首页> 美国卫生研究院文献>Proceedings of the Japan Academy. Series B Physical and Biological Sciences >The discovery of Hepatocyte Growth Factor (HGF) and its significance for cell biology life sciences and clinical medicine
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The discovery of Hepatocyte Growth Factor (HGF) and its significance for cell biology life sciences and clinical medicine

机译:肝细胞生长因子(HGF)的发现及其对细胞生物学生命科学和临床医学的意义

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摘要

It has been more than 25 years since HGF was discovered as a mitogen of hepatocytes. HGF is produced by stromal cells, and stimulates epithelial cell proliferation, motility, morphogenesis and angiogenesis in various organs via tyrosine phosphorylation of its receptor, c-Met. In fetal stages, HGF-neutralization, or c-Met gene destruction, leads to hypoplasia of many organs, indicating that HGF signals are essential for organ development. Endogenous HGF is required for self-repair of injured livers, kidneys, lungs and so on. In addition, HGF exerts protective effects on epithelial and non-epithelial organs (including the heart and brain) via anti-apoptotic and anti-inflammatory signals. During organ diseases, plasma HGF levels significantly increased, while anti-HGF antibody infusion accelerated tissue destruction in rodents. Thus, endogenous HGF is required for minimization of diseases, while insufficient production of HGF leads to organ failure. This is the reason why HGF supplementation produces therapeutic outcomes under pathological conditions. Moreover, emerging studies delineated key roles of HGF during tumor metastasis, while HGF-antagonism leads to anti-tumor outcomes. Taken together, HGF-based molecules, including HGF-variants, HGF-fragments and c-Met-binders are available as regenerative or anti-tumor drugs. Molecular analysis of the HGF-c-Met system could provide bridges between basic biology and clinical medicine.
机译:自从发现HGF作为肝细胞的有丝分裂剂以来,已经过去了25多年。 HGF由基质细胞产生,并通过其受体c-Met的酪氨酸磷酸化刺激各种器官中的上皮细胞增殖,运动,形态发生和血管生成。在胎儿阶段,HGF中和或c-Met基因破坏会导致许多器官发育不全,这表明HGF信号对于器官发育至关重要。自我修复受伤的肝脏,肾脏,肺等需要内源性HGF。此外,HGF通过抗凋亡和抗炎信号对上皮和非上皮器官(包括心脏和大脑)产生保护作用。在器官疾病期间,血浆HGF水平显着增加,而抗HGF抗体输注会加速啮齿动物的组织破坏。因此,内源性HGF是使疾病最小化所必需的,而HGF的产生不足会导致器官衰竭。这就是为什么在病理条件下补充HGF产生治疗效果的原因。此外,新兴研究描述了HGF在肿瘤转移中的关键作用,而HGF拮抗作用导致抗肿瘤结果。总之,基于HGF的分子,包括HGF变异体,HGF片段和c-Met结合剂,可作为再生或抗肿瘤药物获得。 HGF-c-Met系统的分子分析可以在基础生物学和临床医学之间架起桥梁。

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