Department of Pharmacy, Bharat Technology, Uluberia-711316, Howrah, West Bengal, India.
JIS University, Agarpara Campus, Kolkata-81, Nilgunj Road, Agarpara, Kolkata-700109, India.
Chem Biodivers. 2024 Jul;21(7):e202400473. doi: 10.1002/cbdv.202400473. Epub 2024 Jun 19.
Sulfur-containing heterocyclic derivatives have been disclosed for binding with a wide range of cancer-specific protein targets. Various interesting derivatives of sulfur-containing heterocyclics such as benzothiazole, thiazole, thiophene, thiazolidinedione, benzothiophene, and phenothiazine, etc have been shown to inhibit diverse signaling pathways implicated in cancer. Significant progress has also been made in molecular targeted therapy against specific enzymes such as kinase receptors due to potential binding interactions inside the ATP pocket. Sulfur-containing heterocyclic ring metal complexes i. e., benzothiazole, thiazole, thiophene, benzothiophene and phenothiazines are among the most promising active anticancer compounds. However, sulfur heteroaromatic rings, particularly thiophene, are of high structural alert due to their metabolism to reactive metabolites. The mere presence of a structural alert itself does not determine compound toxicity therefore, this review focuses on some specific findings that shed light on factors influencing the toxicity. In the current review, synthetic strategies of introducing the sulfur core ring in the synthesized derivatives are discussed with their structure-activity relationships to enhance our understanding of toxicity mechanisms and develop safer therapeutic options. The sulfur-containing marketed anticancer drugs included in this review direct the synthesis of novel compounds and will help in the development of potent, safer sulfur-based anticancer drugs in near future.
含硫杂环衍生物已被披露可与广泛的癌症特异性蛋白靶标结合。各种含硫杂环的有趣衍生物,如苯并噻唑、噻唑、噻吩、噻唑烷二酮、苯并噻吩和吩噻嗪等,已被证明可抑制多种与癌症相关的信号通路。由于在 ATP 口袋内具有潜在的结合相互作用,针对特定酶(如激酶受体)的分子靶向治疗也取得了重大进展。含硫杂环金属配合物,即苯并噻唑、噻唑、噻吩、苯并噻吩和吩噻嗪等,是最有前途的活性抗癌化合物之一。然而,由于其代谢为反应性代谢物,含硫杂芳环,特别是噻吩,具有很高的结构警示性。结构警示本身的存在并不能确定化合物的毒性,因此,本综述重点介绍了一些特定的发现,这些发现阐明了影响毒性的因素。在当前的综述中,讨论了在合成衍生物中引入硫核环的合成策略及其与结构活性关系,以增强我们对毒性机制的理解并开发更安全的治疗选择。本综述中包含的含硫市售抗癌药物指导了新型化合物的合成,并将有助于在不久的将来开发出更有效、更安全的基于硫的抗癌药物。