Feng Shijian, Tang Dan, Wang Yichang, Li Xiang, Bao Hui, Tang Chengbing, Dong Xiuju, Li Xinna, Yang Qinxue, Yan Yun, Yin Zhijie, Shang Tiantian, Zheng Kaixuan, Huang Xiaofang, Wei Zuheng, Wang Kunjie, Qi Shiqian
Department of Urology and Institute of Urology (Laboratory of Reconstructive Urology), State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, Sichuan University, Chengdu, People's Republic of China.
Chengdu Jinjiang Jiaxiang Foreign Languages High School, Chengdu, People's Republic of China.
Mol Biomed. 2023 Oct 16;4(1):33. doi: 10.1186/s43556-023-00142-2.
Ferroptosis, a regulated form of cellular death characterized by the iron-mediated accumulation of lipid peroxides, provides a novel avenue for delving into the intersection of cellular metabolism, oxidative stress, and disease pathology. We have witnessed a mounting fascination with ferroptosis, attributed to its pivotal roles across diverse physiological and pathological conditions including developmental processes, metabolic dynamics, oncogenic pathways, neurodegenerative cascades, and traumatic tissue injuries. By unraveling the intricate underpinnings of the molecular machinery, pivotal contributors, intricate signaling conduits, and regulatory networks governing ferroptosis, researchers aim to bridge the gap between the intricacies of this unique mode of cellular death and its multifaceted implications for health and disease. In light of the rapidly advancing landscape of ferroptosis research, we present a comprehensive review aiming at the extensive implications of ferroptosis in the origins and progress of human diseases. This review concludes with a careful analysis of potential treatment approaches carefully designed to either inhibit or promote ferroptosis. Additionally, we have succinctly summarized the potential therapeutic targets and compounds that hold promise in targeting ferroptosis within various diseases. This pivotal facet underscores the burgeoning possibilities for manipulating ferroptosis as a therapeutic strategy. In summary, this review enriched the insights of both investigators and practitioners, while fostering an elevated comprehension of ferroptosis and its latent translational utilities. By revealing the basic processes and investigating treatment possibilities, this review provides a crucial resource for scientists and medical practitioners, aiding in a deep understanding of ferroptosis and its effects in various disease situations.
铁死亡是一种受调控的细胞死亡形式,其特征是铁介导的脂质过氧化物积累,为深入研究细胞代谢、氧化应激和疾病病理学的交叉点提供了一条新途径。我们目睹了人们对铁死亡越来越浓厚的兴趣,这归因于它在各种生理和病理条件下的关键作用,包括发育过程、代谢动态、致癌途径、神经退行性级联反应和创伤性组织损伤。通过揭示调控铁死亡的分子机制、关键因素、复杂信号通路和调节网络的复杂基础,研究人员旨在弥合这种独特细胞死亡模式的复杂性与其对健康和疾病的多方面影响之间的差距。鉴于铁死亡研究的迅速发展,我们进行了全面综述,旨在探讨铁死亡在人类疾病发生和发展中的广泛影响。本综述最后仔细分析了精心设计的抑制或促进铁死亡的潜在治疗方法。此外,我们还简要总结了在各种疾病中靶向铁死亡有前景的潜在治疗靶点和化合物。这一关键方面突出了将铁死亡作为一种治疗策略进行调控的新兴可能性。总之,本综述丰富了研究人员和从业者的见解,同时增进了对铁死亡及其潜在转化应用的理解。通过揭示基本过程并研究治疗可能性,本综述为科学家和医学从业者提供了重要资源,有助于深入了解铁死亡及其在各种疾病情况下的作用。