Mechano-Nanoswitches for Ultrasound-Controlled Drug Activation

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Abstract

Current pharmacotherapy is challenged by side effects and drug resistance issues due to the lack of drug selectivity. Mechanochemistry-based strategies provide new avenues to overcome the related problems by improving drug selectivity. It is recently shown that sonomechanical bond scission enables the remote-controlled drug release from their inactive parent macromolecules using ultrasound (US). To further expand the scope of the US-controlled drug activation strategy, herein a mechano-responsive nanoswitch for the selective activation of doxorubicin (DOX) to inhibit cancer cell proliferation is constructed. As a proof-of-concept, the synthesis, characterization, and US-responsive drug activation evaluation of the mechano-nanoswitch, which provides a blueprint for tailoring nanosystems for force-induced pharmacotherapy is presented.

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Huo, S., Liao, Z., Zhao, P., Zhou, Y., Göstl, R., & Herrmann, A. (2022). Mechano-Nanoswitches for Ultrasound-Controlled Drug Activation. Advanced Science, 9(12). https://doi.org/10.1002/advs.202104696

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