Literature DB >> 18242219

Anterior cingulate cortex modulates visceral pain as measured by visceromotor responses in viscerally hypersensitive rats.

Zhijun Cao1, Xiaoyin Wu, Shengliang Chen, Jing Fan, Rui Zhang, Chung Owyang, Ying Li.   

Abstract

BACKGROUND & AIMS: We have identified that the anterior cingulate cortex (ACC) neurons are responsive to colorectal distention (CRD) and shown that sensitization of ACC neurons occurs in viscerally hypersensitive rats. However, the role of the ACC in pain response has not been clearly defined. We aimed to determine if ACC neuron activation enhances visceral pain in viscerally hypersensitive rats and to identify the receptor involved in facilitation of visceral pain.
METHODS: The nociceptive response (visceromotor response [VMR]) to CRD was recorded in normal and viscerally hypersensitive rats induced by colonic anaphylaxis. The ACC was stimulated electrically, and ACC lesions were generated with ibotenic acid. l-glutamate, alpha-amino-3-hydroxy-5-methyl-isoxozole propionic acid receptor antagonist cyanonitroquinoxaline dione, and N-methyl-d-aspartate receptor antagonist aminophosphonopentanoic acid were microinjected into the rostral ACC.
RESULTS: Electrical stimulation of the rostral ACC enhanced the VMR to CRD in normal rats. ACC lesions caused a decrease in the VMR in viscerally hypersensitive rats but had no effect in normal rats. ACC microinjection of 2 mmol/L glutamate increased the VMR to CRD (10 mm Hg) in viscerally hypersensitive rats, and 20 mmol/L glutamate induced a more potent VMR in viscerally hypersensitive than in normal rats. Cyanonitroquinoxaline dione did not affect the VMR in either group. Aminophosphonopentanoic acid significantly suppressed the VMR in viscerally hypersensitive rats but not in normal rats.
CONCLUSIONS: The ACC plays a critical role in the modulation of visceral pain responses in viscerally hypersensitive rats. This process appears to be mediated by enhanced activities of glutamate N-methyl-d-aspartate receptors.

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Year:  2007        PMID: 18242219     DOI: 10.1053/j.gastro.2007.11.057

Source DB:  PubMed          Journal:  Gastroenterology        ISSN: 0016-5085            Impact factor:   22.682


  29 in total

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2.  AMPA receptor subunits expression and phosphorylation in cingulate cortex in rats following esophageal acid exposure.

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9.  Subdiaphragmatic vagal afferent nerves modulate visceral pain.

Authors:  S L Chen; X Y Wu; Z J Cao; J Fan; M Wang; C Owyang; Y Li
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10.  Up-regulation of anterior cingulate cortex NR2B receptors contributes to visceral pain responses in rats.

Authors:  Jing Fan; Xiaoyin Wu; Zhijun Cao; Shengliang Chen; Chung Owyang; Ying Li
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