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5α-还原神经甾体的产生受发育调控,并塑造脊髓Ⅱ层中的GABA(A)微小抑制性突触后电流。

Production of 5alpha-reduced neurosteroids is developmentally regulated and shapes GABA(A) miniature IPSCs in lamina II of the spinal cord.

作者信息

Keller A Florence, Breton Jean-Didier, Schlichter Rémy, Poisbeau Pierrick

机构信息

Laboratoire de Neurophysiologie Cellulaire et Intégrée, Université Louis Pasteur/Centre National de la Recherche Scientifique, Unité Mixte de Recherche 7519, F-67084 Strasbourg, France.

出版信息

J Neurosci. 2004 Jan 28;24(4):907-15. doi: 10.1523/JNEUROSCI.4642-03.2004.

Abstract

In lamina II of the spinal dorsal horn, synaptic inhibition mediated by ionotropic GABA(A) and glycine receptors contributes to the integration of peripheral nociceptive messages. Whole-cell patch-clamp recordings were performed from lamina II neurons in spinal cord slices to study the properties of miniature IPSCs (mIPSCs) mediated by activation of GABA(A) and glycine receptors in immature (<30 d) and adult rats. Blockade of neurosteroidogenesis by 1-(2-chlorophenyl)-N-methyl-N-(1-methylpropyl)-3-isoquinoline carboxamide (PK11195), an inhibitor of the peripheral benzodiazepine receptor (PBR), or finasteride, which blocks 5alpha-reductase, accelerated the decay kinetics of GABA(A) receptor-mediated mIPSCs in immature, but not in adult animals. Glycine receptor-mediated mIPSCs remained unaffected under these conditions. These results suggest the presence of a tonic production of 5alpha-reduced neurosteroids in young rats that confers slow decay kinetics to GABA(A) mIPSCs. At all of the ages, selective stimulation of PBR by diazepam in the presence of flumazenil prolonged GABA(A) mIPSCs in a PK11195- and finasteride-sensitive manner. This condition also increased the proportion of mixed GABA(A)/glycine mIPSCs in the immature animals and led to the reappearance of mixed GABA(A)/glycine mIPSCs in the adult. Our results might point to an original mechanism by which the strength of synaptic inhibition can be adjusted locally in the CNS during development and under physiological and/or pathological conditions by controlling the synthesis of endogenous 5alpha-reduced neurosteroids.

摘要

在脊髓背角的Ⅱ层,离子型γ-氨基丁酸A(GABA(A))受体和甘氨酸受体介导的突触抑制作用有助于外周伤害性信息的整合。采用全细胞膜片钳记录技术,对脊髓切片中Ⅱ层神经元进行记录,以研究未成熟(<30天)和成年大鼠中由GABA(A)受体和甘氨酸受体激活介导的微小抑制性突触后电流(mIPSCs)的特性。外周苯二氮䓬受体(PBR)抑制剂1-(2-氯苯基)-N-甲基-N-(1-甲基丙基)-3-异喹啉甲酰胺(PK11195)或阻断5α-还原酶的非那雄胺可抑制神经甾体生成,加速未成熟动物而非成年动物中GABA(A)受体介导的mIPSCs的衰减动力学。在这些条件下,甘氨酸受体介导的mIPSCs不受影响。这些结果表明,幼鼠中存在5α-还原神经甾体的持续性产生,这赋予了GABA(A) mIPSCs缓慢的衰减动力学。在所有年龄段,地西泮在氟马西尼存在下对PBR的选择性刺激以PK11195和非那雄胺敏感的方式延长了GABA(A) mIPSCs。这种情况还增加了未成熟动物中混合GABA(A)/甘氨酸mIPSCs的比例,并导致成年动物中混合GABA(A)/甘氨酸mIPSCs再次出现。我们的结果可能指向一种原始机制,通过该机制,在发育过程中以及生理和/或病理条件下,通过控制内源性5α-还原神经甾体的合成,可以在中枢神经系统中局部调节突触抑制的强度。

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