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A mechanically interlocked molecular system programmed for the delivery of an anticancer drug

机译:机械联锁的分子系统,编程用于递送抗癌药物

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摘要

The development of mechanically interlocked molecular systems programmed to operate autonomously in biological environments is an emerging field of research with potential medicinal applications. Within this framework, functional rotaxane- and pseudorotaxane-based architectures are starting to attract interest for the delivery of anticancer drugs, with the ultimate goal to improve the efficiency of cancer chemotherapy. Here, we report an enzyme-sensitive [2]-rotaxane designed to release a potent anticancer drug within tumor cells. The molecular device includes a protective ring that prevents the premature liberation of the drug in plasma. However, once located inside cancer cells the [2]-rotaxane leads to the release of the drug through the controlled disassembly of the mechanically interlocked components, in response to a determined sequence of two distinct enzymatic activations. Furthermore, in vitro biological evaluations reveal that this biocompatible functional system exhibits a noticeable level of selectivity for cancer cells overexpressing beta-galactosidase.
机译:被设计为在生物环境中自主运行的机械互锁分子系统的开发是具有潜在医学应用的新兴研究领域。在此框架内,基于功能轮烷和假轮烷的体系结构开始引起人们对递送抗癌药物的兴趣,其最终目标是提高癌症化学疗法的效率。在这里,我们报道了一种酶敏感的[2]-轮烷,旨在在肿瘤细胞内释放有效的抗癌药。该分子装置包括一个保护环,可防止药物在血浆中过早释放。但是,[2]-轮烷一旦定位在癌细胞内,就会响应于两个不同的酶促活化的确定序列,通过机械互锁组分的受控分解来释放药物。此外,体外生物学评估表明,这种生物相容性功能系统对过表达β-半乳糖苷酶的癌细胞表现出明显的选择性。

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