Department of Physics, Universidade Federal do Paraná-UFPR, Centro Politécnico, P.O Box 19044, Curitiba, Paraná, Brasil.
Department of Pathology, Universidade Federal do Paraná-UFPR, Centro Politécnico, P.O Box 19031, Curitiba, Paraná, Brasil.
Carbohydr Polym. 2015 Dec 10;134:775-83. doi: 10.1016/j.carbpol.2015.08.013. Epub 2015 Aug 13.
Polyvinyl Alcohol (PVA)/guar gum (GG) membranes with different loads of paramagnetic iron oxide Fe3O4 nanoparticles were successfully electrospun using both non-alkaline and alkaline stock solutions. The nanoparticle homogeneity distribution was clearly enhanced in fibers obtained from alkaline stock solutions. This is mainly due to the interaction between GG and the metallic ion, which also leads to further dispersion of remained uncoated nanoparticles in the mixture. It was also noticed that GG favors nanoparticle stability in the mixture and contributes to nanoparticle encapsulation. X-ray results showed that all membranes were semi-crystalline. FTIR-ATR spectra showed that Fe-O absorption band intensity improved with increasing nanoparticle load, reaching saturation at 3.5mg/ml Fe3O4 concentration under alkaline conditions. VSM analyses showed that the nanoparticles are paramagnetic and were successfully incorporated by the fibers. In vitro biocompatibility tests using L929 cells indicates adequate levels of cytotoxicity and cell adhesion/proliferation assays for both membranes obtained from non-alkaline and alkaline stock solutions. Therefore, they have potential for biomedical applications as biodegradable wound dressing.
成功地使用非碱性和碱性原液,通过静电纺丝制备了不同负载量的磁性氧化铁 Fe3O4 纳米粒子的聚乙烯醇(PVA)/瓜尔胶(GG)膜。从碱性原液中获得的纤维中,纳米粒子的均匀分布明显增强。这主要是由于 GG 与金属离子的相互作用,这也导致了剩余未包覆的纳米粒子在混合物中的进一步分散。还注意到 GG 有利于混合物中纳米粒子的稳定性,并有助于纳米粒子的封装。X 射线结果表明所有膜均为半结晶。FTIR-ATR 光谱表明,随着纳米粒子负载量的增加,Fe-O 吸收带强度提高,在碱性条件下,当 Fe3O4 浓度达到 3.5mg/ml 时达到饱和。VSM 分析表明,纳米粒子是顺磁性的,并被纤维成功地包裹。使用 L929 细胞进行的体外细胞相容性测试表明,对于非碱性和碱性原液获得的两种膜,细胞毒性和细胞黏附/增殖测定均处于适当水平。因此,它们具有作为可生物降解伤口敷料的生物医学应用潜力。