Roy Proshanta, Tomassoni Daniele, Traini Enea, Martinelli Ilenia, Micioni Di Bonaventura Maria Vittoria, Cifani Carlo, Amenta Francesco, Tayebati Seyed Khosrow
School of Biosciences and Veterinary Medicine, University of Camerino, 62032 Camerino, Italy.
School of Pharmacy, University of Camerino, 62032 Camerino, Italy.
Antioxidants (Basel). 2021 May 27;10(6):858. doi: 10.3390/antiox10060858.
Obesity represents one of the most important challenges in the contemporary world that must be overcome. Different pathological consequences of these physical conditions have been studied for more than 30 years. The most nagging effects were found early in the cardiovascular system. However, later, its negative impact was also investigated in several other organs. Damage at cellular structures due to overexpression of reactive oxygen species together with mechanisms that cause under-production of antioxidants leads to the development of obesity-related complications. In this view, the negative results of oxidant molecules due to obesity were studied in various districts of the body. In the last ten years, scientific literature has reported reasonable evidence regarding natural and synthetic compounds' supplementation, which showed benefits in reducing oxidative stress and inflammatory processes in animal models of obesity. This article attempts to clarify the role of oxidative stress due to obesity and the opposing role of antioxidants to counter it, reported in preclinical studies. This analysis aims to clear-up different mechanisms that lead to the build-up of pro-oxidants during obesity and how various molecules of different origins hinder this phenomenon, behaving as antioxidants.
肥胖是当代世界必须克服的最重要挑战之一。这些身体状况的不同病理后果已被研究了30多年。这些影响中最棘手的早期在心血管系统中被发现。然而,后来,其负面影响也在其他几个器官中得到了研究。活性氧的过度表达导致细胞结构受损,同时抗氧化剂生成不足的机制导致了肥胖相关并发症的发生。从这个角度来看,肥胖导致的氧化分子的负面结果在身体的各个部位都得到了研究。在过去十年中,科学文献报道了关于天然和合成化合物补充剂的合理证据,这些补充剂在肥胖动物模型中显示出在减轻氧化应激和炎症过程方面的益处。本文试图阐明肥胖导致的氧化应激的作用以及抗氧化剂在临床前研究中所报道的对抗氧化应激的相反作用。该分析旨在厘清肥胖期间导致促氧化剂积累的不同机制,以及不同来源的各种分子如何作为抗氧化剂来阻碍这一现象。