Transmission of Chronic Nociception by Spinal Neurons Expressing the Substance P Receptor
- 19 November 1999
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 286 (5444), 1558-1561
- https://doi.org/10.1126/science.286.5444.1558
Abstract
Substance P receptor (SPR)–expressing spinal neurons were ablated with the selective cytotoxin substance P–saporin. Loss of these neurons resulted in a reduction of thermal hyperalgesia and mechanical allodynia associated with persistent neuropathic and inflammatory pain states. This loss appeared to be permanent. Responses to mildly painful stimuli and morphine analgesia were unaffected by this treatment. These results identify a target for treating persistent pain and suggest that the small population of SPR-expressing neurons in the dorsal horn of the spinal cord plays a pivotal role in the generation and maintenance of chronic neuropathic and inflammatory pain.Keywords
This publication has 22 references indexed in Scilit:
- Inhibition of Hyperalgesia by Ablation of Lamina I Spinal Neurons Expressing the Substance P ReceptorScience, 1997
- Differentiation of adult hippocampus-derived progenitors into olfactory neurons in vivoNature, 1996
- Neurogenic Amplification of Immune Complex InflammationScience, 1996
- A consideration of neural counting methodsTrends in Neurosciences, 1992
- Differential effect of a chemical algogen on two nociceptive thresholdsPhysiology & Behavior, 1990
- Inflammation of the hind limb as a model of unilateral, localized pain: influence on multiple opioid systems in the spinal cord of the ratPain, 1988
- Lack of analgesic effect of opioids on neuropathic and idiopathic forms of painPain, 1988
- The effect of carrageenan-induced inflammation on the sensitivity of unmyelinated skin nociceptors in the ratPain, 1987
- The formalin test: A quantitative study of the analgesic effects of morphine, meperidine, and brain stem stimulation in rats and catsPain, 1977
- Neurophysiological characterization of the anterolateral spinal cord neurons contributing to pain perception in manPain, 1975