Mitochondria-targeting phosphonium salts of monensin A as the source of novel antiproliferative agents

Michał Sulik , Marta Jędrzejczyk , Magdalena Mielczarek-Puta , Gwan Yong Lim , Małgorzata Podsiad , Jakub Hoser , Piotr Bednarczyk , Marta Struga , Adam Huczyński
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Abstract

Monensin A is a representative of natural ionophores, which exhibit a broad spectrum of biological properties, with the most fascinating being its potent anticancer activity. A very intriguing research direction is the rational chemical modification of the monensin A skeleton to obtain analogs with higher antiproliferative activity and selectivity indices. In this paper, synthetic access to monensin A conjugates with mitochondria-targeting chemical moieties, such as the triphenylphosphonium cation and its analogs, is presented. Furthermore, the obtained derivatives were screened for lead structures with improved anticancer properties and mitochondria-targeting ability. Some of the obtained compounds exhibited greater antiproliferative activity and selectivity than unmodified monensin. Furthermore, biological and biophysical studies have confirmed that the induction of apoptosis by the aforementioned hybrids is linked to targeting of mitochondria in cancer cells. These results prove that such a strategy is a promising approach for the search for new effective drug candidates.
线粒体靶向莫能菌素A磷酸盐作为新型抗增殖药物的来源
莫能菌素A是天然离子载体的代表,具有广泛的生物学特性,最令人着迷的是其强大的抗癌活性。对莫能菌素A骨架进行合理的化学修饰以获得具有较高的抗增殖活性和选择性指数的类似物是一个非常有趣的研究方向。本文介绍了与线粒体靶向化学基团(如三苯基膦离子及其类似物)偶联的莫能菌素A的合成途径。此外,对得到的衍生物进行了铅结构的筛选,以提高其抗癌性能和线粒体靶向能力。所得的一些化合物比未修饰的莫能菌素表现出更强的抗增殖活性和选择性。此外,生物学和生物物理学研究已经证实,上述杂交体诱导细胞凋亡与靶向癌细胞中的线粒体有关。这些结果证明,这种策略对于寻找新的有效候选药物是一种很有前途的方法。
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CiteScore
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