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灌注心脏制剂的氧需求:机电功能和氧合不足如何影响生理学和光学测量。

Oxygen demand of perfused heart preparations: how electromechanical function and inadequate oxygenation affect physiology and optical measurements.

作者信息

Kuzmiak-Glancy Sarah, Jaimes Rafael, Wengrowski Anastasia M, Kay Matthew W

机构信息

Department of Biomedical Engineering, The George Washington University, Washington, DC, USA.

Department of Pharmacology and Physiology, The George Washington University, Washington, DC, USA.

出版信息

Exp Physiol. 2015 Jun;100(6):603-16. doi: 10.1113/EP085042.

Abstract

What is the topic of this review? This review discusses how the function and electrophysiology of isolated perfused hearts are affected by oxygenation and energy utilization. The impact of oxygenation on fluorescence measurements in perfused hearts is also discussed. What advances does it highlight? Recent studies have illuminated the inherent differences in electromechanical function, energy utilization rate and oxygen requirements between the primary types of excised heart preparations. A summary and analysis of how these variables affect experimental results are necessary to elevate the physiological relevance of these approaches in order to advance the field of whole-heart research. The ex vivo perfused heart recreates important aspects of in vivo conditions to provide insight into whole-organ function. In this review we discuss multiple types of ex vivo heart preparations, explain how closely each mimic in vivo function, and discuss how changes in electromechanical function and inadequate oxygenation of ex vivo perfused hearts may affect measurements of physiology. Hearts that perform physiological work have high oxygen demand and are likely to experience hypoxia when perfused with a crystalloid perfusate. Adequate myocardial oxygenation is critically important for obtaining physiologically relevant measurements, so when designing experiments the type of ex vivo preparation and the capacity of perfusate to deliver oxygen must be carefully considered. When workload is low, such as during interventions that inhibit contraction, oxygen demand is also low, which could dramatically alter a physiological response to experimental variables. Changes in oxygenation also alter the optical properties of cardiac tissue, an effect that may influence optical signals measured from both endogenous and exogenous fluorophores. Careful consideration of oxygen supply, working condition, and wavelengths used to acquire optical signals is critical for obtaining physiologically relevant measurements during ex vivo perfused heart studies.

摘要

这篇综述的主题是什么?本综述讨论了离体灌注心脏的功能和电生理学如何受到氧合作用和能量利用的影响。还讨论了氧合作用对灌注心脏荧光测量的影响。它突出了哪些进展?最近的研究揭示了不同类型离体心脏标本在机电功能、能量利用率和氧需求方面的内在差异。总结和分析这些变量如何影响实验结果对于提高这些方法的生理相关性至关重要,以便推动全心研究领域的发展。离体灌注心脏再现了体内条件的重要方面,以深入了解全器官功能。在本综述中,我们讨论了多种类型的离体心脏标本,解释了每种标本模拟体内功能的程度,并讨论了离体灌注心脏的机电功能变化和氧合不足如何影响生理学测量。进行生理工作的心脏对氧需求很高,在用晶体灌注液灌注时可能会出现缺氧。充足的心肌氧合对于获得生理相关的测量结果至关重要,因此在设计实验时,必须仔细考虑离体标本的类型和灌注液输送氧气的能力。当工作量较低时,例如在抑制收缩的干预过程中,氧需求也较低,这可能会显著改变对实验变量的生理反应。氧合作用的变化也会改变心脏组织的光学特性,这种效应可能会影响从内源性和外源性荧光团测量的光信号。在离体灌注心脏研究中,仔细考虑氧气供应、工作条件和用于获取光信号的波长对于获得生理相关的测量结果至关重要。

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