肝纤维化的生物数学分析

Zhao Bin, Deng Lebin, Yuan Li, Gao Guosheng
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引用次数: 1

摘要

肝纤维化是大多数慢性肝病的最后常见阶段,它是由几种因素引起的,导致世界范围内的主要卫生保健负担。近几十年来,人们对肝纤维化疾病的认识发展迅速,一些研究报道,这一进展可以倒退或逆转,这给我们开发抗纤维化治疗提供了光明的前景。在本实验中,8只动物在CCl4诱导7周后肝纤维化完全形成。猴肝纤维化的临床病理参数、四项指标在人肝纤维化中表现出相似的变化。CCl4诱导1.5个月后,所有动物均出现肝纤维化,恢复期9个月后肝纤维化仍存在,大部分动物未经治疗,纤维化分期无明显退行。肝纤维化的生物数学分析将有助于利用抗纤维化疗法及其衍生物在各种生物医学上的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomathematical Analysis of the Liver Fibrosis
Liver fibrosis is the final common stage of the most chronic liver diseases, it is caused by several factors which lead to a major worldwide health care burden. Over the decades, the understanding of the liver fibrosis disease was growing rapidly, several studies reported that this progress could be regressed or reversed, which give us a bright prospect in developing anti-fibrotic therapies. In this experiment, liver fibrosis were fully developed after CCl4 induction for 7 weeks in eight animals. Clinical pathologic parameters, four indicators of hepatic fibrosis in monkey showed similarly changes in human. All animals had liver fibrosis after 1.5 months of CCl4 induction, and liver fibrosis still existed after 9 months recovery periods, the fibrosis stages in most animals had no obvious regression without treatment. Biomathematical analysis of the liver fibrosis would aid to utilize the anti-fibrotic therapies and their derivatives for various biomedical applications.
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