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鼻内和外周给药后大鼠和小鼠的大脑和血浆中催产素增加。

Increased brain and plasma oxytocin after nasal and peripheral administration in rats and mice.

机构信息

Department of Behavioral and Molecular Neuroscience, University of Regensburg, 93053 Regensburg, Germany.

出版信息

Psychoneuroendocrinology. 2013 Oct;38(10):1985-93. doi: 10.1016/j.psyneuen.2013.03.003. Epub 2013 Apr 8.

Abstract

The possibility to improve socio-emotional behaviors in humans by intranasal administration of synthetic oxytocin (OXT) attracts increasing attention, but its uptake into the brain has never been demonstrated so far. Here we used simultaneous microdialysis in both the dorsal hippocampus and amygdala of rats and mice in combination with concomitant blood sampling from the jugular vein to study the dynamics of the neuropeptide in brain extracellular fluid and plasma after its nasal administration. OXT was found to be increased in microdialysates from both the hippocampus and amygdala with peak levels occurring 30-60min after nasal administration. Despite a similar temporal profile of OXT concentrations in plasma, peripheral OXT is unlikely to contribute to dialysate OXT as calculated from in vitro recovery data, indicating a central route of transport. Moreover, intraperitoneal administration of synthetic OXT in identical amounts caused rapid peak levels in brain dialysates and plasma during the first 30min after treatment and a subsequent return toward baseline. While the precise route(s) of central transport remain to be elucidated, our data provide the first evidence that nasally applied OXT indeed reaches behaviorally relevant brain areas, and this uptake is paralleled by changes in plasma OXT.

摘要

通过鼻腔内给予合成催产素(OXT)来改善人类的社会情感行为的可能性引起了越来越多的关注,但迄今为止,其进入大脑的情况尚未得到证实。在这里,我们使用大鼠和小鼠背侧海马体和杏仁核的同时微透析,并结合颈静脉采血,研究了鼻内给药后神经肽在脑细胞外液和血浆中的动力学。发现 OXT 在海马体和杏仁核的微透析液中均增加,给药后 30-60 分钟达到峰值。尽管血浆中 OXT 浓度具有相似的时间分布,但根据体外回收数据计算,外周 OXT 不太可能对透析液 OXT 有贡献,这表明存在中枢转运途径。此外,以相同剂量腹腔内给予合成 OXT 在治疗后 30 分钟内导致脑透析液和血浆中的快速峰值水平,并随后恢复到基线。虽然中枢转运的确切途径仍有待阐明,但我们的数据首次提供了鼻内给予的 OXT 确实到达与行为相关的脑区的证据,并且这种摄取与血浆 OXT 的变化平行。

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