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肝脏支持策略:前沿技术。

Liver support strategies: cutting-edge technologies.

机构信息

General, Visceral, and Transplant Surgery, Experimental Surgery and Regenerative Medicine, Charité-Universitaetsmedizin Berlin, Campus Virchow, Augustenburger Platz 1, 13353 Berlin, Germany.

出版信息

Nat Rev Gastroenterol Hepatol. 2014 Mar;11(3):166-76. doi: 10.1038/nrgastro.2013.204. Epub 2013 Oct 29.

Abstract

The treatment of end-stage liver disease and acute liver failure remains a clinically relevant issue. Although orthotopic liver transplantation is a well-established procedure, whole-organ transplantation is invasive and increasingly limited by the unavailability of suitable donor organs. Artificial and bioartificial liver support systems have been developed to provide an alternative to whole organ transplantation, but despite three decades of scientific efforts, the results are still not convincing with respect to clinical outcome. In this Review, conceptual limitations of clinically available liver support therapy systems are discussed. Furthermore, alternative concepts, such as hepatocyte transplantation, and cutting-edge developments in the field of liver support strategies, including the repopulation of decellularized organs and the biofabrication of entirely new organs by printing techniques or induced organogenesis are analysed with respect to clinical relevance. Whereas hepatocyte transplantation shows promising clinical results, at least for the temporary treatment of inborn metabolic diseases, so far data regarding implantation of engineered hepatic tissue have only emerged from preclinical experiments. However, the evolving techniques presented here raise hope for bioengineered liver support therapies in the future.

摘要

终末期肝病和急性肝衰竭的治疗仍然是一个临床相关问题。虽然原位肝移植是一种成熟的手术,但整个器官移植是侵入性的,并且由于缺乏合适的供体器官而越来越受到限制。人工和生物人工肝支持系统已经被开发出来,以提供一种替代整个器官移植的方法,但尽管经过三十年的科学努力,就临床结果而言,这些结果仍然没有令人信服。在这篇综述中,讨论了临床可用的肝支持治疗系统的概念性局限性。此外,还分析了替代概念,如肝细胞移植,以及肝支持策略领域的前沿发展,包括去细胞化器官的再灌注和通过打印技术或诱导器官发生来生物制造全新器官,以评估其临床相关性。虽然肝细胞移植至少在治疗先天性代谢疾病方面显示出有前途的临床结果,但到目前为止,关于工程化肝组织植入的数据仅来自临床前实验。然而,这里介绍的不断发展的技术为未来的生物工程肝支持治疗带来了希望。

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