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静止预处理的人多能基质细胞采用有利于在缺血状态下提高存活率的代谢模式。

Quiescence Preconditioned Human Multipotent Stromal Cells Adopt a Metabolic Profile Favorable for Enhanced Survival under Ischemia.

作者信息

Moya Adrien, Larochette Nathanaël, Paquet Joseph, Deschepper Mickael, Bensidhoum Morad, Izzo Valentina, Kroemer Guido, Petite Hervé, Logeart-Avramoglou Delphine

机构信息

Laboratory of Bioengineering and Bioimaging for Osteo-Articular tissues, UMR 7052, CNRS, Paris Diderot University, Sorbonne Paris Cité, Paris, France.

Equipe 11 labellisée par la Ligue contre le Cancer, Centre de Recherche des Cordeliers, Paris, France.

出版信息

Stem Cells. 2017 Jan;35(1):181-196. doi: 10.1002/stem.2493. Epub 2016 Sep 21.

Abstract

A major impediment to the development of therapies with mesenchymal stem cells/multipotent stromal cells (MSC) is the poor survival and engraftment of MSCs at the site of injury. We hypothesized that lowering the energetic demand of MSCs by driving them into a quiescent state would enhance their survival under ischemic conditions. Human MSCs (hMSCs) were induced into quiescence by serum deprivation (SD) for 48 hours. Such preconditioned cells (SD-hMSCs) exhibited reduced nucleotide and protein syntheses compared to unpreconditioned hMSCs. SD-hMSCs sustained their viability and their ATP levels upon exposure to severe, continuous, near-anoxia (0.1% O ) and total glucose depletion for up to 14 consecutive days in vitro, as they maintained their hMSC multipotential capabilities upon reperfusion. Most importantly, SD-hMSCs showed enhanced viability in vivo for the first week postimplantation in mice. Quiescence preconditioning modified the energy-metabolic profile of hMSCs: it suppressed energy-sensing mTOR signaling, stimulated autophagy, promoted a shift in bioenergetic metabolism from oxidative phosphorylation to glycolysis and upregulated the expression of gluconeogenic enzymes, such as PEPCK. Since the presence of pyruvate in cell culture media was critical for SD-hMSC survival under ischemic conditions, we speculate that these cells may utilize some steps of gluconeogenesis to overcome metabolic stress. These findings support that SD preconditioning causes a protective metabolic adaptation that might be taken advantage of to improve hMSC survival in ischemic environments. Stem Cells 2017;35:181-196.

摘要

间充质干细胞/多能基质细胞(MSC)疗法发展的一个主要障碍是MSC在损伤部位的存活率低和植入效果差。我们假设通过使MSC进入静止状态来降低其能量需求,将提高它们在缺血条件下的存活率。通过血清剥夺(SD)48小时将人MSC(hMSC)诱导进入静止状态。与未预处理的hMSC相比,这种预处理的细胞(SD-hMSC)表现出核苷酸和蛋白质合成减少。在体外连续14天暴露于严重、持续、近无氧(0.1% O₂)和完全葡萄糖耗尽的情况下,SD-hMSC维持其活力和ATP水平,因为它们在再灌注后保持hMSC多能性。最重要的是,在小鼠体内植入后的第一周,SD-hMSC显示出增强的活力。静止预处理改变了hMSC的能量代谢谱:它抑制能量感应mTOR信号传导,刺激自噬,促进生物能量代谢从氧化磷酸化向糖酵解转变,并上调糖异生酶如磷酸烯醇式丙酮酸羧激酶(PEPCK)的表达。由于细胞培养基中丙酮酸的存在对缺血条件下SD-hMSC的存活至关重要,我们推测这些细胞可能利用糖异生的一些步骤来克服代谢应激。这些发现支持SD预处理引起一种保护性代谢适应,可利用这种适应来改善hMSC在缺血环境中的存活。《干细胞》2017年;35卷:181 - 196页

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