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KPR-5714, a Novel Transient Receptor Potential Melastatin 8 Antagonist, Improves Overactive Bladder via Inhibition of Bladder Afferent Hyperactivity in Rats.

Nakanishi O et al.

The Journal of Pharmacology and Experimental Therapeutics. 2020 05; 373(2):239-247

https://doi.org/10.1124/jpet.119.263616PMID: 32102918

Classifications

  • Good for Teaching
  • New Finding
  • Novel Drug Target

Evaluations

Very Good
11 Mar 2021
Rosalyn Adam
Rosalyn Adam

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Members of the transient receptor potential (TRP) family of channels can be activated by a variety of external and endogenous stimuli. TRPM8 has temperature-sensing activity, detecting cold materials and chemicals such as menthol. TRPM8 has been implicated in mechanotransduction in the lower urinary tract and is expressed on sensory A-delta and C-fibre dorsal root ganglia neurons. Increased TRPM8-positive C-fibres have been described in bladder tissue from patients with detrusor overactivity and bladder pain syndrome and have been shown to correlate with pain scores and frequency of voiding. Based on this, a number of TRPM8 antagonists have been developed to treat bladder overactivity although some have evoked deleterious cardiovascular effects, limiting use in experimental models. In this study, the authors characterize a new TRPM8 antagonist, KPR-5714, with high potency and selectivity – for its ability to inhibit bladder afferent activity in rats. Single-unit afferent activity of C fibres enhanced by intravesical instillation of acetic acid was inhibited with intravenous administration of KPR-5714. In addition, KPR-5714 also reversed the shortened inter-contraction interval evoked by acetic acid, as observed by cystometry. Similarly, in a model of stroke induced by middle cerebral artery occlusion, bladder dysfunction characterized by increased frequency and decreased voided volume was improved, with oral administration of KPR-5714 leading to a reduction in voiding frequency and an increase in the mean volume per void. Given the ability of TRPM8 to sense cold, KPR-5714 administration also reversed changes in voiding behavior evoked by maintenance of rats in cold temperature. Taken together, these findings lend support to targeting of TRPM8 as a strategy for treatment of bladder disorders characterized by overactivity and identify KPR-5714 as a novel agent for monotherapy or in combination with other agents.

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Relevant Specialties

  • Biotechnology

    Drug Discovery & Design
  • Chemical Biology

    Drug Discovery & Design
  • Molecular Medicine

    Genitourinary & Reproductive Pharmacology | Neural Homeostasis | Neuropharmacology & Psychopharmacology
  • Neuroscience

    Neural Homeostasis | Neuropharmacology & Psychopharmacology
  • Pharmacology & Drug Discovery

    Drug Discovery & Design | Genitourinary & Reproductive Pharmacology | Neuropharmacology & Psychopharmacology
  • Physiology

    Neural Homeostasis
  • Urology

    Benign Bladder & Urethral Disorders | Lower Urinary Tract: Dysfunction, Incontinence & Urodynamics

Clinical Trials

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