INRA, UMR85 Physiologie de la Reproduction et des Comportements, F-37380 Nouzilly, France.
Horm Behav. 2010 Apr;57(4-5):434-40. doi: 10.1016/j.yhbeh.2010.01.013. Epub 2010 Jan 28.
In rodent species, sexual differentiation of the brain for many reproductive processes depends largely on estradiol. This was recently confirmed again by using the alpha-fetoprotein knockout (AFP-KO) mouse model, which lacks the protective actions of alpha-fetoprotein against maternal estradiol and as a result represents a good model to determine the contribution of prenatal estradiol to the sexual differentiation of the brain and behavior. Female AFP-KO mice were defeminized and masculinized with regard to their neuroendocrine responses as well as sexual behavior. Since parental behavior is also strongly sexually differentiated in mice, we used the AFP-KO mouse model here to ask whether parental responses are differentiated prenatally under the influence of estradiol. It was found that AFP-KO females showed longer latencies to retrieve pups to the nest and also exhibited lower levels of crouching over the pups in the nest in comparison to WT females. In fact, they resembled males (WT and AFP-KO). Other measures of maternal behavior, for example the incidence of infanticide, tended to be higher in AFP-KO females than in WT females but this increase failed to reach statistical significance. The deficits observed in parental behavior of AFP-KO females could not be explained by any changes in olfactory function, novelty recognition or anxiety. Thus our results suggest that prenatal estradiol defeminizes the parental brain in mice.
在啮齿类动物中,许多生殖过程的大脑性别分化在很大程度上依赖于雌二醇。最近,使用缺乏甲胎蛋白(AFP)对母体雌二醇的保护作用的 AFP 敲除(AFP-KO)小鼠模型再次证实了这一点,该模型是确定产前雌二醇对大脑和行为性别分化的贡献的良好模型。雌性 AFP-KO 小鼠在神经内分泌反应和性行为方面表现出去女性化和男性化。由于亲代行为在小鼠中也强烈分化,我们在这里使用 AFP-KO 小鼠模型来询问在雌二醇的影响下,产前是否存在亲代反应的分化。结果发现,与 WT 雌性相比,AFP-KO 雌性将幼崽取回巢穴的潜伏期更长,并且在巢穴中对幼崽的蹲伏程度也较低。事实上,它们类似于雄性(WT 和 AFP-KO)。其他母性行为的衡量标准,例如杀婴的发生率,在 AFP-KO 雌性中往往高于 WT 雌性,但这种增加并未达到统计学意义。AFP-KO 雌性亲代行为中观察到的缺陷不能用嗅觉功能、新奇识别或焦虑的任何变化来解释。因此,我们的研究结果表明,产前雌二醇使小鼠的亲代大脑去女性化。