Neuroprotective Actions of Methylene Blue and Its Derivatives

鱼藤酮 线粒体 超氧化物 活性氧 生物化学 神经保护 化学 氧化应激 抗氧化剂 吩噻嗪 亚甲蓝 生物物理学 药理学 生物 催化作用 光催化
作者
Ethan Poteet,Ali Winters,Liang‐Jun Yan,Kyle Shufelt,Kayla N. Green,James W. Simpkins,Wen Yi,Shao‐Hua Yang
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:7 (10): e48279-e48279 被引量:148
标识
DOI:10.1371/journal.pone.0048279
摘要

Methylene blue (MB), the first lead chemical structure of phenothiazine and other derivatives, is commonly used in diagnostic procedures and as a treatment for methemoglobinemia. We have previously demonstrated that MB could function as an alternative mitochondrial electron transfer carrier, enhance cellular oxygen consumption, and provide protection in vitro and in rodent models of Parkinson's disease and stroke. In the present study, we investigated the structure-activity relationships of MB in vitro using MB and six structurally related compounds. MB reduces mitochondrial superoxide production via alternative electron transfer that bypasses mitochondrial complexes I-III. MB mitigates reactive free radical production and provides neuroprotection in HT-22 cells against glutamate, IAA and rotenone toxicity. Distinctly, MB provides no protection against direct oxidative stress induced by glucose oxidase. Substitution of a side chain at MB's 10-nitrogen rendered a 1000-fold reduction of the protective potency against glutamate neurototoxicity. Compounds without side chains at positions 3 and 7, chlorophenothiazine and phenothiazine, have distinct redox potentials compared to MB and are incapable of enhancing mitochondrial electron transfer, while obtaining direct antioxidant actions against glutamate, IAA, and rotenone insults. Chlorophenothiazine exhibited direct antioxidant actions in mitochondria lysate assay compared to MB, which required reduction by NADH and mitochondria. MB increased complex IV expression and activity, while 2-chlorphenothiazine had no effect. Our study indicated that MB could attenuate superoxide production by functioning as an alternative mitochondrial electron transfer carrier and as a regenerable anti-oxidant in mitochondria.
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