Belo Dulce, Rabaça Sandra, Fava Sara G, Sousa Sílvia A, Coelho Diogo, Leitão Jorge H, Pinheiro Teresa, Fernandes Célia, Marques Fernanda
Centro de Ciências e Tecnologias Nucleares, Instituto Superior Técnico, Universidade de Lisboa, Estrada Nacional 10, Km 139.7, Bobadela, 2695-066 Loures, Portugal.
Departamento de Engenharia e Ciências Nucleares, Instituto Superior Técnico, Universidade de Lisboa, Estrada Nacional 10, Km 139.7, Bobadela, 2695-066 Loures, Portugal.
Molecules. 2025 Aug 4;30(15):3270. doi: 10.3390/molecules30153270.
Cancer and infectious diseases are major causes of global morbidity and mortality stressing the need to find novel drugs with promising dual anticancer and antimicrobial efficacy. Gold complexes have been studied for the past years due to their anticancer properties, with a few of them displaying antimicrobial properties, which support their pharmacological interest. Within this scope, we investigated six gold bisdithiolate complexes [Au (bdt)] (), [Au (dcbdt)] (), [Au (3-cbdt)] (), [Au (4-cbdt)] (), [Au (pdt)] () and [Au (dcdmp)] (), and) against the ovarian cancer cell lines A2780 and A2780cisR, the Gram-positive bacteria Newman, the Gram-negative bacteria ATCC25922 and IST408, and the pathogenic yeasts CBS138 and SC5134. Complexes and , with ligands containing aromatic pyrazine or phenyl rings, substituted with two cyanonitrile groups, showed after 24 h of incubation high anticancer activities against A2780 ovarian cancer cells (IC~5 µM), being also able to overcome cisplatin resistance in A2780cisR cells. Both complexes induced the formation of ROS, activated caspase-3/7, and induced necrosis (LDH release) in a dose-dependent way, in a greater extent in the case of . Among the bacterial and fungal strains tested, only complex presented antimicrobial activity against Newman, indicating that this complex is a potential novel anticancer and antibacterial agent. These results delve into the structure-activity relationship of the complexes, considering molecular alterations such as replacing a phenyl group for a pyrazine group, and the inclusion of one or two cyanonitrile appendage groups, and their effects on biological activity. Overall, both complexes were found to be promising leads for the development of future anticancer drugs against low sensitive or cisplatin resistant tumors.
癌症和传染病是全球发病和死亡的主要原因,这凸显了寻找具有双重抗癌和抗菌功效的新型药物的必要性。过去几年,由于金配合物具有抗癌特性,人们对其进行了研究,其中一些还表现出抗菌特性,这增强了它们在药理学上的吸引力。在此范围内,我们研究了六种双二硫醇金配合物[Au (bdt)]()、[Au (dcbdt)]()、[Au (3-cbdt)]()、[Au (4-cbdt)]()、[Au (pdt)]()和[Au (dcdmp)](),以及)对卵巢癌细胞系A2780和A2780cisR、革兰氏阳性菌纽曼、革兰氏阴性菌ATCC25922和IST408,以及致病性酵母CBS138和SC5134的作用。配合物和,其配体含有被两个氰基取代的芳基吡嗪或苯环,在孵育24小时后,对A2780卵巢癌细胞显示出高抗癌活性(IC~5 µM),并且还能够克服A2780cisR细胞中的顺铂耐药性。两种配合物均以剂量依赖性方式诱导活性氧的形成、激活半胱天冬酶-3/7,并诱导坏死(乳酸脱氢酶释放),在的情况下程度更大。在所测试的细菌和真菌菌株中,只有配合物对纽曼表现出抗菌活性,表明该配合物是一种潜在的新型抗癌和抗菌剂。这些结果深入探讨了配合物的构效关系,考虑了诸如用吡嗪基团取代苯基以及包含一个或两个氰基附属基团等分子变化及其对生物活性的影响。总体而言,发现这两种配合物都是开发针对低敏感性或顺铂耐药性肿瘤的未来抗癌药物的有前景的先导物。