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 an...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.展开更多
合成制备了不同分子量的PLA-PEG-PLA嵌段共聚物,并应用1 H NMR对其进行测试表征.然后将共聚物作为亲水性添加剂,用自行研发的中空纤维膜纺丝机对应制备了不同的PLA共混中空纤维膜.对制成的中空纤维膜进行水通量、残留率、水接触角、抗...合成制备了不同分子量的PLA-PEG-PLA嵌段共聚物,并应用1 H NMR对其进行测试表征.然后将共聚物作为亲水性添加剂,用自行研发的中空纤维膜纺丝机对应制备了不同的PLA共混中空纤维膜.对制成的中空纤维膜进行水通量、残留率、水接触角、抗污染性能等测试以及SEM观察,研究了该添加剂对PLA中空纤维膜各种性能的影响.结果发现,制成的中空纤维膜超滤性能优异,添加PLA-PEG-PLA嵌段共聚物会提高PLA中空纤维膜的抗污染性能,并且共聚物分子量越大,中空纤维膜的亲水性越好,抗污染性能越好.展开更多
文摘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.
文摘合成制备了不同分子量的PLA-PEG-PLA嵌段共聚物,并应用1 H NMR对其进行测试表征.然后将共聚物作为亲水性添加剂,用自行研发的中空纤维膜纺丝机对应制备了不同的PLA共混中空纤维膜.对制成的中空纤维膜进行水通量、残留率、水接触角、抗污染性能等测试以及SEM观察,研究了该添加剂对PLA中空纤维膜各种性能的影响.结果发现,制成的中空纤维膜超滤性能优异,添加PLA-PEG-PLA嵌段共聚物会提高PLA中空纤维膜的抗污染性能,并且共聚物分子量越大,中空纤维膜的亲水性越好,抗污染性能越好.