School of Materials Science and Engineering, Tianjin University, Tianjin 300072, P. R. China.
J Biomater Sci Polym Ed. 2010;21(6-7):803-19. doi: 10.1163/156856209X445302.
Membranes composed of dextran (DEX) and poly(L-lactide-co-epsilon-caprolactone) (PLCL) as ultrafine core/shell fibers for loading platelet-derived growth factor-bb (PDGF-bb) were produced by coaxial electrospinning. The morphology and core/shell structure of the DEX/PLCL fibers containing PDGF-bb were investigated by scanning electron microscopy and transmission electron microscopy. The loading amount of PDGF-bb in the DEX/PLCL membrane prepared at 0.1 ml/h of the inner solution flow rate (DEX/PLCL-1P) was much lower than that in DEX/PLCL-2P and DEX/PLCL-3P obtained at 0.2 ml/h and 0.3 ml/h inner solution flow rate, respectively. All three membranes showed obvious burst release of PDGF-bb in the first 2 days, and then the release behaviors were smoother and steadier. They all kept a fibrous morphology during the whole release period of 28 days. Studies on adhesion, proliferation and morphology of the vascular smooth muscle cells on the fibrous membranes of DEX/PLCL-1P, DEX/PLCL-2P and DEX/PLCL-3P, as well as PLCL and DEX/PLCL suggested that DEX/PLCL membranes containing PDGF-bb protected in the core of ultrafine fibers could positively promote cell attachment, and their cell activities were significantly higher than those of PLCL and DEX/PLCL membranes without PDGF-bb. The DEX/PLCL-2P membrane with fine core/shell structure of fibers would be the best choices for further applications.
通过同轴静电纺丝,制备了由葡聚糖(DEX)和聚(L-丙交酯-co-ε-己内酯)(PLCL)组成的超细微核/壳纤维作为血小板衍生生长因子-bb(PDGF-bb)的负载物。通过扫描电子显微镜和透射电子显微镜研究了含有 PDGF-bb 的 DEX/PLCL 纤维的形态和核/壳结构。在 0.1ml/h 的内溶液流速(DEX/PLCL-1P)下制备的 DEX/PLCL 膜中 PDGF-bb 的载药量明显低于在 0.2ml/h 和 0.3ml/h 内溶液流速下制备的 DEX/PLCL-2P 和 DEX/PLCL-3P。这三种膜在前 2 天均表现出明显的 PDGF-bb 突释,然后释放行为变得更加平稳。在 28 天的整个释放期间,它们都保持纤维形态。对 DEX/PLCL-1P、DEX/PLCL-2P 和 DEX/PLCL-3P 的纤维状膜上的血管平滑肌细胞的粘附、增殖和形态以及 PLCL 和 DEX/PLCL 上的粘附、增殖和形态的研究表明,包埋在超细纤维核中的 DEX/PLCL 膜可以促进细胞附着,其细胞活性明显高于不含 PDGF-bb 的 PLCL 和 DEX/PLCL 膜。具有精细核/壳结构纤维的 DEX/PLCL-2P 膜将是进一步应用的最佳选择。