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瑞氏综合征:水杨酸盐与线粒体功能

Reye's syndrome: salicylates and mitochondrial functions.

作者信息

Martens M E, Lee C P

出版信息

Biochem Pharmacol. 1984 Sep 15;33(18):2869-76. doi: 10.1016/0006-2952(84)90209-0.

Abstract

The effects of aspirin (acetylsalicylate, ASA) and related compounds in the presence of Ca2+ on the oxidative metabolism of isolated rat liver mitochondria were studied. Intact mitochondrial preparations preincubated with ASA + Ca2+ exhibited a transient stimulation of the state 4 respiratory rate with NAD+-linked substrates, followed by an inhibition which could not be released by the addition of ADP or uncoupler. Maximum respiratory rates were achieved by subsequent addition of NAD+ or succinate. The Ca2+-transport inhibitors ruthenium red and ethylene glycol-bis-(beta-aminoethyl ether) N,N'-tetraacetic acid (EGTA) prevented these effects. Five brands of commercial aspirin were tested and were as effective as purified ASA. Tylenol (acetaminophen) could reproduce these effects only at much higher (greater than or equal to 10-fold) concentrations. Other salicyl derivatives showed results qualitatively similar to ASA, with potencies in the order: acid much much greater than ASA much greater than alcohol greater than or equal to catechol greater than amide, salicylate being approximately 10-fold more potent than ASA. The magnitude of the effect seen depended on the Ca2+ (endogenous + exogenous) and salicylate concentrations/mg mitochondrial protein, and on the length of the preincubation. Added inorganic phosphate was also required. That salicylate + Ca2+ induces an increase in the permeability of the mitochondrial inner membrane was demonstrated by the observation that 90% of the intramitochondrial NAD(P)+ was released into the surrounding medium upon preincubation of intact mitochondria with these agents. Salicylate + Ca2+ had virtually no effect on respiration with succinate (+ rotenone) as substrate at salicylate concentrations which markedly affected NAD+-linked substrate oxidation. The presence of rotenone in the preincubation mixture prevented the damaging effects of salicylate + Ca2+ on the mitochondrial membrane, suggesting that the redox state of intramitochondrial pyridine nucleotides can modulate these effects. The results reported here are similar to those reported previously by our laboratory for the effects of Reye's plasma and allantoin + Ca2+, and indicate that, like these agents, salicylate and salicyl compounds can potentiate the Ca2+-induced damage to the mitochondrial inner membrane and may be another factor responsible for Reye's syndrome.

摘要

研究了阿司匹林(乙酰水杨酸,ASA)及相关化合物在Ca2+存在下对分离的大鼠肝线粒体氧化代谢的影响。预先用ASA + Ca2+孵育的完整线粒体制剂,在以NAD+连接的底物存在时,对状态4呼吸速率有短暂的刺激作用,随后出现抑制作用,添加ADP或解偶联剂都无法解除这种抑制。随后添加NAD+或琥珀酸可达到最大呼吸速率。Ca2+转运抑制剂钌红和乙二醇双(β-氨基乙醚)N,N'-四乙酸(EGTA)可阻止这些作用。测试了五个品牌的市售阿司匹林,其效果与纯化的ASA相同。对乙酰氨基酚仅在高得多(大于或等于10倍)的浓度下才能重现这些作用。其他水杨酸衍生物的结果在质量上与ASA相似,效力顺序为:酸远大于ASA远大于醇大于或等于儿茶酚大于酰胺,水杨酸盐的效力约为ASA的10倍。观察到的作用程度取决于Ca2+(内源性+外源性)和水杨酸盐浓度/毫克线粒体蛋白,以及预孵育的时间长度。还需要添加无机磷酸盐。通过观察到完整线粒体与这些试剂预孵育后,90%的线粒体内NAD(P)+释放到周围介质中,证明水杨酸盐+ Ca2+会导致线粒体内膜通透性增加。在水杨酸盐浓度显著影响NAD+连接底物氧化的情况下,水杨酸盐+ Ca2+对以琥珀酸(+鱼藤酮)为底物的呼吸几乎没有影响。预孵育混合物中鱼藤酮的存在可防止水杨酸盐+ Ca2+对线粒体膜的损伤作用,表明线粒体内吡啶核苷酸的氧化还原状态可调节这些作用。此处报道的结果与我们实验室先前报道的关于瑞氏血浆和尿囊素+ Ca2+作用的结果相似,表明与这些试剂一样,水杨酸盐和水杨酸化合物可增强Ca2+诱导的线粒体内膜损伤,可能是导致瑞氏综合征的另一个因素。

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