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17β-雌二醇刺激人骨髓间充质干细胞整合入心肌组织的机制。

Mechanism of 17β-estradiol stimulated integration of human mesenchymal stem cells in heart tissue.

机构信息

Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, Bucharest, Romania.

Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, Bucharest, Romania.

出版信息

J Mol Cell Cardiol. 2019 Aug;133:115-124. doi: 10.1016/j.yjmcc.2019.06.007. Epub 2019 Jun 13.

Abstract

Scarcity of gender specific donor hearts highlights the importance of mesenchymal stem cells (MSCs) as a therapeutic tool for heart repair. However, inefficient incorporation, retention, and activity of MSCs in cardiac tissue remain an obstacle. Since surges in follicular estradiol (E2; μmolar-range) trigger tissue remodeling (e.g. ovulation) and E2 exerts beneficial actions on the cardiovascular system, we hypothesized that E2 may promote/improve MSC-mediated cardiac repair processes. Using Wharton's jelly (WJ)-derived MSCs we assessed the effects of E2 on MSC proliferation, directed migration, and engraftment in murine heart slices (using xCELLigence real-time cell-impedance system, DNA quantification, and microscopy) and on MSC-induced angiogenesis in vivo (matrigel plug assay). Protein expression was assessed by Western blotting, ELISA/Luminex, and proteomic analysis; whereas mRNA expression was assessed by qRT-PCR. MSCs expressed estrogen receptors (ERs) -alpha and -beta. E2 promoted MSC proliferation and up-regulated mRNA and protein expression of ER-alpha, ER-beta, extracellular matrix metalloproteinase inducer (EMMPRIN), and matrix metalloproteinase (MMP) -9, yet down-regulated MMP-2 expression. Moreover, E2 up-regulated expression of vascular endothelial growth factor (VEGF)-A, VEGFR-2, vascular cell adhesion protein-1 (VCAM-1), and angiogenin (ANG) and stimulated nitric oxide (NO) production via ER. Proteomic analysis of MSCs showed that E2 up-regulated 47 proteins, down-regulated 7 proteins, and increased the expression of key biochemical components/pathways involved in tissue repair. In MSCs co-cultured with murine heart-slices, E2 significantly induced MSC migration in an ER-alpha-dependent fashion and significantly increased the secretion of MMP-2, MMP-9, ANG, and VEGF. In an in vivo matrigel assay, E2-treated MSCs increased angiogenesis and hemoglobin content. In conclusion, E2-treatment increases the incorporation of MSCs in heart slices and promotes MSC-induced angiogenesis. These beneficial effects are mediated via increases in molecules/pathways involved in tissue remodeling and angiogenesis. We speculate that E2 may enhance MSC ability to repair/regenerate cardiac tissue.

摘要

雌性供体心脏的稀缺性突出了间充质干细胞(MSCs)作为心脏修复治疗工具的重要性。然而,MSCs 在心脏组织中的掺入、保留和活性仍然是一个障碍。由于卵泡雌激素(E2;μmolar 范围)的激增引发组织重塑(例如排卵),并且 E2 对心血管系统有有益的作用,我们假设 E2 可能促进/改善 MSC 介导的心脏修复过程。使用 Wharton 果冻(WJ)衍生的 MSC,我们评估了 E2 对 MSC 增殖、定向迁移和在小鼠心脏切片中的植入(使用 xCELLigence 实时细胞阻抗系统、DNA 定量和显微镜)以及 MSC 在体内诱导血管生成的影响(基质胶塞测定)。通过 Western 印迹、ELISA/Luminex 和蛋白质组学分析评估蛋白质表达;通过 qRT-PCR 评估 mRNA 表达。MSCs 表达雌激素受体(ER)-alpha 和 -beta。E2 促进 MSC 增殖,并上调 ER-alpha、ER-beta、细胞外基质金属蛋白酶诱导剂(EMMPRIN)和基质金属蛋白酶(MMP)-9 的 mRNA 和蛋白表达,而下调 MMP-2 的表达。此外,E2 上调血管内皮生长因子(VEGF)-A、VEGFR-2、血管细胞粘附蛋白-1(VCAM-1)和血管生成素(ANG)的表达,并通过 ER 刺激一氧化氮(NO)的产生。MSCs 的蛋白质组学分析表明,E2 上调了 47 种蛋白质,下调了 7 种蛋白质,并增加了参与组织修复的关键生化成分/途径的表达。在与小鼠心脏切片共培养的 MSC 中,E2 以 ER-alpha 依赖的方式显著诱导 MSC 迁移,并显著增加 MMP-2、MMP-9、ANG 和 VEGF 的分泌。在体内基质胶塞测定中,E2 处理的 MSC 增加了血管生成和血红蛋白含量。总之,E2 处理增加了 MSC 在心脏切片中的掺入,并促进了 MSC 诱导的血管生成。这些有益作用是通过增加参与组织重塑和血管生成的分子/途径来介导的。我们推测 E2 可以增强 MSC 修复/再生心脏组织的能力。

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