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缺氧对骨髓间充质干细胞和单核细胞基因表达的影响。

Effect of hypoxia on gene expression of bone marrow-derived mesenchymal stem cells and mononuclear cells.

作者信息

Ohnishi Shunsuke, Yasuda Takeshi, Kitamura Soichiro, Nagaya Noritoshi

机构信息

Department of Regenerative Medicine and Tissue Engineering, National Cardiovascular Center, 5-7-1 Fujishirodai, Osaka 565-8565, Japan.

出版信息

Stem Cells. 2007 May;25(5):1166-77. doi: 10.1634/stemcells.2006-0347. Epub 2007 Feb 8.

Abstract

MSC have self-renewal and multilineage differentiation potential, including differentiation into endothelial cells and vascular smooth muscle cells. Although bone marrow-derived mononuclear cells (MNC) have been applied for therapeutic angiogenesis in ischemic tissue, little information is available regarding comparison of the molecular foundation between MNC and their MSC subpopulation, as well as their response to ischemic conditions. Thus, we investigated the gene expression profiles between MSC and MNC of rat bone marrow under normoxia and hypoxia using a microarray containing 31,099 genes. In normoxia, 2,232 (7.2%) and 2,193 genes (7.1%) were preferentially expressed more than threefold in MSC and MNC, respectively, and MSC expressed a number of genes involved in development, morphogenesis, cell adhesion, and proliferation, whereas various genes highly expressed in MNC were involved in inflammatory response and chemotaxis. Under hypoxia, 135 (0.44%) and 49 (0.16%) genes were upregulated (>threefold) in MSC and MNC, respectively, and a large number of those upregulated genes were involved in glycolysis and metabolism. Focusing on genes encoding secretory proteins, the upregulated genes in MSC under hypoxia included several molecules involved in cell proliferation and survival, such as vascular endothelial growth factor-D, placenta growth factor, pre-B-cell colony-enhancing factor 1, heparin-binding epidermal growth factor-like growth factor, and matrix metalloproteinase-9, whereas the upregulated genes in MNC under hypoxia included proinflammatory cytokines such as chemokine (C-X-C motif) ligand 2 and interleukin-1alpha. Our results may provide information on the differential molecular mechanisms regulating the properties of MSC and MNC under ischemic conditions. Disclosure of potential conflicts of interest is found at the end of this article.

摘要

间充质干细胞(MSC)具有自我更新和多向分化潜能,包括分化为内皮细胞和血管平滑肌细胞。尽管骨髓来源的单核细胞(MNC)已被应用于缺血组织的治疗性血管生成,但关于MNC与其MSC亚群之间分子基础的比较以及它们对缺血条件的反应,目前可用信息较少。因此,我们使用包含31,099个基因的微阵列,研究了常氧和缺氧条件下大鼠骨髓MSC和MNC之间的基因表达谱。在常氧条件下,分别有2,232个(7.2%)和2,193个基因(7.1%)在MSC和MNC中优先表达超过三倍,MSC表达了许多参与发育、形态发生、细胞黏附和增殖的基因,而在MNC中高表达的各种基因则参与炎症反应和趋化作用。在缺氧条件下,MSC和MNC中分别有135个(0.44%)和49个(0.16%)基因上调(>三倍),并且大量上调基因参与糖酵解和代谢。聚焦于编码分泌蛋白的基因,缺氧条件下MSC中上调的基因包括几种参与细胞增殖和存活的分子,如血管内皮生长因子-D、胎盘生长因子、前B细胞集落增强因子1、肝素结合表皮生长因子样生长因子和基质金属蛋白酶-9,而缺氧条件下MNC中上调的基因包括促炎细胞因子,如趋化因子(C-X-C基序)配体2和白细胞介素-1α。我们的结果可能为缺血条件下调节MSC和MNC特性的差异分子机制提供信息。潜在利益冲突的披露见本文末尾。

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