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首页> 外文期刊>Biological psychiatry >Antioxidant supplementation ameliorates molecular deficits in smith-lemli-opitz syndrome
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Antioxidant supplementation ameliorates molecular deficits in smith-lemli-opitz syndrome

机译:抗氧化剂补充改善了Smith-lemli-opitz综合征的分子缺陷

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Background Smith-Lemli-Opitz syndrome (SLOS) is an inborn error of cholesterol biosynthesis characterized by diminished cholesterol and increased 7-dehydrocholesterol (7-DHC) levels. 7-Dehydrocholesterol is highly reactive, giving rise to biologically active oxysterols. Methods 7-DHC-derived oxysterols were measured in fibroblasts from SLOS patients and an in vivo SLOS rodent model using high-performance liquid chromatography tandem mass spectrometry. Expression of lipid biosynthesis genes was ascertained by quantitative polymerase chain reaction and Western blot. The effects of an antioxidant mixture of vitamin A, coenzyme Q10, vitamin C, and vitamin E were evaluated for their potential to reduce formation of 7-DHC oxysterols in fibroblast from SLOS patients. Finally, the effect of maternal feeding of vitamin E enriched diet was ascertained in the brain and liver of newborn SLOS mice. Results In cultured human SLOS fibroblasts, the antioxidant mixture led to decreased levels of the 7-DHC-derived oxysterol, 3β,5α-dihydroxycholest-7-en-6-one. Furthermore, gene expression changes in SLOS human fibroblasts were normalized with antioxidant treatment. The active ingredient appeared to be vitamin E, as even at low concentrations, it significantly decreased 3β,5α- dihydroxycholest-7-en-6-one levels. In addition, analyzing a mouse SLOS model revealed that feeding a vitamin E enriched diet to pregnant female mice led to a decrease in oxysterol formation in brain and liver tissues of the newborn Dhcr7-knockout pups. Conclusions Considering the adverse effects of 7-DHC-derived oxysterols in neuronal and glial cultures and the positive effects of antioxidants in patient cell cultures and the transgenic mouse model, we believe that preventing formation of 7-DHC oxysterols is critical for countering the detrimental effects of DHCR7 mutations.
机译:背景Smith-Lemli-Opitz综合征(SLOS)是胆固醇生物合成的先天性错误,其特征在于胆固醇减少和7-脱氢胆固醇(7-DHC)水平升高。 7-脱氢胆固醇是高反应性的,产生具有生物活性的氧固醇。方法使用高效液相色谱串联质谱法在SLOS患者的成纤维细胞和体内SLOS啮齿动物模型中测定7-DHC衍生的氧固醇。通过定量聚合酶链反应和蛋白质印迹确定脂质生物合成基因的表达。评估了维生素A,辅酶Q10,维生素C和维生素E的抗氧化剂混合物对减少SLOS患者成纤维细胞中7-DHC氧固醇形成的潜力。最后,在新生SLOS小鼠的大脑和肝脏中确定了母体喂养富含维生素E的饮食的效果。结果在培养的人SLOS成纤维细胞中,抗​​氧化剂混合物导致7-DHC衍生的氧固醇3β,5α-二羟基胆甾-7-en-6-one的水平降低。此外,用抗氧化剂处理使SLOS人成纤维细胞中的基因表达变化正常化。活性成分似乎是维生素E,因为即使在低浓度下,它也会显着降低3β,5α-二羟基胆甾-7-en-6-one的水平。此外,对小鼠SLOS模型的分析表明,给怀孕的雌性小鼠喂食富含维生素E的饮食会导致新生Dhcr7基因敲除幼崽的大脑和肝脏组织中的氧固醇形成减少。结论考虑到7-DHC羟固醇对神经元和神经胶质细胞培养的不利影响以及抗氧化剂在患者细胞培养和转基因小鼠模型中的积极作用,我们认为防止7-DHC氧固醇的形成对于抵抗有害作用至关重要DHCR7突变。

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