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首页> 外文期刊>Critical care medicine >MORE for multiple organ dysfunction syndrome: Multiple Organ REanimation, REgeneration, and REprogramming.
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MORE for multiple organ dysfunction syndrome: Multiple Organ REanimation, REgeneration, and REprogramming.

机译:多器官功能障碍综合征的更多信息:多器官复活,再生和重新编程。

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摘要

Those who care for the critically ill and injured rightfully celebrate the advances made by our field over its first 50 yrs. Advances in systems, tissue, and molecular engineering, together defined as "health engineering," will provide unprecedented opportunities to treat multiple organ dysfunction syndrome in the 21st century. In the future, Multiple Organ REanimation, REgeneration, and REprogramming will be responsible for new treatment approaches for those with multiple organ dysfunction syndrome; several examples are presented here. Thus, as we spent the first 50 yrs of care for the critical ill and injured learning how best to hook humans up to machines, we will spend the next 50 yrs understanding better how to liberate patients from mechanical support. It is difficult to know when these advances will be realized given that the rate of change continues to increase and the seemingly impossible goal of reprogramming fully differentiated cells was accomplished recently by manipulating a few transcription factors. It is not unrealistic to expect that in the next couple of decades that it will be possible to dedifferentiate dysfunctional somatic cells in vivo to a more robust, resistant cell phenotype. Our future should be aimed in part at refining our skill sets and refocusing (even rebranding) critical care as health engineering aimed at Multiple Organ REanimation, REgeneration, and REprogramming.
机译:那些照料重病和受伤的人理所当然地庆祝了我们领域在其最初的50年中所取得的进步。系统,组织和分子工程学的进步,统称为“健康工程学”,将为21世纪治疗多器官功能障碍综合症提供前所未有的机会。将来,多器官复活,再生和重新编程将为患有多器官功能障碍综合症的患者提供新的治疗方法。这里有几个例子。因此,当我们在头50年的重症和受伤护理中学习如何最好地将人连接到机器上时,我们将在接下来的50年中更好地了解如何使患者摆脱机械支持。鉴于变化率不断提高,并且最近通过操纵一些转录因子实现了对完全分化的细胞进行重新编程的看似不可能的目标,很难知道何时才能实现这些进步。期望在未来的几十年中将体内功能失调的体细胞去分化为更强大,更具抵抗力的细胞表型,这并非不切实际。我们的未来应该部分地针对完善我们的技能并重新定位(甚至重塑品牌)重症监护,将其作为旨在实现多器官再生,再生和重新编程的健康工程。

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