Department of Bioenergetics, Faculty of Biology, Adam Mickiewicz University, Poznan, Uniwersytetu Poznanskiego 6, 61-614 Poznan, Poland.
Molecules. 2020 Jul 4;25(13):3060. doi: 10.3390/molecules25133060.
A large number of diverse mechanisms that lead to cytoprotection have been described to date. Perhaps, not surprisingly, the role of mitochondria in these phenomena is notable. In addition to being metabolic centers, due to their role in cell catabolism, ATP synthesis, and biosynthesis these organelles are triggers and/or end-effectors of a large number of signaling pathways. Their role in the regulation of the intrinsic apoptotic pathway, calcium homeostasis, and reactive oxygen species signaling is well documented. In this review, we aim to characterize the prospects of influencing cytoprotective mitochondrial signaling routes by natural substances of plant origin, namely, flavonoids (e.g., flavanones, flavones, flavonols, flavan-3-ols, anthocyanidins, and isoflavones). Flavonoids are a family of widely distributed plant secondary metabolites known for their beneficial effects on human health and are widely applied in traditional medicine. Their pharmacological characteristics include antioxidative, anticarcinogenic, anti-inflammatory, antibacterial, and antidiabetic properties. Here, we focus on presenting mitochondria-mediated cytoprotection against various insults. Thus, the role of flavonoids as antioxidants and modulators of antioxidant cellular response, apoptosis, mitochondrial biogenesis, autophagy, and fission and fusion is reported. Finally, an emerging field of flavonoid-mediated changes in the activity of mitochondrial ion channels and their role in cytoprotection is outlined.
迄今为止,已经描述了大量导致细胞保护的不同机制。也许,毫不奇怪,线粒体在这些现象中的作用是显著的。除了作为代谢中心,由于它们在细胞分解代谢、ATP 合成和生物合成中的作用,这些细胞器是许多信号通路的触发因素和/或终效器。它们在调节内在凋亡途径、钙稳态和活性氧信号方面的作用已有充分的文献记载。在这篇综述中,我们旨在描述通过植物来源的天然物质(即类黄酮,如黄酮类、黄酮类、黄酮醇类、黄烷醇类、花色苷和异黄酮)影响细胞保护线粒体信号通路的前景。类黄酮是一种广泛分布的植物次生代谢产物家族,以对人类健康有益的作用而闻名,广泛应用于传统医学。它们的药理学特征包括抗氧化、抗癌、抗炎、抗菌和抗糖尿病特性。在这里,我们专注于呈现针对各种损伤的线粒体介导的细胞保护。因此,报告了类黄酮作为抗氧化剂和抗氧化细胞反应调节剂、细胞凋亡、线粒体生物发生、自噬以及分裂和融合的作用。最后,概述了类黄酮介导的线粒体离子通道活性变化及其在细胞保护中的新兴领域。