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Organ preservation solution containing dissolved hydrogen gas from a hydrogen-absorbing alloy canister improves function of transplanted ischemic kidneys in miniature pigs

机译:包含来自吸氢合金罐的溶解氢气的器官保存溶液可改善微型猪移植缺血性肾脏的功能

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摘要

Various methods have been devised to dissolve hydrogen gas in organ preservation solutions, including use of a hydrogen gas cylinder, electrolysis, or a hydrogen-generating agent. However, these methods require considerable time and effort for preparation. We investigated a practical technique for rapidly dissolving hydrogen gas in organ preservation solutions by using a canister containing hydrogen-absorbing alloy. The efficacy of hydrogen-containing organ preservation solution created by this method was tested in a miniature pig model of kidney transplantation from donors with circulatory arrest. The time required for dissolution of hydrogen gas was only 2–3 minutes. When hydrogen gas was infused into a bag containing cold ETK organ preservation solution at a pressure of 0.06 MPa and the bag was subsequently opened to the air, the dissolved hydrogen concentration remained at 1.0 mg/L or more for 4 hours. After warm ischemic injury was induced by circulatory arrest for 30 minutes, donor kidneys were harvested and perfused for 5 minutes with hydrogen-containing cold ETK solution or hydrogen-free cold ETK solution. The perfusion rate was faster from the initial stage with hydrogen-containing cold ETK solution than with hydrogen-free ETK solution. After storage of the kidney in hydrogen-free preservation solution for 1 hour before transplantation, no urine production was observed and blood flow was not detected in the transplanted kidney at sacrifice on postoperative day 6. In contrast, after storage in hydrogen-containing preservation solution for either 1 or 4 hours, urine was detected in the bladder and blood flow was confirmed in the transplanted kidney. This method of dissolving hydrogen gas in organ preservation solution is a practical technique for potentially converting damaged organs to transplantable organs that can be used safely in any clinical setting where organs are removed from donors.
机译:已经设计出各种方法来将氢气溶解在器官保存溶液中,包括使用氢气瓶,电解或制氢剂。但是,这些方法需要大量的时间和精力来准备。我们研究了一种实用技术,该技术可通过使用含有吸氢合金的碳罐快速将氢气溶解在器官保存溶液中。通过这种方法产生的含氢器官保存液的功效在具有循环停止作用的供体的微型肾脏移植猪模型中进行了测试。氢气溶解所需的时间仅为2至3分钟。当在0.06MPa的压力下将氢气注入装有冷ETK器官保存溶液的袋子中并且随后将袋子向空气打开时,溶解的氢浓度在1.0mg / L以上保持4小时。在通过循环停止30分钟诱发温暖的缺血性损伤后,收获供体肾脏,并用含氢的冷ETK溶液或无氢的冷ETK溶液灌注5分钟。从含氢的冷ETK溶液开始,灌注速度比无氢的ETK溶液快。肾脏在移植前于无氢保存液中保存1小时后,在术后第6天处死时未观察到尿液生成,在移植的肾脏中未检测到血流。在1或4小时内,在膀胱中检测到尿液,并在移植的肾脏中确认了血流。这种将氢气溶解在器官保存溶液中的方法是一种实用的技术,可将受损的器官潜在地转化为可移植的器官,该器官可以在从供体中取出器官的任何临床环境中安全使用。

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