首页> 外文期刊>Journal of Applied Polymer Science >Application of the dry-spinning method to produce poly(epsilon-caprolactone) fibers containing bovine serum albumin laden gelatin nanoparticles
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Application of the dry-spinning method to produce poly(epsilon-caprolactone) fibers containing bovine serum albumin laden gelatin nanoparticles

机译:干纺法在生产含牛血清白蛋白明胶纳米粒子的聚(ε-己内酯)纤维中的应用

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We designed and manufactured a polymeric system with combined hydrophilic-hydrophobic properties by loading gelatin nanoparticles (GNPs) containing bovine serum albumin (BSA) into poly(epsilon-caprolactone) (PCL) fibers. Our ultimate goal was to create a device capable of carrying and releasing protein drugs. Such a system could find several biomedical applications, such as those in controlled release systems, surgical sutures, and bioactive scaffolds for tissue engineering. A two-step desolvation method was used to produce GNPs, whereas PCL fibers were produced by a dry-spinning method. The morphological, mechanical, and thermal properties of the produced system were investigated, and the distribution of nanoparticles both inside and on the surface of the fibers was examined. The effect of the particles on the biodegradability of the fibers was also evaluated. In vitro preliminary tests were performed to study the release of BSA from nanoparticle-laden fibers and to compare this with its release from free nanoparticles. Our results indicate that the distribution of particles inside the fibers was quite homogeneous and only a few of them were present on the surface. The presence of the particles in the fibers did not affect the thermal properties of the PCL polymer matrix, although it created voids that affected the degradation characteristics so the PCL fibers favored faster erosion compared to the plain fibers. Preliminary results indicate that the release from GNP-laden fibers occurred much more slowly compared to that in the free GNPs. (C) 2016 Wiley Periodicals, Inc.
机译:我们通过将包含牛血清白蛋白(BSA)的明胶纳米颗粒(GNP)加载到聚(ε-己内酯)(PCL)纤维中,设计并制造了具有亲水-疏水特性的聚合物系统。我们的最终目标是创建一种能够携带和释放蛋白质药物的设备。这样的系统可以找到几种生物医学应用,例如控释系统,外科缝合线和用于组织工程的生物活性支架中的生物医学应用。使用两步去溶剂化法生产GNP,而PCL纤维通过干纺法生产。研究了所产生系统的形态,机械和热性能,并检查了纳米粒子在纤维内部和表面的分布。还评估了颗粒对纤维的生物降解性的影响。进行了体外初步测试,以研究负载纳米颗粒的纤维中BSA的释放,并将其与游离纳米颗粒中的BSA进行比较。我们的结果表明,纤维内部的颗粒分布相当均匀,并且表面上仅存在少量颗粒。纤维中颗粒的存在并不影响PCL聚合物基体的热性能,尽管它会形成影响降解特性的空隙,因此与普通纤维相比,PCL纤维更容易受到侵蚀。初步结果表明,与游离GNP相比,富含GNP的纤维的释放发生得慢得多。 (C)2016威利期刊公司

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