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   The effect of exogenous apelin on the secretion of pancreatic juice in anaesthetized rats  
   
نویسنده kapica m. ,jankowska a. ,antushevich h. ,pietrzak p. ,bierla j.b. ,dembinski a. ,zabielski r.
منبع journal of physiology and pharmacology - 2012 - دوره : 63 - شماره : 1 - صفحه:53 -60
چکیده    Apelin is known to stimulate cholecystokinin (cck) and inhibit insulin release,however the mechanisms on pancreatic secretion remain unclear. the present study aimed to determine the expression of apelin and apelin receptor in the pancreas by immunofluorescence studies and the effect of exogenous apelin on the secretion of pancreatic juice in anesthetized rats. pancreatic-biliary juice (p-bj) was collected from wistar rats treated with apelin (10,20 and 50 nmol/kg b.w.,boluses given every 30 min intravenously or intraduodenaly). the same apelin doses were administered to rats subjected to intraduodenal tarazapide,capsaicin or vagotomy. pancreatic blood flow was measured by a laser doppler flowmeter. direct effects of apelin were tested on dispersed acinar cells. apelin receptor was expressed on acinar cells,pancreatic duct and islets cells,whereas apelin in pancreatic acini,but not in the islets. intravenous apelin decreased p-bj volume,protein and trypsin outputs in a dose-dependent manner. in contrast,intraduodenal apelin stimulated p-bj secretion. pharmacological block of mucosal cck 1 receptor by tarazepide,vagotomy and capsaicin pretreatment abolished the effects of intravenous and intraduodenal apelin on p-bj volume,protein and tryspin outputs. apelin decreased the pancreatic blood flow. apelin at 10 -6 m increased the release of amylase from non-stimulated and cck-8-stimulated acinar cells. in conclusion,apelin can affect the exocrine pancreas through a complex mechanism involving local blood flow regulation and is driven by vagal nerves.
کلیدواژه Acinar cells; Apelin; Capsaicin; Cholecystokinin; Pancreas; Pancreatic blood flow; Regulation; Vagotomy
آدرس department of biochemistry and animal physiology,faculty of veterinary medicine,university of life sciences in lublin, Poland, the kielanowski institute of animal physiology and nutrition,polish academy of science,jablonna, Poland, the kielanowski institute of animal physiology and nutrition,polish academy of science,jablonna, Poland, department of physiological sciences,faculty of veterinary medicine,warsaw university of life sciences,warsaw,poland,department of physiology and pathophysiology,faculty of pharmacy medical university of warsaw,warsaw, Poland, department of physiological sciences,faculty of veterinary medicine,warsaw university of life sciences,warsaw,poland,department of physiology and pathophysiology,faculty of pharmacy medical university of warsaw,warsaw, Poland, department of physiology,jagiellonian university medical college,cracow, Poland, department of physiological sciences,faculty of veterinary medicine,warsaw university of life sciences,warsaw, Poland
 
     
   
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