Antoniolli Giorgio, Lima Carmen Silvia Passos, Coelho Fernando
Laboratory of Synthesis of Natural Products and Drugs - Institute of Chemistry, University of Campinas, Campinas, SP, Brazil.
Laboratory of Cancer Genetics - School of Medical Sciences, University of Campinas, Campinas, SP, Brazil.
Future Med Chem. 2025 May;17(10):1193-1211. doi: 10.1080/17568919.2025.2507558. Epub 2025 May 30.
Diseases such as cancer, neurodegenerative and cardiovascular disorders, and diabetes are becoming more and more common, raising global concerns about prevention and treatment. An abnormality in cell growth can lead to the formation of tumors or neoplasms. Cancer is a global public health problem and always requires further advances in the field due to the obstacles that arise during treatment.
This review explores the role of new quinazolines and their derivatives as potential anticancer agents, with a variety of biological targets. It is a current review that addresses the discovery of new molecules with the potential to go beyond just the studies covered here.
ADVANTAGES, DISADVANTAGES AND FUTURE PERSPECTIVES: Studies have shown that quinazolines are not just molecules of the past, but still have enormous scope for structural modification and should be studied further than they already are. There is clear evidence that quinazolines and their derivatives have wide applicability in the fields of oncology and medicinal chemistry. The studies reported here inform and corroborate the narrative that we cannot forget that the quinazoline nucleus has a huge variety of biological activities and, among them, anticancer activity.
癌症、神经退行性疾病、心血管疾病和糖尿病等疾病正变得越来越普遍,引发了全球对预防和治疗的关注。细胞生长异常会导致肿瘤的形成。癌症是一个全球公共卫生问题,由于治疗过程中出现的障碍,该领域始终需要取得进一步进展。
本综述探讨了新型喹唑啉及其衍生物作为潜在抗癌药物的作用,其具有多种生物学靶点。这是一篇当前的综述,涉及发现有可能超越本文所涵盖研究范围的新分子。
优点、缺点及未来展望:研究表明,喹唑啉并非只是过去的分子,其在结构修饰方面仍有巨大空间,应比目前更深入地进行研究。有明确证据表明,喹唑啉及其衍生物在肿瘤学和药物化学领域具有广泛适用性。此处报道的研究为以下观点提供了信息并予以证实:我们不能忘记喹唑啉核具有多种多样的生物活性,其中包括抗癌活性。