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MK-801对大鼠初级传入神经元和纤维的影响。

Effects of MK-801 on rat primary afferent neurons and fibers.

作者信息

McNeill D L, Sherburn E W, Galbraith J M, Klein C M, Westermeyer M M, Pilcher B K, Shew R L, Papka R E

机构信息

Department of Anatomical Sciences, University of Oklahoma, Oklahoma City 73190.

出版信息

Brain Res Bull. 1991 Jul;27(1):41-5. doi: 10.1016/0361-9230(91)90278-r.

Abstract

Recent evidence suggests that glutamate and its N-methyl-D-aspartate (NMDA) receptor may participate in regulating neurite morphology and peptide expression. A previous study from this laboratory showed that treatment with the NMDA receptor antagonist, MK-801, induced an apparent increase in the density of calcitonin gene-related peptide (CGRP)-immunoreactive primary afferent fibers in the dorsal spinal cord of the rat. The present study was undertaken to extend this work by: 1) quantifying the MK-801-induced increase in CGRP immunostaining in the dorsal grey commissure/medial dorsal horn region and 2) examining the effect of MK-801 on the number of CGRP-immunoreactive primary afferent cell bodies in lumbar dorsal root ganglia. Following 7 days of MK-801 treatment, a significant increase (p less than 0.001) in CGRP immunostaining was observed in the dorsal grey commissure/medial dorsal horn. However, after MK-801 treatment, no significant difference was noted in the numbers of CGRP-immunoreactive primary afferent cell bodies in dorsal root ganglia. These data suggest that MK-801 produces significant alterations in the intraspinal projection of CGRP-immunoreactive fibers without inducing immunocytochemically detectable CGRP within a new population of primary afferent neurons.

摘要

最近的证据表明,谷氨酸及其N-甲基-D-天冬氨酸(NMDA)受体可能参与调节神经突形态和肽表达。本实验室先前的一项研究表明,用NMDA受体拮抗剂MK-801处理可使大鼠脊髓背角降钙素基因相关肽(CGRP)免疫反应性初级传入纤维的密度明显增加。本研究旨在通过以下方式扩展这项工作:1)量化MK-801诱导的背侧灰质连合/内侧背角区域CGRP免疫染色的增加,以及2)检查MK-801对腰段背根神经节中CGRP免疫反应性初级传入细胞体数量的影响。在MK-801处理7天后,在背侧灰质连合/内侧背角观察到CGRP免疫染色显著增加(p<0.001)。然而,MK-801处理后,背根神经节中CGRP免疫反应性初级传入细胞体的数量没有显著差异。这些数据表明,MK-801在不诱导新的初级传入神经元群体内免疫细胞化学可检测的CGRP的情况下,对CGRP免疫反应性纤维的脊髓内投射产生显著改变。

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