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Enhanced neuroprotective efficacy of bone marrow mesenchymal stem cells co-overexpressing BDNF and VEGF in a rat model of cardiac arrest-induced global cerebral ischemia

机译:过度表达BDNF和VEGF的骨髓间充质干细胞在大鼠心脏骤停引起的全脑缺血模型中的神经保护作用增强

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摘要

Cardiac arrest-induced global cerebral ischemia injury (CA-GCII) usually leads to a poor neurological outcome without an effective treatment. Bone marrow-derived mesenchymal stem cells (BMMSCs) may provide a potential cell-based therapy against neurologic disorders through induction of brain-derived neurotrophic factor (BDNF) and vascular endothelial growth factor (VEGF). To optimize the neuroprotective efficacy of BMMSCs further, in this study we have derived BMMSCs, which co-overexpress both BDNF and VEGF, and tested them for the treatment of CA-GCII in a rat model. Lentiviruses that express rat BDNF exon IV or VEGF-A were created using the bicistronic shuttle vectors of pLVX-IRES-ZsGreen1 and pLVX-IRES-tdTomato, respectively. BMMSCs that were co-transduced with the engineered lentiviruses with co-overexpression of both BDNF and VEGF along with corresponding fluorescent protein reporters were injected via jugular vein of rats that just recovered from a cardiac arrest. Animals were then scored for neurofunctional deficits and examined for brain pathology and gene expression relevant to the engraftment seven days after the treatments. We demonstrate that anchorage of lentiviral vector-transduced BMMSCs, which co-overexpressed both BDNF and VEGF in the hippocampus and temporal cortex along with significantly ameliorated brain pathology and improved neurofunctional performance in CA-GCII rats after transplantation. These findings provide a proof of concept for the further validation of engineered BMMSCs for the treatment of CA-GCII patients in clinical practice in the future.
机译:由于没有有效的治疗方法,心脏骤停引起的整体性脑缺血损伤(CA-GCII)通常会导致不良的神经系统预后。骨髓间充质干细胞(BMMSC)可能通过诱导脑源性神经营养因子(BDNF)和血管内皮生长因子(VEGF)提供潜在的基于细胞的神经疾病治疗。为了进一步优化BMMSC的神经保护功效,在这项研究中,我们获得了BMMSC,它们共过表达BDNF和VEGF,并在大鼠模型中测试了它们对CA-GCII的治疗作用。分别使用pLVX-IRES-ZsGreen1和pLVX-IRES-tdTomato的双顺反子穿梭载体创建了表达大鼠BDNF外显子IV或VEGF-A的慢病毒。通过刚从心脏骤停中恢复的大鼠的颈静脉注射与经工程化的慢病毒共转导,并同时过量表达BDNF和VEGF的BMMSC,以及相应的荧光蛋白报告基因。然后对动物进行神经功能缺损评分,并在治疗后7天检查与植入有关的脑病理学和基因表达。我们证明慢病毒载体转导的BMMSCs的锚定,在移植后共过表达海马和颞皮质的BDNF和VEGF以及明显改善的脑部病理和改善的神经功能。这些发现为进一步验证工程化BMMSC在未来的临床实践中治疗CA-GCII患者提供了概念验证。

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