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Synergistic effect of neural stem cells and olfactory ensheathing cells on repair of adult rat spinal cord injury.

机译:神经干细胞和嗅鞘细胞在成年大鼠脊髓损伤修复中的协同作用。

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摘要

Spinal cord injury (SCI) is a common clinical disease that places a heavy burden on families and society. Cellular therapy provides a method of giving a supplement of cells lost in the injury and promoting functional recovery after SCI. Neural stem cells (NSCs) and olfactory ensheathing cells (OECs) are two most promising cell types. NSCs have the potential of differentiating into neurons and glial cells, and OECs could help the axons of neurons pass through the glial scar to promote functional recovery. NSCs were isolated from the cortices of fetal rats on days 12-14 of embryonic development and OECs were isolated from the olfactory bulbs of adult rats. In vitro coculture studies demonstrated OECs could promote NSCs to differentiate into neurons. Four groups of rats that had been 3/4 spinal cord transectioned at T9 were injected with DMEM/F12 solution, NSCs, OECs, and NSCs + OECs, respectively, 7 days post-SCI. Twelve weeks postoperation, the hindlimb locomotor function of rats in the cotransplantation group was significantly improved compared with that in the other three groups. Histological observation and immunohistochemical staining of NF-200 both showed new nerve fibers across the injured region. Cotransplantation of NSCs and OECs might have a synergistic effect on promoting neural regeneration and improving the recovery of locomotion function. Cotransplantation of NSCs and OECs was better than a single graft of either NSCs or OECs. These findings have provided a new way of thinking in the treatment of SCI.
机译:脊髓损伤(SCI)是一种常见的临床疾病,给家庭和社会带来沉重负担。细胞疗法提供了一种补充损伤后丢失的细胞并促进SCI后功能恢复的方法。神经干细胞(NSC)和嗅鞘细胞(OEC)是两种最有希望的细胞类型。 NSC具有分化为神经元和神经胶质细胞的潜力,OEC可帮助神经元的轴突穿过神经胶质疤痕以促进功能恢复。在胚胎发育的第12-14天从胎儿大鼠的皮质中分离出NSC,并且从成年大鼠的嗅球中分离出OEC。体外共培养研究表明,OEC可以促进NSC分化为神经元。在SCI后7天,分别向四组在T9处进行3/4脊髓横断的大鼠分别注射DMEM / F12溶液,NSC,OEC和NSCs + OEC。术后十二周,与其他三组相比,共移植组大鼠的后肢运动功能明显改善。 NF-200的组织学观察和免疫组织化学染色均显示了整个受损区域的新神经纤维。 NSC和OEC的共移植可能对促进神经再生和改善运动功能的恢复具有协同作用。 NSC和OEC的共移植要优于NSC或OEC的单移植。这些发现为治疗SCI提供了新的思路。

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