Chloride-dependent mechanisms contribute to urinary bladder smooth muscle contractility: Pharmacological and molecular evidence from rat bladder tissue
Yuh-Chen Kuo, Vincent F. S. Tsai, Shih-Ping Liu, Jyh-Horng Chen, Hong-Chiang Chang, Ju-Ton Hsieh
A
BSTRACT
Objectives:
To investigate the functional role of chloride-dependent signaling pathways in urinary bladder smooth muscle (SM) contractility and to evaluate the expression of ClC-3 and CLCA4 in rat bladder tissue.
Materials and Methods:
Expression of ClC-3 and CLCA4 in rat bladder tissue was examined using Western blotting and immunohistochemistry. Functional studies were conducted using isolated bladder SM strips (2 mm × 2 mm × 10 mm) from adult male Wistar rats mounted in organ bath chambers for isometric tension recording. Potassium chloride (KCl)-induced contractions were assessed under varying extracellular chloride concentrations (138–8 mM) and after substitution with Br − or I − . Norepinephrine (NE)-induced contractions were evaluated with pretreatment of chloride transport inhibitors (bumetanide, HEPES without bicarbonate, and ethacrynic acid) and chloride channel blockers (4,4’-diisothiocyano-2,2’- stilbene-disulfonic acid, anthracene-9-carboxylic acid, and niflumic acid) at different concentrations.
Results:
ClC-3 and CLCA4 were expressed in both urothelial and SM layers. Reduction of extracellular chloride concentration significantly attenuated KCl-induced contractions in a concentration-dependent manner (
Conclusion:
The present study provides pharmacological and molecular evidence supporting a contributory role of chloride-dependent signaling in bladder SM contractility under