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高血糖诱导的心血管不良反应与渗透压依赖性和非依赖性机制有关:分析导致犬心血管表型的相互作用。

Both osmolality-dependent and independent mechanisms are associated with acute hyperglycemia-induced cardiovascular adverse reactions: Analysis of the mutual interactions leading to cardiovascular phenotypes in dogs.

机构信息

Department of Pharmacology, Faculty of Medicine, Toho University.

Department of Aging Pharmacology, Faculty of Medicine, Toho University.

出版信息

J Toxicol Sci. 2023;48(3):169-178. doi: 10.2131/jts.48.169.

DOI:10.2131/jts.48.169
PMID:36858642
Abstract

Acute hyperglycemia causes various cardiovascular responses; however, the underlying pathophysiology in vivo is myriad and complex, of which mutual interactions remain poorly understood. We analyzed the cardiovascular effects of acute hyperglycemia in comparison with those of hyperosmolality alone. Three g/kg of D-glucose (n = 4) or D-mannitol (n = 4) was intravenously infused to isoflurane-anesthetized intact dogs. Glucose infusion increased plasma glucose level and osmolality, whereas mannitol infusion similarly changed osmolality to glucose infusion but decreased glucose level. Glucose infusion decreased total peripheral vascular resistance, but increased heart rate, left ventricular contraction, left ventricular preload and cardiac output without altering mean blood pressure. Mannitol infusion likewise changed them, but its positive chronotropic and inotropic effects were less potent than those of glucose infusion. Glucose infusion prolonged PR interval, QRS width and QTcV. Mannitol infusion similarly changed them, but its QTcV prolongation was smaller than that of glucose infusion. Glucose infusion-induced cardiovascular responses would be basically attributed to osmolality-dependent mechanisms, whereas its positive chronotropic and inotropic effects along with repolarization delay may be enhanced by osmolality-independent mechanisms, including hyperglycemia by itself and insulin release.

摘要

急性高血糖会引起各种心血管反应;然而,体内潜在的病理生理学机制是多样且复杂的,其中相互作用仍知之甚少。我们分析了急性高血糖与单纯高渗透压对心血管的影响。将 3 g/kg 的 D-葡萄糖(n = 4)或 D-甘露醇(n = 4)静脉输注到异氟烷麻醉的完整犬体内。葡萄糖输注会增加血浆葡萄糖水平和渗透压,而甘露醇输注则会将渗透压改变为与葡萄糖输注相同,但会降低葡萄糖水平。葡萄糖输注会降低总外周血管阻力,但会增加心率、左心室收缩力、左心室前负荷和心输出量,而不改变平均血压。甘露醇输注也会改变这些参数,但它的正性变时和变力作用不如葡萄糖输注强。葡萄糖输注会延长 PR 间期、QRS 宽度和 QTcV。甘露醇输注也会改变这些参数,但它的 QTcV 延长程度小于葡萄糖输注。葡萄糖输注引起的心血管反应主要归因于渗透压依赖性机制,而其正性变时和变力作用以及复极延迟可能会被非渗透压依赖性机制增强,包括高血糖本身和胰岛素释放。

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Both osmolality-dependent and independent mechanisms are associated with acute hyperglycemia-induced cardiovascular adverse reactions: Analysis of the mutual interactions leading to cardiovascular phenotypes in dogs.高血糖诱导的心血管不良反应与渗透压依赖性和非依赖性机制有关:分析导致犬心血管表型的相互作用。
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