首页> 外文期刊>Journal of neuroendocrinology >Sex differences and the roles of sex steroids in apoptosis of sexually dimorphic nuclei of the preoptic area in postnatal rats.
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Sex differences and the roles of sex steroids in apoptosis of sexually dimorphic nuclei of the preoptic area in postnatal rats.

机译:产后大鼠视前区性二形核的性别差异和性类固醇的作用。

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The brain contains several sexually dimorphic nuclei that exhibit sex differences with respect to cell number. It is likely that the control of cell number by apoptotic cell death in the developing brain contributes to creating sex differences in cell number in sexually dimorphic nuclei, although the mechanisms responsible for this have not been determined completely. The milieu of sex steroids in the developing brain affects sexual differentiation in the brain. The preoptic region of rats has two sexually dimorphic nuclei. The sexually dimorphic nucleus of the preoptic area (SDN-POA) has more neurones in males, whereas the anteroventral periventricular nucleus (AVPV) has a higher cell density in females. Sex differences in apoptotic cell number arise in the SDN-POA and AVPV of rats in the early postnatal period, and an inverse correlation exists between sex differences in apoptotic cell number and the number of living cells in the mature period. The SDN-POA of postnatal male rats exhibits a higher expression of anti-apoptotic Bcl-2 and lower expression of pro-apoptotic Bax compared to that in females and, as a potential result, apoptotic cell death via caspase-3 activation more frequently occurs in the SDN-POA of females. The patterns of expression of Bcl-2 and Bax in the SDN-POA of postnatal female rats are changed to male-typical ones by treatment with oestrogen, which is normally synthesised from testicular androgen and affects the developing brain in males. In the AVPV of postnatal rats, apoptotic regulation also differs between the sexes, although Bcl-2 expression is increased and Bax expression and caspase-3 activity are decreased in females. The mechanisms of apoptosis possibly contributing to the creation of sex differences in cell number and the roles of sex steroids in apoptosis are discussed.
机译:大脑包含几个性二态核,这些核在细胞数量方面表现出性别差异。尽管尚未完全确定造成这种情况的机制,但发育中的大脑中凋亡细胞死亡对细胞数目的控制可能有助于在性二形核中产生细胞数目的性别差异。发育中的大脑中的类固醇环境影响大脑中的性别分化。大鼠的视前区具有两个性二形核。视前区的性二态核(SDN-POA)在男性中具有更多的神经元,而在腹侧前脑室周围核(AVPV)中具有更高的细胞密度。出生后早期大鼠的SDN-POA和AVPV中存在凋亡细胞数的性别差异,成熟期凋亡细胞数的性别差异与活细胞数之间存在反相关关系。与雌性大鼠相比,产后雄性大鼠的SDN-POA表现出更高的抗凋亡Bcl-2表达和更低的促凋亡Bax表达,因此,潜在的结果是,通过caspase-3激活导致凋亡的细胞死亡更为频繁。在女性的SDN-POA中。雌激素处理后,雌性大鼠SDN-POA中Bcl-2和Bax的表达模式由雌激素处理改变为雄性典型,雌激素通常由睾丸雄激素合成并影响雄性大脑发育。在产后大鼠的AVPV中,尽管雌性中Bcl-2表达增加并且Bax表达和caspase-3活性降低,但性别之间的凋亡调控也不同。讨论了可能导致细胞数量性别差异的凋亡机制以及性类固醇在凋亡中的作用。

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