首页> 外文期刊>febs open bio >Metallodrugs: an approach against invasion and metastasis in cancer treatment
【24h】

Metallodrugs: an approach against invasion and metastasis in cancer treatment

机译:金属药物:癌症治疗中对抗侵袭和转移的方法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Cancer is a heterogeneous and multifactorial disease that causes high mortality throughout the world; therefore, finding the most effective therapies is a major research challenge. Currently, most anticancer drugs present a limited number of well-established targets, such as cell proliferation or death; however, it is important to consider that the worse progression of cancer toward pathological stages implies invasion and metastasis processes. Medicinal Inorganic Chemistry (MIC) is a young area that deals with the design, synthesis, characterization, preclinical evaluation, and mechanism of action of new inorganic compounds, called metallodrugs. The properties of metallic ions allow enriching of strategies for the design of new drugs, enabling the adjustment of physicochemical and stereochemical properties. Metallodrugs can adopt geometries, such as tetrahedral, octahedral, square planar, and square planar pyramid, which adjusts their arrangement and facilitates binding with a wide variety of targets. The redox properties of some metal ions can be modulated by the presence of the bound ligands to adjust their interaction, thereby opening a range of mechanisms of action. In this regard, the mechanisms of action that trigger the biological activity of metallodrugs have been generally identified by: (a) coordination of the metal to biomolecules (for instance, cisplatin binds to the N7 in DNA guanine, as Pt-N via coordination of the inhibition of enzymes); (b) redox-active; and (c) ROS production. For this reason, a series of metallodrugs can interact with several specific targets in the anti-invasive processes of cancer and can prevent metastasis. The structural base of several metal compounds shows great anticancer potential by inhibiting the signaling pathways related to cancer progression. In this minireview, we present the advances in the field of antimetastatic effects of metallodrugs.
机译:癌症是一种异质性和多因素的疾病,在世界范围内导致高死亡率;因此,寻找最有效的疗法是一项重大的研究挑战。目前,大多数抗癌药物呈现的既定靶点数量有限,例如细胞增殖或死亡;然而,重要的是要考虑到癌症向病理阶段的更糟糕进展意味着侵袭和转移过程。药物无机化学 (MIC) 是一个年轻的领域,涉及新型无机化合物(称为金属药物)的设计、合成、表征、临床前评估和作用机制。金属离子的性质可以丰富新药的设计策略,从而能够调整理化和立体化学性质。金属药物可以采用几何形状,如四面体、八面体、方形平面和方形平面金字塔,从而调整其排列并促进与各种靶标的结合。一些金属离子的氧化还原性质可以通过结合配体的存在来调节,以调节它们的相互作用,从而开启一系列作用机制。在这方面,触发金属药物生物活性的作用机制通常由以下方法确定:(a) 金属与生物分子的配位(例如,顺铂通过协调抑制酶与DNA鸟嘌呤中的N7结合,如Pt-N);(b)金属与生物分子的配位(例如,顺铂通过协调酶的抑制作用与DNA鸟嘌呤中的N7结合,即Pt-N);(b)顺铂与DNA鸟嘌呤中的N7结合(例如,顺铂通过协调抑制酶而与N7结合);(b)顺铂与DNA鸟嘌呤中的N7结合(例如,顺铂通过协调抑制酶而与DNA鸟嘌呤中的N7结合,即Pt-N);(b)顺铂与DNA鸟嘌呤中的N7结合(如Pt-N);(b)顺铂与DNA鸟嘌呤中的(b) 氧化还原活性;及(c)ROS生产。因此,一系列金属药物可以在癌症的抗侵袭过程中与几个特定靶点相互作用,并可以防止转移。几种金属化合物的结构基础通过抑制与癌症进展相关的信号通路显示出巨大的抗癌潜力。在这篇小型综述中,我们介绍了金属药物抗转移作用领域的进展。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号