水飞蓟宾A对PC12APP细胞生物能量学及小鼠脑线粒体膜特性的影响

Impact of Silibinin A on Bioenergetics in PC12APP Cells and Mitochondrial Membrane Properties in Murine Brain Mitochondria.

作者信息

Esselun Carsten, Bruns Bastian, Hagl Stephanie, Grewal Rekha, Eckert Gunter P

机构信息

Institute for Nutritional Sciences, Justus-Liebig-University of Giessen, 35392 Giessen, Germany.

Institute of Pharmacology, Goethe-University of Frankfurt am Main, 60439 Frankfurt am Main, Germany.

出版信息

Antioxidants (Basel). 2021 Sep 24;10(10):1520. doi: 10.3390/antiox10101520.

Abstract

Age-related multifactorial diseases, such as the neurodegenerative Alzheimer's disease (AD), still remain a challenge to today's society. One mechanism associated with AD and aging in general is mitochondrial dysfunction (MD). Increasing MD is suggested to trigger other pathological processes commonly associated with neurodegenerative diseases. Silibinin A (SIL) is the main bioactive compound of the Silymarin extract from the Mediterranean plant (L.) (GAERTN/Compositae). It is readily available as a herbal drug and well established in the treatment of liver diseases as a potent radical scavenger reducing lipid peroxidation and stabilize membrane properties. Recent data suggest that SIL might also act on neurological changes related to MD. PC12APP cells produce low levels of human Aβ and thus act as a cellular model of early AD showing changed mitochondrial function. We investigated whether SIL could affect mitochondrial function by measuring ATP, MMP, as well as respiration, mitochondrial mass, cellular ROS and lactate/pyruvate concentrations. Furthermore, we investigated its effects on the mitochondrial membrane parameters of swelling and fluidity in mitochondria isolated from the brains of mice. In PC12APP cells, SIL exhibits strong protective effects by rescuing MMP and ATP levels from SNP-induced mitochondrial damage and improving basal ATP levels. However, SIL did not affect mitochondrial respiration and mitochondrial content. SIL significantly reduced cellular ROS and pyruvate concentrations. Incubation of murine brain mitochondria with SIL significantly reduces Ca induced swelling and improves membrane fluidity. Although OXPHOS activity was unaffected at this early stage of a developing mitochondrial dysfunction, SIL showed protective effects on MMP, ATP- after SNP-insult and ROS-levels in APPsw-transfected PC12 cells. Results from experiments with isolated mitochondria imply that positive effects possibly result from an interaction of SIL with mitochondrial membranes and/or its antioxidant activity. Thus, SIL might be a promising compound to improve cellular health when changes to mitochondrial function occur.

摘要

与年龄相关的多因素疾病,如神经退行性疾病阿尔茨海默病(AD),仍然是当今社会面临的一项挑战。一般而言,与AD和衰老相关的一种机制是线粒体功能障碍(MD)。越来越多的研究表明,MD的加剧会引发其他通常与神经退行性疾病相关的病理过程。水飞蓟宾A(SIL)是地中海植物水飞蓟(L.)(菊科)水飞蓟素提取物的主要生物活性化合物。它作为一种草药很容易获得,并且作为一种有效的自由基清除剂,在治疗肝脏疾病方面已得到充分证实,可减少脂质过氧化并稳定膜特性。最近的数据表明,SIL也可能作用于与MD相关的神经学变化。PC12APP细胞产生低水平的人β淀粉样蛋白(Aβ),因此作为早期AD的细胞模型,其线粒体功能发生了变化。我们通过测量ATP、线粒体膜电位(MMP)、呼吸作用、线粒体质量、细胞活性氧(ROS)以及乳酸/丙酮酸浓度,研究了SIL是否会影响线粒体功能。此外,我们还研究了其对从小鼠大脑中分离出的线粒体的肿胀和流动性等线粒体膜参数的影响。在PC12APP细胞中,SIL通过挽救MMP和ATP水平,使其免受硝普钠(SNP)诱导的线粒体损伤,并提高基础ATP水平,从而表现出强大的保护作用。然而,SIL并不影响线粒体呼吸作用和线粒体含量。SIL显著降低了细胞ROS和丙酮酸浓度。用SIL孵育小鼠脑线粒体可显著减少钙离子诱导的肿胀,并改善膜流动性。尽管在线粒体功能障碍发展的这个早期阶段,氧化磷酸化(OXPHOS)活性未受影响,但SIL在SNP损伤后对APPsw转染的PC12细胞中的MMP、ATP水平和ROS水平显示出保护作用。分离线粒体的实验结果表明,这些积极作用可能源于SIL与线粒体膜的相互作用和/或其抗氧化活性。因此,当线粒体功能发生变化时,SIL可能是一种改善细胞健康的有前景的化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce57/8533090/ca0c7db1380e/antioxidants-10-01520-g001.jpg

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