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   A protease-activated receptor-1 antagonist protects against podocyte injury in a mouse model of nephropathy  
   
نویسنده guan y. ,nakano d. ,zhang y. ,li l. ,liu w. ,nishida m. ,kuwabara t. ,morishita a. ,hitomi h. ,mori k. ,mukoyama m. ,masaki t. ,hirano k. ,nishiyama a.
منبع journal of pharmacological sciences - 2017 - دوره : 135 - شماره : 2 - صفحه:81 -88
چکیده    The kidney expresses protease-activated receptor-1 (par-1). par-1 is known as a thrombin receptor,but its role in kidney injury is not well understood. in this study,we examined the contribution of par-1 to kidney glomerular injury and the effects of its inhibition on development of nephropathy. mice were divided into 3 groups: control,doxorubicin + vehicle (15 mg/kg doxorubicin and saline) and doxorubicin + q94 (doxorubicin at 15 mg/kg and the par-1 antagonist q94 at 5 mg/kg/d) groups. where indicated,doxorubicin was administered intravenously and par-1 antagonist or saline vehicle by subcutaneous osmotic mini-pump. par-1 expression was increased in glomeruli of mice treated with doxorubicin. q94 treatment significantly suppressed the increased albuminuria in these nephropathic mice. pathological analysis showed that q94 treatment significantly attenuated periodic acid–schiff and desmin staining,indicators of podocyte injury,and also decreased glomerular levels of podocin and nephrin. furthermore,thrombin increased intracellular calcium levels in podocytes. this increase was suppressed by q94 and rox4560,a transient receptor potential cation channel (trpc)3/6 antagonist. in addition,both q94 and rox4560 suppressed the doxorubicin-induced increase in activities of caspase-9 and caspase-3 in podocytes. these data suggested that par-1 contributes to development of podocyte and glomerular injury and that par-1 antagonists have therapeutic potential. © 2017 the authors
کلیدواژه Kidney injury; Podocyte; Protease-activated receptor-1; Transient receptor potential cation channel
آدرس department of pharmacology,kagawa universitykagawa, Japan, department of pharmacology,kagawa universitykagawa, Japan, department of pharmacology,kagawa universitykagawa, Japan, department of pharmacology,kagawa universitykagawa, Japan, department of cardiovascular physiology,kagawa universitykagawa, Japan, division of cardiocirculatory signaling,okazaki institute for integrative bioscience (national institute for physiological sciences),national institutes of natural sciences,okazaki,aichi, Japan, department of nephrology,kumamoto university graduate school of medical sciences,kumamoto, Japan, department of gastroenterology & neurology,kagawa universitykagawa, Japan, department of pharmacology,kagawa universitykagawa, Japan, department of nephrology and kidney research,shizuoka general hospital,shizuoka, Japan, department of nephrology,kumamoto university graduate school of medical sciences,kumamoto, Japan, department of gastroenterology & neurology,kagawa universitykagawa, Japan, department of cardiovascular physiology,kagawa universitykagawa, Japan, department of pharmacology,kagawa universitykagawa, Japan
 
     
   
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