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临床试验/NCT03946852
NCT03946852尚未招募不适用

Abdominal Regional Perfusion in Donation After Cardiac Death for Multi-Organ Transplantation

London Health Sciences Centre0 个研究点目标入组 20 人开始时间: 2019年6月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
尚未招募
入组人数
20
主要终点
Ischemic Cholangiopathy

研究概览

简要总结

The main purpose of this study is to increase the pool of organs available for donation by performing ARP to recondition donation after cardiac death (DCD) organs prior to transplantation. We will compare the outcomes of our ARP DCD liver transplants with historical data to determine the efficacy of this treatment compared to transplantation with standard DCD and donation after brain death (DBD) organs. We will also analyze biological samples from donors and recipients and compare them with outcome data in an effort to determine if any biological markers are able to predict the quality/success of the grafts.

详细描述

Liver Transplantation and Limitations of DCD Transplantation:

Liver transplantation (LT) is the sole curative therapy for end stage liver disease and has emerged as the treatment of choice for hepatocellular carcinoma. Recent evidence has also demonstrated efficacy in a growing number of malignancies including intra/extra-hepatic cholangiocarcinoma, metastatic neuro-endocrine tumors, and colorectal liver metastases. Despite these advantages, LT is limited by the availability of suitable donor organs resulting in lengthened LT waitlist times. However, during this waiting period patients may deteriorate making them ineligible for LT. In the US, 16,000 patients are listed for LT, and approximately 2000 die annually while waiting for suitable organs. In 2017, over 500 Canadians were on a waiting list for LT and nearly 200 died or withdrew from the transplant list while waiting. Additionally, while LT secondary to hepatitis C is declining, nonalcoholic steatohepatitis, alcoholic liver disease and transplant oncology indications are growing, increasing the overall demand for liver transplant.

One strategy to expand the donor pool has been to optimize utilization of organs from donation after cardiac death (DCD). While outcomes of DCD kidney, pancreas and lung transplants show similar patient and graft survival to donation after brain death (DBD) transplants, DCD livers have worse patient and graft survival, higher complications, and costs, along with worse quality of life. DCD liver grafts have twice the rate of early complications including primary non-function (PNF) and early allograft dysfunction (EAD). EAD is a transient condition with the potential for graft function recovery whereas PNF is a more severe complication leading to graft failure requiring emergency re-transplantation. In the long term, the use of DCD liver allografts is associated with a 10 fold increase in biliary complications, typically resulting in graft loss or death. Moreover, there is a high cost associated with complications and readmissions following LT, which can be upwards of $50,000 per patient. Studies investigating factors contributing to these costs have revealed that DCD allografts had the greatest impact on transplant costs. Consequently, initial enthusiasm for the use of DCD livers for LT has waned such that utilization is restricted to only ideal DCD livers from younger donors with short warm and cold ischemia times. Developing methodologies to reduce the complications associated with DCD organs and improve overall outcomes would have an immense impact on the lives of transplant patients while concurrently reducing costs on the healthcare system.

Abdominal Regional Perfusion and Limitations of Normothermic Machine Perfusion:

Conventional DCD recovery utilizes a rapid recovery technique which flushes abdominal organs with cold preservation solution to slow cellular metabolism and evacuate blood/clots to preserve the integrity of the microvasculature. This is preceded by the agonal phase between withdrawal of life support and cessation of cardiac function. During this period, abdominal organs are subject to warm ischemia resulting in accumulation of toxic metabolites, depletion of intracellular energy and anti-oxidant stores, leading to exacerbation of ischemia reperfusion at the time of implantation.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Recipient Criteria:
  • •Inclusion Criteria- Indications for Liver transplant include decompensated Cirrhosis of any etiology Model for End-Stage Liver Disease (MELD) score > 15 with no contraindications to liver transplant as per conventional clinical practice.
  • •Acute or fulminant liver failure Advanced malignancy such as HCC, cholangiocarcinoma, neuroendocrine tumor, or other cancer meeting criteria for listing and exception points as per current clinical guidelines.

排除标准

  • •Inadequate social support for liver transplant
  • •Non-compliance with alcohol or narcotic cessation
  • •Evidence of uncontrolled infection
  • •Other untreated malignancy aside from those listed above
  • •Physiologic evidence of frailty based on timed up and go, grip strength, 6 minute walk test, and cognitive testing.
  • •Donor Criteria:
  • •DCD donors offered via TGLN will be considered for assessment via abdominal regional perfusion based on the following parameters. These are in keeping with current criteria for abdominal organ donors.
  • •Age: Up to 70 years of age within the initial evaluation period, with plans to expand to 75 y/o if initial results are favourable.
  • •BMI: Donor BMI must be less than 30 for consideration
  • •DCD donation criteria: Conventional criteria for DCD donation must be met, including no expectation for viable recovery, without meeting criteria for brain death, and expressed desire by family for organ donation.
  • •Comorbidity: In the opinion of the on-call transplant surgeon, there should not be excessive comorbidity to exclude organ donation
  • •Active infection: There should be no untreated infection.
  • •Malignancy: Donors should have no evidence of active malignancy, or in the case of a treated malignancy there should be sufficient interval to rule out recurrence. In select cases, donors with tumors known to be indolent may be considered on a case by case basis.
  • •Liver transplant release Criteria:
  • •One of the major advantages of ARP beyond reconditioning the organ prior to cold storage and transplant, is an opportunity to assess graft function in-situ prior to transplant. The existing literature supports the use of multiple readily available laboratory tests to evaluate graft function prior to transplant. Donor labs will be drawn every 30 minutes from the perfusion circuit to evaluate organ function.
  • •Transaminase: Initial transaminases (AST and ALT) drawn at the start of perfusion must be less than 4 times the upper limit of normal and stay below this threshold throughout the reperfusion process to be considered for use with an absolute cut-off of 500
  • •Lactate: Grafts will only be used if lactate levels do not rise during perfusion, ideal organs will have a decrease in serum lactate levels by 1.11 mmol/L per hour
  • •Macroscopic appearance: On clinical evaluation, there should be no evidence of fibrosis or cirrhosis and organs should not have a macroscopically steatotic appearance.

研究组 & 干预措施

ARP arm

Experimental

Patients will receive DCD after therapy after the abdominal reperfusion protocol.

干预措施: Abdominal Regional Perfusion (Device)

结局指标

主要结局

Ischemic Cholangiopathy

时间窗: 1 week to 12 months post transplant

Non-anastomotic biliary stricture without other identifiable etiology

Early allograft dysfunction

时间窗: 1 week

Transient non-functioning of the liver transplant but with usual recovery to full functioning liver

Primary non-function

时间窗: 1 week

Graft failure requiring re-transplantion

次要结局

  • Overall patient survival(1 and 5 years)
  • Graft survival(5 years)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Ephraim Tang

Clinical Fellow, Multi-Organ Abdominal Transplant

London Health Sciences Centre

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