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低氧预处理可提高人脐带血间充质基质细胞的体外存活率和促血管生成能力。

Hypoxic Preconditioning Increases Survival and Pro-Angiogenic Capacity of Human Cord Blood Mesenchymal Stromal Cells In Vitro.

作者信息

Bader Andreas Matthäus, Klose Kristin, Bieback Karen, Korinth Dirk, Schneider Maria, Seifert Martina, Choi Yeong-Hoon, Kurtz Andreas, Falk Volkmar, Stamm Christof

机构信息

Berlin-Brandenburg Center for Regenerative Therapies, Charité-Universitätsmedizin Berlin, Berlin, Germany; Deutsches Herzzentrum Berlin, Berlin, Germany.

Berlin-Brandenburg Center for Regenerative Therapies, Charité-Universitätsmedizin Berlin, Berlin, Germany.

出版信息

PLoS One. 2015 Sep 18;10(9):e0138477. doi: 10.1371/journal.pone.0138477. eCollection 2015.

Abstract

Hypoxic preconditioning was shown to improve the therapeutic efficacy of bone marrow-derived multipotent mesenchymal stromal cells (MSCs) upon transplantation in ischemic tissue. Given the interest in clinical applications of umbilical cord blood-derived MSCs, we developed a specific hypoxic preconditioning protocol and investigated its anti-apoptotic and pro-angiogenic effects on cord blood MSCs undergoing simulated ischemia in vitro by subjecting them to hypoxia and nutrient deprivation with or without preceding hypoxic preconditioning. Cell number, metabolic activity, surface marker expression, chromosomal stability, apoptosis (caspases-3/7 activity) and necrosis were determined, and phosphorylation, mRNA expression and protein secretion of selected apoptosis and angiogenesis-regulating factors were quantified. Then, human umbilical vein endothelial cells (HUVEC) were subjected to simulated ischemia in co-culture with hypoxically preconditioned or naïve cord blood MSCs, and HUVEC proliferation was measured. Migration, proliferation and nitric oxide production of HUVECs were determined in presence of cord blood MSC-conditioned medium. Cord blood MSCs proved least sensitive to simulated ischemia when they were preconditioned for 24 h, while their basic behavior, immunophenotype and karyotype in culture remained unchanged. Here, "post-ischemic" cell number and metabolic activity were enhanced and caspase-3/7 activity and lactate dehydrogenase release were reduced as compared to non-preconditioned cells. Phosphorylation of AKT and BAD, mRNA expression of BCL-XL, BAG1 and VEGF, and VEGF protein secretion were higher in preconditioned cells. Hypoxically preconditioned cord blood MSCs enhanced HUVEC proliferation and migration, while nitric oxide production remained unchanged. We conclude that hypoxic preconditioning protects cord blood MSCs by activation of anti-apoptotic signaling mechanisms and enhances their angiogenic potential. Hence, hypoxic preconditioning might be a translationally relevant strategy to increase the tolerance of cord blood MSCs to ischemia and improve their therapeutic efficacy in clinical applications.

摘要

缺氧预处理已被证明可提高骨髓来源的多能间充质基质细胞(MSC)在缺血组织中移植后的治疗效果。鉴于人们对脐带血来源的MSC临床应用的关注,我们制定了一种特定的缺氧预处理方案,并通过对脐带血MSC进行缺氧和营养剥夺(有无先前的缺氧预处理)来研究其对体外模拟缺血的脐带血MSC的抗凋亡和促血管生成作用。测定细胞数量、代谢活性、表面标志物表达、染色体稳定性、凋亡(半胱天冬酶-3/7活性)和坏死情况,并对选定的凋亡和血管生成调节因子的磷酸化、mRNA表达和蛋白分泌进行定量。然后,将人脐静脉内皮细胞(HUVEC)与经缺氧预处理或未经处理的脐带血MSC共培养,进行模拟缺血处理,并测定HUVEC的增殖情况。在存在脐带血MSC条件培养基的情况下,测定HUVEC的迁移、增殖和一氧化氮产生情况。当脐带血MSC预处理24小时时,其对模拟缺血的敏感性最低,而其在培养中的基本行为、免疫表型和核型保持不变。在此,与未预处理的细胞相比,“缺血后”的细胞数量和代谢活性增强,半胱天冬酶-3/7活性和乳酸脱氢酶释放减少。预处理细胞中AKT和BAD的磷酸化、BCL-XL、BAG1和VEGF的mRNA表达以及VEGF蛋白分泌更高。经缺氧预处理的脐带血MSC增强了HUVEC的增殖和迁移,而一氧化氮产生保持不变。我们得出结论,缺氧预处理通过激活抗凋亡信号机制保护脐带血MSC,并增强其血管生成潜力。因此,缺氧预处理可能是一种与临床转化相关的策略,可提高脐带血MSC对缺血的耐受性,并改善其在临床应用中的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6eb/4575058/19abf4580e5a/pone.0138477.g001.jpg

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