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姜黄素预处理通过改善线粒体功能、破坏 HIF-1α 稳定性和激活 Epac1-Akt 通路来保护大鼠骨髓间充质干细胞免受缺氧/复氧损伤。

Curcumin pretreatment protects against hypoxia/reoxgenation injury via improvement of mitochondrial function, destabilization of HIF-1α and activation of Epac1-Akt pathway in rat bone marrow mesenchymal stem cells.

机构信息

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

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

出版信息

Biomed Pharmacother. 2019 Jan;109:1268-1275. doi: 10.1016/j.biopha.2018.11.005. Epub 2018 Nov 9.

Abstract

Bone marrow mesenchymal stem cells (BMSCs) possess promising therapeutic effects and have been considered as a highly desirable agent for tissue injury treatment. However, little survived cells after transplanting due to severe relocated conditions (characterized by prolonged hypoxia and oxidative stress) lead to hampered benefits of BMSCs-based cell therapy. Curcumin, a natural dietary product, has attracted increasing attention owing to its profound pharmacologic properties. Here, we report the protective effects of curcumin pretreatment in BMSCs against hypoxia and reoxygenation (H/R) triggered injury, which mimick ischemia/reperfusion in vivo. We found that curcumin pretreatment remarkably inhibited H/R-induced cell viability loss, cell nuclei condensation, LDH leakage, as well as caspase-3 activity increase in BMSCs. Furthermore, curcumin pretreatment prevented H/R-induced mitochondrial dysfunction through expediting adenosine triphosphate production and suppressing reactive oxygen species accumulation and mitochondrial membrane potential decline. In addition, curcumin pretreatment notably induced HIF-1α destabilization, Epac1 and Akt activation, and Erk1/2 and p38 deactivation. However, Epac1 inhibitor ESI-09 obviously restrained the increase of p-Akt induced by curcumin, but not p-Erk1/2 or p-p38, and abrogated the protective effect of curcumin on BMSCs' survival and arrested cell cycle in G0/G1 phase. Taken together, these results demonstrated that curcumin pretreatment conferred BMSCs the ability to survive from H/R injury, which might attribute to its protection on mitochondrial function, destabilization of HIF-1α and activation of Epac1-Akt signaling pathway. Thus, this study provides more pharmacologic aspects of curcumin, and suggests that pre-conditioning of BMSCs with curcumin could serve as an attractive approach for facilitating cell therapy in tissue repair treatment.

摘要

骨髓间充质干细胞(BMSCs)具有有前景的治疗效果,被认为是治疗组织损伤的理想药物。然而,由于严重的再定位条件(以长时间缺氧和氧化应激为特征),移植后只有很少的存活细胞,这阻碍了基于 BMSCs 的细胞治疗的益处。姜黄素是一种天然的膳食产品,由于其深刻的药理特性而引起了越来越多的关注。在这里,我们报告了姜黄素预处理对 BMSCs 对抗缺氧和再氧合(H/R)损伤的保护作用,这模拟了体内的缺血/再灌注。我们发现,姜黄素预处理显著抑制了 H/R 诱导的细胞活力丧失、细胞核浓缩、LDH 漏出以及 caspase-3 活性增加。此外,姜黄素预处理通过加速三磷酸腺苷的产生以及抑制活性氧的积累和线粒体膜电位的下降来防止 H/R 诱导的线粒体功能障碍。此外,姜黄素预处理明显诱导 HIF-1α 不稳定,Epac1 和 Akt 激活,以及 Erk1/2 和 p38 失活。然而,Epac1 抑制剂 ESI-09 明显抑制了姜黄素诱导的 p-Akt 的增加,但不抑制 p-Erk1/2 或 p-p38,并消除了姜黄素对 BMSCs 存活的保护作用和阻止细胞周期停滞在 G0/G1 期。总之,这些结果表明,姜黄素预处理赋予了 BMSCs 从 H/R 损伤中存活的能力,这可能归因于它对线粒体功能的保护、HIF-1α 的不稳定和 Epac1-Akt 信号通路的激活。因此,这项研究为姜黄素提供了更多的药理方面的信息,并表明用姜黄素预处理 BMSCs 可能是促进组织修复治疗中细胞治疗的一种有吸引力的方法。

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