Lee Kyung Hee, Kim Un Jeng, Lee Bae Hwan, Cha Myeounghoon
Department of Dental Hygiene, Division of Health Science, Dongseo University, Busan, 47011, South Korea.
Department of Physiology, Yonsei University College of Medicine, Seoul, 03722, South Korea.
Free Radic Biol Med. 2025 Jan;226:143-157. doi: 10.1016/j.freeradbiomed.2024.11.019. Epub 2024 Nov 13.
Oxidative stress imposes a substantial cellular burden on the brain and contributes to diverse neurodegenerative diseases. Various antioxidant signaling pathways have been implicated in oxidative stress and have a protective effect on brain cells by increasing the release of numerous enzymes and through anti-inflammatory responses to oxidative damage caused by abnormal levels of reactive oxygen species (ROS). Although many molecules evaluated as antioxidants have shown therapeutic potentials in preclinical studies, the results of clinical trials have been less than satisfactory. This review focuses on several signaling pathways involved in oxidative stress that are associated with antioxidants. These pathways have a protective effect against stressors by increasing the release of various enzymes and also exert anti-inflammatory responses against oxidative damage. There is no doubt that oxidative stress is a crucial therapeutic target in the treatment of neurological diseases. Therefore, it is essential to understand the discovery of multiple routes that can efficiently repair the damage caused by ROS and prevent neurodegenerative disorders. This paper aims to provide a concise and objective review of the oxidative and antioxidant pathways and their potential therapeutic applications in treating oxidative injury in the brain.
氧化应激给大脑带来了巨大的细胞负担,并导致多种神经退行性疾病。各种抗氧化信号通路与氧化应激有关,通过增加多种酶的释放以及对活性氧(ROS)异常水平引起的氧化损伤的抗炎反应,对脑细胞具有保护作用。尽管许多被评估为抗氧化剂的分子在临床前研究中已显示出治疗潜力,但临床试验结果却不尽人意。本综述重点关注与抗氧化剂相关的几种参与氧化应激的信号通路。这些通路通过增加各种酶的释放对应激源具有保护作用,并且还对氧化损伤发挥抗炎反应。毫无疑问,氧化应激是治疗神经疾病的关键治疗靶点。因此,了解能够有效修复ROS造成的损伤并预防神经退行性疾病的多种途径的发现至关重要。本文旨在对氧化和抗氧化途径及其在治疗脑氧化损伤中的潜在治疗应用进行简明而客观的综述。