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性腺激素调节成年雌性大鼠大脑皮质锥体神经元树突棘密度。

Gonadal hormones modulate the dendritic spine densities of primary cortical pyramidal neurons in adult female rat.

机构信息

Department of Veterinary Medicine, College of Veterinary Medicine, National Chung-Hsing University, Taichung, Taiwan.

出版信息

Cereb Cortex. 2009 Nov;19(11):2719-27. doi: 10.1093/cercor/bhp048. Epub 2009 Mar 17.

Abstract

Adult dendritic arbors and spines can be modulated by environment and gonadal hormones that have been reported to affect also those of hippocampal and prefrontal cortical neurons. Here we investigated whether female gonadal hormones and estrous cycle alter the dendrites of primary cortical neurons. We employed intracellular dye injection in semifixed brain slices and 3-dimensional reconstruction to study the dendritic arbors and spines of the major cortical output cells, layer III and V pyramidal neurons, during different stages of the estrous cycle. Dendritic spines of both pyramidal neurons were more numerous during proestrus than estrus and diestrus, whereas dendritic arbors remained unaffected. Ovariohysterectomy (OHE) reduced dendritic spines by 24-30% in 2 weeks, whereas subcutaneous estrogen or progesterone supplement restored it to normal estrous/diestrous level in 14 days; neither treatment affected the dendritic arbors. Reduction of dendritic spines following OHE was associated with decrease of PSD-95 suggesting decrease of excitatory synapses. Thus, fluctuation of gonadal hormones during the female sex cycle is likely to modulate primary cortical functions and loss of gonadal hormones for instance following menopause might compromise cortical function, and the effect could be reversed by exogenous female sex hormones.

摘要

成年树突棘和树突可以通过环境和性腺激素来调节,这些激素已被报道也会影响海马体和前额皮质神经元。在这里,我们研究了女性性腺激素和发情周期是否会改变初级皮质神经元的树突。我们采用半固定脑切片中的细胞内染料注射和 3 维重建,研究了发情周期不同阶段主要皮质输出细胞,即第 III 和第 V 层锥体神经元的树突棘和树突。在发情前期,两种锥体神经元的树突棘比发情期和动情后期都多,而树突则不受影响。卵巢切除术(OHE)在 2 周内使树突棘减少 24-30%,而皮下雌激素或孕激素补充剂在 14 天内将其恢复到正常发情/动情水平;两种治疗都不影响树突。OHE 后树突棘的减少与 PSD-95 的减少有关,这表明兴奋性突触减少。因此,女性性周期中性腺激素的波动可能会调节初级皮质功能,例如绝经后失去性腺激素可能会损害皮质功能,而这种影响可以通过外源性女性性激素逆转。

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