Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole

Adenosine is a nucleoside which occurs naturally in a diverse forms in all cells of the body and in most biological fluids. Under basal conditions, the extracellular adenosine concentration is maintained within certain limits. Dipyridamol inhibits adenosine reuptake by erythrocytes, endothelial cel...

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Main Authors: Taghreed Hazem Saber Alfakje, Ali Ashgar Abed AL_Mteewati, Faehaa A. Al-Mashhadane
Format: Article
Language:English
Published: Tikrit University 2022-12-01
Series:Tikrit Journal of Pure Science
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Online Access:https://tjpsj.org/index.php/tjps/article/view/138
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author Taghreed Hazem Saber Alfakje
Ali Ashgar Abed AL_Mteewati
Faehaa A. Al-Mashhadane
author_facet Taghreed Hazem Saber Alfakje
Ali Ashgar Abed AL_Mteewati
Faehaa A. Al-Mashhadane
author_sort Taghreed Hazem Saber Alfakje
collection DOAJ
description Adenosine is a nucleoside which occurs naturally in a diverse forms in all cells of the body and in most biological fluids. Under basal conditions, the extracellular adenosine concentration is maintained within certain limits. Dipyridamol inhibits adenosine reuptake by erythrocytes, endothelial cells and platelet increasing plasma levels of adenosine Aims: study the effects of adenosine and dipyridamole on serum levels of serum urea, creatinine, alkaline phosphatase(ALP), lactate dehydrogenase (LDH), Aspartate Aminotransferase (GOT), and Alanine Aminotransferase (GPT). Material and methods: Thirty-five male rabbits were included in the study. The animals were divided into 3 groups: Group one(5 animals): injected intraperitoneal  (i.p) with 2 ml of distilled water/day (control group). Group two (15 animals): were treated by i.p  injection of adenosine, they were divided into 3 sub groups (5 animals) according to adenosine dose:1 mg/kg, 2mg/kg and 4 mg/kg.Group 3 (15 animals):  were treated by dipyridamole orally, they were divided into 3 sub-groups (5 animals) according to dipyridamole dose:4 mg/kg, 8 mg/kg and 12 mg/kg. Result: Significant differences among 3 groups were found in blood urea, LDH, GOT levels, and in GPT levels.  While statistical analysis of serum levels of S. creatinine and ALP showed no significant differences among 3 study groups. Conclusion: both adenosine, dipyridamole cause Significant differences among 3 groups were found in blood urea, LDH, GOT levels, and in GPT levels in rabbit
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spelling doaj-art-d5b083db14044133904eb249ef1e67862025-08-20T03:16:51ZengTikrit UniversityTikrit Journal of Pure Science1813-16622415-17262022-12-0126310.25130/tjps.v26i3.138Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamoleTaghreed Hazem Saber AlfakjeAli Ashgar Abed AL_MteewatiFaehaa A. Al-Mashhadane Adenosine is a nucleoside which occurs naturally in a diverse forms in all cells of the body and in most biological fluids. Under basal conditions, the extracellular adenosine concentration is maintained within certain limits. Dipyridamol inhibits adenosine reuptake by erythrocytes, endothelial cells and platelet increasing plasma levels of adenosine Aims: study the effects of adenosine and dipyridamole on serum levels of serum urea, creatinine, alkaline phosphatase(ALP), lactate dehydrogenase (LDH), Aspartate Aminotransferase (GOT), and Alanine Aminotransferase (GPT). Material and methods: Thirty-five male rabbits were included in the study. The animals were divided into 3 groups: Group one(5 animals): injected intraperitoneal  (i.p) with 2 ml of distilled water/day (control group). Group two (15 animals): were treated by i.p  injection of adenosine, they were divided into 3 sub groups (5 animals) according to adenosine dose:1 mg/kg, 2mg/kg and 4 mg/kg.Group 3 (15 animals):  were treated by dipyridamole orally, they were divided into 3 sub-groups (5 animals) according to dipyridamole dose:4 mg/kg, 8 mg/kg and 12 mg/kg. Result: Significant differences among 3 groups were found in blood urea, LDH, GOT levels, and in GPT levels.  While statistical analysis of serum levels of S. creatinine and ALP showed no significant differences among 3 study groups. Conclusion: both adenosine, dipyridamole cause Significant differences among 3 groups were found in blood urea, LDH, GOT levels, and in GPT levels in rabbit https://tjpsj.org/index.php/tjps/article/view/138adenosinedipyridamolebiochemical markers
spellingShingle Taghreed Hazem Saber Alfakje
Ali Ashgar Abed AL_Mteewati
Faehaa A. Al-Mashhadane
Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
Tikrit Journal of Pure Science
adenosine
dipyridamole
biochemical markers
title Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
title_full Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
title_fullStr Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
title_full_unstemmed Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
title_short Effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits: Running title: Biochemical effects of adenosine and dipyridamole
title_sort effects of adenosine and dipyridamole on serum levels of some biochemical markers in rabbits running title biochemical effects of adenosine and dipyridamole
topic adenosine
dipyridamole
biochemical markers
url https://tjpsj.org/index.php/tjps/article/view/138
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