Department of Chemistry, Mahamana Malviya College Khekra (Baghpat), C.C.S. University Meerut, India.
Department of Zoology, Mahamana Malviya College Khekra (Baghpat), C.C.S. University Meerut, India.
Dalton Trans. 2023 May 30;52(21):6961-6977. doi: 10.1039/d3dt00368j.
Chemical nucleases have found potential applications in the research fields of chemistry, biotechnology and medicine. A variety of metal complexes have been explored as good to outstanding therapeutic agents for DNA cleavage activity most likely hydrolytic, oxidative or photoinduced cleavage pathways. However, most of these DNA cleaving agents lack their utility in applications due to their dependence on exogenous oxidants or reductants to achieve successful DNA damage. In view of addressing these issues, the development of metal complexes/organic molecules serving as self-activating chemical nucleases has received growing attention from researchers. In only the last decade, this field has dramatically expanded for the usage of chemical nucleases as therapeutic agents for DNA damage. The present study provides an overview of the opportunities and challenges in the design and development of self-activating chemical nucleases as improved DNA therapeutic candidates in the absence of an external redox agent. The reports on DNA nuclease activity self-activation, especially with copper, zinc and iron complexes, and their mechanistic investigation have been discussed in this review article.
化学核酸酶在化学、生物技术和医学研究领域具有潜在的应用。已经探索了多种金属配合物作为具有良好到优异的 DNA 切割活性的治疗剂,其切割途径可能为水解、氧化或光诱导。然而,由于这些 DNA 切割剂依赖外源氧化剂或还原剂来实现成功的 DNA 损伤,因此它们在应用中缺乏实用性。鉴于这些问题,作为自激活化学核酸酶的金属配合物/有机分子的开发受到了研究人员的越来越多的关注。仅在过去十年中,由于将化学核酸酶用作 DNA 损伤的治疗剂,该领域得到了极大的扩展。本研究综述了在没有外部氧化还原试剂的情况下,作为改进的 DNA 治疗候选物的自激活化学核酸酶的设计和开发中的机遇和挑战。本文讨论了 DNA 核酸酶活性自激活的报告,特别是铜、锌和铁配合物及其机制研究。