Mechanically Triggered Small Molecule Release from a Masked Furfuryl Carbonate

Stimuli-responsive polymers that release small molecules under mechanical stress are appealing targets for applications ranging from drug delivery to sensing. Here, we describe a modular mechanophore design platform for molecular release via a mechanically triggered cascade reaction. Mechanochemical...

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Veröffentlicht in:Journal of the American Chemical Society 2019-09, Vol.141 (38), p.15018-15023
Hauptverfasser: Hu, Xiaoran, Zeng, Tian, Husic, Corey C, Robb, Maxwell J
Format: Artikel
Sprache:eng
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Zusammenfassung:Stimuli-responsive polymers that release small molecules under mechanical stress are appealing targets for applications ranging from drug delivery to sensing. Here, we describe a modular mechanophore design platform for molecular release via a mechanically triggered cascade reaction. Mechanochemical activation of a furan–maleimide Diels–Alder adduct reveals a latent furfuryl carbonate that subsequently decomposes under mild conditions to release a covalently bound cargo molecule. The computationally guided design of a reactive secondary furfuryl carbonate enables the decomposition and release to proceed quickly at room temperature after unmasking via mechanical force. This general strategy is demonstrated using ultrasound-induced mechanical activation to release a fluorogenic coumarin payload from a polymer incorporating a chain-centered mechanophore.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.9b08663