The Importance of Recognizing and Addressing the Spectrum of Acid Stress

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-07-01 DOI:10.1053/j.ackd.2022.06.001
Donald E. Wesson
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引用次数: 1

Abstract

Acid accumulation sufficient to reduce plasma bicarbonate concentration, thereby recognized as chronic metabolic acidosis, harms bones and muscles and appears to enhance progression of CKD. Evolving evidence supports that progressive acid accumulation that is not enough to cause chronic metabolic acidosis nevertheless has deleterious effects. Measurable acid retention without reduced plasma bicarbonate concentration, called eubicarbonatemic acidosis, also appears to cause kidney injury and exacerbate CKD progression. Furthermore, chronic engagement of mechanisms to mitigate the ongoing acid challenge of net acid-producing diets of developed societies also appears to be deleterious, including for kidney health. This review challenges clinicians to consider the growing evidence for a spectrum of acid-accumulation disorders that include lesser degrees of acid accumulation than metabolic acidosis yet are harmful. Further research will develop clinically useful tools to identify individuals suffering from these earlier stages of acid stress and determine if the straightforward and comparatively inexpensive intervention of dietary acid reduction relieves or eliminates the harm they appear to cause.

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认识和处理酸胁迫谱的重要性
酸积累足以降低血浆碳酸氢盐浓度,从而被认为是慢性代谢性酸中毒,损害骨骼和肌肉,并似乎加速CKD的进展。不断发展的证据支持渐进式的酸积累,虽然不足以引起慢性代谢性酸中毒,但却有有害的影响。可测量的酸潴留而不降低血浆碳酸氢盐浓度,称为碳酸氢盐酸中毒,也可能导致肾损伤并加剧CKD的进展。此外,缓解发达社会净产酸饮食的持续酸挑战的机制的长期参与似乎也是有害的,包括对肾脏健康。这篇综述对临床医生提出了挑战,要求他们考虑越来越多的证据,证明一系列的酸积累疾病,包括比代谢性酸中毒程度更小的酸积累,但却是有害的。进一步的研究将开发临床有用的工具,以确定患有这些早期酸应激的个体,并确定直接且相对便宜的饮食酸减少干预是否减轻或消除了它们似乎造成的伤害。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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