Staged Kidney Transplantation During Combined Heart/Kidney Transplantation

Purpose

The primary purpose of this study is to evaluate the safety and efficacy of ex vivo machine perfusion with staged implantation of kidney allografts during combined heart/kidney transplantation.

Conditions

  • Heart Failure
  • Chronic Kidney Disease
  • End-stage Kidney Disease

Eligibility

Eligible Ages
Over 18 Years
Eligible Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Adult patients (18 years or older) undergoing combined heart and kidney transplantation at Cedars-Sinai Medical Center.

Exclusion Criteria

  • Patients who undergo simultaneous heart/kidney transplantation in a single operative event due to medical necessity will be excluded. - Patients with medical records flagged as "break-the-glass" or "research opt-out" within the center's electronic health record.

Study Design

Phase
N/A
Study Type
Interventional
Allocation
N/A
Intervention Model
Single Group Assignment
Primary Purpose
Treatment
Masking
None (Open Label)

Arm Groups

ArmDescriptionAssigned Intervention
Experimental
Delayed implantation with ex vivo machine perfusion of kidney allograft.
Patients presenting for heart/kidney transplantation who consent to participate will be enrolled in this prospective, open-label, single-arm trial to undergo heart transplantation with planned delayed kidney transplantation with machine perfusion of the kidney allograft. Kidneys will be preserved using hypothermic oxygenated machine perfusion (HOPE) prior to transplantation. Timing of kidney implantation will be determined by recipient stability (e.g., vasopressor and inotrope requirements, coagulopathy, heart graft function) and allow for at least 6 hours of HOPE preservation. Both heart and kidney transplant procedures will follow standard of care techniques.
  • Other: Planned delayed implantation of kidney allograft with ex vivo machine perfusion kidney preservation.
    During combined heart and kidney transplantation, heart and kidney allografts may be implanted during a single operative event, or with delayed kidney implantation in a second operative event. Timing of the delay is often determined by recipient stability and kidney availability; however, clinicians must balance recipient factors with accumulating cold ischemic time of the kidney allograft. This study uses hypothermic oxygenated machine perfusion to reduce ischemic injury to the kidney allograft and allow for improved recipient stability with planned delayed implantation of the kidney graft. Delays will allow for at least 6 hours of hypothermic oxygenated machine perfusion prior to implantation.

Recruiting Locations

Cedars-Sinai Medical Center
Los Angeles, California 90048
Contact:
Justin A Steggerda, M.D.
310-423-3276
justin.steggerda@cshs.org

More Details

Status
Recruiting
Sponsor
Cedars-Sinai Medical Center

Study Contact

Justin A Steggerda, M.D.
310-423-3276
justin.steggerda@cshs.org

Detailed Description

Combined heart and kidney transplantation (H/KTx) is the treatment of choice for patients with concomitant heart failure and chronic- or end-stage kidney disease. H/KTx presents a logistical challenge, often involving multiple surgical teams and requiring extended operative time to perform both heart and kidney transplants. Additionally, during heart transplantation, recipients require anticoagulation and multiple inotropes and vasopressors to support heart function early after implantation. While necessary, these may be detrimental to the newly implanted kidney allograft, potentially contributing to vasoconstriction, bleeding, hypotension, and worsening ischemia-reperfusion injury. Unfortunately, delaying implantation leads to extended cold ischemic time which also may be detrimental to the graft. Delayed graft function (DGF) of the kidney allograft is defined as the need for dialysis in the first seven days after transplantation and has been shown to be an important risk factor for graft loss following H/KTx. Ultimately, H/KTx requires balancing recipient stability with cold ischemic time to optimize kidney graft function. New perfusion technology adds oxygenation to the perfusate of the kidney allograft, thereby resuscitating the organ during preservation and reducing ischemia-reperfusion injury. This study seeks to evaluate the safety and efficacy of planned delayed implantation to allow for improved recipient stability and coagulopathy, while using hypothermic oxygenated machine perfusion (HOPE) for kidney preservation.