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Stromal cell-derived factor-1-directed bone marrow mesenchymal stem cell migration in response to inflammatory and/or hypoxic stimuli

机译:基质细胞衍生因子-1定向诱导的骨髓间充质干细胞迁移对炎症和/或低氧刺激的响应

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Directing cell trafficking toward a target site of interest is critical for advancing stem cell therapy in clinical theranostic applications. In this study, we investigated the effects of inflammatory and/or hypoxic stimuli on the migration of bone marrow mesenchymal stem cells (BMMSCs) during in vitro culture and after in vivo implantation. Using tablet scratch experiments and observations from a transwell system, we found that both inflammatory and hypoxic stimuli significantly enhanced cell migration. However, the combination of inflammatory and hypoxic stimuli did not result in a synergistic effect. The presence of stromal cell-derived factor-1 (SDF-1) significantly enhanced cell migration irrespective of the incubation conditions, and these positive effects could be blocked by treatment with AMD3100. Based on a time course experiment, we found that preconditioning cells with either inflammatory or hypoxic stimuli for 24h or with both stimuli for 12h led to high levels of chemokine receptor type 4 (CXCR4) expression. In vivo studies further demonstrated that pretreatment of BMMSCs with inflammatory and/or hypoxic stimuli resulted in an increased number of systemically injected cells migrating toward skin injuries, and local SDF-1 administration significantly increased cell migration. These findings suggest that in vitro control of either inflammatory or hypoxic stimuli has significant potential to enhance SDF-1-directed BMMSC migration via the upregulation of CXCR4 expression. Although combining the stimuli did not necessarily lead to a synergistic effect, the potential to reduce the dose and time required for cell preconditioning indicates that combinations of various strategies warrant further exploration.
机译:将细胞运输引导至目标靶点对于在临床治疗学应用中推进干细胞治疗至关重要。在这项研究中,我们调查了炎症和/或缺氧刺激对体外培养和体内植入后骨髓间充质干细胞(BMMSCs)迁移的影响。使用平板电脑刮擦实验和Transwell系统的观察结果,我们发现炎症和低氧刺激均显着增强了细胞迁移。然而,炎性和缺氧刺激的组合没有产生协同作用。基质细胞衍生因子-1(SDF-1)的存在与细胞培养条件无关,均显着增强了细胞迁移,而这些积极作用可以通过AMD3100治疗来阻断。基于时程实验,我们发现带有炎症或缺氧刺激物24h或同时具有两种刺激物12h的预处理细胞导致高水平的4型趋化因子受体(CXCR4)表达。体内研究进一步表明,用炎症和/或低氧刺激预处理BMMSC导致全身注射的细胞向皮肤损伤迁移的数量增加,局部SDF-1给药显着增加了细胞迁移。这些发现表明,对炎症或低氧刺激的体外控制具有通过上调CXCR4表达来增强SDF-1定向BMMSC迁移的显着潜力。尽管组合刺激不一定导致协同作用,但减少细胞预处理所需剂量和时间的潜力表明,各种策略的组合值得进一步探索。

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