Essential Metal-based drugs: Correlation between Redox Potential and Biological Activity of M2+ with a N2O2 Ligand

Arturo Verduzco-Ramírez, Silvia Graciela Manzanilla-Dávila, María Eugenia Morales-Guillén, J. García-Ramos, Y. Toledaño-Magaña, Armando Marín-Becerra, M. Flores‐Álamo, L. Ortíz-Frade, Luis Fernando Olguín-Contreras, L. Ruiz-Azuara
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引用次数: 5

Abstract

One of the major public health problems worldwide is cancer followed by a significant number of deaths due to the resistance developed by bacteria or protozoan to the currently employed treatments. This generates an immediate need to develop drugs to treat these afflictions (illnesses, diseases). It has recently been identified that tumor cell, bacteria or protozoa are quite sensitive to oxidative stress induced by the same drugs. Due to this, it is important to develop new drugs to attend them, in this case, by using metals to increase the concentration of oxidative species. In the present work, the ligand 2,9-diformyl-4,7-diphenyl-1,10-phenanthroline and its corresponding coordination compounds with essential metals such as iron(II), cobalt(II), nickel(II), copper(II) and zinc(II) were synthesized. The electrochemical study shows that these compounds present three redox processes, all of them associated to the ligand. The compounds have shown inhibitory activity in vitro against human neuroblastoma CHP-212 cells, Escherichia coli and trophozoites of Entamoeba histolytica HM1:IMSS. It has been found that the inhibitory activity of the compounds studied is related to the first reduction process of the ligand. The correlation between the inhibitory activity and the red ox potential was linear. The inhibitory activity in CHP-212 increased with the increase of the compounds’ redox potential values, in contrast with the behavior observed in Escherichia coli , where the compounds with lowest redox potential values have had significantly higher inhibitory activity. Many of these coordination compounds have shown a higher inhibitory activity than those typically used in the treatment of cancer (cisplatin). The next step is to prove these compounds in vitro against healthy cells in order to verify its selectivity or cytotoxicity in these systems.
必需金属基药物:氧化还原电位与M2+与N2O2配体生物活性的相关性
世界范围内的主要公共卫生问题之一是癌症,随后由于细菌或原生动物对目前采用的治疗方法产生耐药性而导致大量死亡。这就迫切需要开发药物来治疗这些痛苦(疾病、疾病)。近年来研究发现,肿瘤细胞、细菌或原生动物对同一种药物诱导的氧化应激均相当敏感。因此,开发新的药物来治疗它们是很重要的,在这种情况下,通过使用金属来增加氧化物种的浓度。本文合成了2,9-二甲酰-4,7-二苯基-1,10-菲罗啉配体及其与铁(II)、钴(II)、镍(II)、铜(II)、锌(II)等必需金属的配位化合物。电化学研究表明,这些化合物存在三个氧化还原过程,它们都与配体有关。这些化合物在体外对人神经母细胞瘤CHP-212细胞、大肠杆菌和溶组织内阿米巴滋养体HM1:IMSS具有抑制活性。研究发现,所研究化合物的抑制活性与配体的第一次还原过程有关。抑制活性与红牛电位呈线性相关。在CHP-212中的抑制活性随着化合物氧化还原电位值的增加而增加,而在大肠杆菌中观察到的行为则相反,氧化还原电位值最低的化合物具有明显更高的抑制活性。许多这些配位化合物已经显示出比那些通常用于治疗癌症(顺铂)更高的抑制活性。下一步是在体外对健康细胞证明这些化合物,以验证其在这些系统中的选择性或细胞毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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