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一种用于兔器官自体血常温灌注的低成本、小体积电路。

A low-cost, small volume circuit for autologous blood normothermic perfusion of rabbit organs.

作者信息

Worner Murray, Poore Samuel, Tilkorn Daniel, Lokmic Zerina, Penington Anthony J

机构信息

Vascular Biology Laboratory, The O'Brien Institute, Fitzroy.

出版信息

Artif Organs. 2014 Apr;38(4):352-61. doi: 10.1111/aor.12155. Epub 2013 Aug 27.

Abstract

We have designed a laboratory extracorporeal normothermic blood perfusion system for whole organs (e.g., kidney) that achieves pulsatile flow, low levels of hemolysis, and a blood priming volume of 60 mL or less. Using this uniquely designed extracorporeal circuit, we have achieved perfusion of two isolated ex vivo constructs. In the first experiment, we successfully perfused a rabbit epigastric flap based on the femoral vessels. In the second experiment, we were able to perfuse the isolated rabbit kidney for 48 h (range for all kidneys was 12-48 h) with excellent urine output, normal arterial blood gasses at 24 h, and normal ex vivo kidney histology at the conclusion of the experiments. These parameters have not been achieved before with any known or previously published laboratory extracorporeal circuits. The study has implications for prolonged organ perfusion prior to transplantation and for tissue engineering of vascularized tissues, such as by the perfusion of decellularized organs.

摘要

我们设计了一种用于全器官(如肾脏)的实验室体外常温血液灌注系统,该系统可实现搏动血流、低水平溶血,且血液预充量为60毫升或更少。利用这种独特设计的体外循环,我们成功地对两个离体构建体进行了灌注。在第一个实验中,我们成功地基于股血管对兔腹壁皮瓣进行了灌注。在第二个实验中,我们能够对离体兔肾进行48小时的灌注(所有肾脏的灌注时间范围为12 - 48小时),实验结束时尿量良好,24小时时动脉血气正常,离体肾脏组织学正常。这些参数是以前任何已知的或已发表的实验室体外循环都未曾实现过的。该研究对移植前延长器官灌注以及血管化组织的组织工程(如通过对去细胞化器官进行灌注)具有重要意义。

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