Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets

碩士 === 台北醫學院 === 醫學研究所 === 88 === The discovery of pharmacological activity of morphine early in the 19th century and the demonstration of its potent analgesic properties. Morphine had been used to relax the pain of cancer patients on the last phase , and dealed with some serious diseases...

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Main Authors: Chiao-Ling Fang, 方喬玲
Other Authors: Joen-Rong Sheu
Format: Others
Language:zh-TW
Published: 2000
Online Access:http://ndltd.ncl.edu.tw/handle/10384534537796013427
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spelling ndltd-TW-088TMC005340062016-01-29T04:19:19Z http://ndltd.ncl.edu.tw/handle/10384534537796013427 Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets 嗎啡強化活化劑引起血小板凝集反應的機轉探討 Chiao-Ling Fang 方喬玲 碩士 台北醫學院 醫學研究所 88 The discovery of pharmacological activity of morphine early in the 19th century and the demonstration of its potent analgesic properties. Morphine had been used to relax the pain of cancer patients on the last phase , and dealed with some serious diseases、trauma and surgery was needed. However, how the influence of morphine on wash human platelets, and what are the mechanisms involved in this influence, it still remains unclear. Recently the subject had not been discussed widely. The aim of this thesis is to further investigate the detailed mechanisms of morphine on human platelets. In our studies, we found that morphine (1, 5 M) dose—dependently potentiated platelet aggeregation and ATP release by collagen (1 g/ml) and U46619 (0.5 in human platelet suspensions. Morphine (5 M) potentiated [3Hinositol monophosphate formation stimulated by collagen (5 g/ml) in [3Hmyoinositol loaded platelets. Furthermore, morphine also potentiated [Ca2+]i mobilization in human platelet suspensions stimulated by collagen (1 g/ml). At the same dose, morphine significantly potentiated thromboxane B2 formation of collagen-activated platelets. Consequently, we measured prostagladinE2 formation as an index of cyclooxygenase activity. We found that morphine had no significant effect on cyclooxygenase activity, and found it did not potentiate collagen-induced platelet aggregation in the presence of yohimbine. According to these results, we found the effect of morphine on human platelets may be mediated via activation of adrenoceptors. On the other hand, morphine (1, 5 ) inhibited prostaglandin E1 (10 induced cyclic AMP increase in human platelets. We examined this potentiation involved in platelet signal transduction system such as Na/H pump in human platelet suspensions. In contrast, morphine did not significantly increase nitrate formation in human platelets. Moreover, we found morphine did not influence the binding of FITC-triflavin to platelet glycoprotein IIb/IIIa complex. Triflavin, an Arg-Gly-Asp-containing antiplatelet peptide, was purified from Trimeresurus flavoviridis snake venom. Measurement of the platelet membrane fluidity, we found that morphine did not significantly affect the platelet membrane fluidity diphenylhexatriene (DPH)-loaded platelets . Based on the above observations, we suggested that morphine may bind to adrenoceptors in human platelets, resulting in inhibition of cyclic AMP formation and concurrently increased intracellular Ca2+, resulting in activation of phospholipase A2 , and increased formation of thromboxane A2 formation, and potentiation of platelet aggregation. Joen-Rong Sheu 許準榕 2000 學位論文 ; thesis 58 zh-TW
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description 碩士 === 台北醫學院 === 醫學研究所 === 88 === The discovery of pharmacological activity of morphine early in the 19th century and the demonstration of its potent analgesic properties. Morphine had been used to relax the pain of cancer patients on the last phase , and dealed with some serious diseases、trauma and surgery was needed. However, how the influence of morphine on wash human platelets, and what are the mechanisms involved in this influence, it still remains unclear. Recently the subject had not been discussed widely. The aim of this thesis is to further investigate the detailed mechanisms of morphine on human platelets. In our studies, we found that morphine (1, 5 M) dose—dependently potentiated platelet aggeregation and ATP release by collagen (1 g/ml) and U46619 (0.5 in human platelet suspensions. Morphine (5 M) potentiated [3Hinositol monophosphate formation stimulated by collagen (5 g/ml) in [3Hmyoinositol loaded platelets. Furthermore, morphine also potentiated [Ca2+]i mobilization in human platelet suspensions stimulated by collagen (1 g/ml). At the same dose, morphine significantly potentiated thromboxane B2 formation of collagen-activated platelets. Consequently, we measured prostagladinE2 formation as an index of cyclooxygenase activity. We found that morphine had no significant effect on cyclooxygenase activity, and found it did not potentiate collagen-induced platelet aggregation in the presence of yohimbine. According to these results, we found the effect of morphine on human platelets may be mediated via activation of adrenoceptors. On the other hand, morphine (1, 5 ) inhibited prostaglandin E1 (10 induced cyclic AMP increase in human platelets. We examined this potentiation involved in platelet signal transduction system such as Na/H pump in human platelet suspensions. In contrast, morphine did not significantly increase nitrate formation in human platelets. Moreover, we found morphine did not influence the binding of FITC-triflavin to platelet glycoprotein IIb/IIIa complex. Triflavin, an Arg-Gly-Asp-containing antiplatelet peptide, was purified from Trimeresurus flavoviridis snake venom. Measurement of the platelet membrane fluidity, we found that morphine did not significantly affect the platelet membrane fluidity diphenylhexatriene (DPH)-loaded platelets . Based on the above observations, we suggested that morphine may bind to adrenoceptors in human platelets, resulting in inhibition of cyclic AMP formation and concurrently increased intracellular Ca2+, resulting in activation of phospholipase A2 , and increased formation of thromboxane A2 formation, and potentiation of platelet aggregation.
author2 Joen-Rong Sheu
author_facet Joen-Rong Sheu
Chiao-Ling Fang
方喬玲
author Chiao-Ling Fang
方喬玲
spellingShingle Chiao-Ling Fang
方喬玲
Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
author_sort Chiao-Ling Fang
title Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
title_short Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
title_full Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
title_fullStr Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
title_full_unstemmed Mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
title_sort mechanisms of morphine potentiated agonist-induced platelet aggregation in human platelets
publishDate 2000
url http://ndltd.ncl.edu.tw/handle/10384534537796013427
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