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活性氧在癌症中的调控:最新进展。

Modulation of reactive oxygen species in cancers: recent advances.

机构信息

Department of Human Genetics Faculty of Biomedical Sciences, Technology and Research Sri Ramachandra University, Chennai, India.

Department of Biomedical Sciences Faculty of Biomedical Sciences, Technology and Research Sri Ramachandra University, Chennai, India.

出版信息

Free Radic Res. 2022 May-Jun;56(5-6):447-470. doi: 10.1080/10715762.2022.2133704. Epub 2022 Oct 19.

DOI:10.1080/10715762.2022.2133704
PMID:36214686
Abstract

Oxidation-reduction reactions played a significant role in the chemical evolution of life forms on oxygenated earth. Cellular respiration is dependent on such redox reactions, and any imbalance leads to the accumulation of reactive oxygen species (ROS), resulting in both chronic and acute illnesses. According to the International Agency for Research on Cancer (IARC), by 2040, the global burden of new cancer cases is expected to be around 27.5 million, with 16.3 million cancer deaths due to an increase in risk factors, such as unhealthy lifestyle, environmental factors, aberrant gene mutations, and resistance to therapies. ROS play an important role in cellular signaling, but they can cause severe damage to tissues when present at higher levels. Elevated and chronic levels of ROS are pertinent in carcinogenesis, while several therapeutic strategies rely on altering cellular ROS to eliminate tumor cells as they are more susceptible to ROS-induced damage than normal cells. Given this selective targeting potential, therapies that can effectively modulate ROS levels have been the focus of intense research in recent years. This review describes biologically relevant ROS, its origins in solid and hematological cancers, and the current status of evolving antioxidant and pro-oxidant therapies in cancers.

摘要

氧化还原反应在含氧地球上生命形式的化学演化中发挥了重要作用。细胞呼吸依赖于这种氧化还原反应,任何失衡都会导致活性氧(ROS)的积累,从而导致慢性和急性疾病。根据国际癌症研究机构(IARC)的预测,到 2040 年,全球新癌症病例的负担预计将达到 2750 万左右,其中 1630 万人因不健康的生活方式、环境因素、异常基因突变和对治疗的耐药性等风险因素而死亡。ROS 在细胞信号转导中起着重要作用,但当它们处于较高水平时,会对组织造成严重损害。ROS 的升高和慢性水平与致癌作用有关,而几种治疗策略依赖于改变细胞内的 ROS 来消除肿瘤细胞,因为它们比正常细胞更容易受到 ROS 诱导的损伤。鉴于这种选择性靶向潜力,近年来,能够有效调节 ROS 水平的治疗方法一直是研究的重点。本文综述了生物学上相关的 ROS、其在实体瘤和血液系统癌症中的来源,以及抗氧化剂和促氧化剂治疗在癌症中的最新进展。

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