Santos C A, Freedman B D, Ghosn S, Jacob J S, Scarpulla M, Mathiowitz E
Spherics, Inc., Lincoln, RI 02865, USA.
Biomaterials. 2003 Sep;24(20):3571-83. doi: 10.1016/s0142-9612(03)00219-9.
The effect of the addition of small molecular weight anhydride oligomers to polymer microspheres was evaluated and increased bioadhesion of the composite was demonstrated. Blends of low molecular weight anhydride oligomers with thermoplastic poly(fumaric-co-sebacic anhydride) [p(FASA)] and polycaprolactone were examined. The effects of anhydride oligomers on polymer microsphere degradation, crystallinity, and surface morphology were also explored. The results demonstrated that fumaric anhydride oligomer remained within polymer microspheres for several hours after exposure to phosphate buffer, formed a homogenous crystalline blend, increased bioadhesion as measured on rat intestine, and enhanced drug delivery in vitro as measured by the everted sac technique.
评估了向聚合物微球中添加小分子量酸酐低聚物的效果,并证明了复合材料的生物粘附性增加。研究了低分子量酸酐低聚物与热塑性聚(富马酸 - 共 - 癸二酸酐)[p(FASA)]和聚己内酯的共混物。还探讨了酸酐低聚物对聚合物微球降解、结晶度和表面形态的影响。结果表明,富马酸酐低聚物在暴露于磷酸盐缓冲液后在聚合物微球中保留了几个小时,形成了均匀的结晶共混物,增加了在大鼠肠道上测量的生物粘附性,并通过外翻肠囊技术测量提高了体外药物递送。