固醇代谢紊乱和神经发育——最新进展

Shibani Kanungo, Neelkamal Soares, Miao He, Robert D. Steiner
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引用次数: 76

摘要

胆固醇在正常细胞生理以及胚胎和出生后发育中具有许多典型的功能。它是细胞膜和髓磷脂的主要成分,是类固醇激素和胆汁酸的前体。血脑屏障的发育可能在人类妊娠12-18周左右,使发育中的胚胎/胎儿脑依赖于内源性胆固醇合成。沿着胆固醇生物合成途径的已知酶缺陷导致许多神经发育和行为发现以及中枢神经系统结构异常。在这篇文章中,我们回顾了角鲨烯前和后通路中的固醇合成障碍,强调了Smith-Lemli-Opitz综合征(SLOS)、甲羟戊酸尿症(MVA)或轻度高免疫球蛋白血症D和周期性发热综合征(HIDS)、Antley-Bixler综合征伴生殖器异常和类固醇生成紊乱(ABS1)的临床表现和病程的神经发育方面的基础。先天性半发育不全伴鱼鳞样痣和肢体缺陷(CHILD)综合征、CK综合征、甾醇C4甲基氧化酶(SC4MOL)缺乏、x连锁显性点状软骨发育不良2(CDPX2)/ Conradi Hunermann综合征、骨质疏松症和硬脂硬化症,讨论了目前存在的争议,并对该领域的未来发展方向进行了探讨。©2013 Wiley期刊公司开发与残疾,2013;17:197-210。
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Sterol metabolism disorders and neurodevelopment—an update

Cholesterol has numerous quintessential functions in normal cell physiology, as well as in embryonic and postnatal development. It is a major component of cell membranes and myelin, and is a precursor of steroid hormones and bile acids. The development of the blood brain barrier likely around 12–18 weeks of human gestation makes the developing embryonic/fetal brain dependent on endogenous cholesterol synthesis. Known enzyme defects along the cholesterol biosynthetic pathway result in a host of neurodevelopmental and behavioral findings along with CNS structural anomalies. In this article, we review sterol synthesis disorders in the pre- and post-squalene pathway highlighting neurodevelopmental aspects that underlie the clinical presentations and course of Smith-Lemli-Opitz Syndrome (SLOS), mevalonic aciduria (MVA) or the milder version hyper-immunoglobulinemia D and periodic fever syndrome (HIDS), Antley-Bixler syndrome with genital anomalies and disordered steroidogenesis (ABS1), congenital hemidysplasia with icthyosiform nevus and limb defects (CHILD) syndrome, CK syndrome, sterol C4 methyl oxidase (SC4MOL) deficiency, X-linked dominant chondrodysplasia punctata 2(CDPX2)/ Conradi Hunermann syndrome, lathosterolosis and desmosterolosis, We also discuss current controversies and share thoughts on future directions in the field. © 2013 Wiley Periodicals, Inc. Dev Disabil Res Rev 2013;17:197–210.

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