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巨噬细胞移动抑制因子通过尿路上皮高迁移率族蛋白盒1介导蛋白酶激活受体4诱导的膀胱疼痛。

Macrophage migration inhibitory factor mediates protease-activated receptor 4-induced bladder pain through urothelial high mobility group box 1.

作者信息

Ma Fei, Kouzoukas Dimitrios E, Meyer-Siegler Katherine L, Hunt David E, Leng Lin, Bucala Richard, Vera Pedro L

机构信息

Research and Development, Lexington Veterans Affairs Medical Center, Lexington, Kentucky.

Department of Physiology, University of Kentucky, Lexington, Kentucky.

出版信息

Physiol Rep. 2017 Dec;5(24). doi: 10.14814/phy2.13549.

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.

摘要

巨噬细胞移动抑制因子(MIF)介导疼痛,但其机制尚未完全明确。蛋白酶激活受体4(PAR4)的尿路上皮激活会导致尿路上皮释放MIF、尿路上皮高迁移率族蛋白B1(HMGB1),并在无膀胱炎症的小鼠中引发膀胱疼痛。MIF抑制可阻止所有这三种效应,而单独膀胱内注射二硫键HMGB1即可诱发膀胱疼痛。本研究利用基因敲除MIF来确定MIF是否介导PAR4诱导的膀胱疼痛,以及是否在HMGB1诱导的膀胱疼痛上游起作用。野生型(C57/BL6)和MIF基因敲除(KO)小鼠接受膀胱内PAR4激活肽或二硫键HMGB1处理,并在基线(治疗前)和注射后24小时测试腹部机械性超敏反应。行为测试后检查排尿参数和膀胱组织学。实时PCR和蛋白质印迹法检测未处理的野生型和MIF KO小鼠膀胱中HMGB1的mRNA和蛋白质水平,而免疫荧光法检测两品系尿路上皮中HMGB1的蛋白质水平。膀胱内PAR4激活导致野生型小鼠出现腹部机械性超敏反应,但MIF KO小鼠未出现。膀胱内二硫键HMGB1在两个品系中均诱发腹部机械性超敏反应。两种处理均未导致任一品系的排尿或膀胱组织学发生显著变化。MIF KO小鼠膀胱中HMGB1的mRNA和蛋白质水平更高,且MIF KO膀胱尿路上皮的免疫染色比野生型品系更强。MIF是介导PAR4诱导的膀胱疼痛以及调节尿路上皮HMGB1产生和释放以引发膀胱疼痛的关键分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0836/5742707/fedd873cf1f1/PHY2-5-e13549-g001.jpg

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