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首页> 外文期刊>Stem Cell Research & Therapy >Preconditioning of bone marrow-derived mesenchymal stromal cells by tetramethylpyrazine enhances cell migration and improves functional recovery after focal cerebral ischemia in rats
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Preconditioning of bone marrow-derived mesenchymal stromal cells by tetramethylpyrazine enhances cell migration and improves functional recovery after focal cerebral ischemia in rats

机译:川py嗪预处理骨髓源间充质基质细胞增强细胞迁移并改善大鼠局灶性脑缺血后的功能恢复

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Background Transplantation of bone marrow-derived mesenchymal stem cells (BMSCs) is one of the new therapeutic strategies for treating ischemic stroke. However, the relatively poor migratory capacity of BMSCs toward infarcted regions limited the therapeutic potential of this approach. Pharmacological preconditioning can increase the expression of CXC chemokine receptor 4 (CXCR4) in BMSCs and enhance cell migration toward the injury site. In the present study, we investigated whether tetramethylpyrazine (TMP) preconditioning could enhance BMSCs migration to the ischemic brain and improve functional recovery through upregulating CXCR4 expression. Methods BMSCs were identified by flow cytometry analysis. BMSCs migration was evaluated in vitro by transwell migration assay, and CXCR4 expression was measured by quantitative reverse transcription-polymerase chain reaction and western blot analysis. In rats with focal cerebral ischemia, the neurological function was evaluated by the modified neurological severity score, the adhesive removal test and the corner test. The homing BMSCs and angiogenesis were detected by immunofluorescence, and expression of stromal cell-derived factor-1 (SDF-1) and CXCR4 was measured by western blot analysis. Results Flow cytometry analysis demonstrated that BMSCs expressed CD29 and CD90, but not CD34 and CD45. TMP pretreatment dose-dependently induced BMSCs migration and CXCR4 expression in vitro, which was significantly inhibited by AMD3100, a CXCR4 antagonist. In rat stroke models, we found more TMP-preconditioned BMSCs homing toward the infarcted regions than nonpreconditioned cells, leading to improved neurological performance and enhanced angiogenesis. Moreover, TMP-preconditioned BMSCs significantly upregulated the protein expression of SDF-1 and CXCR4 in the ischemic boundary regions. These beneficial effects of TMP preconditioning were blocked by AMD3100. Conclusion TMP preconditioning enhances the migration and homing ability of BMSCs, increases CXCR4 expression, promotes angiogenesis, and improves neurological performance. Therefore, TMP preconditioning may be an effective strategy to improve the therapeutic potency of BMSCs for ischemic stroke due to enhanced BMSCs migration to ischemic regions.
机译:背景骨髓间充质干细胞(BMSCs)的移植是治疗缺血性中风的新治疗策略之一。然而,BMSCs向梗塞区域的相对较弱的迁移能力限制了该方法的治疗潜力。药理学预处理可以增加BMSC中CXC趋化因子受体4(CXCR4)的表达,并增强细胞向损伤部位的迁移。在本研究中,我们调查了四甲基吡嗪(TMP)预处理是否可以通过上调CXCR4表达来增强BMSCs向缺血性脑的迁移并改善功能恢复。方法采用流式细胞仪鉴定BMSCs。通过transwell迁移测定法体外评估BMSCs迁移,并通过定量逆转录-聚合酶链反应和western印迹分析测量CXCR4表达。在患有局灶性脑缺血的大鼠中,通过改良的神经系统严重程度评分,粘着剂去除试验和角落试验评估神经功能。通过免疫荧光检测归巢的BMSCs和血管生成,并通过蛋白质印迹分析测量基质细胞衍生因子-1(SDF-1)和CXCR4的表达。结果流式细胞仪分析表明,BMSCs表达CD29和CD90,但不表达CD34和CD45。 TMP预处理在体外剂量依赖性地诱导BMSCs迁移和CXCR4表达,这被CXCR4拮抗剂AMD3100显着抑制。在大鼠中风模型中,我们发现,与未预处理的细胞相比,更多的TMP预处理的BMSCs向梗塞区域归巢,从而改善了神经功能并增强了血管生成。此外,TMP预处理的BMSCs在缺血边界区域显着上调了SDF-1和CXCR4的蛋白表达。 TMP预处理的这些有益作用被AMD3100阻止。结论TMP预处理可增强BMSCs的迁移和归巢能力,增加CXCR4表达,促进血管生成,并改善神经功能。因此,由于增强的BMSCs向缺血区域的迁移,TMP预处理可能是提高BMSCs对缺血性中风的治疗效力的有效策略。

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