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1.
Korean Journal of Anatomy ; : 297-303, 2006.
Article in Korean | WPRIM | ID: wpr-654214

ABSTRACT

The vanilloid receptor TRPV1 has been suggested to play an important role in thermal nociception and inflammatory hyperalgesia. In our previous study, we examined the expression of TRPV1 and colocalization of TRPV1 with substance P (SP) and calcitonin gene related peptide (CGRP) through fluorescence immunocytochemistry. Here, we investigated ultrastructural characteristics of TRPV1 immunoreactive fibers in the human tooth pulp through preembedding immunocytochemistry. TRPV1 immunoreactivity was present in the unmyelinated nerve fibers in the tooth pulp. There were two types of TRPV1 IR nerve fibers identified in the human tooth pulp: one containing clear round vesicles and many dense-cored vesicles, the other containing clear round vesicles and few dense-cored vesicles. TRPV1 immunoreactive fibers were constant in diameter without swellings along the length. Boutons en passant and boutons terminaux usually observed in the CNS were not observed in the TRPV1 immunoreactive fibers. Many vesicles were accumulated in the TRPV1 immunoreactive fibers, however synaptic structure was not found. It is known that dense-cored vesicles contain neuropeptides such as SP and CGRP and clear round vesicles contain neurotransmitter such as glutamate. Taken together, our results suggest that TRPV1 immunoreactive fibers showing distinct ultrastructructural features may be involved in inflammatory hyperalgesia and thermal nociception in the tooth pulp.


Subject(s)
Humans , Calcitonin Gene-Related Peptide , Fluorescence , Glutamic Acid , Hyperalgesia , Immunohistochemistry , Nerve Fibers , Nerve Fibers, Unmyelinated , Neuropeptides , Neurotransmitter Agents , Nociception , Substance P , Tooth
2.
Korean Journal of Obstetrics and Gynecology ; : 740-747, 2001.
Article in Korean | WPRIM | ID: wpr-41538

ABSTRACT

OBJECTIVE: In inflammation, hyperalgesia is a common phenomenon but its mechanism has not been clarified. Recently some reports suggested substance P might be important factors for inflammatory hyperalgesia in somatic tissue. This study was performed to see whether substance P modulate the activities of uterine afferent fibers in the hypogastric nerve of the cat. METHODS: While recording the electrical activities of nerve fibers, mechanical stimuli were applied as balloon distention using balloon inserted into uterine lumen before and during substance P infusion through uterine artery. RESULTS: Substance P increased the responses to balloon distension of uterus in 14 uterine mechanoreceptive afferent fibers of 24 over 10% compared to before substance P infusion, and decreased the responses of 3. And L-703,606, the neurokinin 1 receptor antagonist failed the modulation of mechano sensitive response by substance P and reduced the spontaneous activities. CONCLUSIONS: These results suggest that substance P modulated the activities of uterine nerve fibers and their responses to mechanical stimulus. It is hypothesized that this kind of modulation of afferent nerve fibers by substance P may be important for the development of inflammatory hyperalgesia.


Subject(s)
Animals , Cats , Hyperalgesia , Inflammation , Mechanoreceptors , Nerve Fibers , Receptors, Neurokinin-1 , Substance P , Uterine Artery , Uterus
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