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首页> 外文期刊>Endocrinology >Estrogen protection in Friedreich's ataxia skin fibroblasts.
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Estrogen protection in Friedreich's ataxia skin fibroblasts.

机译:Friedreich共济失调皮肤成纤维细胞中的雌激素保护。

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摘要

Estrogens have been shown to have protective effects on a wide range of cell types and animal models for many neurodegenerative diseases. The present study demonstrates the cytoprotective effects of 17beta-estradiol (E2) and estrogen-like compounds in an in vitro model of Friedreich's ataxia (FRDA) using human donor FRDA skin fibroblasts. FRDA fibroblasts are extremely sensitive to free radical damage and oxidative stress, produced here using l-buthionine (S,R)-sulfoximine to inhibit de novo glutathione synthesis. We have shown that the protective effect of E2 in the face of l-buthionine (S,R)-sulfoximine -induced oxidative stress is independent of estrogen receptor-alpha, estrogen receptor-beta or G protein-coupled receptor 30 as shown by the inability of either ICI 182,780 or G15 to inhibit the E2-mediated protection. These cytoprotective effects appear to be dependent on antioxidant properties and the phenolic structure of estradiol as demonstrated by the observation that all phenolic compounds tested were protective, whereas all nonphenolic compounds were inactive, and the observation that the phenolic compounds reduced the levels of reactive oxygen species, whereas the nonphenolic compounds did not. These data show for the first time that phenolic E2-like compounds are potent protectors against oxidative stress-induced cell death in FRDA fibroblasts and are possible candidate drugs for the treatment and prevention of FRDA symptoms.
机译:已显示雌激素对许多神经退行性疾病的多种细胞类型和动物模型具有保护作用。本研究证明了使用人类供体FRDA皮肤成纤维细胞在弗里德里希共济失调(FRDA)体外模型中17β-雌二醇(E2)和类雌激素化合物的细胞保护作用。 FRDA成纤维细胞对自由基损伤和氧化应激极为敏感,在这里使用l-丁硫氨酸(S,R)-亚磺酰亚胺产生以抑制新生谷胱甘肽合成。我们已经表明,E2对l-丁硫氨酸(S,R)-亚磺酰亚胺诱导的氧化应激的保护作用独立于雌激素受体-α,雌激素受体-β或G蛋白偶联受体30所显示, ICI 182,780或G15无法抑制E2介导的保护。这些细胞保护作用似乎取决于抗氧化特性和雌二醇的酚结构,如观察到的那样,即观察到的所有酚类化合物均具有保护性,而所有非酚类化合物均无活性,并且观察到酚类化合物降低了活性氧的含量,这证明了这一点。 ,而非酚类化合物则没有。这些数据首次表明,酚E2类化合物可有效抵抗FRDA成纤维细胞中氧化应激诱导的细胞死亡,并且可能是治疗和预防FRDA症状的候选药物。

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