Department of Chemistry, Faculty of Science, Hacettepe University, Beytepe Campus, 06800 Ankara, Turkey.
The Institute of Science & Engineering, Division of Nanotechnology and Nanomedicine, Hacettepe University, Beytepe Campus, 06800 Ankara, Turkey.
Carbohydr Polym. 2015 Nov 20;133:624-36. doi: 10.1016/j.carbpol.2015.06.106. Epub 2015 Jul 14.
This work presents a new approach to fabricating novel polymer nanofiber composites (NFCs) from water solution blends of PVA (hydrolyzed 89%)/ODA-MMT and Na-CMC/ODA-MMT nanocomposites as well as their folic acid (FA) incorporated modifications (NC-3-FA and NC-4-FA) through green electrospinning nanotechnology. The chemical and physical structures and surface morphology of the nanofiber composites were confirmed. Significant improvements in nanofiber morphology and size distribution of the NFC-3-FA and NFC-4-FA nanofibers with lower average means 110 and 113nm compared with those of NFC-1/NFC-2 nanofibers (270 and 323nm) were observed. The structural elements of polymer NFCs, particularly loaded partner NC-2, plays an important role in chemical and physical interfacial interactions, phase separation processing and enables the formation of nanofibers with unique morphology and excellent conductivity (NFC-3-FA 3.25×10(-9)S/cm and NFC-4-FA 8.33×10(-4)S/cm). This is attributed to the higher surface contact areas and multifunctional self-assembled supramacromolecular nanostructures of amorphous colloidal electrolytes. The anticancer activity of FA-containing nanofibers against osteocarcinoma cells were evaluated by cytotoxicity, apoptotic and necrotic analysis methods.
这项工作提出了一种新的方法,通过绿色静电纺丝纳米技术,从 PVA(水解 89%)/ODA-MMT 和 Na-CMC/ODA-MMT 纳米复合材料的水溶液共混物以及它们的叶酸(FA)掺入改性物(NC-3-FA 和 NC-4-FA)中制造新型聚合物纳米纤维复合材料(NFCs)。纳米纤维复合材料的化学和物理结构以及表面形态得到了确认。与 NFC-1/NFC-2 纳米纤维(270 和 323nm)相比,NFC-3-FA 和 NFC-4-FA 纳米纤维的形态和尺寸分布得到了显著改善,平均均值分别为 110nm 和 113nm。聚合物 NFCs 的结构元素,特别是负载的 NC-2,在化学和物理界面相互作用、相分离处理中起着重要作用,并能够形成具有独特形态和优异导电性的纳米纤维(NFC-3-FA 为 3.25×10(-9)S/cm,NFC-4-FA 为 8.33×10(-4)S/cm)。这归因于更高的表面接触面积和无定形胶体电解质的多功能自组装超分子纳米结构。通过细胞毒性、凋亡和坏死分析方法评估了含 FA 的纳米纤维对骨肉瘤细胞的抗癌活性。