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选择性繁殖的应激反应极端小鼠海马内皮质酮反应:一项微透析研究。

Intrahippocampal corticosterone response in mice selectively bred for extremes in stress reactivity: a microdialysis study.

机构信息

Max Planck Institute of Psychiatry, Munich, Germany.

出版信息

J Neuroendocrinol. 2010 Nov;22(11):1187-97. doi: 10.1111/j.1365-2826.2010.02062.x.

Abstract

The hypothalamic-pituitary-adrenocortical (HPA) axis is one of the major stress hormone systems, and glucocorticoids (GCs) play a pivotal role in homeostatic processes throughout the body and brain. A dysregulation of the HPA axis, leading to an aberrant secretion of GCs, is associated with affective disorders such as major depression. In the present study, three mouse lines selectively bred for high (HR), intermediate (IR) or low (LR) stress reactivity were used to elucidate the temporal dynamics of intrahippocampal corticosterone (CORT) in response to a standardised stressor. In particular, we addressed the question of whether the distinct differences in HPA axis reactivity between the three mouse lines, as determined by plasma CORT measurements, are present in the central nervous system as well, and if the respective endophenotype is brought about by alterations in blood-brain barrier (BBB) functionality. We applied in vivo microdialysis in the hippocampus, demonstrating that the concentrations of CORT released from the adrenals in response to restraint stress are not only distinctly different in the plasma, but can also be found in the central nervous system, although the differences between the three mouse lines were attenuated, particularly between IR and LR animals. Additionally, a time lag of approximately 60 min was observed in all three lines regarding intrahippocampal peak concentrations of CORT after the onset of the stressor. Furthermore, we showed that the penetration and clearance of CORT in the hippocampal tissue was not affected by differences in BBB functionality because the multidrug resistance 1 P-glycoprotein (Mdr1 Pgp) was equally expressed in HR, IR and LR mice. Furthermore, we could exclude surgical damage of the BBB because peripherally-injected dexamethasone, which is a high affinity substrate for the Mdr1 Pgp and therefore restricted from entering the brain, could only be detected in the plasma and was virtually absent in the brain.

摘要

下丘脑-垂体-肾上腺皮质(HPA)轴是主要的应激激素系统之一,糖皮质激素(GCs)在全身和大脑的稳态过程中发挥关键作用。HPA 轴的失调导致 GCs 的异常分泌,与情感障碍如重度抑郁症有关。在本研究中,使用三种选择性繁殖的小鼠品系,高(HR)、中(IR)或低(LR)应激反应,阐明了海马皮质酮(CORT)对内源性应激原的反应的时间动态。特别是,我们提出了这样一个问题,即在三种小鼠品系之间,由血浆 CORT 测量确定的 HPA 轴反应的明显差异是否也存在于中枢神经系统中,以及各自的表型是否是由血脑屏障(BBB)功能改变引起的。我们在海马体中应用了活体微透析,证明了束缚应激引起的肾上腺释放的 CORT 浓度不仅在血浆中明显不同,而且可以在中枢神经系统中发现,尽管三种小鼠品系之间的差异减弱了,特别是在 IR 和 LR 动物之间。此外,在所有三种品系中,在应激源开始后大约 60 分钟,海马体中 CORT 的内峰值浓度才出现时间滞后。此外,我们表明,由于多药耐药蛋白 1 P-糖蛋白(Mdr1 Pgp)在 HR、IR 和 LR 小鼠中表达水平相同,因此 BBB 功能的差异不会影响 CORT 在海马组织中的渗透和清除。此外,我们可以排除 BBB 的手术损伤,因为外周注射的地塞米松是 Mdr1 Pgp 的高亲和力底物,因此被限制进入大脑,只能在血浆中检测到,而在大脑中几乎检测不到。

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