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首页> 外文期刊>Cell death & disease. >Transamniotic mesenchymal stem cell therapy for neural tube defects preserves neural function through lesion-specific engraftment and regeneration
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Transamniotic mesenchymal stem cell therapy for neural tube defects preserves neural function through lesion-specific engraftment and regeneration

机译:用于神经管缺陷的透霉间充质干细胞疗法通过病变特异性植入和再生保持神经功能

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摘要

Neural tube defects (NTDs) lead to prenatal mortality and lifelong morbidity. Currently, surgical closure of NTD lesions results in limited functional recovery. We previously suggested that nerve regeneration was critical for NTD therapy. Here, we report that transamniotic bone marrow-derived mesenchymal stem cell (BMSC) therapy for NTDs during early development may achieve beneficial functional recovery. In our ex vivo rat embryonic NTD model, BMSCs injected into the amniotic cavity spontaneously migrated into the defective neural tissue. Hepatocyte growth factor and its receptor c-MET were found to play critical roles in this NTD lesion-specific migration. Using the in vivo rat fetal NTD model, we further discovered that the engrafted BMSCs specifically differentiated into the cell types of the defective tissue, including skin and different types of neurons in situ. BMSC treatment triggered skin repair in fetuses, leading to a 29.9?±?5.6% reduction in the skin lesion area. The electrophysiological functional recovery assay revealed a decreased latency and increased motor-evoked potential amplitude in the BMSC-treated fetuses. Based on these positive outcomes, ease of operation, and reduced trauma to the mother and fetus, we propose that transamniotic BMSC administration could be a new effective therapy for NTDs.
机译:神经管缺陷(NTDS)导致产前死亡率和终身发病率。目前,NTD病变的手术闭合导致有限的功能恢复。我们以前表明神经再生对于NTD治疗至关重要。在此,我们报告说,在早期发育期间NTD的蛋白质骨髓衍生的间充质干细胞(BMSC)治疗可实现有益的功能恢复。在我们的前体内RAT胚胎NTD模型中,BMSC注入到羊膜中,自发地迁移到缺陷的神经组织中。发现肝细胞生长因子及其受体C-Met在该NTD病变特异性迁移中发挥着关键作用。使用体内大鼠胎儿NTD模型,我们进一步发现,被植入的BMSCs特异性地分化为缺陷组织的细胞类型,包括皮肤和不同类型的神经元原位。 BMSC治疗触发皮肤修复在胎儿中,导致皮肤病变区域减少29.9?±5.6%。电生理功能恢复测定显示延迟下降,并且在BMSC处理的胎儿中增加的电动机诱发电位振幅。基于这些阳性结果,易于操作和对母亲和胎儿的创伤减少,我们提出了致致剪致NMSC施用可能是NTD的新有效治疗。

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