首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >The use of hibernation induction triggers for cardiac transplant preservation.
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The use of hibernation induction triggers for cardiac transplant preservation.

机译:使用休眠诱导触发器可保存心脏移植物。

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Cardiac transplant is hindered by donor shortage and preservation time. Extended extracorporeal preservation could increase the number and distribution of hearts for transplantation. Interestingly, mammalian hibernation biology closely parallels the altered cardiac cellular physiology noted with hypothermic organ storage. The present study undertook to test whether treatment with hibernation induction triggers could improve myocardial functional recovery following prolonged ischemic storage in a nonhibernating mammalian model. To study this hypothesis, isolated rabbit hearts had baseline functional and metabolic parameters recorded and then received either hypothermic storage only or standard cardioplegia, or cardioplegia containing 1 mg/kg D-Ala2-Leu5-enkaphalin (DADLE), which mimics natural hibernation, or preperfusion with DADLE, administered for 15 min at 2 mmol, 25 min prior to cardioplegic ischemia. Hearts were then subjected to 18 hr of global ischemic storage at 4 degrees C. Isovolumic developed pressure, coronary flows, and myocardial oxygen consumption were significantly improved with DADLE pretreatment vs. all groups after storage and reflow. Furthermore, DADLE hearts demonstrated better histological ultrastructure preservation following prolonged storage ischemia. This study demonstrates that hibernation protection with DADLE is beneficial for prolonged cardiac storage. The use of hibernation induction triggers is promising for organ preservation and deserve further mechanistic study.
机译:心脏移植受供体短缺和保存时间的限制。延长体外保存可以增加移植心脏的数量和分布。有趣的是,哺乳动物的冬眠生物学与低温器官的存储密切相关,改变了心脏细胞的生理学。本研究旨在测试在非冬眠的哺乳动物模型中长期缺血存储后,冬眠诱导触发的治疗是否可以改善心肌功能的恢复。为了研究该假设,对离体的兔心脏记录了基线功能和代谢参数,然后仅接受低温存储或标准心脏停搏,或接受含有1 mg / kg D-Ala2-Leu5-enkaphalin(DADLE)的心脏停跳,其模仿自然冬眠,或在心脏停搏缺血前25分钟,以2 mmol的DADLE灌注15分钟。然后在4摄氏度下对心脏进行18个小时的整体缺血存储。与所有组在存储和回流后相比,DADLE预处理可使等容血管形成的压力,冠状动脉血流和心肌耗氧量得到显着改善。此外,DADLE心脏在长期缺血后表现出更好的组织学超微结构保存。这项研究表明,使用DADLE进行的冬眠保护对延长心脏的存储有益。冬眠诱导触发器的使用有望用于器官保存并值得进一步的机理研究。

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