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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Sex differences in hippocampal slice excitability: role of testosterone.
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Sex differences in hippocampal slice excitability: role of testosterone.

机译:海马切片兴奋性的性别差异:睾丸激素的作用。

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In vivo fluctuations in gonadal hormones alter hippocampal excitability and modulate both physiological and pathological hippocampal processes. To assess hormonal effects on excitability within a functional hippocampal circuit, extracellular CA1 field responses were compared in slices from intact male, intact female, orchidectomized male, and ovariectomized female rats. Secondly, the effects of in vitro applications of 17-beta estradiol, progesterone, or testosterone on baseline excitability of slices from gonadectomized rats were assessed versus pre-hormone baseline measures. Finally, using the in vitro kindling model of slice epileptogenesis, steroid hormone effects on interictal-like activity were also examined. Significant sex differences in excitatory postsynaptic potential amplitude were observed, with slices from males having larger excitatory postsynaptic potential amplitudes than those from females. Gonadectomy significantly decreased excitatory postsynaptic potential amplitude in slices from male rats. Slices from gonadectomized male and female rats also showed a decreased dendritic excitatory postsynaptic potential slope relative to slices from intact male and females rats. In vitro application of testosterone significantly increased excitatory postsynaptic potential amplitudes in slices from both orchidectomized males and ovariectomized females and the population spike amplitude of slices from ovariectomized females. Following in vitro kindling, slices from intact males showed greater spontaneous burst rates than slices from intact females, further suggesting an excitatory effect of testosterone.These results suggest: (1) a sex difference in the level of baseline excitability between slices from intact males and females as measured by excitatory postsynaptic potential amplitudes, (2) testosterone has excitatory effects on baseline physiology and kindled hippocampal responses, and (3) slices from males show a greater level of excitability than those from females in the in vitro kindling model.
机译:体内性腺激素的波动会改变海马兴奋性并调节海马生理和病理过程。为了评估激素对功能性海马回路内兴奋性的影响,在完整雄性,完整雌性,经睾丸切除的雄性大鼠和经卵巢切除的雌性大鼠的切片中比较了细胞外CA1场响应。其次,与激素前基线测量相比,评估了在体外应用17-β雌二醇,孕酮或睾丸激素对从性腺切除的大鼠切片的基线兴奋性的影响。最后,使用切片癫痫发生的体外点燃模型,还研究了类固醇激素对间质样活性的影响。观察到兴奋性突触后电位幅度存在明显的性别差异,男性的切片比女性的切片具有更大的兴奋性突触后电位振幅。角膜切除术显着降低了雄性大鼠切片中兴奋性突触后电位的幅度。相对于完整的雄性和雌性大鼠的切片,来自经淋巴切除的雄性和雌性大鼠的切片还显示出降低的树突兴奋性突触后电位斜率。睾丸激素的体外应用显着增加了切除睾丸的雄性和切除卵巢的雌性的切片中的兴奋性突触后电位幅度,以及切除卵巢的雌性切片的种群突增幅度。体外点燃后,完整雄性的切片比完整雌性的切片显示出更高的自发爆裂率,这进一步表明睾丸激素具有兴奋性作用。这些结果表明:(1)完整雄性和正常雄性切片之间的基线兴奋性水平存在性别差异。用兴奋性突触后电位振幅测量的雌性,(2)睾丸激素对基线生理和点燃的海马反应有兴奋作用,(3)在体外点燃模型中,雄性切片比雌性切片具有更高的兴奋性。

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