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Use of a Hanging Weight System for Coronary Artery Occlusion in Mice

机译:吊重系统在小鼠冠状动脉闭塞中的应用

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摘要

Murine studies of acute injury are an area of intense investigation, as knockout mice for different genes are becoming increasingly available 1-38. Cardioprotection by ischemic preconditioning (IP) remains an area of intense investigation. To further elucidate its molecular basis, the use of knockout mouse studies is particularly important 7, 14, 30, 39. Despite the fact that previous studies have already successfully performed cardiac ischemia and reperfusion in mice, this model is technically very challenging. Particularly, visual identification of the coronary artery, placement of the suture around the vessel and coronary occlusion by tying off the vessel with a supported knot is technically difficult. In addition, re-opening the knot for intermittent reperfusion of the coronary artery during IP without causing surgical trauma adds additional challenge. Moreover, if the knot is not tied down strong enough, inadvertent reperfusion due to imperfect occlusion of the coronary may affect the results. In fact, this can easily occur due to the movement of the beating heart.
机译:由于不同基因的基因敲除小鼠越来越多地被使用,因此对小鼠急性损伤的研究是一个广泛研究的领域1-38。缺血预处理(IP)对心脏的保护作用仍是研究热点。为了进一步阐明其分子基础,使用敲除小鼠研究特别重要7、14、30、39。尽管先前的研究已经成功地对小鼠进行了心脏缺血和再灌注,但该模型在技术上非常具有挑战性。特别地,通过冠状动脉的视觉识别,冠状动脉的缝合线的放置以及通过支撑结打结血管来冠状动脉闭塞在技术上是困难的。此外,在IP手术期间重新打开冠状动脉以进行间断性再灌注而又不引起手术创伤的过程增加了额外的挑战。此外,如果结扎得不够牢固,则由于冠状动脉闭塞不全而导致的再灌注会影响结果。实际上,由于跳动的心脏的运动,这很容易发生。

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