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Preparation and Release Behavior of Methoxy poly(ethylene glycol)- poly(L-lactide-co-glycolide) Wafer Containing Albumin  

서광수 (전북대학교 고분자ㆍ나노공학과)
김문석 (한국화학연구원 나노생체재료연구)
김경자 (요업(세라믹)기술원 나노연구본)
조선행 (한국화학연구원 나노생체재료연구)
이해방 (한국화학연구원 나노생체재료연구)
강길선 (전북대학교 고분자ㆍ나노공학과)
Publication Information
Polymer(Korea) / v.28, no.4, 2004 , pp. 328-334 More about this Journal
Abstract
A series of methoxy poly(ethylene glycol) (MPEG)-poly(L-lactide-co-glycolide) (PLGA) diblock copolymers were synthesized by ring-opening polymerization of L-lactide and glycolide with carbitol (134 g/mole) or different molecular weights of MPEG (550, 2000, and 5000 g/mole) as an initiator in presence of Sn(Oct)$_2$. The properties of diblock copolymers were characterized by using $^1$H-NMR, GPC, and XRD. After uniform mixing of block copolymers and 1% albumin bovine-fluorescein isothiocyanate(FITC-BSA) with a freeze miller, the wafers loaded FITC-BSA were fabricated by using a mold with a dimensions of 3 mm${\times}$1mm diameter. The release profiles of FITC-BSA and the pH changes of wafer were examined using pH 7.4 PBS for 30 days at 37$^{\circ}C$. The release profiles of albumin showed fast initial burst as the molecular weights of MPEG increased. As a result of this study, the release behavior of BSA was controlled with introducing MPEG in the block copolymers.
Keywords
block copolymer; MPEG-PLGA; albumin; protein carrier; wafer;
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