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低氧预处理联合姜黄素通过 PGC-1α/SIRT3/HIF-1α 信号通路促进骨髓间充质干细胞的存活和线粒体质量,加速皮肤伤口愈合。

Hypoxic preconditioning combined with curcumin promotes cell survival and mitochondrial quality of bone marrow mesenchymal stem cells, and accelerates cutaneous wound healing via PGC-1α/SIRT3/HIF-1α signaling.

机构信息

Department of Burns and Cutaneous Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an, Shannxi 710032, China.

Department of Burns and Cutaneous Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an, Shannxi 710032, China.

出版信息

Free Radic Biol Med. 2020 Nov 1;159:164-176. doi: 10.1016/j.freeradbiomed.2020.07.023. Epub 2020 Jul 31.

Abstract

Restrained survival and function of relocated bone marrow mesenchymal stem cells (BMSCs) is a major impediment to BMSCs-mediated tissue repair. Accumulating evidences have indicated that hypoxic preconditioning of BMSCs could enhance BMSCs' adaptability after transplantation and thus improve their therapeutic properties. Curcumin, a natural dietary product, is known to exert profound protective effects on various cellular processes. Here we showed that mild hypoxic preconditioning combined with curcumin significantly increased cell survival, enriched more cells in G2/M and S phase, and improved mitochondrial function in BMSCs. Meanwhile, hypoxic preconditioning combined with curcumin altered mitochondrial cristae shape and strongly inhibited mitochondrial cytochrome c release, which consequently suppressed an apoptosis signal as revealed by reduced caspase-3 cleavage in BMSCs. Moreover, hypoxic preconditioning remarkably promoted mitochondrial quality via increasing mitochondrial fusion and elevating the activity of oxidative phosphorylation (OXPHOS) and mitochondrial complex Ⅰ enzyme in BMSCs, which were in accordance with the up-regulated expression of OPA1, PINK1 and Parkin. At the mechanistic level, the destabilization of HIF-1α and the up-regulated expression of PGC-1α and SIRT3 synergistically contributed to the protective effects of hypoxic preconditioning combined with curcumin in BMSCs. The proteasome inhibitor MG132 stabilized HIF-1a expression, but not PGC-1α or SIRT3, and dramatically restrained BMSCs survival under hypoxia combined with curcumin condition. MG132 also increased mitochondrial superoxide and intracellular hydrogen peroxide (HO) production and caspase-3 activation in hypoxia combined with curcumin-treated BMSCs. Furthermore, knockdown of SIRT3 and PGC-1α by RNAi both led to caspase-3 activation in BMSCs after hypoxia and curcumin treatment. Notably, SIRT3 RNAi suppressed OXPHOS activity, while PGC-1α RNAi triggered mitochondrial superoxide and intracellular HO production in hypoxia combined with curcumin-treated BMSCs. Finally, we showed that hypoxia combined with curcumin-treated BMSCs accelerated the cutaneous wound healing process in a mice wound model. Overall, this study suggests that hypoxic preconditioning combined with curcumin could serve as an attractive strategy for facilitating BMSCs-mediated tissue repair, and further sheds new light on the rich repertoire of PGC-1α/SIRT3/HIF-1α signaling involved in the regulation of mitochondrial quality and function for cellular adaption to hypoxia.

摘要

骨髓间充质干细胞(BMSCs)的存活和功能受限是 BMSCs 介导组织修复的主要障碍。越来越多的证据表明,BMSCs 的低氧预处理可以增强移植后 BMSCs 的适应性,从而改善其治疗特性。姜黄素是一种天然的膳食产品,已知对各种细胞过程具有深远的保护作用。在这里,我们发现轻度低氧预处理联合姜黄素可显著提高细胞存活率,使更多细胞进入 G2/M 和 S 期,并改善 BMSCs 的线粒体功能。同时,低氧预处理联合姜黄素改变了线粒体嵴的形状,强烈抑制了线粒体细胞色素 c 的释放,从而抑制了 BMSCs 中 caspase-3 切割减少所揭示的凋亡信号。此外,低氧预处理通过增加线粒体融合和提高 BMSCs 氧化磷酸化(OXPHOS)和线粒体复合物 Ⅰ酶的活性,显著促进了线粒体质量,这与 OPA1、PINK1 和 Parkin 的上调表达一致。在机制水平上,HIF-1α 的不稳定性和 PGC-1α 和 SIRT3 的上调表达协同促进了低氧预处理联合姜黄素对 BMSCs 的保护作用。蛋白酶体抑制剂 MG132 稳定了 HIF-1a 的表达,但不是 PGC-1α 或 SIRT3,并且在低氧联合姜黄素处理条件下显著抑制了 BMSCs 的存活。MG132 还增加了低氧联合姜黄素处理的 BMSCs 中线粒体超氧化物和细胞内过氧化氢(HO)的产生和 caspase-3 的激活。此外,RNAi 下调 SIRT3 和 PGC-1α 都导致 BMSCs 在低氧和姜黄素处理后 caspase-3 的激活。值得注意的是,SIRT3 RNAi 抑制了 OXPHOS 活性,而 PGC-1α RNAi 则触发了低氧联合姜黄素处理的 BMSCs 中线粒体超氧化物和细胞内 HO 的产生。最后,我们表明,低氧联合姜黄素处理的 BMSCs 加速了小鼠创面模型中的皮肤伤口愈合过程。总的来说,这项研究表明,低氧预处理联合姜黄素可能是促进 BMSCs 介导的组织修复的一种有吸引力的策略,并进一步揭示了 PGC-1α/SIRT3/HIF-1α 信号通路在调节线粒体质量和功能以适应低氧方面的丰富作用。

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