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姜黄素和肉桂酸的常见线粒体靶点,膜活性天然酚类化合物。

Common Mitochondrial Targets of Curcumin and Cinnamic Acid, the Membrane-Active Natural Phenolic Compounds.

作者信息

Fedotcheva Tatiana A, Beloborodova Natalia V, Fedotcheva Nadezhda I

机构信息

Science Research Laboratory of Molecular Pharmacology, Medical Biological Faculty, Pirogov Russian National Research Medical University, Ministry of Health of the Russian Federation, Ostrovityanova St. 1, Moscow 117997, Russia.

Federal Research and Clinical Center of Intensive Care Medicine and Rehabilitology, Petrovka St., 25-2, Moscow 107031, Russia.

出版信息

Pharmaceutics. 2024 Sep 29;16(10):1272. doi: 10.3390/pharmaceutics16101272.

Abstract

Research has shown the multiple actions of curcumin on different cell systems, including enzymes and mitochondria. The detected effects of curcumin on mitochondria are diverse, ranging from protective to toxic. In this present work, the influence of curcumin, as well as cinnamic acid, which is a microbial metabolite and a possible product of the microbial breakdown of curcumin, on isolated mitochondria, was investigated. Membrane potential, swelling, respiration, and calcium retention capacity were studied using selective electrodes, fluorescence and spectral methods. It was found that curcumin at low concentrations (10-20 μM) activated the opening of the calcium-dependent permeability transition pore (mPTP) and decreased the calcium retention capacity and threshold concentrations necessary for the mPTP opening. Moreover, curcumin caused a concentration-dependent stepwise decrease in the membrane potential, accompanied by the activation of respiration and a decrease in oxidative phosphorylation, which indicates that curcumin is a typical mitochondrial uncoupler. The uncoupling effect strongly depended on the concentration of curcumin, which also increased, stepwise, from weak uncoupling at 25 µM to complete uncoupling at 75-100 µM. Cinnamic acid had similar effects, with the exception of the depolarizing effect, at concentrations that were an order of magnitude higher. Presumably, the uncoupling action of curcumin is a priming event that modulates any energy- and redox-dependent mitochondrial functions, from positive stimulation to toxic disorder. This effect can also underlie the curcumin-induced changes in different cellular processes and be achieved by targeted delivery of curcumin to certain cells, bypassing the microbiota.

摘要

研究表明姜黄素对不同细胞系统具有多种作用,包括对酶和线粒体的作用。检测到姜黄素对线粒体的影响多种多样,从保护作用到毒性作用都有。在本研究中,研究了姜黄素以及肉桂酸(一种微生物代谢产物,可能是姜黄素微生物分解的产物)对分离线粒体的影响。使用选择性电极、荧光和光谱方法研究了膜电位、肿胀、呼吸和钙保留能力。结果发现,低浓度(10 - 20 μM)的姜黄素激活了钙依赖性通透性转换孔(mPTP)的开放,降低了钙保留能力以及mPTP开放所需的阈值浓度。此外,姜黄素导致膜电位呈浓度依赖性逐步下降,同时伴随着呼吸的激活和氧化磷酸化的降低,这表明姜黄素是一种典型的线粒体解偶联剂。解偶联效应强烈依赖于姜黄素的浓度,其也逐步增加,从25 μM时的弱解偶联到75 - 100 μM时的完全解偶联。肉桂酸具有类似的作用,但除了去极化作用外,其浓度要高一个数量级。据推测,姜黄素的解偶联作用是一个引发事件,可调节任何能量和氧化还原依赖性的线粒体功能,从正向刺激到毒性紊乱。这种效应也可能是姜黄素诱导不同细胞过程变化的基础,并且可以通过将姜黄素靶向递送至某些细胞来实现,从而绕过微生物群。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e7b/11510242/8da70a4a0d46/pharmaceutics-16-01272-g001.jpg

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