Guo Yuan, Yao Fan-Rong, Cao Dong-Yuan, Pickar Joel G, Zhang Qi, Wang Hui-Sheng, Zhao Yan
Department of Physiology and Pathophysiology, Xi'an Jiaotong University School of Medicine, Xi'an, Shaanxi 710061, PR China.
Brain Res. 2008 Sep 10;1229:61-71. doi: 10.1016/j.brainres.2008.06.111. Epub 2008 Jul 8.
To investigate the effect of somatostatin on the cross-excitation between adjacent primary afferent terminals in the rats, we recorded single unit activity from distal cut ends of dorsal cutaneous branches of the T10 and T12 spinal nerves in response to antidromic stimulation of the distal cut end of the T11 dorsal root in the presence and absence of somatostatin and its receptor antagonist applied to the receptive field of the recorded nerve. Afferent fibers were classified based upon their conduction velocity. Mean mechanical thresholds decreased and spontaneous discharge rates increased significantly in C and Adelta but not Abeta fibers of the T10 and T12 spinal nerves in both male and female rats following antidromic electrical stimulation (ADES) of the dorsal root from adjacent spinal segment (DRASS) indicating cross-excitation of thin fiber afferents. The cross-excitation was not significantly different between male and female rats. Microinjection of somatostatin into the receptive field of recorded units inhibited the cross-excitation. This inhibitory effect, in turn, was reversed by the somatostation receptor antagonist cyclo-somatostatin (c-SOM). Application of c-SOM alone followed by ADES of DRASS significantly decreased the mechanical thresholds and increased the discharge rates of C and Adelta fibers, indicating that endogenous release of somatostatin plays a tonic inhibitory role on the cross-excitation between peripheral nerves. These results suggest that somatostatin could inhibit the cross-excitation involved in peripheral hyperalgesia and have a peripheral analgesic effect.
为了研究生长抑素对大鼠相邻初级传入神经末梢之间交叉兴奋的影响,我们在存在和不存在生长抑素及其受体拮抗剂的情况下,记录了T10和T12脊神经背侧皮支远端切断端的单单位活动,这些拮抗剂被应用于记录神经的感受野,以响应T11背根远端切断端的逆向刺激。传入纤维根据其传导速度进行分类。在对相邻脊髓节段的背根进行逆向电刺激(ADES)后,雄性和雌性大鼠T10和T12脊神经的C纤维和Aδ纤维的平均机械阈值降低,自发放电率显著增加,但Aβ纤维没有,这表明细纤维传入神经存在交叉兴奋。雄性和雌性大鼠之间的交叉兴奋没有显著差异。向记录单位的感受野微量注射生长抑素可抑制交叉兴奋。反过来,这种抑制作用被生长抑素受体拮抗剂环生长抑素(c-SOM)逆转。单独应用c-SOM后再进行DRASS的ADES,可显著降低C纤维和Aδ纤维的机械阈值并增加其放电率,这表明生长抑素的内源性释放对周围神经之间的交叉兴奋起紧张性抑制作用。这些结果表明,生长抑素可以抑制外周痛觉过敏中涉及的交叉兴奋,并具有外周镇痛作用。