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混合式肝支持系统的发展:综述

Development of a hybrid liver support system: a review.

作者信息

Gerlach J C

机构信息

Chirurgische Klinik, Virchow-Klinikum, Humboldt-Universität Berlin, Germany.

出版信息

Int J Artif Organs. 1996 Nov;19(11):645-54.

PMID:8970832
Abstract

Hybrid liver support systems (LSS) for the use of the detoxifying, metabolic synthetic and regulatory capabilities of liver cells are under development for extracorporeal therapy of acute liver failure and for bridging to liver transplantation. A summary of our development is discussed. A five-step technique for primary liver cell isolation has been introduced in order to address larger scale procurement of hepatocytes. Immobilisation of the cells after isolation appears to be one of the main factors in maintaining hepatocyte function in vitro. Different techniques have been investigated. Using the cell-cell adhesion technique, a culture model was developed for the immobilisation of hepatocytes between capillary membranes. Four separate capillary membrane systems, each forming independent compartments are woven in order to create a three dimensional network. A bioreactor design has been developed. The construction provides different functions, including decentralised cell perfusion. The bioreactor enables 3 dimensional reorganisation of cells, integral oxygenation and decentralised metabolite exchange. The bioreactor has been scaled-up to allow hepatocytes and sinusoidal endothelial cells to be cultured in quantities sufficient for therapeutic application. In a healthy pig model, possible limiting side effects of therapy with this device were excluded. The efficacy of the system has been demonstrated in a hepatectomised pig model. Subsequently, a complete hybrid liver support system for human studies was introduced and applied clinically.

摘要

用于利用肝细胞解毒、代谢合成及调节能力的混合肝支持系统(LSS)正在研发中,用于急性肝衰竭的体外治疗及肝移植桥接。本文讨论了我们的研发总结。为了大规模获取肝细胞,已引入一种五步原代肝细胞分离技术。分离后细胞的固定化似乎是体外维持肝细胞功能的主要因素之一。已对不同技术进行了研究。利用细胞间黏附技术,开发了一种用于在毛细血管膜之间固定肝细胞的培养模型。四个独立的毛细血管膜系统,每个形成独立的隔室,编织在一起以创建三维网络。已开发出一种生物反应器设计。该构造具有不同功能,包括分散式细胞灌注。该生物反应器能够实现细胞的三维重组、整体氧合及分散式代谢物交换。该生物反应器已扩大规模,以允许培养足够数量用于治疗应用的肝细胞和窦状内皮细胞。在健康猪模型中,排除了使用该装置治疗可能的局限性副作用。该系统的疗效已在肝切除猪模型中得到证实。随后,引入了用于人体研究的完整混合肝支持系统并应用于临床。

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