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透明质酸在脱髓鞘病变中积聚并抑制少突胶质前体细胞成熟。

Hyaluronan accumulates in demyelinated lesions and inhibits oligodendrocyte progenitor maturation.

作者信息

Back Stephen A, Tuohy Therese M F, Chen Hanqin, Wallingford Nicholas, Craig Andrew, Struve Jaime, Luo Ning Ling, Banine Fatima, Liu Ying, Chang Ansi, Trapp Bruce D, Bebo Bruce F, Rao Mahendra S, Sherman Larry S

机构信息

Department of Pediatrics, School of Medicine, Oregon Health & Science University, 3181 SW Sam Jackson Park Road, Portland, Oregon 97239, USA.

出版信息

Nat Med. 2005 Sep;11(9):966-72. doi: 10.1038/nm1279. Epub 2005 Aug 7.

Abstract

Demyelination is the hallmark of numerous neurodegenerative conditions, including multiple sclerosis. Oligodendrocyte progenitors (OPCs), which normally mature into myelin-forming oligodendrocytes, are typically present around demyelinated lesions but do not remyelinate affected axons. Here, we find that the glycosaminoglycan hyaluronan accumulates in demyelinated lesions from individuals with multiple sclerosis and in mice with experimental autoimmune encephalomyelitis. A high molecular weight (HMW) form of hyaluronan synthesized by astrocytes accumulates in chronic demyelinated lesions. This form of hyaluronan inhibits remyelination after lysolecithin-induced white matter demyelination. OPCs accrue and do not mature into myelin-forming cells in demyelinating lesions where HMW hyaluronan is present. Furthermore, the addition of HMW hyaluronan to OPC cultures reversibly inhibits progenitor-cell maturation, whereas degrading hyaluronan in astrocyte-OPC cocultures promotes oligodendrocyte maturation. HMW hyaluronan may therefore contribute substantially to remyelination failure by preventing the maturation of OPCs that are recruited to demyelinating lesions.

摘要

脱髓鞘是包括多发性硬化症在内的多种神经退行性疾病的标志。少突胶质前体细胞(OPC)通常会成熟为形成髓鞘的少突胶质细胞,它们通常存在于脱髓鞘病变周围,但不会对受影响的轴突进行髓鞘再生。在这里,我们发现糖胺聚糖透明质酸在多发性硬化症患者的脱髓鞘病变以及实验性自身免疫性脑脊髓炎小鼠的脱髓鞘病变中积累。由星形胶质细胞合成的高分子量(HMW)形式的透明质酸在慢性脱髓鞘病变中积累。这种形式的透明质酸在溶血卵磷脂诱导的白质脱髓鞘后抑制髓鞘再生。在存在HMW透明质酸的脱髓鞘病变中,OPC会聚集且不会成熟为形成髓鞘的细胞。此外,向OPC培养物中添加HMW透明质酸会可逆地抑制祖细胞成熟,而在星形胶质细胞-OPC共培养物中降解透明质酸则会促进少突胶质细胞成熟。因此,HMW透明质酸可能通过阻止被招募到脱髓鞘病变中的OPC成熟而对髓鞘再生失败起重要作用。

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