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衣康酸对神经元活力和脑线粒体功能的影响。

Effects of itaconic acid on neuronal viability and brain mitochondrial functions.

机构信息

Neuroscience Institute, Lithuanian University of Health Sciences, Kaunas, Lithuania.

Faculty of Medicine, Department of Biochemistry, Lithuanian University of Health Sciences, Kaunas, Lithuania.

出版信息

J Bioenerg Biomembr. 2021 Oct;53(5):499-511. doi: 10.1007/s10863-021-09911-6. Epub 2021 Jul 9.

Abstract

Recent studies have identified that under stimulation by bacterial lipopolysaccharide mammalian macrophages produce itaconic acid. Yet, it is unknown whether itaconate has any effect on viability of brain cells. Here we used extracellularly added itaconate to investigate its effects on viability of cerebellar granule cells (CGC) in cultures and respiratory functions of these cells and isolated brain mitochondria. We found that 3-5 mM itaconate had no effect on the viability of neurons, but 10 mM itaconate was toxic and induced neuronal apoptosis. Removal of itaconate after 24 h incubation resulted in further decrease in viability and number of neurons. Respiration of intact neurons was not affected by itaconate, but permeabilized cells as well as isolated brain mitochondria demonstrated decreased rates of respiration in the presence of itaconate. Using isolated adult rat brain mitochondria we found that itaconate decreased mitochondrial phosphorylating respiration, mitochondrial calcium retention capacity, production of reactive oxygen species with Complex I and Complex II substrates as well as inhibition of Complex I, Complex IV and ATP synthase. In conclusion, the results suggest that itaconic acid at millimolar concentrations affects mitochondrial functions and viability of neurons.

摘要

最近的研究表明,在细菌脂多糖的刺激下,哺乳动物巨噬细胞会产生衣康酸。然而,目前尚不清楚衣康酸是否会对脑细胞的活力产生影响。在这里,我们使用细胞外添加的衣康酸来研究其对培养的小脑颗粒细胞(CGC)活力以及这些细胞和分离的脑线粒体的呼吸功能的影响。我们发现 3-5mM 的衣康酸对神经元的活力没有影响,但 10mM 的衣康酸是有毒的,并诱导神经元凋亡。在孵育 24 小时后去除衣康酸会导致神经元活力和数量进一步下降。衣康酸对完整神经元的呼吸没有影响,但通透性细胞和分离的脑线粒体在衣康酸存在的情况下显示呼吸率下降。使用分离的成年大鼠脑线粒体,我们发现衣康酸降低了线粒体磷酸化呼吸、线粒体钙保留能力、使用复合物 I 和复合物 II 底物产生的活性氧以及对复合物 I、复合物 IV 和 ATP 合酶的抑制作用。总之,这些结果表明,衣康酸在毫摩尔浓度下会影响线粒体功能和神经元活力。

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