVAD (either the ProtekDuo or Impella RP) surrounding LVAD implantation. The historical control cohort will consist of retrospective data collection on patients who have undergone LVAD implantation in the past. This group will be matched with the enrolled prospective interventional patients. The purpose of this study is to compare clinical outcomes of standard of care treatment versus percutaneous RVAD placement perioperatively to LVAD implantation. The investigators hypothesize that the use of the RVAD will mitigate need for inotropic support, reducing the vasoactive-inotrope score (VIS) by 50%, and will improve end organ function in patients compared to standard of care. Subjects who consent to the study will undergo peri-operative placement of an RVAD, which will be left in up to 72 hours postoperatively. The type of RVAD (Impella RP or ProtekDuo) inserted will be determined by patient needs and venous access and will be up to the discretion of the treating physician. 25 subjects will be enrolled in the prospective interventional cohort and compared to 25 subjects in the matched retrospective control cohort.

Detailed description

Prior studies have shown that left ventricular assist device (LVAD) implantation commonly results in right ventricular failure (RVF). Right ventricular dysfunction and failure after LVAD implantation is known to increase morbidity and mortality and contribute to longer post-implant hospital length of stay. More severe right ventricular failure is highly correlated with poor prognosis and death post-LVAD implantation. In current practice, patients who receive LVADs require right heart support, provided in the form of inotropes. Vasoactive inotrope score (VIS) is a measure that quantifies the amount of right heart support required post-operatively, including dopamine, dobutamine, milrinone, epinephrine, norepinephrine, and vasopressin. It has been used in other studies as a surrogate marker for hemodynamic cardiovascular derangement. In some cases, right ventricular failure post-LVAD also requires mechanical circulatory support during the perioperative period. Since RVF is difficult to predict and can have harmful effects such as increased ICU stay, adverse outcomes, and mortality, it could be beneficial to preemptively treat patients through preoperative or intraoperative percutaneous right ventricular assist device (RVAD) placement to prevent RVF. The purpose of this study is to test the hypothesis that preemptive use of percutaneous RVADs will mitigate the need for inotropic support in LVAD patients, reducing associated adverse outcomes. This trial will include both a prospective interventional cohort and a retrospective control cohort. The prospective interventional cohort will consist of patients undergoing LVAD implantation at Massachusetts General Hospital. These patients will receive an RVAD (either the ProtekDuo or Impella RP) prior to or during LVAD implantation. The historical control cohort will consist of retrospective data collection on patients who have undergone LVAD implantation in the past. This group will be matched with the enrolled prospective interventional patients. The purpose of this study is to compare clinical outcomes of standard of care treatment versus preemptive percutaneous RVAD placement surrounding LVAD implantation. The investigators hypothesize that the use of the RVAD will mitigate need for inotropic support, reducing the vasoactive-inotrope score (VIS) by 50%, and will improve end organ function in patients compared to standard of care. There are two types of percutaneous RVADs that will be used in the study: the Impella RP and the ProtekDuo. These devices allow for early intervention in RVF without the need for invasive surgical procedures requiring placement of durable RVADs via thoracotomy or sternotomy. The Impella RP, manufactured by Abiomed, is a heart pump that delivers blood from the inferior vena cava (IVC) to the pulmonary artery (PA). Its insertion is done percutaneously via catheterization through the femoral vein. ProtekDuo, manufactured by TandemLife, is another device placed percutaneously for right heart support via the right internal jugular (RIJ) vein. Subjects who consent to the study will undergo pre-operative or intra-operative placement of an RVAD, which will be left in up to 72 hours postoperatively. The type of RVAD (Impella RP or ProtekDuo) inserted will be determined by patient needs and venous access and will be up to the discretion of the treating physician. 25 subjects will be enrolled in the prospective interventional cohort and compared to 25 subjects in the matched retrospective control cohort.

Interventions

DEVICEPercutaneous RVAD

ProtekDuo or Impella RP

Sponsors

Massachusetts General Hospital
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Ages 18-75 * Accepted for LVAD implantation by MGH multidisciplinary team

Exclusion criteria

* Disorders of the pulmonary artery wall that would preclude placement or correct positioning of RVAD * Presence of mechanical valves * Mural thrombosis of the right atrium or vena cava * Anatomic conditions precluding insertion of the RVAD * Complicated venous access precluding or complicating device placement (i.e. femoral and jugular thrombosis) * No evidence of right ventricular dysfunction by echocardiogram

Design outcomes

Primary

MeasureTime frameDescription
Vasoactive Inotropic Scorefirst 24 hours post-LVAD implantationRetrospective review in a patient chart. Score calculated based on dosages of vasopressors and inotropes within first 24-hours post-LVAD implant. The maximum Vasoactive Inotropic Score within the first 24-hours is reported. Vasoactive Inotropic Score= dopamine (μg/kg/min) + dobutamine (μg/kg/min) + 10 x milrinone (μg/kg/min) + 100 x epinephrine (μg/kg/min) + 100 x norepinephrine (μg/kg/min) + 10,000 x vasopressin (U/kg/min). Minimum possible vasoactive inotropic score is 0. It is hypothesized that a higher score will correspond with worse outcomes.

Secondary

MeasureTime frameDescription
Intensive Care Unit Length of Stayup to date of discharge from intensive care unit (estimated average = 1 week)Retrospective review in a patient chart
Total Post-operative Length of Stay After LVAD Implantationup to date of hospital discharge (estimated average = 3 weeks)Retrospective review in a patient chart
Survival at Discharge After LVAD Placementup to date of hospital discharge (estimated average = 3 weeks)Retrospective review in a patient chart
Survival at 1 Year After LVAD Placement or Heart Transplantup to 1 year post-LVAD implantationRetrospective review in a patient chart
End Organ Dysfunctionup to 1 year post-LVAD implantationend organ dysfunction including 1) Development of acute kidney injury (AKI) - defined as increase in serum creatinine (sCr) to 4mg/dl or greater, a 150 percent or greater increase in sCr over the baseline preoperative value, or a new requirement for renal replacement therapy

Countries

United States

Participant flow

Participants by arm

ArmCount
Prospective Interventional Cohort
The prospective interventional cohort will consist of patients undergoing LVAD implantation at Massachusetts General Hospital. These patients will receive an RVAD (either the ProtekDuo or Impella RP) prior to or during LVAD implantation. Percutaneous RVAD: ProtekDuo or Impella RP
17
Retrospective Control Cohort
The historical control cohort will consist of retrospective data collection on patients who have undergone LVAD implantation in the past. This group will be age and sex matched with the enrolled prospective interventional patients.
144
Total161

Baseline characteristics

CharacteristicProspective Interventional CohortTotalRetrospective Control Cohort
Age, Continuous59.41 years
STANDARD_DEVIATION 13.97
58.3 years
STANDARD_DEVIATION 13.3
58.13 years
STANDARD_DEVIATION 13.31
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
2 Participants6 Participants4 Participants
Race (NIH/OMB)
Black or African American
1 Participants16 Participants15 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
2 Participants16 Participants14 Participants
Race (NIH/OMB)
White
12 Participants123 Participants111 Participants
Region of Enrollment
United States
17 participants161 participants144 participants
Sex: Female, Male
Female
4 Participants38 Participants34 Participants
Sex: Female, Male
Male
13 Participants123 Participants110 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
4 / 1713 / 144
other
Total, other adverse events
8 / 1774 / 144
serious
Total, serious adverse events
16 / 17135 / 144

Outcome results

Primary

Vasoactive Inotropic Score

Retrospective review in a patient chart. Score calculated based on dosages of vasopressors and inotropes within first 24-hours post-LVAD implant. The maximum Vasoactive Inotropic Score within the first 24-hours is reported. Vasoactive Inotropic Score= dopamine (μg/kg/min) + dobutamine (μg/kg/min) + 10 x milrinone (μg/kg/min) + 100 x epinephrine (μg/kg/min) + 100 x norepinephrine (μg/kg/min) + 10,000 x vasopressin (U/kg/min). Minimum possible vasoactive inotropic score is 0. It is hypothesized that a higher score will correspond with worse outcomes.

Time frame: first 24 hours post-LVAD implantation

ArmMeasureValue (MEAN)Dispersion
Prospective Interventional CohortVasoactive Inotropic Score36.4 Vasoactive Inotropic ScoreStandard Deviation 103.1
Retrospective Control CohortVasoactive Inotropic Score47.46 Vasoactive Inotropic ScoreStandard Deviation 84.8
Secondary

End Organ Dysfunction

end organ dysfunction including 1) Development of acute kidney injury (AKI) - defined as increase in serum creatinine (sCr) to 4mg/dl or greater, a 150 percent or greater increase in sCr over the baseline preoperative value, or a new requirement for renal replacement therapy

Time frame: up to 1 year post-LVAD implantation

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Prospective Interventional CohortEnd Organ Dysfunction5 Participants
Retrospective Control CohortEnd Organ Dysfunction27 Participants
Secondary

Intensive Care Unit Length of Stay

Retrospective review in a patient chart

Time frame: up to date of discharge from intensive care unit (estimated average = 1 week)

ArmMeasureValue (MEAN)Dispersion
Prospective Interventional CohortIntensive Care Unit Length of Stay14.1 daysStandard Deviation 14.9
Retrospective Control CohortIntensive Care Unit Length of Stay11.1 daysStandard Deviation 13.7
Secondary

Survival at 1 Year After LVAD Placement or Heart Transplant

Retrospective review in a patient chart

Time frame: up to 1 year post-LVAD implantation

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Prospective Interventional CohortSurvival at 1 Year After LVAD Placement or Heart Transplant13 Participants
Retrospective Control CohortSurvival at 1 Year After LVAD Placement or Heart Transplant139 Participants
Secondary

Survival at Discharge After LVAD Placement

Retrospective review in a patient chart

Time frame: up to date of hospital discharge (estimated average = 3 weeks)

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Prospective Interventional CohortSurvival at Discharge After LVAD Placement13 Participants
Retrospective Control CohortSurvival at Discharge After LVAD Placement139 Participants
Secondary

Total Post-operative Length of Stay After LVAD Implantation

Retrospective review in a patient chart

Time frame: up to date of hospital discharge (estimated average = 3 weeks)

ArmMeasureValue (MEAN)Dispersion
Prospective Interventional CohortTotal Post-operative Length of Stay After LVAD Implantation30.2 daysStandard Deviation 31.1
Retrospective Control CohortTotal Post-operative Length of Stay After LVAD Implantation24.9 daysStandard Deviation 17.8

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