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Responsive Surfaces for Life Science Applications AITranslate

clarkson university; clarkson university; clarkson university
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Publisher: Elsevier
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Abstract AITranslate

This review describes recent developments in stimuli-responsive biointerfaces based on surface-tethered organic molecules, polymer chains, and polymer networks. The existing systems are classified according to the length scale of transformations occurring in the stimuli-responsive material and interactions of the material with the biological environment. In particular, two types of biointerfaces are considered: those whose interactions with proteins and cells can be switched reversibly or one time due to stimuli-triggered changes in molecular conformations or chemical bonds in functional molecules, and those that undergo reversible stimuli-triggered reconstruction at mesoscale due to stimuli-responsive phase behavior. Specific examples of stimuli-responsive surfaces from the recent literature are supplemented with discussion of potential biomedical applications.

KeyWords AITranslate

stimuliresponsive polymers selfassembled monolayers protein adsorption cell adhesion biosensors bioseparation membranes
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DOI:https://doi.org/10.1146/annurev-matsci-070511-155044

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Citation Information:

This review describes recent developments in stimuli-responsive biointerfaces based on surface-tethered organic molecules, polymer chains, and polymer networks. The existing systems are classified according to the length scale of transformations occurring in the stimuli-responsive material and interactions of the material with the biological environment. In particular, two types of biointerfaces are considered: those whose interactions with proteins and cells can be switched reversibly or one time due to stimuli-triggered changes in molecular conformations or chemical bonds in functional molecules, and those that undergo reversible stimuli-triggered reconstruction at mesoscale due to stimuli-responsive phase behavior. Specific examples of stimuli-responsive surfaces from the recent literature are supplemented with discussion of potential biomedical applications.

quote

GB/T 7714-2015 [1] Hidenori Kuroki, Ihor Tokarev, Sergiy Minko. Annual Review of Materials Research, 2012(42). DOI:10.1146/annurev-matsci-070511-155044.
MLA [1] Hidenori Kuroki, et al., Annual Review of Materials Research, no. 42, 2012, https://doi.org/10.1146/annurev-matsci-070511-155044.
APA [1] Hidenori Kuroki, Ihor Tokarev, & Sergiy Minko. (2012). Annual Review of Materials Research(42). https://doi.org/10.1146/annurev-matsci-070511-155044
IEEE [1] Hidenori Kuroki, Ihor Tokarev, and Sergiy Minko, Annual Review of Materials Research, no. 42, 2012, doi: 10.1146/annurev-matsci-070511-155044. keywords: {stimuliresponsive polymers;selfassembled monolayers;protein adsorption;cell adhesion;biosensors;bioseparation membranes}