Department of Chemistry, Faculty of Pharmacy, Medical University Sofia, Sofia, Bulgaria.
Ural Federal University, Yekaterinburg 620002, Russian Federation.
Recent Pat Anticancer Drug Discov. 2020;15(2):92-112. doi: 10.2174/1574892815666200717164457.
The impact of cancer on modern society cannot be emphasized enough in terms of both economic and human costs. Cancer treatments are known, unfortunately, for their side effects - frequently numerous and severe. Drug resistance is another issue medical professionals have to tackle when dealing with neoplastic illnesses. Cancer rates are rising worldwide due to various factors - low-quality nutrition, air and water pollution, tobacco use, etc. For those and many other reasons, drug discovery in the field of oncology is a top priority in modern medical science.
To present the reader with the latest in cancer drug discovery with regard to 1,2,3-triazole- containing molecules in a clear, concise way so as to make the present review a useful tool for researchers.
Available information present on the role of 1,2,3-triazoles in cancer treatment was collected. Data was collected from scientific literature, as well as from patents.
A vast number of triazole-containing molecules with antiproliferative properties have been proposed, synthesized and tested for anticancer activity both in vitro and in vivo. The substances vary greatly when considering molecular structure, proposed mechanisms of action and affected cancer cell types.
Triazole-containing molecules with anticancer activity are being widely synthesized and extensively tested. They vary significantly in terms of both structure and mechanism of action. The methods for their preparation and administration are well established and with proven reproducibility. These facts suggest that triazoles may play an important role in the discovery of novel antiproliferative medications with improved effectiveness and safety profile.
癌症在经济和人力成本方面对现代社会的影响再怎么强调也不为过。不幸的是,癌症治疗以其副作用而闻名——通常数量众多且严重。药物耐药性是医学专业人员在治疗肿瘤疾病时必须解决的另一个问题。由于各种因素,包括低质量的营养、空气和水污染、烟草使用等,全球癌症发病率正在上升。出于这些和许多其他原因,肿瘤学领域的药物发现是现代医学科学的重中之重。
以清晰简洁的方式向读者介绍含 1,2,3-三唑分子的最新癌症药物发现,以使本综述成为研究人员的有用工具。
收集了关于 1,2,3-三唑在癌症治疗中作用的现有信息。数据来自科学文献和专利。
已经提出、合成并测试了大量具有抗增殖特性的含三唑分子,以评估它们在体外和体内的抗癌活性。考虑到分子结构、提出的作用机制和受影响的癌细胞类型,这些物质差异很大。
具有抗癌活性的含三唑分子正在被广泛合成和广泛测试。它们在结构和作用机制方面差异很大。其制备和给药方法已经成熟,并且具有可重复性。这些事实表明,三唑可能在发现具有改善疗效和安全性的新型增殖抑制剂方面发挥重要作用。