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A biodegradable, injectable, gel system based on MPEG-b-(PCL-ran-PLLA) diblock copolymers with an adjustable therapeutic window

  • Yun Mi Kang
  • , Sang Hyo Lee
  • , Ju Young Lee
  • , Jin Soo Son
  • , Byung Soo Kim
  • , Bong Lee
  • , Heung Jae Chun
  • , Byoung Hyun Min
  • , Jae Ho Kim
  • , Moon Suk Kim
  • Ajou University
  • Chungnam National University
  • Pukyong National University

Research output: Contribution to journalArticlepeer-review

112 Scopus citations

Abstract

In situ-forming gel systems have drawn increasing attention for their potential use in a variety of biomedical applications. Here, we examined an in situ-forming gel system comprised of MPEG-b-PCL and MPEG-b-(PCL-ran-PLLA) diblock copolymers with different PLLA contents (0-10 mol%) in the PCL segment. The crystalline region of the PCL-ran-PLLA segment decreased with increasing PLLA content. The MPEG-b-(PCL-ran-PLLA) diblock copolymer solutions were liquid at room temperature and only MPEG-b-(PCL-ran-PLLA) diblock copolymer solutions with a PLLA content ≤5 mol% in the PCL segment showed a sol-to-gel transition as the temperature was increased. The viscosity change associated with sol-to-gel phase transition depended on the PLLA content in the PCL segment. A MPEG-b-PCL diblock copolymer solution incubated in vitro showed increasing viscosity without degradation, whereas the viscosity of MPEG-b-(PCL-ran-PLLA) diblock copolymer solutions continuously and sharply decreased with increasing PLLA content in the PCL segment. As the amount of PLLA increased, the size of in vivo-formed MPEG-b-(PCL-ran-PLLA) gels after initial injection tended to gradually decrease because of hydrolytic degradation of the PLLA in the PCL-ran-PLLA segment. An immunohistochemical examination showed that in vivo MPEG-b-(PCL-ran-PLLA) diblock copolymer gels provoked only a modest inflammatory response. Collectively, our results show that the MPEG-b-(PCL-ran-PLLA) diblock copolymer gel described here could serve as a minimally invasive, therapeutic, in situ-forming gel system that offers an experimental window adjustable from a few weeks to a few months.

Original languageEnglish
Pages (from-to)2453-2460
Number of pages8
JournalBiomaterials
Volume31
Issue number9
DOIs
StatePublished - Mar 2010

Bibliographical note

Funding Information:
This work was supported by a grant from KMOHW (grant no A050082), MKE (Grant no. 10030022) and Priority Research Centers Program through NRF funded by the Ministry of Education, Science and Technology (2009-0093826).

Keywords

  • Degradation
  • In situ-forming gel
  • MPEG-b-(PCL-ran-PLLA) diblock copolymer
  • Phase transition

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