Can the Bladder Itself "Measure" Volume, and Thereby Help to Determine When Initiation of Voiding Should Occur? ICI-RS 2024

Gommert Van Koeveringe*, Karen D. Mccloskey, Anthony J. Kanai, Mathijs M. de Rijk, Pradeep Tyagi, John E. Speich, Christopher H. Fry, Alan J. Wein

*Corresponding author for this work

Research output: Contribution to journal(Systematic) Review article peer-review

Abstract

AimsTo answer the question of whether the bladder itself can to any extent control or modulate the initiation of voiding.MethodsThis subject was discussed at the International Consultation on Incontinence-Research Society (ICI-RS) 2024 conference in Bristol, UK in a proposal session.ResultsCells in the bladder wall sense the local environment via a diverse array of ion channels and receptors which together provide input to motor-sensory and signal transduction mechanisms. A purinergic signal transduction system provides a high-gain mucosal chemosensitive transduction pathway between bladder wall stretch during filling and graded afferent activation. Recent studies established cross-species similarities in the regulation of urine storage which include the upregulation of aquaporin (water) channels during bladder filling/wall stretch, in the bladder. In addition to the endocrine hypothalamus/pituitary axis production, urothelial production of arginine vasopressin acts on urothelial vasopressin receptors in a paracrine manner causing aquaporin channel upregulation, reducing the bladder volume and delaying sensation of fullness. Bladder shape influences the sensory systems involved in the perception of bladder volume; moreover irregular bladder shapes may correlate with overactive bladder.ConclusionsVolume measuring and signaling threshold-determining mechanisms in the bladder along with shape and permeability act to influence the timing and type of signaling to the CNS; although this is not always followed by a consecutive action. The hierarchical grading of the signals originating from the bladder among other peripheral bodily or central signals are crucial factors that determine whether the bladder is "allowed" to initiate voiding.
Original languageEnglish
Pages (from-to)568-576
Number of pages9
JournalNeurourology and Urodynamics
Volume44
Issue number3
Early online date1 Dec 2024
DOIs
Publication statusPublished - Mar 2025

Keywords

  • bladder-brain signaling
  • lower urinary tract symptoms (LUTS)
  • neurogenic bladder
  • overactive bladder
  • underactive bladder
  • urinary bladder sensation
  • urinary neurophysiology
  • ATP RELEASE
  • PERIAQUEDUCTAL GRAY
  • OVERACTIVE BLADDER
  • UROTHELIAL CELLS
  • SMOOTH-MUSCLE
  • MICTURITION
  • RECEPTORS
  • CHANNELS
  • SYSTEM
  • PIEZO1

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