高等学校化学学报 ›› 2005, Vol. 26 ›› Issue (7): 1369.

• 研究简报 • 上一篇    下一篇

PLA/PEG/PLA三嵌段共聚物载药纳米胶囊的制备及表征

牛文强, 傅国旗, 吴俊丽, 石可瑜, 袁直, 何炳林   

  1. 南开大学-天津大学联合研究院吸附分离功能高分子材料国家重点实验室, 南开大学高分子化学研究所 天津300071
  • 收稿日期:2004-08-17 出版日期:2005-07-10 发布日期:2005-07-10
  • 通讯作者: 傅国旗(1966年出生),男,副教授,主要从事生物医用材料的研究.E-mail:gqfu@nankai.edu.Cn E-mail:gqfu@nankai.edu.Cn
  • 基金资助:

    高等学校博士学科点专项科研基金(批准号:20010055009)资助.

Preparation and Characterization of Drug-loaded PLA/PEG/PLA Triblock Copolymer Nanocapsules

NIU Wen-Qiang, FU Guo-Qi, WU Jun-Li, SHI Ke-Yu, YUAN Zhi, HE Bing-Lin   

  1. N & J Joint Academy, The State Key Laboratory of Functional Polymer Materials for Adsorption and Separation, Institute of Polymer Chemistry, Nankai University, Tianjin 30071, China
  • Received:2004-08-17 Online:2005-07-10 Published:2005-07-10

关键词: PLA/PEG/PLA三嵌段共聚物, 双乳化溶剂蒸发法, 纳米微胶囊, 胰岛素

Abstract: Biodegradable triblock copolymer PLA/PEG/PLA was synthesized by ring-opening bulk polymerization of D,L-lactide in the presence of poly(ethylene glycol) (PEG), in the molecular structure of which, the length of PEG and PLA chain segments was made to be quite different. Nanoparticles were prepared by using the copolymer via a double emulsion-evaporation technique. The paticles tended to form the configuration like capsules, i.e., the nanocapsules, because of the great size difference in PEG and PLA segments of the copolymer. Insulin, chosen as a model drug, was encapsulated into nanocapsules. The effect of preparation conditions on the size, insulin encapsulation efficiency, and in vitro drug release behavour of the nanoparticles were investigated. The experimental results show that the nanocapsules had a smooth spherical surface and the mean diameter was in the range from 180 nm to 350 nm, and the entrapment of insulin achieved up to 78.4. The drug-loaded nanocapsules released their content continuously, remarkably different from the corresponding micelles which gave a significant initial burst release followed by a slow release.

Key words: PLA/PEG/PLA triblock copolymer, Double emulsion-solvent evaporation technique, Nanocapsule, Insulin

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