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肝脏体外低温机器灌注是否优于“传统的冰盒”?

Is extracorporeal hypothermic machine perfusion of the liver better than the 'good old icebox'?

机构信息

Molecular Therapies and Organ Preservation Research Laboratory, Division of Abdominal Organ Transplantation, Department of Surgery, Columbia University Medical Center, New York, USA.

出版信息

Curr Opin Organ Transplant. 2012 Apr;17(2):137-42. doi: 10.1097/MOT.0b013e328351083d.

Abstract

PURPOSE OF REVIEW

To underscore the advantages of hypothermic machine perfusion (HMP) in light of the recent discoveries.

RECENT FINDINGS

The phase I clinical trial of liver HMP has suggested superiority over static cold storage (SCS) preservation. The liver transplant arena has gained more sophisticated insights into the molecular mechanism and biomechanical understanding behind the benefits of HMP. Its ability to attenuate ischemia-reperfusion injury translates to reduction in ischemia-reperfusion injury with improved early allograft function. HMP has the potential to predict graft function as well as enable resuscitation of grafts from extended criteria donors. Targeted therapeutic interventions via HMP will further contribute to optimal preservation and reconditioning of the allografts.

SUMMARY

HMP's advantages do not merely derive from its mechanical forte in maintaining the microvasculature patent. It is also a versatile clinical tool with the ability to deliver metabolic substrates, antioxidants and therapeutic agents to the ex-vivo graft, dilution of waste products generated by inefficient or anaerobic respiration, intraoperative ex-vivo assessment and prediction of the graft's future performance posttransplantation. With demonstrated superiority over SCS, HMP holds promise for expanding the donor pool and becoming the gold standard for liver preservation.

摘要

目的综述

鉴于最近的发现,强调低温机器灌注(HMP)的优势。

最近的发现

肝 HMP 的 I 期临床试验表明其优于静态冷保存(SCS)保存。肝移植领域对 HMP 优势背后的分子机制和生物力学有了更深入的了解。其减轻缺血再灌注损伤的能力转化为改善早期移植物功能的缺血再灌注损伤减少。HMP 具有预测移植物功能的潜力,并能够使来自扩展标准供体的移植物复苏。通过 HMP 进行靶向治疗干预将进一步有助于优化同种异体移植物的保存和再适应。

总结

HMP 的优势不仅源于其在维持微血管通畅方面的机械优势。它还是一种多功能的临床工具,能够向离体移植物输送代谢底物、抗氧化剂和治疗剂,稀释无效或厌氧呼吸产生的废物,术中离体评估和预测移植后移植物的未来性能。HMP 优于 SCS,有望扩大供体库,并成为肝脏保存的金标准。

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