高血糖が心血管系に及ぼす作用:イソフルラン麻酔犬での検討

Introduction: Abrupt hyperglycemia induces unexpected cardiovascular responses; however, their underlying pathophysiological mechanisms remain unknown. We studied how hyperglycemia affects the cardiohemodynamic and electrophysiological variables.Methods: Glucose in a dose of 3 g/6 mL/kg was intraven...

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Published in日本薬理学会年会要旨集 p. 3-Y-G1-3
Main Authors 長澤(萩原), 美帆子, 神林, 隆一, 川合, 眞一, 布井, 啓雄, Jörg, Täubel, 廣川, 佳貴, 中瀬古(泉), 寛子, 杉山, 篤, 武井, 義則, 後藤, 愛, 松本, 明郎
Format Journal Article
LanguageJapanese
Published 公益社団法人 日本薬理学会 2021
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ISSN2435-4953
DOI10.1254/jpssuppl.94.0_3-Y-G1-3

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Abstract Introduction: Abrupt hyperglycemia induces unexpected cardiovascular responses; however, their underlying pathophysiological mechanisms remain unknown. We studied how hyperglycemia affects the cardiohemodynamic and electrophysiological variables.Methods: Glucose in a dose of 3 g/6 mL/kg was intravenously infused over 30 min to the isoflurane-anesthetized intact dogs (n=4).Results: Administration of glucose increased plasma glucose level and osmolality but decreased Na+, Cl− and glucagon concentrations, whereas it tended to increase insulin level accompanied with decreased K+ concentration. Glucose decreased peripheral vascular resistance, but increased heart rate, left ventricular contractility and cardiac output along with increased preload to the left ventricle. Glucose infusion prolonged atrioventricular nodal and intraventricular conduction time as well as ventricular repolarization period.Conclusion: Delay of ventricular repolarization might be partly caused by insulin-induced hypokalemia in the hyperglycemia dog model. Hyperosmolarity was reported to induce negative chronotropic, inotropic and dromotropic effects in vitro, which could be well counterbalanced by the reflex-mediated sympathetic tone in vivo, resulting in various phenotypes as shown in this study.
AbstractList Introduction: Abrupt hyperglycemia induces unexpected cardiovascular responses; however, their underlying pathophysiological mechanisms remain unknown. We studied how hyperglycemia affects the cardiohemodynamic and electrophysiological variables.Methods: Glucose in a dose of 3 g/6 mL/kg was intravenously infused over 30 min to the isoflurane-anesthetized intact dogs (n=4).Results: Administration of glucose increased plasma glucose level and osmolality but decreased Na+, Cl− and glucagon concentrations, whereas it tended to increase insulin level accompanied with decreased K+ concentration. Glucose decreased peripheral vascular resistance, but increased heart rate, left ventricular contractility and cardiac output along with increased preload to the left ventricle. Glucose infusion prolonged atrioventricular nodal and intraventricular conduction time as well as ventricular repolarization period.Conclusion: Delay of ventricular repolarization might be partly caused by insulin-induced hypokalemia in the hyperglycemia dog model. Hyperosmolarity was reported to induce negative chronotropic, inotropic and dromotropic effects in vitro, which could be well counterbalanced by the reflex-mediated sympathetic tone in vivo, resulting in various phenotypes as shown in this study.
Author 神林, 隆一
中瀬古(泉), 寛子
布井, 啓雄
後藤, 愛
廣川, 佳貴
杉山, 篤
Jörg, Täubel
長澤(萩原), 美帆子
川合, 眞一
武井, 義則
松本, 明郎
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  fullname: 松本, 明郎
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Snippet Introduction: Abrupt hyperglycemia induces unexpected cardiovascular responses; however, their underlying pathophysiological mechanisms remain unknown. We...
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SubjectTerms electrocardiography (ECG)
heart
hemodynamics
hyperglycemia
Title 高血糖が心血管系に及ぼす作用:イソフルラン麻酔犬での検討
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