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- W2804067237 endingPage "1038" @default.
- W2804067237 startingPage "1023" @default.
- W2804067237 abstract "Abstract To release biosubstances, including drug molecules, DNAs, and proteins, at prescribed cellular and tissue locations with controllable rates is the Holy Grail of drug delivery that could enable an array of unprecedented in vitro and in vivo applications. Extensive research efforts have been focused on exploring innovative mechanisms and approaches for controlling biochemical release with prescribed dose, timing, and dynamics. Particularly, the utilization of electric fields to stimulate the release of biomolecules from synthesized micro/nanostructures has received considerable interest. In this review, we focus on the recent progresses in controlling the release of biomolecules with electric fields by a variety of mechanisms, including electrochemical desorption and actuation, electrically triggered erosion, and electrically driven nanopumps and mechanical motions. The research on external electric stimuli trigged biorelease has progressed rapidly and could make remarkable impact in single‐cell biology, cell‐cell communication, and drug discovery." @default.
- W2804067237 created "2018-06-01" @default.
- W2804067237 creator A5002641761 @default.
- W2804067237 creator A5055275015 @default.
- W2804067237 date "2018-06-13" @default.
- W2804067237 modified "2023-10-14" @default.
- W2804067237 title "Electrically Controlled Biochemical Release from Micro/Nanostructures for <i>in vitro</i> and <i>in vivo</i> Applications: A Review" @default.
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