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The Use of Cystometry in Small Rodents: A Study of Bladder Chemosensation
Authors:Pieter Uvin  Wouter Everaerts  Silvia Pinto  Yeranddy A Alpízar  Mathieu Boudes  Thomas Gevaert  Thomas Voets  Bernd Nilius  Karel Talavera  Dirk De Ridder
Institution:Laboratory of Experimental Urology, Department of Development and Regeneration, KU Leuven, Belgium;Laboratory for Ion Channel Research, Department of Cellular and Molecular Medicine, KU Leuven, Belgium;TRP Research Platform Leuven (TRPLe), KU Leuven, Belgium
Abstract:The lower urinary tract (LUT) functions as a dynamic reservoir that is able to store urine and to efficiently expel it at a convenient time. While storing urine, however, the bladder is exposed for prolonged periods to waste products. By acting as a tight barrier, the epithelial lining of the LUT, the urothelium, avoids re-absorption of harmful substances. Moreover, noxious chemicals stimulate the bladder''s nociceptive innervation and initiate voiding contractions that expel the bladder''s contents. Interestingly, the bladder''s sensitivity to noxious chemicals has been used successfully in clinical practice, by intravesically infusing the TRPV1 agonist capsaicin to treat neurogenic bladder overactivity1. This underscores the advantage of viewing the bladder as a chemosensory organ and prompts for further clinical research. However, ethical issues severely limit the possibilities to perform, in human subjects, the invasive measurements that are necessary to unravel the molecular bases of LUT clinical pharmacology. A way to overcome this limitation is the use of several animal models2. Here we describe the implementation of cystometry in mice and rats, a technique that allows measuring the intravesical pressure in conditions of controlled bladder perfusion.After laparotomy, a catheter is implanted in the bladder dome and tunneled subcutaneously to the interscapular region. Then the bladder can be filled at a controlled rate, while the urethra is left free for micturition. During the repetitive cycles of filling and voiding, intravesical pressure can be measured via the implanted catheter. As such, the pressure changes can be quantified and analyzed. Moreover, simultaneous measurement of the voided volume allows distinguishing voiding contractions from non-voiding contractions3.Importantly, due to the differences in micturition control between rodents and humans, cystometric measurements in these animals have only limited translational value4. Nevertheless, they are quite instrumental in the study of bladder pathophysiology and pharmacology in experimental pre-clinical settings. Recent research using this technique has revealed the key role of novel molecular players in the mechano- and chemo-sensory properties of the bladder.
Keywords:Medicine  Issue 66  Physiology  Chemistry  cystometry  urodynamics  bladder function  bladder chemosensation  animal model  urinary tract
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