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Thermoresponsive and Biodegradable Amphiphilic Block Copolymers with Pendant Functional Groupsoa mark
  • Lee, Bo Keun ;
  • Noh, Jung Hyun ;
  • Park, Ji Hoon ;
  • Park, Seung Hun ;
  • Kim, Jae Ho ;
  • Oh, Se Heang ;
  • Kim, Moon Suk
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Publication Year
2018-08-01
Publisher
Korean Tissue Engineering and Regenerative Medicine Society
Citation
Tissue Engineering and Regenerative Medicine, Vol.15, pp.393-402
Keyword
Amphiphilic block copolymersBiodegradationPendant groupSolution-to-hydrogel phase transitionsThermoresponsive
Mesh Keyword
Amphiphilic block copolymersMethoxypolyethylene glycolPendant functional groupPendant groupsPoly (epsiloncaprolactone)Rheological analysisThermo-responsiveThermo-responsive hydrogels
All Science Classification Codes (ASJC)
Medicine (miscellaneous)Biomedical Engineering
Abstract
BACKGROUND:: To develop the biodegradability and thermoresponsive hydrogel, in this work we designed a pendant-functionalized, thermoresponsive, amphiphilic block copolymer. METHODS:: Methoxy poly(ethylene glycol) (MPEG)-b-[poly(ε-caprolactone)-ran-poly(ε-caprolactone-3-one)-ran-polylactic acid] (MCL) and (MPEG-b-[PCL-ran-POD-ran-PLA]) [MCL-(CO)] block copolymers were prepared by ring-opening polymerization of ε-caprolactone, OD and lactide monomers. The subsequent derivatization of MCL-(CO) provided MPEG-b-[PCL-ran-poly(ε-caprolactone-3-COOH)-ran-PLA] [MCL-(COOH)] with COOH pendant groups and MPEG-b-[PCL-ran-poly(ε-caprolactone-3-NH2)-ran-PLA] [MCL-(NH2)] with NH2 pendant groups. RESULTS:: The measured segment ratios of MCL-(CO), MCL-(COOH), and MCL-(NH2) agreed well with the target ratios. The abundances of the COOH and NH2 groups in the MCL-(COOH) and MCL-(NH2) copolymers were determined by 1H- and 13C-nuclear magnetic resonance spectroscopy, and agreed well with the target abundances. MCL-(CO), MCL-(COOH), and MCL-(NH2) formed homogeneous, white, opaque emulsions at room temperature. Rheological analysis of the block copolymer suspensions indicated a solution-to-hydrogel phase transition as a function of temperature. The solution-to-hydrogel phase transitions and the biodegradation of MCL-(CO), MCL-(COOH), and MCL-(NH2) were affected by varying the type (ketone, COOH, or NH2) and abundance of the pendant groups. CONCLUSION:: MCL-(CO), MCL-(COOH), and MCL-(NH2) with ketone, COOH, and NH2 pendant groups showed solution-to-hydrogel phase transitions and biodegradation behaviors that depended on both the type and number of pendant groups.
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30301
DOI
https://doi.org/10.1007/s13770-018-0121-2
Fulltext

Type
Article
Funding
Acknowledgements This study was supported by a grant from a Basic Science Research Program (2016R1A2B3007448) through the National Research Foundation of Korea (NRF) funded by the Ministry of Education.
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Kim, Moon Suk김문석
Department of Applied Chemistry & Biological Engineering
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