A SEROTONIN SYNTHESIS INHIBITOR, P-CHLOROPHENYLALANINE REDUCES THE HEAT-SHOCK PROTEIN RESPONSE FOLLOWING TRAUMA TO THE SPINAL-CORD - AN IMMUNOHISTOCHEMICAL AND ULTRASTRUCTURAL-STUDY IN THE RAT

Citation
Hs. Sharma et al., A SEROTONIN SYNTHESIS INHIBITOR, P-CHLOROPHENYLALANINE REDUCES THE HEAT-SHOCK PROTEIN RESPONSE FOLLOWING TRAUMA TO THE SPINAL-CORD - AN IMMUNOHISTOCHEMICAL AND ULTRASTRUCTURAL-STUDY IN THE RAT, Neuroscience research, 21(3), 1995, pp. 241-249
Citations number
44
Categorie Soggetti
Neurosciences
Journal title
ISSN journal
01680102
Volume
21
Issue
3
Year of publication
1995
Pages
241 - 249
Database
ISI
SICI code
0168-0102(1995)21:3<241:ASSIPR>2.0.ZU;2-3
Abstract
The influence of the serotonin synthesis inhibitor, p-CPA on the expre ssion of the heat shock protein (70 kDa), which occurs around an injur y to the rat spinal cord, was examined by immunohistochemistry. A long itudinal incision was made into the right dorsal horn at the T10-11 le vel. Five hours later samples were removed from the T9 and T12 segment s. Samples from untreated traumatised animals showed signs of edema an d many distorted neurons, particularly in the ipsilateral grey matter. Neurons of the same regions showed a profound increase in HSP-70 immu nostaining compared with intact controls. At ultrastructural level, th e immunoreactivity was detected in neuronal cytoplasm attached to the surface of organelles including endoplasmic reticulum, in the nucleus and in dendrites. Other groups of rats were given p-CPA before injury to reduce the synthesis of serotonin and to minimise its stores in the cord. The HSP-immunostaining in neurons of the T9 and T12 segments of the spinal cord was virtually lacking in the drug treated animals. Th e signs of edema and the structural changes of these segments were mar kedly reduced. The results show that inhibition of serotonin synthesis prior to the traumatic insult has an inhibitory influence on HSP resp onse occurring in neurons around the site of injury to the spinal cord , not reported earlier.