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Updated: Feb 16, 2026

Assessing Specificity of Anticancer Drugs In Vitro
Published on: March 23, 2016
A mechanically interlocked molecular system programmed for the delivery of an anticancer drug
Romain Barat1, Thibaut Legigan1, Isabelle Tranoy-Opalinski1
1Université de Poitiers , UMR-CNRS 7285 , Institut de Chimie des Milieux et des Matériaux de Poitiers , groupe « Systèmes Moléculaires Programmés » , 4 rue Michel Brunet, TSA 51106 , 86073 Poitiers , France .
Abstract:
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 β-galactosidase.
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