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April 13, 2023Cell stem cell60 citationsOpen Access

Reversal of liver failure using a bioartificial liver device implanted with clinical-grade human-induced hepatocytes

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YWYifan WangQZQiang ZhengZSZhen Sun

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Abstract

Liver resection is the first-line treatment for primary liver cancers, providing the potential for a cure. However, concerns about post-hepatectomy liver failure (PHLF), a leading cause of death following extended liver resection, have restricted the population of eligible patients. Here, we engineered a clinical-grade bioartificial liver (BAL) device employing human-induced hepatocytes (hiHeps) manufactured under GMP conditions. In a porcine PHLF model, the hiHep-BAL treatment showed a remarkable survival benefit. On top of the supportive function, hiHep-BAL treatment restored functions, specifically ammonia detoxification, of the remnant liver and facilitated liver regeneration. Notably, an investigator-initiated study in seven patients with extended liver resection demonstrated that hiHep-BAL treatment was well tolerated and associated with improved liver function and liver regeneration, meeting the primary outcome of safety and feasibility. These encouraging results warrant further testing of hiHep-BAL for PHLF, the success of which would broaden the population of patients eligible for liver resection.

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Wang et al. (2023) studied this question.

synapsesocial.com/papers/6a08386d1e8b9db648ddf932https://doi.org/10.1016/j.stem.2023.03.013
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