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皮质酮对青春期小鼠浅层背角谷氨酸能和 GABA 能神经元兴奋性的影响。

Effects of Corticosterone on the Excitability of Glutamatergic and GABAergic Neurons of the Adolescent Mouse Superficial Dorsal Horn.

机构信息

Molecular, Cellular and Biochemical Pharmacology Graduate Program, University of Cincinnati College of Medicine, 231 Albert Sabin Way, Cincinnati, OH 45267, USA; Pain Research Center, Department of Anesthesiology, University of Cincinnati Medical Center, 231 Albert Sabin Way, Cincinnati, OH 45267, USA.

Pain Research Center, Department of Anesthesiology, University of Cincinnati Medical Center, 231 Albert Sabin Way, Cincinnati, OH 45267, USA; Neuroscience Graduate Program, University of Cincinnati College of Medicine, 231 Albert Sabin Way, Cincinnati, OH 45267, USA; American Society for Pharmacology and Experimental Therapeutics Summer Research Program, Department of Pharmacology and Systems Physiology, University of Cincinnati Medical Center, 231 Albert Sabin Way, Cincinnati, OH 45267, USA.

出版信息

Neuroscience. 2023 Aug 21;526:290-304. doi: 10.1016/j.neuroscience.2023.07.009. Epub 2023 Jul 10.

Abstract

Stress evokes age-dependent effects on pain sensitivity and commonly occurs during adolescence. However, the mechanisms linking adolescent stress and pain remain poorly understood, in part due to a lack of information regarding how stress hormones modulate the function of nociceptive circuits in the adolescent CNS. Here we investigate the short- and long-term effects of corticosterone (CORT) on the excitability of GABAergic and presumed glutamatergic neurons of the spinal superficial dorsal horn (SDH) in Gad1-GFP mice at postnatal days (P)21-P34. In situ hybridization revealed that glutamatergic SDH neurons expressed significantly higher mRNA levels of both glucocorticoid receptors (GR) and mineralocorticoid receptors (MR) compared to adjacent GABAergic neurons. The incubation of spinal cord slices with CORT (90 min) evoked select long-term changes in spontaneous synaptic transmission across both cell types in a sex-dependent manner, without altering the intrinsic firing of either Gad1-GFP+ or GFP- neurons. Meanwhile, the acute bath application of CORT significantly decreased the frequency and amplitude of miniature excitatory postsynaptic currents (mEPSCs), as well as the frequency of miniature inhibitory postsynaptic currents (mIPSCs), in both cell types leading to a net reduction in the balance of spontaneous excitation vs. inhibition (E:I ratio). This CORT-induced reduction in the E:I ratio was not prevented by selective antagonists of either GR (mifepristone) or MR (eplerenone), although eplerenone blocked the effect on mEPSC amplitude. Collectively, these data suggest that corticosterone modulates synaptic function within the adolescent SDH which could influence the overall excitability and output of the spinal nociceptive network.

摘要

应激会对疼痛敏感性产生年龄依赖性影响,并且通常发生在青春期。然而,将青少年应激与疼痛联系起来的机制仍知之甚少,部分原因是缺乏关于应激激素如何调节青少年中枢神经系统伤害感受回路功能的信息。在这里,我们研究了皮质酮 (CORT) 在 Gad1-GFP 小鼠出生后第 21-34 天(P)对脊髓浅层背角(SDH)中 GABA 能和假定谷氨酸能神经元兴奋性的短期和长期影响。原位杂交显示,与相邻的 GABA 能神经元相比,谷氨酸能 SDH 神经元表达的糖皮质激素受体 (GR) 和盐皮质激素受体 (MR) mRNA 水平明显更高。脊髓切片孵育 CORT(90 分钟)以性别依赖的方式诱发两种细胞类型的自发性突触传递的选择性长期变化,而不改变 Gad1-GFP+或 GFP-神经元的固有放电。同时,CORT 的急性浴应用显著降低了两种细胞类型中小型兴奋性突触后电流 (mEPSC) 的频率和幅度,以及小型抑制性突触后电流 (mIPSC) 的频率,导致自发性兴奋与抑制之间的平衡(E:I 比)净减少。这种 CORT 诱导的 E:I 比降低不能被 GR(米非司酮)或 MR(依普利酮)的选择性拮抗剂预防,尽管依普利酮阻断了对 mEPSC 幅度的影响。总的来说,这些数据表明皮质酮调节青春期 SDH 内的突触功能,这可能会影响脊髓伤害感受网络的整体兴奋性和输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f61/10530204/e0654bcb327e/nihms-1921429-f0001.jpg

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