Literature DB >> 17598175

Pharmacologic evaluation of pressor and visceromotor reflex responses to bladder distension.

Xin Su1, Erin S Riedel, Lisa A Leon, Nicholas J Laping.   

Abstract

AIMS: Several mechanisms that are involved in acute rat bladder nociception were examined. The nociceptive response was measured by analyzing both cardiovascular and visceromotor reflex responses to urinary bladder distension. The contributions of micro-opioid receptor, kappa-opioid receptor, sodium channels, muscarinic receptors, and cyclooxygenase, were explored with morphine, U50,488, mexiletine, oxybutynin, and naproxen, respectively.
METHODS: Female Sprague-Dawley rats were acutely instrumented with jugular venous, carotid arterial, and bladder cannulas. Needle electrodes were placed directly into the abdominal musculature to measure myoelectrical activity subsequent to repeated phasic urinary bladder distension (60 mmHg for 20 sec in 3 min intervals) under 1% isoflurane. Drugs were administered by i.v. bolus injection 2 min prior to distension.
RESULTS: The analgesics morphine (ID50 0.69 mg/kg), U50,488 (1.34 mg/kg), and mexiletine (2.60 mg/kg) significantly inhibited the visceromotor reflex response to noxious urinary bladder distension. Oxybutynin also attenuated reflex responses to noxious urinary bladder distension to 41% of the maximal pressor response and 32% of the control visceromotor reflex response (3.01 and 5.05 mg/kg), respectively, indicating a role of muscarinic receptors in bladder nociception. Naproxen did not attenuate the pressor response, but moderately inhibited visceromotor reflex to 45% of control at 30 mg/kg (P < 0.05).
CONCLUSIONS: Current results using the rat urinary bladder distension model are consistent with previous research demonstrating a role of the analgesics (morphine, U50,488, and mexiletine) in the inhibition of visceral nociceptive transmission. The utility of the reflex responses to urinary bladder distension may provide a method useful to examine mechanisms which target the bladder sensory pathway. (c) 2007 Wiley-Liss, Inc.

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Year:  2008        PMID: 17598175     DOI: 10.1002/nau.20469

Source DB:  PubMed          Journal:  Neurourol Urodyn        ISSN: 0733-2467            Impact factor:   2.696


  9 in total

1.  Spinal mechanisms of pudendal nerve stimulation-induced inhibition of bladder hypersensitivity in rats.

Authors:  Timothy J Ness; Cary DeWitte; Jamie McNaught; Buffie Clodfelder-Miller; Xin Su
Journal:  Neurosci Lett       Date:  2018-09-12       Impact factor: 3.046

Review 2.  Acid-sensing ion channels in sensory signaling.

Authors:  Marcelo D Carattino; Nicolas Montalbetti
Journal:  Am J Physiol Renal Physiol       Date:  2020-01-27

3.  Early-in-life bladder inflammation alters U50,488H but not morphine-induced inhibition of visceromotor responses to urinary bladder distension.

Authors:  Amber D Shaffer; Timothy J Ness; Alan Randich
Journal:  Neurosci Lett       Date:  2012-11-29       Impact factor: 3.046

Review 4.  Visceral pain: the neurophysiological mechanism.

Authors:  Jyoti N Sengupta
Journal:  Handb Exp Pharmacol       Date:  2009

5.  Benzodiazepines Suppress Neuromodulatory Effects of Pudendal Nerve Stimulation on Rat Bladder Nociception.

Authors:  Timothy J Ness; Jamie McNaught; Buffie Clodfelder-Miller; Dwight E Nelson; Xin Su
Journal:  Anesth Analg       Date:  2020-04       Impact factor: 5.108

6.  Early in life bladder inflammation alters opioid peptide content in the spinal cord and bladder of adult female rats.

Authors:  Amber D Shaffer; Timothy J Ness; Meredith T Robbins; Alan Randich
Journal:  J Urol       Date:  2012-11-19       Impact factor: 7.450

7.  Medications used to treat bladder disorders may alter effects of neuromodulation.

Authors:  Timothy J Ness; Jamie McNaught; Buffie Clodfelder-Miller; Xin Su
Journal:  Neurourol Urodyn       Date:  2020-04-24       Impact factor: 2.696

8.  Bladder distension: An unusual cause of reflux of blood and hemodynamic changes (autonomic dysreflexia) during endovascular coiling.

Authors:  Dp Sharma; Daljit Singh; P Ganjoo; M Tandon
Journal:  J Neurosci Rural Pract       Date:  2011-07

9.  Systemic and intrathecal baclofen produce bladder antinociception in rats.

Authors:  Timothy J Ness; Alan Randich; Xin Su; Cary DeWitte; Keith Hildebrand
Journal:  BMC Urol       Date:  2021-10-04       Impact factor: 2.264

  9 in total

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