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在雄性鸣禽中,特定区域的神经皮质酮模式与血浆中的不同。

Region-specific neural corticosterone patterns differ from plasma in a male songbird.

作者信息

Rensel M A, Comito D, Kosarussavadi S, Schlinger B A

机构信息

Department of Integrative Biology and Physiology (M.A.R., D.C., S.K., B.A.S.) and Laboratory of Neuroendocrinology (B.A.S.), Brain Research Institute, University of California Los Angeles, Los Angeles, California 90095.

出版信息

Endocrinology. 2014 Sep;155(9):3572-81. doi: 10.1210/en.2014-1231. Epub 2014 Jun 10.

Abstract

The adrenal hormone corticosterone (CORT) acts on brain to mediate physiology and behavior. In songbirds, behavioral effects of CORT vary across species, environmental conditions, and life history stage, with several mechanisms proposed to account for these divergent results. Although blood CORT levels are well characterized, few studies measure CORT within the brain itself. Here we used in vivo microdialysis to measure CORT in two regions of the zebra finch brain, the hippocampus (HP) and caudal nidopallium (cNp). Our results show that we can successfully measure physiological levels of CORT in brain within 15- to 30-minute intervals of dialysate collection. Moreover, we found that levels in the cNp were generally lower than levels in the HP. Surprisingly, whereas plasma CORT levels increased in response to a standard stressor, no stress-induced surge was detected in the HP or cNp. In addition, although a diel CORT rhythm was observed in plasma, the rhythm in brain was attenuated and only observed when levels were integrated over a 4-hour time period. Regional differences in brain CORT levels were reflected in local mRNA expression levels of the CORT-inactivating enzyme 11β-hydroxysteroid dehydrogenase type 2 with levels elevated in the cNp relative to the HP. Region-specific CORT metabolism may therefore play a role in buffering the brain from CORT fluctuations.

摘要

肾上腺激素皮质酮(CORT)作用于大脑以调节生理和行为。在鸣禽中,CORT的行为效应因物种、环境条件和生活史阶段而异,人们提出了几种机制来解释这些不同的结果。尽管血液中的CORT水平已得到充分表征,但很少有研究测量大脑自身内部的CORT。在这里,我们使用体内微透析技术来测量斑胸草雀大脑两个区域——海马体(HP)和尾侧巢皮质(cNp)中的CORT。我们的结果表明,我们能够在收集透析液的15至30分钟间隔内成功测量大脑中CORT的生理水平。此外,我们发现cNp中的水平通常低于HP中的水平。令人惊讶的是,虽然血浆CORT水平在标准应激源作用下会升高,但在HP或cNp中未检测到应激诱导的激增。此外,尽管在血浆中观察到了昼夜CORT节律,但大脑中的节律减弱,并且只有在将水平整合到4小时时间段时才观察到。大脑CORT水平的区域差异反映在CORT失活酶2型11β-羟基类固醇脱氢酶的局部mRNA表达水平上,相对于HP,cNp中的水平升高。因此,区域特异性CORT代谢可能在缓冲大脑免受CORT波动影响方面发挥作用。

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