首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Integrative Cardiovascular Physiology and Pathophysiology: Variability in coronary artery anatomy affects consistency of cardiac damage after myocardial infarction in mice
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Integrative Cardiovascular Physiology and Pathophysiology: Variability in coronary artery anatomy affects consistency of cardiac damage after myocardial infarction in mice

机译:综合心血管生理学和病理生理学:冠状动脉解剖结构的变化会影响小鼠心肌梗死后心脏损害的一致性

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摘要

Low reliability and reproducibility in heart failure models are well established. The purpose of the present study is to explore factors that affect model consistency of myocardial infarction (MI) in mice. MI was induced by left coronary artery (LCA) ligation. The coronary artery was casted with resin and visualized with fluorescent imaging ex vivo. LCA characteristics and MI size were analyzed individually in each animal, and MI size was correlated with left ventricular (LV) function by echocardiography. Coronary anatomy varies widely in mice, posing challenges for surgical ligation and resulting in inconsistent MI size postligation. The length of coronary arterial trunk, level of bifurcation, number of branches, and territory supplied by these branches are unique in each animal. When the main LCA trunk is ligated, this results in a large MI, but when a single branch is ligated, MI size is variable due to differing levels of LCA ligation and area supplied by the branches. During the ligation procedure, nearly 40% of LCAs are not grossly visible to the surgeon. In these situations, the surgeon blindly sutures a wider and deeper area of tissue in an attempt to catch the LCA. Paradoxically, these situations have greater odds of resulting in smaller MIs. In conclusion, variation in MI size and LV function after LCA ligation in mice is difficult to avoid. Anatomic diversity of the LCA in mice leads to inconsistency in MI size and functional parameters, and this is independent of potential technical modifications made by the operator.>NEW & NOTEWORTHY In the present study, we demonstrate that left coronary artery diversity in mice is one of the primary causes of variable myocardial infarction size and cardiac functional parameters in the left coronary artery ligation model. Recognition of anatomic diversity is essential to improve reliability and reproducibility in heart failure research.
机译:心力衰竭模型的低可靠性和可重复性已得到公认。本研究的目的是探讨影响小鼠心肌梗死(MI)模型一致性的因素。 MI由左冠状动脉(LCA)结扎诱导。用树脂浇铸冠状动脉并通过离体荧光成像可视化。分别分析每只动物的LCA特征和MI大小,并通过超声心动图将MI大小与左心室(LV)功能相关。小鼠的冠状动脉解剖结构差异很大,给手术结扎带来了挑战,并导致结扎后MI大小不一致。在每只动物中,冠状动脉干的长度,分叉的水平,分支的数量以及这些分支提供的区域都是唯一的。当连接主LCA主干时,这会导致较大的MI,但是当连接单个分支时,由于LCA连接的水平和分支所提供的面积不同,MI大小会有所不同。在结扎过程中,外科医生几乎看不到近40%的LCA。在这些情况下,外科医生盲目缝合更宽和更深的组织区域以试图捕获LCA。矛盾的是,这些情况导致MI较小的可能性更大。总之,很难避免小鼠LCA结扎后MI大小和LV功能的变化。 LCA在小鼠中的解剖学多样性导致MI大小和功能参数不一致,这与操作员进行的潜在技术修改无关。>新的和值得注意的在本研究中,我们证明了左冠状动脉小鼠冠状动脉多样性是左冠状动脉结扎模型中可变的心肌梗塞大小和心脏功能参数的主要原因之一。认识到解剖学多样性对于提高心力衰竭研究的可靠性和可重复性至关重要。

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