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  4. Low-fouling and functional poly(carboxybetaine) coating via a photo-crosslinking process
 
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Low-fouling and functional poly(carboxybetaine) coating via a photo-crosslinking process

Journal
Biomaterials Science
Journal Volume
5
Journal Issue
3
Pages
523-531
Date Issued
2017
Author(s)
Chien H.-W.
Cheng P.-H.
Chen S.-Y.
Yu J.
Tsai W.-B.  
DOI
10.1039/c6bm00637j
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/410744
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85014212760&doi=10.1039%2fc6bm00637j&partnerID=40&md5=1c7e8009946fdfeadee576a4107ec7bc
Abstract
Antifouling modification technology is developed for many biomedical applications such as blood-contact devices and biosensors. In this work, a photo-reactive polymer containing zwitterionic carboxybetaine groups was prepared by copolymerization of two kinds of methacrylic acids with carboxybetaine and azidoaniline. The carboxybetaine moiety is for low fouling and the azidophenyl moiety is for photo-crosslinking. The synthesized copolymers were coated onto polymeric substrates, and then covalently immobilized on the substrates by exposure to UV radiation. The poly(CBMA-co-AzMA) coating revealed that cell and platelet adhesion and protein adsorption to the substrates were reduced significantly compared to the untreated substrate. Furthermore, the direct immobilization of galactosamine was carried out on the polymer coating by EDC/NHS chemistry. The galactose-immobilized surface had the potential for selecting hepatocyte adhesion from the co-population of different cell types. In addition, the incorporation of photolithographic technology could make micropatterns of poly(CBMA-co-AzMA) coating for the cell co-culture of hepatocytes and fibroblasts. This work demonstrates that the reported technique is an economic and facile tool for layers of reduced adsorption of protein modification with functional groups in one step. ? 2017 The Royal Society of Chemistry.
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Type
journal article

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