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Thematic Review Series: Genetics of Human Lipid Diseases: Lipid metabolism in myelinating glial cells: lessons from human inherited disorders and mouse models

机译:专题综述系列:人类脂类疾病的遗传学:髓质神经胶质细胞中的脂质代谢:人类遗传性疾病和小鼠模型的教训

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摘要

The integrity of central and peripheral nervous system myelin is affected in numerous lipid metabolism disorders. This vulnerability was so far mostly attributed to the extraordinarily high level of lipid synthesis that is required for the formation of myelin, and to the relative autonomy in lipid synthesis of myelinating glial cells because of blood barriers shielding the nervous system from circulating lipids. Recent insights from analysis of inherited lipid disorders, especially those with prevailing lipid depletion and from mouse models with glia-specific disruption of lipid metabolism, shed new light on this issue. The particular lipid composition of myelin, the transport of lipid-associated myelin proteins, and the necessity for timely assembly of the myelin sheath all contribute to the observed vulnerability of myelin to perturbed lipid metabolism. Furthermore, the uptake of external lipids may also play a role in the formation of myelin membranes. In addition to an improved understanding of basic myelin biology, these data provide a foundation for future therapeutic interventions aiming at preserving glial cell integrity in metabolic disorders.
机译:中枢和周围神经系统髓磷脂的完整性在许多脂质代谢疾病中受到影响。迄今为止,这种脆弱性主要归因于形成髓磷脂所需的脂质合成水平异常高,以及由于使神经系统免受循环脂质的血液屏障,髓鞘神​​经胶质细胞的脂质合成具有相对的自治性。最近对遗传性脂质疾病(尤其是具有普遍性脂质消耗的脂质疾病)的分析以及胶质细胞特异性破坏胶质代谢的小鼠模型的最新见解为该问题提供了新的思路。髓磷脂的特定脂质组成,与脂质相关的髓磷脂蛋白的运输以及及时组装髓鞘的必要性都有助于观察到的髓磷脂对脂类代谢的脆弱性。此外,外部脂质的摄取也可能在髓鞘膜的形成中起作用。除了更好地了解髓鞘基本生物学知识外,这些数据还为将来旨在保留代谢紊乱中的神经胶质细胞完整性的治疗性干预措施提供了基础。

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