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Bone marrow mononuclear cells promote proliferation of endogenous neural stem cells through vascular niches after cerebral infarction.

机译:骨髓单核细胞通过脑梗死后促进内源性神经干细胞的增殖。

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Increasing evidence shows that administration of bone marrow mononuclear cells (BMMCs) is a potential treatment for various ischemic diseases, such as ischemic stroke. Although angiogenesis has been considered primarily responsible for the effect of BMMCs, their direct contribution to endothelial cells (ECs) by being a functional elements of vascular niches for neural stem/progenitor cells (NSPCs) has not been considered. Herein, we examine whether BMMCs affected the properties of ECs and NSPCs, and whether they promoted neurogenesis and functional recovery after stroke. We compared i.v. transplantations 1 x 10(6) BMMCs and phosphate-buffered saline in mice 2 days after cortical infarction. Systemically administered BMMCs preferentially accumulated at the postischemic cortex and peri-infarct area in brains; cell proliferation of ECs (angiogenesis) at these regions was significantly increased in BMMCs-treated mice compared with controls. We also found that endogenous NSPCs developed in close proximity to ECs in and around the poststroke cortex and that ECs were essential for proliferation of these ischemia-induced NSPCs. Furthermore, BMMCs enhanced proliferation of NSPCs as well as ECs. Proliferation of NSPCs was suppressed by additional treatment with endostatin (known to inhibit proliferation of ECs) following BMMCs transplantation. Subsequently, neurogenesis and functional recovery were also promoted in BMMCs-treated mice compared with controls. These results suggest that BMMCs can contribute to the proliferation of endogenous ischemia-induced NSPCs through vascular niche regulation, which includes regulation of endothelial proliferation. In addition, these results suggest that BMMCs transplantation has potential as a novel therapeutic option in stroke treatment.
机译:越来越多的证据表明,骨髓单核细胞(BMCS)的给药是针对各种缺血性疾病的潜在治疗,例如缺血性卒中。虽然血管生成主要是对BMMC的影响主要负责,但尚未考虑通过作为神经茎/祖细胞(NSPCS)的血管氏菌属的功能元素对内皮细胞(ECS)的直接贡献。在此,我们检查BMMC是否影响了ECS和NSPCs的性质,以及它们是否促进了中风后神经发生和功能性恢复。我们比较了i.v.在皮质梗死后2天在小鼠中移植1×10(6)BMMC和磷酸盐缓冲盐水。全身施用的BMCS优先在暴发的皮质皮层和大脑中的PERI-IMARCT区域积累;与对照相比,BMMCS处理的小鼠中,这些区域的ECS(血管生成)的细胞增殖显着增加。我们还发现,突发性皮层中和周围的ECS紧邻ECS的内源性NSPC,并且ECS对于这些缺血诱导的NSPC的增殖至关重要。此外,BMMCS增强了NSPC的增殖以及ECS。在BMMC移植后,通过用内抑素(已知抑制ECS的增殖)的另外的处理来抑制NSPC的增殖。随后,与对照相比,在BMMCS处理的小鼠中也促进了神经发生和功能性回收。这些结果表明,通过血管利基调控,BMMCs可以有助于内源性缺血诱导的NSPCs的增殖,包括调节内皮增殖。此外,这些结果表明BMMCs移植在中风治疗中具有新的治疗选择。

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