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褪黑素通过SIRT1依赖途径逆转H2O2诱导的间充质干细胞早衰。

Melatonin reverses H2 O2 -induced premature senescence in mesenchymal stem cells via the SIRT1-dependent pathway.

作者信息

Zhou Long, Chen Xi, Liu Tao, Gong Yihong, Chen Sijin, Pan Guoqing, Cui Wenguo, Luo Zong-Ping, Pei Ming, Yang Huilin, He Fan

机构信息

Orthopaedic Institute, Medical College, Soochow University, Suzhou, China.

Department of Orthopaedics, The First Affiliated Hospital of Soochow University, Suzhou, China.

出版信息

J Pineal Res. 2015 Sep;59(2):190-205. doi: 10.1111/jpi.12250. Epub 2015 Jul 7.

Abstract

Mesenchymal stem cells (MSCs) represent an attractive source for stem cell-based regenerative therapy, but they are vulnerable to oxidative stress-induced premature senescence in pathological conditions. We previously reported antioxidant and antiarthritic effects of melatonin on MSCs against proinflammatory cytokines. In this study, we hypothesized that melatonin could protect MSCs from premature senescence induced by hydrogen peroxide (H2 O2 ) via the silent information regulator type 1 (SIRT1)-dependent pathway. In response to H2 O2 at a sublethal concentration of 200 μm, human bone marrow-derived MSCs (BM-MSCs) underwent growth arrest and cellular senescence. Treatment with melatonin before H2 O2 exposure cannot significantly prevent premature senescence; however, treatment with melatonin subsequent to H2 O2 exposure successfully reversed the senescent phenotypes of BM-MSCs in a dose-dependent manner. This result was made evident by improved cell proliferation, decreased senescence-associated β-galactosidase activity, and the improved entry of proliferating cells into the S phase. In addition, treatment with 100 μm melatonin restored the osteogenic differentiation potential of BM-MSCs that was inhibited by H2 O2 -induced premature senescence. We also found that melatonin attenuated the H2 O2 -stimulated phosphorylation of p38 mitogen-activated protein kinase, decreased expression of the senescence-associated protein p16(INK) (4α) , and increased SIRT1. Further molecular experiments revealed that luzindole, a nonselective antagonist of melatonin receptors, blocked melatonin-mediated antisenescence effects. Inhibition of SIRT1 by sirtinol counteracted the protective effects of melatonin, suggesting that melatonin reversed the senescence in cells through the SIRT1-dependent pathway. Together, these findings lay new ground for understanding oxidative stress-induced premature senescence and open perspectives for therapeutic applications of melatonin in stem cell-based regenerative medicine.

摘要

间充质干细胞(MSCs)是基于干细胞的再生治疗的一个有吸引力的来源,但在病理条件下,它们易受氧化应激诱导的过早衰老影响。我们之前报道了褪黑素对间充质干细胞抗促炎细胞因子的抗氧化和抗关节炎作用。在本研究中,我们假设褪黑素可以通过沉默信息调节因子1(SIRT1)依赖性途径保护间充质干细胞免受过氧化氢(H2O2)诱导的过早衰老。在亚致死浓度200μm的H2O2作用下,人骨髓来源的间充质干细胞(BM-MSCs)出现生长停滞和细胞衰老。在H2O2暴露前用褪黑素处理不能显著预防过早衰老;然而,在H2O2暴露后用褪黑素处理成功地以剂量依赖性方式逆转了BM-MSCs的衰老表型。细胞增殖改善、衰老相关β-半乳糖苷酶活性降低以及增殖细胞进入S期的改善证明了这一结果。此外,用100μm褪黑素处理恢复了被H2O2诱导的过早衰老抑制的BM-MSCs的成骨分化潜能。我们还发现褪黑素减弱了H2O2刺激的p38丝裂原活化蛋白激酶的磷酸化,降低了衰老相关蛋白p16(INK)(4α)的表达,并增加了SIRT1。进一步的分子实验表明,褪黑素受体的非选择性拮抗剂鲁辛朵阻断了褪黑素介导的抗衰老作用。sirtinol对SIRT1的抑制抵消了褪黑素的保护作用,表明褪黑素通过SIRT1依赖性途径逆转细胞衰老。总之,这些发现为理解氧化应激诱导的过早衰老奠定了新基础,并为褪黑素在基于干细胞的再生医学中的治疗应用开辟了前景。

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