Nazari Ahmad, Osati Parisa, Seifollahy Fakhr Siavash, Faghihkhorasani Ferdos, Ghanaatian Masoud, Faghihkhorasani Fereshteh, Rezaei-Tazangi Fatemeh, Pazhouhesh Far Nazanin, Shourideh Amir, Ebrahimi Nasim, Aref Amir Reza
Tehran University of Medical Science, Tehran, Iran.
Department of Chemical Engineering, Fouman Faculty of Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Antioxid Redox Signal. 2024 Nov 6. doi: 10.1089/ars.2023.0491.
Resistance to standard therapeutic methods, including chemotherapy, immunotherapy, and targeted therapy, remains a critical challenge in effective cancer treatment. Redox homeostasis modification has emerged as a promising approach to address medication resistance. This review aims to explore the mechanisms of redox alterations and signaling pathways contributing to treatment resistance in cancer. In this study, a comprehensive review of the molecular mechanisms underlying drug resistance governed by redox signaling was conducted. Emphasis was placed on understanding how tumor cells manage increased reactive oxygen species (ROS) levels through upregulated antioxidant systems, enabling resistance across multiple therapeutic pathways. Key mechanisms identified include alterations in drug efflux, target modifications, metabolic changes, enhanced DNA damage repair, stemness preservation, and tumor microenvironment remodeling. These pathways collectively facilitate tumor cells' adaptive response and resistance to various cancer treatments. Developing a detailed understanding of the interrelationships between these redox-regulated mechanisms and therapeutic resistance holds potential to improve treatment effectiveness, offering valuable insights for both fundamental and clinical cancer research. 00, 000-000.
对包括化疗、免疫疗法和靶向疗法在内的标准治疗方法产生耐药性,仍然是有效癌症治疗中的一项关键挑战。氧化还原稳态调节已成为解决药物耐药性的一种有前景的方法。本综述旨在探讨氧化还原改变的机制以及导致癌症治疗耐药性的信号通路。在本研究中,对由氧化还原信号调控的耐药性潜在分子机制进行了全面综述。重点在于了解肿瘤细胞如何通过上调抗氧化系统来应对活性氧(ROS)水平的升高,从而实现对多种治疗途径的耐药性。确定的关键机制包括药物外排改变、靶点修饰、代谢变化、DNA损伤修复增强、干性维持以及肿瘤微环境重塑。这些途径共同促进了肿瘤细胞的适应性反应和对各种癌症治疗的耐药性。深入了解这些氧化还原调节机制与治疗耐药性之间的相互关系,有可能提高治疗效果,为基础和临床癌症研究提供有价值的见解。00, 000 - 000。