Chung B S, Sheen K, Chung J M
Marine Biomedical Institute, University of Texas Medical Branch, Galveston 77550.
Brain Res. 1991 Jun 28;552(2):311-9. doi: 10.1016/0006-8993(91)90097-f.
Sectioning the sciatic nerve of experimental animals at the neonatal stage triggers growth of afferent fibers in the ventral root. The present study examined the possibility that the regenerating fiber terminals grow into the spinal cord. The sciatic nerve on one side was cut in neonatal rats. After the rats were fully grown, either an electrophysiological or a histochemical study was performed. The results of electrophysiological experiments showed that stimulation of certain loci in the L5 spinal cord evoked antidromic potentials in the L5 ventral root with a long latency. Various evidence suggests that the long latency potentials are due to activation of C fibers. These C-fiber potentials were on average bigger and were elicited from more numerous loci on the side ipsilateral to the sciatic nerve lesion than on the contralateral side. Furthermore, stimulation of the spinal cord of unoperated normal rats rarely evoked such potentials. For the histochemical study, horseradish peroxidase (HRP) was injected into the L5 spinal cord after cutting the L4-L6 dorsal roots. A lot more cells in the L5 dorsal root ganglion (DRG) on the side ipsilateral to the sciatic nerve lesion were labeled with HRP transported retrogradely through the L5 ventral root than on the contralateral side. Control experiments showed that few DRG cells are labeled with HRP in normal unoperated rats. The combined results of the electrophysiological and histochemical studies suggest invasion of ventral root afferents into the spinal cord, given enough postoperative time. It is not known whether or not these terminals make functional synaptic contacts in the spinal cord.
在新生期切断实验动物的坐骨神经会引发传入纤维在腹根中的生长。本研究探讨了再生纤维终末长入脊髓的可能性。在新生大鼠中切断一侧坐骨神经。大鼠成年后,进行了电生理或组织化学研究。电生理实验结果表明,刺激L5脊髓的某些位点会在L5腹根中诱发潜伏期较长的逆向电位。各种证据表明,长潜伏期电位是由于C纤维的激活所致。这些C纤维电位平均更大,且在坐骨神经损伤同侧比在对侧从更多的位点诱发。此外,刺激未手术的正常大鼠的脊髓很少诱发这种电位。对于组织化学研究,在切断L4 - L6背根后,将辣根过氧化物酶(HRP)注入L5脊髓。通过L