Cao Dong-Wei, Han Wen-Bei, He Jin-Song, Zhao Min, Jiang Chun-Ming, Zhang Qing-Yan, Wan Cheng, Liu Jing, Feng Yuan, Jin Bo, Yang Bo, Zhu Da-Long, Han Xiao
Department of Nephrology, Nanjing Drum Tower Hospital Clinical College of Nanjing Medical University, Nanjing 210008, China.
Department of Nephrology, Nanjing Drum Tower Hospital, the Affiliated Hospital of Nanjing University Medical School, Nanjing 210008, China.
Zhongguo Zhong Yao Za Zhi. 2018 Dec;43(23):4678-4684. doi: 10.19540/j.cnki.cjcmm.20181031.003.
The aim of this paper was to explore the effects and possible mechanisms in vitro of tea polyphenols (TP) delaying human glomerular mesangial cells (HGMCs) senescence induced by high glucose (HG). HGMCs were cultured in vitro and divided into the normal group (N, 5.5 mmol·L⁻¹ glucose), the mannitol group(MNT, 5.5 mmol·L⁻¹ glucose plus 24.5 mmol·L⁻¹ mannitol), the high dose of D-glucose group (HG, 30 mmol·L⁻¹ glucose), the low dose of TP group (L-TP, 30 mmol·L⁻¹ glucose plus 5 mg·L⁻¹ TP) and the high dose of TP group (H-TP, 30 mmol·L⁻¹ glucose plus 20 mg·L⁻¹ TP), which were cultured in 5% CO₂ at 37 °C, respectively. Firstly, the effects of TP on the cell morphology of HGMCs were observed after 72 h-intervention. Secondly, the cell cycle, the positive rate of senescence-associated-β-galactosidase (SA-β-gal) staining and the telomere length were detected, respectively. Finally, the protein expressions of p53, p21 and Rb in the p53-p21-Rb signaling pathway were investigated, respectively. And the expressions of p-STAT3 and miR-126 were examined severally. The results indicated that HG not only arrested the cell cycle in G₁ phase but also increased the positive rate of SA-β-gal staining, and shortened the telomere length. HG led to the protein over-expressions of p53, p21 and Rb and HGMCs senescence by activating the p53-p21-Rb signaling pathway. In addition, L-TP delayed HGMCs senescence by improving the cell cycle G₁ arrest, reducing SA-β-gal staining positive rate and lengthening the telomere length. L-TP reduced the protein over-expressions of p53, P21 and Rb induced by HG and inhibited the telomere-p53-p21-Rb signaling pathway. Moreover, the expression of p-STAT3 was increased and the expression of miR-126 was decreased in HGMCs induced by HG. L-TP reduced the expression of p-STAT3 and increased the expression of miR-126 in HGMCs. In conclusion, HG could induce HGMCs senescence by activating the telomere-p53-p21-Rb signaling pathway in vitro. L-TP could delay HGMCs senescence through regulating STAT3/miR-126 expressions and inhibiting the telomere-p53-p21-Rb signaling pathway activation. These findings could provide the effective interventions in clinic for preventing and treating renal cell senescence in diabetic kidney disease.
本文旨在探讨茶多酚(TP)体外延缓高糖(HG)诱导的人肾小球系膜细胞(HGMCs)衰老的作用及可能机制。体外培养HGMCs,分为正常组(N,5.5 mmol·L⁻¹葡萄糖)、甘露醇组(MNT,5.5 mmol·L⁻¹葡萄糖加24.5 mmol·L⁻¹甘露醇)、高糖组(HG,30 mmol·L⁻¹葡萄糖)、低剂量TP组(L - TP,30 mmol·L⁻¹葡萄糖加5 mg·L⁻¹ TP)和高剂量TP组(H - TP,30 mmol·L⁻¹葡萄糖加20 mg·L⁻¹ TP),分别于37℃、5% CO₂条件下培养。首先,干预72 h后观察TP对HGMCs细胞形态的影响。其次,分别检测细胞周期、衰老相关β - 半乳糖苷酶(SA - β - gal)染色阳性率及端粒长度。最后,分别研究p53 - p21 - Rb信号通路中p53、p21和Rb的蛋白表达,并检测p - STAT3和miR - 126的表达。结果表明,HG不仅使细胞周期阻滞于G₁期,还增加了SA - β - gal染色阳性率,缩短了端粒长度。HG通过激活p53 - p21 - Rb信号通路导致p53、p21和Rb蛋白过度表达及HGMCs衰老。此外,L - TP通过改善细胞周期G₁期阻滞、降低SA - β - gal染色阳性率及延长端粒长度来延缓HGMCs衰老。L - TP降低了HG诱导的p53、P21和Rb蛋白过度表达,并抑制端粒 - p53 - p21 - Rb信号通路。而且,HG诱导的HGMCs中p - STAT3表达增加,miR - 126表达降低。L - TP降低了HGMCs中p - STAT3的表达并增加了miR - 126的表达。综上所述,HG在体外可通过激活端粒 - p53 - p21 - Rb信号通路诱导HGMCs衰老。L - TP可通过调节STAT3/miR - 126表达并抑制端粒 - p53 - p21 - Rb信号通路激活来延缓HGMCs衰老。这些研究结果可为临床防治糖尿病肾病肾细胞衰老提供有效的干预措施。