首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Bu-Shen-Yi-Sui Capsule, an Herbal Medicine Formula, Promotes Remyelination by Modulating the Molecular Signals via Exosomes in Mice with Experimental Autoimmune Encephalomyelitis
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Bu-Shen-Yi-Sui Capsule, an Herbal Medicine Formula, Promotes Remyelination by Modulating the Molecular Signals via Exosomes in Mice with Experimental Autoimmune Encephalomyelitis

机译:草药配方,草药配方,通过用实验性自身免疫脑脊髓炎调节小鼠的外来瘤来调节分子信号来促进重新髓质

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Multiple sclerosis (MS) is a common inflammatory demyelinating disorder of the central nervous system. Bu-shen-yi-sui capsule (BSYSC) could significantly reduce the relapse rate, prevent the progression of MS, and enhance remyelination following neurological injury in experimental autoimmune encephalomyelitis (EAE), an established model of MS; however, the mechanism underlying the effect of BSYSC on remyelination has not been well elucidated. This study showed that exosomes carrying biological information are involved in the pathological process of MS and that modified exosomes can promote remyelination by modulating related proteins and microRNAs (miRs). Here, the mechanism by which BSYSC promoted remyelination via exosome-mediated molecular signals was investigated in EAE mice and oligodendrocyte progenitor cells (OPCs) in vitro. The results showed that BSYSC treatment significantly improved the body weight and clinical scores of EAE mice, alleviated inflammatory infiltration and nerve fiber injury, protected the ultrastructural integrity of the myelin sheath, and significantly increased the expression of myelin basic protein (MBP) in EAE mice. In an in vitro OPC study, BSYSC-containing serum, especially 20% BSYSC, promoted the proliferation and migration of OPCs and induced OPCs to differentiate into mature oligodendrocytes that expressed MBP. Furthermore, BSYSC treatment regulated the expression of neuropilin- (NRP-) 1 and GTX, downregulated the expression of miR-16, let-7, miR-15, miR-98, miR-486, and miR-182, and upregulated the level of miR-146 in serum exosomes of EAE mice. In conclusion, these results suggested that BSYSC has a neuroprotective effect and facilitates remyelination and that the mechanism underlying the effect of BSYSC on remyelination probably involves regulation of the NRP-1 and GTX proteins and miRs in serum exosomes, which drive promyelination.
机译:多发性硬化症(MS)是中枢神经系统的常见炎症性脱髓鞘障碍。 Bu-shen-yi-sui胶囊(Bsysc)可以显着降低复发率,防止MS的进展,并在实验性自身免疫脑脊髓炎(EAE)中的神经损伤后提高雷米髓鞘,是MS的既定模型;然而,BSYSC对重新髓鞘产生的影响的机制并未得到很好的阐明。该研究表明,携带生物信息的外索物体参与MS的病理过程,并且通过调节相关蛋白质和微小RNA(MIR)可以促进修饰的外来体可以促进重新髓鞘。这里,在EAE小鼠和少突胚细胞祖细胞(OPCS)中,在体外研究了BSYSC促进了通过外渗的分子信号进行髓鞘化的机制。结果表明,BSYSC治疗显着改善了EAE小鼠的体重和临床评分,缓解炎症浸润和神经纤维损伤,保护了髓鞘的超微结构完整性,并显着增加了EAE小鼠中髓鞘碱性蛋白(MBP)的表达。在体外OPC研究中,含生物血清,尤其是20%的BSYSC,促进了OPCs的增殖和迁移和诱导的OPCs分化为表达MBP的成熟寡核细胞。此外,BSYSC治疗调节神经疏突 - (NRP-)1和GTX的表达,下调MiR-16,Let-7,MiR-15,miR-98,miR-486和miR-182的表达,并上调EAE小鼠血清外泌体的miR-146水平。总之,这些结果表明,BSYSC具有神经保护作用,促进重新髓鞘,并且BSYSC对重新髓鞘产生的影响的机制可能涉及调节血清外泌体的NRP-1和GTX蛋白和MIR,这使得突出突出术。

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