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Dynamic pH responsivity of triazole-based self-immolative linkers

Derrick A. Roberts, Ben S. Pilgrim, Tristan Dell, Molly M. Stevens

2020Chemical Science28 citationsDOIOpen Access PDF

Abstract

Gating the release of chemical payloads in response to transient signals is an important feature of 'smart' delivery systems. Herein, we report a triazole-based self-immolative linker that can be reversibly paused or slowed and restarted throughout its elimination cascade in response to pH changes in both organic and organic-aqueous solvents. The linker is conveniently prepared using the alkyne-azide cycloaddition reaction, which introduces a 1,4-triazole ring that expresses a pH-sensitive intermediate during its elimination sequence. Using a series of model compounds, we demonstrate that this intermediate can be switched between active and dormant states depending on the presence of acid or base, cleanly gating the release of payload in response to a fluctuating external stimulus.

Topics & Concepts

TriazoleChemistryResponsivityCombinatorial chemistryNanotechnologyMaterials scienceOrganic chemistryOptoelectronicsPhotodetectorClick Chemistry and ApplicationsDendrimers and Hyperbranched PolymersRNA Interference and Gene Delivery
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