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Nat Metab:移植器官的低温保存

2019-10-02 Nature自然科研 Nature自然科研

根据《自然-代谢》最新发表的一项研究Succinate accumulation drives schaemiareperfusion injury during organ transplantation,快速冷却动物和人类供体心脏或能减少一种会损害移植后组织的化学物质。这些发现或许可以改进全球有限的捐献器官的保存。

根据《自然-代谢》最新发表的一项研究Succinate accumulation drives schaemiareperfusion injury during organ transplantation,快速冷却动物和人类供体心脏或能减少一种会损害移植后组织的化学物质。这些发现或许可以改进全球有限的捐献器官的保存。



暖温和低温下心脏ATP/ADP比率。来源:Martin et al.

在器官移植领域,一般使用心脏保存液保存供体心脏,但是供体心脏摘取时所发生的化学变化和器官低温保存的具体益处并不十分明了。

英国剑桥大学MRC线粒体生物学研究单位的Mike Murphy、剑桥大学的Kourosh Saeb-Parsy及同事对暖温或低温温度下保存的小鼠、猪和人类心脏进行了详细的代谢分析,发现暖温保存会增加代谢物琥珀酸盐的累积,而这会在心脏重新与血管相连后损害心脏组织。通过注射药物或者低温保存器官,可以防止琥珀酸盐累积,并改善了小鼠心脏移植结局。

作者总结表示,这项研究或能推动研发新药来抑制移植器官中琥珀酸盐的累积,改善移植效果。

原始出处:
Jack L. Martin, Ana S. H. Costa, et al. Succinate accumulation drives ischaemia-reperfusion injury during organ transplantation. Nature Metabolism.  30 September 2019.

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    2020-06-24 一闲
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    2020-03-17 liye789132251
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    2020-04-13 guojianrong
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    2019-10-14 thm112988

    0

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