首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Hybrid bioartificial liver: establishing a reversibly immortalized human hepatocyte line and developing a bioartificial liver for practical use.
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Hybrid bioartificial liver: establishing a reversibly immortalized human hepatocyte line and developing a bioartificial liver for practical use.

机译:混合生物人工肝:建立可逆的永生化人类肝细胞系并开发可实际使用的生物人工肝。

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摘要

Recently, much attention has been attracted by a novel therapy for liver failure using a hybrid bioartificial liver (BAL) support device that incorporates living liver cells. Researchers in various fields have considered the following cells for potential use in BALs: human embryonic stem (ES) cells; somatic stem cells; differentiated tissue cells; and cells derived from tissues of different animal species, particularly from the pig. With their pluripotency, human ES cells are extremely useful, and many research groups are joining the race to develop BALs. One such effort involves the breeding of transgenic pigs to overcome interspecies barriers. Recent reports suggest, however, that porcine endogenous retrovirus may infect human tissues, and clinical application of transgenic pigs has become a controversial issue. To avoid such risks, we recommend that researchers adopt a reversible immortalization system that uses the Cre-loxP site-specific recombination reaction targeting human hepatocytes in their final differentiated state. This system has allowed us to establish a safe human hepatocyte line that is capable of differentiation at low cost and on a large scale. We are also designing and developing an artificial liver module made of a combination of hollow fibers and nonwoven fabrics. The objective of this review article is to report our therapeutic strategy, which aims at the earliest possible introduction of the treatment of liver failure using BALs.
机译:近来,使用混合了生物肝细胞的混合生物人工肝(BAL)支持装置对肝衰竭的新疗法引起了广泛关注。各个领域的研究人员已考虑将以下细胞潜在用于BAL:人胚胎干(ES)细胞;人胚胎干细胞(ES);人胚胎干细胞。体细胞分化的组织细胞;以及来自不同动物物种(尤其是猪)组织的细胞。人类ES细胞具有多能性,因此非常有用,许多研究小组都参与了开发BAL的竞赛。其中一项工作涉及育种转基因猪以克服种间障碍。但是,最近的报道表明,猪内源性逆转录病毒可能会感染人体组织,转基因猪的临床应用已成为一个有争议的问题。为避免此类风险,我们建议研究人员采用可逆的永生化系统,该系统使用针对人类肝细胞最终分化状态的Cre-loxP位点特异性重组反应。该系统使我们能够建立安全的人肝细胞系,该细胞系能够以低成本大规模分化。我们还正在设计和开发由中空纤维和无纺布组合而成的人造肝脏模块。这篇综述文章的目的是报告我们的治疗策略,该策略旨在尽早引入使用BAL治疗肝衰竭的方法。

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