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Zebrafish retinal defects induced by ethanol exposure are rescued by retinoic acid and folic acid supplement

机译:维甲酸和叶酸补充剂可以挽救因乙醇暴露引起的斑马鱼视网膜缺陷

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Fetal Alcohol Spectrum Disorder (FASD) is caused by prenatal alcohol exposure, producing craniofacial, sensory, motor, and cognitive defects. FASD is highly prevalent in low socioeconomic populations, which are frequently accompanied by malnutrition. FASD-associated ocular pathologies include microphthalmia, optic nerve hypoplasia, and cataracts. The present study characterizes specific retinal tissue defects, identifies ethanol-sensitive stages during retinal development, and dissects the effect of nutrient supplements, such as retinoic acid (RA) and folic acid (FA) on ethanol-induced retinal defects. Exposure to pathophysiological concentrations of ethanol (during midblastula transition through somitogenesis; 2 -24 h post fertilization [hpf]) altered critical transcription factor expression involved in retinal cell differentiation, and produced severe retinal ganglion cell, photoreceptor, and Muller glial differentiation defects. Ethanol exposure did not alter retinal cell differentiation induction, but increased retinal cell death and proliferation. RA and FA nutrient co-supplementation rescued retinal photoreceptor and ganglion cell differentiation defects. Ethanol exposure during retinal morphogenesis stages (16-24 hpf) produced retinal defects like those seen with ethanol exposure between 2 and 24 hpf. Significantly, during an ethanol-sensitive time window (16-24 hpf), RA co-supplementation moderately rescued these defects, whereas FA co-supplementation showed significant rescue of optic nerve and photoreceptor differentiation defects. Interestingly, RA, but not FA, supplementation after ethanol exposure could reverse ethanol-induced optic nerve and photoreceptor differentiation defects. Our results indicate that various ethanol-sensitive events underlie FASD-associated retinal defects. Nutrient supplements like retinoids and folate were effective in alleviating ethanol-induced retinal defects. (C) 2015 Elsevier Inc. All rights reserved.
机译:胎儿酒精频谱异常(FASD)是由产前酒精暴露引起的,会产生颅面,感觉,运动和认知缺陷。 FASD在社会经济地位低下的人群中普遍存在,并经常伴有营养不良。与FASD相关的眼部疾病包括小眼症,视神经发育不全和白内障。本研究表征了特定的视网膜组织缺陷,确定了视网膜发育过程中对乙醇敏感的阶段,并剖析了诸如视网膜酸(RA)和叶酸(FA)的营养补充剂对乙醇诱导的视网膜缺陷的作用。暴露于乙醇的病理生理浓度(在从胚发生的中胚层过渡;受精后2 -24 h [hpf]期间)改变了涉及视网膜细胞分化的关键转录因子表达,并产生了严重的视网膜神经节细胞,感光细胞和穆勒神经胶质细胞分化缺陷。乙醇暴露不会改变视网膜细胞分化诱导,但会增加视网膜细胞的死亡和增殖。 RA和FA营养素的共同补充可挽救视网膜感光细胞和神经节细胞的分化缺陷。视网膜形态发生阶段(16-24 hpf)期间的乙醇暴露会产生视网膜缺陷,就像乙醇暴露2至24 hpf之间所见的那样。值得注意的是,在乙醇敏感的时间窗口(16-24 hpf)内,RA共补充适度缓解了这些缺陷,而FA共补充则显着缓解了视神经和光感受器分化缺陷。有趣的是,在乙醇暴露后补充RA,但不补充FA,可以逆转乙醇诱导的视神经和感光细胞分化缺陷。我们的结果表明,各种酒精敏感事件是FASD相关视网膜缺损的基础。营养补充剂(如类维生素A和叶酸)可有效缓解乙醇引起的视网膜缺损。 (C)2015 Elsevier Inc.保留所有权利。

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