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Prevention of Treacher Collins syndrome craniofacial anomalies in mouse models via maternal antioxidant supplementation

机译:通过补充母体抗氧化剂预防小鼠模型中的Treacher Collins综合征颅面异常

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Craniofacial anomalies account for approximately one-third of all birth defects and are a significant cause of infant mortality. Since the majority of the bones, cartilage and connective tissues that comprise the head and face are derived from a multipotent migratory progenitor cell population called the neural crest, craniofacial disorders are typically attributed to defects in neural crest cell development. Treacher Collins syndrome (TCS) is a disorder of craniofacial development and although TCS arises primarily through autosomal dominant mutations in TCOF1 , no clear genotype–phenotype correlation has been documented. Here we show that Tcof1 haploinsufficiency results in oxidative stress-induced DNA damage and neuroepithelial cell death. Consistent with this discovery, maternal treatment with antioxidants minimizes cell death in the neuroepithelium and substantially ameliorates or prevents the pathogenesis of craniofacial anomalies in Tcof1 +/? mice. Thus maternal antioxidant dietary supplementation may provide an avenue for protection against the pathogenesis of TCS and similar neurocristopathies.
机译:颅面异常约占所有出生缺陷的三分之一,是婴儿死亡的重要原因。由于构成头部和面部的大部分骨骼,软骨和结缔组织均来自称为神经c的多能迁徙祖细胞群,因此颅面疾病通常归因于神经c细胞发育的缺陷。 Treacher Collins综合征(TCS)是颅面发育的疾病,尽管TCS主要通过TCOF1中的常染色体显性突变产生,但尚无明确的基因型与表型相关性的文献报道。在这里,我们显示Tcof1单倍体不足导致氧化应激诱导的DNA损伤和神经上皮细胞死亡。与此发现一致的是,用抗氧化剂进行的孕产妇治疗可最大程度地减少神经上皮细胞的死亡,并显着改善或预防Tcof1 + /?小鼠颅面异常的发病机理。因此,母体抗氧化剂饮食补充剂可能为预防TCS和类似神经足病的发病机理提供了途径。

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