Future Directions for Dialysis

R. Vanholder
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引用次数: 1

Abstract

Dialysis is life-saving for an exponentially growing number of kidney failure patients. Yet, the current concept also has several drawbacks, such as high societal cost, incomplete kidney function replacement, dismal outcomes, low quality of life and a considerable ecologic footprint. In spite of many changes over the last fifty years, the original concept remained largely unmodified and the drawbacks did not disappear. In this article, we present a number of alternative solutions that are currently considered or tested which might have a potential impact on uremic toxin concentration, quality of life or environmental footprint that goes beyond what is currently achieved with traditional dialysis. These comprise applications of regenerative medicine; bioartificial kidney; conceptual changes in extracorporeal removal; energy-neutral, water-limiting dialysis; material recycling; keto-analogues; xenobiotics; and preservation of residual kidney function. As metabolism generating uremic toxins also generates beneficial compounds, some of these options may also maintain or restore this balance in contrast to dialysis that likely removes without distinction. All proposed options are also exemplary of how out-of-the-box thinking is needed to disrupt the status quo in treatment of kidney diseases that has now persisted for too long.
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透析的未来方向
透析对数量呈指数增长的肾衰竭患者来说是救命良药。然而,目前的概念也有一些缺点,如社会成本高,肾功能替代不完全,结果令人沮丧,生活质量低,生态足迹大。尽管在过去的五十年里发生了许多变化,但最初的概念在很大程度上没有改变,缺点也没有消失。在本文中,我们提出了一些目前正在考虑或测试的替代解决方案,这些解决方案可能对尿毒症毒素浓度、生活质量或环境足迹产生潜在影响,这超出了目前传统透析所能达到的效果。这些包括再生医学的应用;摘要生物人工肾;体外切除的概念变化;能量中性、限水透析;材料回收;keto-analogues;外源性物质;和保留剩余的肾功能。由于代谢产生的尿毒症毒素也会产生有益的化合物,因此这些选择中的一些也可能维持或恢复这种平衡,而透析可能会毫无区别地去除这种平衡。所有提出的方案也都是打破常规思维的典范,以打破肾脏疾病治疗的现状,这种现状已经持续了太久。
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