首页> 美国卫生研究院文献>Journal of Medical Genetics >Female predisposition to cranial neural tube defects is not because of a difference between the sexes in the rate of embryonic growth or development during neurulation.
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Female predisposition to cranial neural tube defects is not because of a difference between the sexes in the rate of embryonic growth or development during neurulation.

机译:女性易患颅神经管缺损不是因为性别在哺乳期间胚胎生长或发育的速度不同。

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摘要

The susceptibility of females to anencephaly is well established and has been suggested to result from a slower rate of growth and development of female embryos during cranial neurulation. We have tested this hypothesis by measuring the rates of growth and development, both in utero and in vitro, of male and female embryos of the curly tail (ct) mutant mouse strain, in which cranial neural tube defects occur primarily in females. Embryonic growth was assessed by increase in protein content, while development progression was judged from increase in somite number and morphological score. Embryos were sexed by use of the polymerase chain reaction to amplify a DNA sequence specific to the Y chromosome, and by sex chromatin analysis. We find that, during neurulation (between 8.5 and 10.5 days of gestation), males are advanced in growth and development relative to their female litter mates, but that the rates of growth and development do not differ between the sexes during this period. We conclude that rate of embryonic growth and development is unlikely to determine susceptibility to cranial neural tube defects. It seems more likely that male and female embryos differ in some specific aspect(s) of the neurulation process that increases the susceptibility of females to development of anencephaly.
机译:雌性对无脑症的敏感性已得到很好的确立,并被认为是由于颅内营养过程中雌性胚胎的生长和发育速度减慢所致。我们通过测量子宫和体外的卷曲尾巴(ct)突变小鼠品系的雄性和雌性胚胎的生长和发育速率,检验了这一假设,其中颅神经管缺陷主要发生在雌性中。胚胎的生长通过蛋白质含量的增加来评估,而发育进程则通过体节数和形态评分的增加来判断。通过使用聚合酶链反应来扩增对Y染色体特异的DNA序列,并通过性染色质分析来对胚胎进行性别鉴定。我们发现,在哺乳期间(妊娠8.5至10.5天之间),雄性相对于雌性同窝伴侣的生长和发育先进,但是在此期间,雌雄之间的生长和发育速率没有差异。我们得出的结论是,胚胎生长和发育的速度不太可能确定对颅神经管缺损的敏感性。雄性和雌性胚胎在神经过程的某些特定方面似乎更有可能有所不同,从而增加了雌性对无脑症发展的敏感性。

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