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Effect of curcumin in a mouse model of Pelizaeus-Merzbacher disease

机译:姜黄素在小鼠比利牛斯-梅尔茨巴赫病模型中的作用

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PLP1 amino acid substitutions cause accumulation of misfolded protein and induce endoplasmic reticulum (ER) stress, causing Pelizaeus-Merzbacher disease (PMD), a hypomyelinating disorder of the central nerve system. Currently no effective therapy is available for PMD. Promoted by its curative effects in other genetic disease models caused by similar molecular mechanisms, we tested if curcumin, a dietary compound, can rescue the lethal phenotype of a PMD mouse model (myelin synthesis deficient, msd). Curcumin was administered orally to myelin synthesis deficit (msd) mice at 180mg·kg -1·day -1 from the postnatal day 3. We evaluated general and motor status, changes in myelination and apoptosis of oligodendrocytes by neuropathological and biochemical examination, and transcription levels for ER-related molecules. We also examined the pharmacological effect of curcumin in cell culture system. Oral curcumin treatment resulted in 25% longer survival (p0.01). In addition, oligodendrocytes undergoing apoptosis were reduced in number (p0.05). However, no apparent improvement in motor function, neurological phenotype, and myelin formation was observed. Curcumin treatment did not change the expression of ER stress markers and subcellular localization of the mutant protein in vitro and/or in vivo. Curcumin partially mitigated the clinical and pathological phenotype of msd mice, although molecular mechanisms underlying this curative effect are yet undetermined. Nonetheless, curcumin may serve as a potential therapeutic compound for PMD caused by PLP1 point mutations.
机译:PLP1氨基酸取代引起错误折叠的蛋白质积累,并引起内质网(ER)应激,从而引起中枢神经系统的髓鞘减少性疾病Pelizaeus-Merzbacher病(PMD)。目前尚无有效的PMD治疗方法。由其在类似遗传机制引起的其他遗传疾病模型中的治愈作用推动,我们测试了姜黄素(一种饮食化合物)是否可以挽救PMD小鼠模型的致死表型(髓磷脂合成缺陷,msd)。从出生后第3天开始以180mg·kg -1·day -1口服姜黄素给髓磷脂合成缺陷(msd)小鼠。我们通过神经病理学和生化检查以及转录来评估少突胶质细胞的一般和运动状态,髓鞘化和凋亡的变化ER相关分子的水平。我们还检查了姜黄素在细胞培养系统中的药理作用。口服姜黄素治疗可使生存期延长25%(p <0.01)。另外,经历凋亡的少突胶质细胞减少(p <0.05)。但是,没有观察到运动功能,神经表型和髓鞘形成的明显改善。姜黄素处理在体外和/或体内未改变ER应激标志物的表达和突变蛋白的亚细胞定位。姜黄素部分缓解了msd小鼠的临床和病理表型,尽管尚未确定其潜在疗效的分子机制。尽管如此,姜黄素仍可作为由PLP1点突变引起的PMD的潜在治疗化合物。

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