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吸食胶水与远端肾小管酸中毒:尊重事实

Glue-sniffing and distal renal tubular acidosis: sticking to the facts.

作者信息

Carlisle E J, Donnelly S M, Vasuvattakul S, Kamel K S, Tobe S, Halperin M L

机构信息

Renal Division, St. Michael's Hospital, Toronto, Canada.

出版信息

J Am Soc Nephrol. 1991 Feb;1(8):1019-27. doi: 10.1681/ASN.V181019.

Abstract

An index case is presented to introduce the subject of the acid-base and electrolyte abnormalities resulting from toluene abuse. These include metabolic acidosis associated with a normal anion gap and excessive loss of sodium and potassium in the urine. The major question addressed is, what is the basis for the metabolic acidosis? Overproduction of hippuric acid resulting from the metabolism of toluene plays a more important role in the genesis of the metabolic acidosis than was previously believed. This conclusion is supported by the observation that the rate of excretion of ammonium was not low during metabolic acidosis in six of eight patients, suggesting that distal renal tubular acidosis was not an important acid-base abnormality in most cases where ammonium was measured. The excretion of hippurate in the urine unmatched by ammonium also mandates an enhanced rate of excretion of the cations, sodium and potassium. The loss of sodium causes extracellular fluid volume contraction and a fall in the glomerular filtration rate, which may transform the normal anion gap type of metabolic acidosis into one with a high anion gap (accumulation of hippurate and other anions). Continuing loss of potassium in the urine leads to hypokalemia. An understanding of the metabolism of toluene provides the basis for the unusual biochemical abnormalities seen with abuse of this solvent.

摘要

本文通过一个索引病例介绍了因甲苯滥用导致的酸碱和电解质异常问题。这些异常包括与正常阴离子间隙相关的代谢性酸中毒以及尿中钠和钾的过度流失。所探讨的主要问题是,代谢性酸中毒的基础是什么?甲苯代谢产生的马尿酸生成过多在代谢性酸中毒的发生中所起的作用比之前认为的更为重要。这一结论得到以下观察结果的支持:在八名患者中的六名代谢性酸中毒期间,铵的排泄率并不低,这表明在大多数测量铵的病例中,远端肾小管酸中毒并非重要的酸碱异常。尿中马尿酸盐的排泄与铵不匹配也要求提高阳离子钠和钾的排泄率。钠的流失导致细胞外液量减少和肾小球滤过率下降,这可能将正常阴离子间隙型代谢性酸中毒转变为高阴离子间隙型(马尿酸盐和其他阴离子的蓄积)。尿中钾的持续流失导致低钾血症。对甲苯代谢的了解为滥用这种溶剂时出现的异常生化异常提供了基础。

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