| Literature DB >> 30616349 |
Jinyang Li1,2, Drishti Maniar1,2, Xue Qu3, Huan Liu3, Chen-Yu Tsao1,2, Eunkyoung Kim1, William E Bentley1,2, Changsheng Liu3, Gregory F Payne1.
Abstract
Biomacromolecules often possess information to self-assemble through low energy competing interactions which can make self-assembly responsive to environmental cues and can also confer dynamic properties. Here, we coupled self-assembling systems to create biofunctional multilayer films that can be cued to disassemble through either molecular or electrical signals. To create functional multilayers, we: (i) electrodeposited the pH-responsive self-assembling aminopolysaccharide chitosan, (ii) allowed the lectin Concanavalin A (ConA) to bind to the chitosan-coated electrode (presumably through electrostatic interactions), (iii) performed layer-by-layer self-assembly by sequential contacting with glycogen and ConA, and (iv) conferred biological (i.e., enzymatic) function by assembling glycoprotein (i.e., enzymes) to the ConA-terminated multilayer. Because the ConA tetramer dissociates at low pH, this multilayer can be triggered to disassemble by acidification. We demonstrate two approaches to induce acidification: (i) glucose oxidase can induce multilayer disassembly in response to molecular cues, and (ii) anodic reactions can induce multilayer disassembly in response to electrical cues.Entities:
Year: 2019 PMID: 30616349 PMCID: PMC7045596 DOI: 10.1021/acs.biomac.8b01592
Source DB: PubMed Journal: Biomacromolecules ISSN: 1525-7797 Impact factor: 6.988