Puhl Sebastian, Ilko David, Li Linhao, Holzgrabe Ulrike, Meinel Lorenz, Germershaus Oliver
Institute for Pharmacy and Food Chemistry, University of Wuerzburg, Am Hubland, Wuerzburg 97074 , Germany.
Institute for Pharmacy and Food Chemistry, University of Wuerzburg, Am Hubland, Wuerzburg 97074 , Germany; Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400030, PR China.
Int J Pharm. 2014 Dec 30;477(1-2):273-81. doi: 10.1016/j.ijpharm.2014.10.047. Epub 2014 Oct 22.
Nonwoven scaffolds consisting of poly-ε-caprolactone (PCL), poly(lactic-co-glycolic acid) (PLGA) and polidocanol (PD), and loaded with lysozyme crystals were prepared by electrospinning. The composition of the matrix was varied and the effect of PD content in binary mixtures, and of PD and PLGA content in ternary mixtures regarding processability, fiber morphology, water sorption, swelling and drug release was investigated. Binary PCL/PD blend nonwovens showed a PD-dependent increase in swelling of up to 30% and of lysozyme burst release of up to 45% associated with changes of the fiber morphology. Furthermore, addition of free PD to the release medium resulted in a significant increase of lysozyme burst release from pure PCL nonwovens from approximately 2-35%. Using ternary PCL/PD/PLGA blends, matrix degradation could be significantly improved over PCL/PD blends, resulting in a biphasic release of lysozyme with constant release over 9 weeks, followed by constant release with a reduced rate over additional 4 weeks. Based on these results, protein release from PCL scaffolds is improved by blending with PD due to improved lysozyme desorption from the polymer surface and PD-dependent matrix swelling.
通过静电纺丝制备了由聚己内酯(PCL)、聚乳酸-乙醇酸共聚物(PLGA)和聚多卡醇(PD)组成并负载溶菌酶晶体的非织造支架。改变基质的组成,并研究二元混合物中PD含量以及三元混合物中PD和PLGA含量对可加工性、纤维形态、吸水性、溶胀性和药物释放的影响。二元PCL/PD共混非织造布显示出溶胀率随PD含量增加而增加,最高可达30%,溶菌酶突释率最高可达45%,这与纤维形态的变化有关。此外,向释放介质中添加游离PD会导致纯PCL非织造布中溶菌酶突释率从约2%显著增加至35%。使用三元PCL/PD/PLGA共混物,与PCL/PD共混物相比,基质降解可得到显著改善,导致溶菌酶呈双相释放,前9周持续释放,随后在额外4周内以降低的速率持续释放。基于这些结果,由于溶菌酶从聚合物表面的解吸得到改善以及PD依赖的基质溶胀,与PD共混可改善PCL支架中蛋白质的释放。