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Macrophage migration inhibitory factor mediates protease-activated receptor 4-induced bladder pain through urothelial
Fei Ma1,2, Dimitrios E Kouzoukas1,3, Katherine L Meyer-Siegler4
1Research and Development, Lexington Veterans Affairs Medical Center, Lexington, Kentucky.
Abstract:
Macrophage migration inhibitory factor (MIF) mediates pain although the mechanisms are not well understood. Urothelial activation of protease activated receptor 4 (PAR4) results in urothelial MIF release, urothelial high mobility group box 1 (HMGB1) release and bladder pain in mice without bladder inflammation. All three effects are prevented by MIF inhibition while intravesical disulfide HMGB1 alone can induce bladder pain. This study utilizes genetic MIF deletion to determine whether MIF mediates PAR4-induced bladder pain and is upstream of HMGB1-induced bladder pain. Wild type (C57/BL6) and MIF knockout (KO) mice were treated with intravesical PAR4 activating peptide or disulfide HMGB1 and tested for abdominal mechanical hypersensitivity at baseline (before treatment) and 24 h after injection. Micturition parameters and bladder histology were examined after behavioral test. Real-time PCR and western blotting measured HMGB1 mRNA and protein levels in the bladders of naïve wild type and MIF KO mice, while immunofluorescence measured HMGB1 protein levels in the urothelium of both strains. Intravesical PAR4 activation resulted in abdominal mechanical hypersensitivity in wild-type mice but not MIF KO mice. Intravesical disulfide HMGB1 induced abdominal mechanical hypersensitivity in both strains. Neither treatment resulted in significant changes in micturition or bladder histology in either strain. HMGB1 mRNA and protein levels were higher in MIF KO mouse bladders and the urothelium of MIF KO bladder had greater immunostaining than the wild-type strain. MIF is a pivotal molecule mediating PAR4-induced bladder pain and regulating urothelial HMGB1 production and release to elicit bladder pain.
Insights
Macrophage migration inhibitory factor (MIF) is key to protease activated receptor 4 (PAR4)-induced bladder pain. MIF regulates high mobility group box 1 (HMGB1) release, which contributes to pain signaling without inflammation.
Area of Science:
- Urology
- Pain research
- Immunology
Background:
- Macrophage migration inhibitory factor (MIF) plays a role in pain, but its precise mechanisms are unclear.
- Protease activated receptor 4 (PAR4) activation in the urothelium triggers MIF and high mobility group box 1 (HMGB1) release, leading to bladder pain in mice, even without inflammation.
Purpose of the Study:
- To investigate if MIF mediates PAR4-induced bladder pain.
- To determine if MIF acts upstream of HMGB1 in the pathway of bladder pain.
Main Methods:
- Utilized wild-type and MIF knockout mice.
- Administered intravesical PAR4 activating peptide or disulfide HMGB1.
- Assessed abdominal mechanical hypersensitivity, micturition parameters, and bladder histology.
- Quantified HMGB1 mRNA and protein levels using real-time PCR, western blotting, and immunofluorescence.
Main Results:
- PAR4 activation induced hypersensitivity in wild-type mice but not MIF knockout mice.
- Disulfide HMGB1 induced hypersensitivity in both mouse strains.
- MIF knockout mice exhibited higher HMGB1 mRNA and protein levels in bladder tissue and urothelium.
- No significant changes in micturition or bladder histology were observed.
Conclusions:
- MIF is pivotal in mediating PAR4-induced bladder pain.
- MIF regulates urothelial HMGB1 production and release, contributing to bladder pain.

