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Updated: Jun 3, 2026

Urinary Bladder Distention Evoked Visceromotor Responses as a Model for Bladder Pain in Mice
Published on: April 27, 2014
ONO-8130, a selective prostanoid EP1 receptor antagonist, relieves bladder pain in mice with cyclophosphamide-induced
Takahiro Miki1, Maho Matsunami, Saori Nakamura
1Division of Pharmacology and Pathophysiology, Kinki University School of Pharmacy, 3-4-1 Kowakae, Higashi-Osaka 577-8502, Japan Pharmacological Research Laboratories, Ono Pharmaceutical Co, Ltd, Osaka 618-8585, Japan.
Abstract:
Given the previous evidence for involvement of prostanoid EP1 receptors in facilitation of the bladder afferent nerve activity and micturition reflex, the present study investigated the effect of ONO-8130, a selective EP1 receptor antagonist, on cystitis-related bladder pain in mice. Cystitis in mice was produced by intraperitoneal administration of cyclophosphamide at 300mg/kg. Bladder pain-like nociceptive behavior and referred hyperalgesia were assessed in conscious mice. Phosphorylation of extracellular signal-regulated kinase (ERK) in the L6 spinal cord was determined by immunohistochemistry in anesthetized mice. Cyclophosphamide treatment caused bladder pain-like nociceptive behavior and referred hyperalgesia accompanying cystitis symptoms, including increased bladder weight and vascular permeability and upregulation of cyclooxygenase-2 in the bladder tissue. Oral preadministration of ONO-8130 at 0.3-30 mg/kg strongly prevented both the bladder pain-like behavior and referred hyperalgesia in a dose-dependent manner, but had slight effect on the increased bladder weight and vascular permeability. Oral ONO-8130 at 30 mg/kg also reversed the established cystitis-related bladder pain. Intravesical administration of prostaglandin E2 caused prompt phosphorylation of ERK in the L6 spinal cord, an effect blocked by ONO-8130. Our findings strongly suggest that the prostaglandin E2/EP1 system participates in processing of cystitis-related bladder pain, and that EP1 antagonists including ONO-8130 are useful for treatment of bladder pain, particularly in interstitial cystitis. Prostaglandin E2 contributes to cystitis-related bladder pain via EP1 receptors in mice, indicating possible therapeutic usefulness of selective EP1 antagonists.
Insights
Selective EP1 receptor antagonist ONO-8130 effectively reduced cystitis-related bladder pain and referred hyperalgesia in mice. This suggests prostaglandin E2/EP1 system involvement and therapeutic potential for EP1 antagonists in treating bladder pain conditions.
Area of Science:
- Pharmacology
- Neuroscience
- Urology
Background:
- Prostanoid EP1 receptors are implicated in bladder afferent nerve activity and the micturition reflex.
- Cystitis often leads to significant bladder pain and associated hypersensitivity.
- Understanding the molecular mechanisms of cystitis pain is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the effect of ONO-8130, a selective EP1 receptor antagonist, on cystitis-induced bladder pain in mice.
- To explore the role of the prostaglandin E2/EP1 system in the processing of bladder pain.
Main Methods:
- Cystitis was induced in mice using cyclophosphamide.
- Bladder pain-like behaviors and referred hyperalgesia were assessed.
- Extracellular signal-regulated kinase (ERK) phosphorylation in the spinal cord was analyzed via immunohistochemistry.
Main Results:
- Cyclophosphamide-induced cystitis caused significant bladder pain, referred hyperalgesia, and inflammatory markers.
- ONO-8130 administration dose-dependently prevented bladder pain behaviors and hyperalgesia, with some reversal of established pain.
- Prostaglandin E2-induced ERK phosphorylation in the spinal cord was blocked by ONO-8130.
Conclusions:
- The prostaglandin E2/EP1 system plays a key role in mediating cystitis-related bladder pain.
- Selective EP1 receptor antagonists, such as ONO-8130, show therapeutic potential for treating bladder pain, including interstitial cystitis.
- ONO-8130 effectively targets pain pathways without significantly impacting cystitis-induced inflammation markers.
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