Sensory neurone-specific receptor-mediated regulation of micturition reflex in urethane-anaesthetized rats.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 21729234.
- Also identified by DOI 10.1111/j.1464-410X.2011.10400.x and PMC identifier 3189417.
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Abstract
• To investigate the effect of sensory neurone-specific receptors (SNSRs) activation on the micturition reflex in rats. • Continuous cystometrograms (CMGs, 0.04 mL/min) were performed in female Sprague-Dawley rats under urethane anaesthesia. • After stable micturition cycles were established, a selective rat SNSR1 agonist, bovine adrenal medulla 8-22 (BAM8-22), was administered intravenously (i.v.) or intrathecally (i.t.) in normal rats or rats pretreated with capsaicin 4 days before the experiments. • Micturition variables were recorded and compared before and after drug administration. • Administration (i.v.) of BAM8-22 (3-100 µg/kg) significantly increased intercontraction intervals in a dose-dependent fashion, but did not affect residual urine or baseline pressure at any doses tested. • Administration (i.t.) of BAM8-22 (0.01-0.3 µg) also increased intercontraction intervals in a dose-dependent fashion, but did not affect residual urine or baseline pressure at any doses tested. • These inhibitory effects of i.v. (30 µg/kg) or i.t. (0.3 µg) administration of BAM8-22 still occurred after capsaicin pretreatment. • These results indicate that in urethane-anaesthetized rats activation of SNSRs can inhibit the micturition reflex via pathways independent of capsaicin-sensitive C-fibres. • Thus SNSRs could be a potential target for the treatment of bladder dysfunction, e.g. overactive bladder.
Medical subject headings
- Receptors, G-Protein-Coupled
- Reflex
- Sensory Receptor Cells
- Urination