Sakamaki Yasushi, Matsumoto Kunio, Mizuno Shinya, Miyoshi Shinichiro, Matsuda Hikaru, Nakamura Toshikazu
Division of Molecular Regenerative Medicine, Course of Advanced Medicine, Osaka University Graduate School of Medicine, Suita, Japan.
Am J Respir Cell Mol Biol. 2002 May;26(5):525-33. doi: 10.1165/ajrcmb.26.5.4714.
Although it is known that the lung undergoes compensatory growth after pulmonary resection, mechanisms by which lung cells exhibit compensatory proliferation are not well defined. We investigated the involvement of hepatocyte growth factor (HGF) in postpneumonectomy compensatory lung regeneration in mice, because HGF has mitogenic and morphogenic actions on lung epithelial cells. Following left pneumonectomy, alveolar and airway epithelial cells underwent compensatory DNA synthesis, reaching maximal levels 5 d after the surgery. Before changes in DNA synthesis in lung epithelial cells, expression of HGF mRNA and protein levels in the remaining lung, liver, and kidney were changed in response to left pneumonectomy, and these changes were associated with postoperative increases in plasma HGF levels. c-Met/HGF receptor expression was localized predominantly in alveolar type II and airway epithelial cells, whereas c-Met/HGF receptor mRNA expressions were transiently upregulated before the peak in lung DNA synthesis. Neutralization of endogenous HGF by an antibody in pneumonectomized mice suppressed the compensatory DNA synthesis in lung epithelial cells, whereas administration of recombinant HGF to pneumonectomized mice stimulated DNA synthesis in lung epithelial cells. These results strongly suggest that HGF has a role as a pulmotrophic factor in postpneumonectomy compensatory lung regeneration.
虽然已知肺在肺切除术后会发生代偿性生长,但肺细胞表现出代偿性增殖的机制尚未完全明确。我们研究了肝细胞生长因子(HGF)在小鼠肺切除术后代偿性肺再生中的作用,因为HGF对肺上皮细胞具有促有丝分裂和形态发生作用。左肺切除术后,肺泡和气道上皮细胞进行代偿性DNA合成,在术后5天达到最高水平。在肺上皮细胞DNA合成发生变化之前,左肺切除术后,剩余肺、肝和肾中HGF mRNA和蛋白水平的表达发生改变,这些变化与术后血浆HGF水平升高有关。c-Met/HGF受体表达主要定位于II型肺泡上皮细胞和气道上皮细胞,而c-Met/HGF受体mRNA表达在肺DNA合成达到峰值之前短暂上调。用抗体中和肺切除小鼠体内的内源性HGF可抑制肺上皮细胞的代偿性DNA合成,而给肺切除小鼠注射重组HGF则可刺激肺上皮细胞的DNA合成。这些结果有力地表明,HGF在肺切除术后代偿性肺再生中作为一种肺营养因子发挥作用。