体外短期缺氧可改善早期心脏祖细胞功能。

IF 1.5 Q4 CELL BIOLOGY
American journal of stem cells Pub Date : 2018-02-01 eCollection Date: 2018-01-01
Ivan Hernandez, Jonathan M Baio, Eric Tsay, Aida F Martinez, Tania I Fuentes, Leonard L Bailey, Nahidh W Hasaniya, Mary Kearns-Jonker
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引用次数: 0

摘要

利用心血管祖细胞(CPCs)修复受损心肌一直是研究的热点。先前的报告表明,预处理,包括缺氧,可以改善细胞功能。然而,短期缺氧对心肌细胞的年龄依赖性影响以及信号在这些影响中的作用尚不清楚。克隆的表达Isl1、c-Kit、KDR、PDGFRA和CXCR4的新生儿和成人cpc使用低氧(1% O2)预处理6小时。采用独创性途径分析(Ingenuity pathway Analysis, IPA)对细胞内信号通路变化进行建模,采用qRT-PCR、流式细胞术和免疫印迹法测量通路激活情况。细胞功能,包括存活、细胞周期和侵袭,分别使用TUNEL试验、流式细胞术和Transwell®侵袭试验进行评估。IPA预测,RT-PCR和流式细胞术证实,PI3K/AKT通路在短期缺氧后被激活。热休克蛋白(HSP) 40在两组中表达均显著升高,而HSP70仅在新生儿CPCs中表达升高。缺氧预处理可改善新生儿CPC侵袭和存活,但对细胞周期和发育状态无影响。前列腺素受体在新生儿细胞中的表达增强。移植前,低氧预处理可增强CPC功能,包括侵袭能力和促存活通路的激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Short-term hypoxia improves early cardiac progenitor cell function <i>in vitro</i>.

Short-term hypoxia improves early cardiac progenitor cell function <i>in vitro</i>.

Short-term hypoxia improves early cardiac progenitor cell function <i>in vitro</i>.

Short-term hypoxia improves early cardiac progenitor cell function in vitro.

The use of cardiovascular progenitor cells (CPCs) to repair damaged myocardium has been the focus of intense research. Previous reports have shown that pretreatments, including hypoxia, improve cell function. However, the age-dependent effects of short-term hypoxia on CPCs, and the role of signaling in these effects, are unknown. Cloned neonatal and adult CPCs expressing Isl1, c-Kit, KDR, PDGFRA, and CXCR4, were preconditioned using hypoxia (1% O2 for six hours). Intracellular signaling pathway changes were modeled using Ingenuity Pathway Analysis (IPA), while qRT-PCR, flow cytometry, and immunoblotting were used to measure pathway activation. Cellular function, including survival, cell cycle, and invasion, were evaluated using a TUNEL assay, flow cytometry, and a Transwell® invasion assay, respectively. IPA predicted, and RT-PCR and flow cytometry confirmed, that the PI3K/AKT pathway was activated following short-term hypoxia. Heat shock protein (HSP) 40 expression increased significantly in both age groups, while HSP70 expression increased only in neonatal CPCs. Neonatal CPC invasion and survival improved after hypoxia pre-treatment, while no effect was observed in cell cycling and developmental status. Prostaglandin receptor expression was enhanced in neonatal cells. Prior to transplantation, hypoxic preconditioning enhances CPC function, including invasion ability and pro-survival pathway activation.

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