期刊论文详细信息
Turkish journal of biology
Effects of bradykinin on proliferation, apoptosis, and cycle of glomerular mesangial cells via the TGF-ß1/Smad signaling pathway
article
JI DONG1  LI DING2  LIUWEI WANG3  ZIJUN YANG3  YULIN WANG3  YING ZANG1  XUEXIA CAO1  LIN TANG3 
[1] Department of Medicine, Henan Medical College;Henan Institute for Occupational Medicine;Department of Nephropathy, The First Affiliated Hospital of Zhengzhou University
关键词: Glomerular mesangial cell;    bradykinin;    TGF-β1;    Smad;    proliferation;    apoptosis;    cell cycle;   
DOI  :  10.3906/biy-2007-58
学科分类:生物科学(综合)
来源: Scientific and Technical Research Council of Turkey - TUBITAK
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【 摘 要 】

We aimed to assess the effects of bradykinin (BK) on the proliferation, apoptosis, and cycle of glomerular mesangial cells via the transforming growth factor-ß 1 (TGF-ß1)/Smad signaling pathway. Rat glomerular mesangial cells, HBZY-1, were divided into normal group (untreated), model group (5 ng/L TGF-ß1), BK group (5 ng/L TGF-ß1 + 1 ng/L BK), and inhibitor group [5 ng/L TGF-ß1 + 1 ng/L LY2109761 (TGF-ß1-specific inhibitor)]. The cell proliferation, cycle, apoptosis, expression of type I collagen (Col-1), and protein expressions of Col-1, TGF-ß1, and phosphorylated Smad2 (p-Smad2) were detected by EdU labeling, flow cytometry, acridine orange/ethidium bromide (AO/EB) dual staining, immunofluorescence assay, and Western blotting, respectively. Compared with the normal group, the cell proliferation rate (P = 0.02) and protein expression levels of Col-1 (P = 0.02), TGF-ß1 (P = 0.01), p-Smad2 (P = 0.02), and p-Smad7 (P = 0.00) in the model group significantly increased, and apoptosis rate (P = 0.01) significantly decreased. Compared with the model group, the BK and inhibitor groups significantly decreased in proliferation rate (P = 0.01) and protein expression levels of Col-1 (P = 0.01), TGF-ß1 (P = 0.01), and p-Smad2 (P = 0.00). Also, they were significantly elevated in apoptosis rate (P = 0.02) and p-Smad7 protein expression (P = 0.02). BK regulates the proliferation, apoptosis, and the cycle of glomerular mesangial cells by inhibiting the TGF-ß1/Smad signaling pathway.

【 授权许可】

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