Department of Weaving and Spinning, Faculty of Applied Arts, Helwan University, Egypt.
Biochemistry Department, National Research Centre, Dokki, Giza, Egypt.
Int J Biol Macromol. 2020 Aug 15;157:530-543. doi: 10.1016/j.ijbiomac.2020.04.152. Epub 2020 Apr 25.
In this work, polyvinylpyrrolidone nanofibers were electrospun incorporated with lecithin, zero-charge natural segment, as non-biofouling nanofiltration membrane with tunable porous structures. Optimum conditions were studied to obtain nano-pore size capable of nano-scaled objects reduction using needle and needleless electrospinning apparatuses. Fiber diameters were in proportional relationship with PVP concentrations to range from 1.2 um to 34 nm at 10 to 5% wt/v PVP respectively. Microcrystalline cellulose (MCC) was added and PVP fibers were photo-crosslinked to enhance the mechanical strength. Mechanical properties of electrospun fibers were enforced up to 279% in the presence of microcrystalline cellulose while increased by 125% when exposed to photo-crosslinking for 8 h by UV-light radiation. UV-crosslinking has significantly improved the hydrophobicity of the final mat to report contact angle bigger than 90° at 16 h. Protein adhesion test was conducted to indicate the capability of the electrospun membrane to bypass the blood-plasma products. Zero protein adhesion was recorded by adding only 2% wt/v of lecithin.
在这项工作中,聚乙烯吡咯烷酮纳米纤维通过电纺与卵磷脂、零电荷天然段结合,作为具有可调孔结构的非生物污染纳滤膜。使用针式和无针式电纺设备研究了获得能够减小纳米级物体的纳米孔尺寸的最佳条件。纤维直径与 PVP 浓度成正比,分别在 10 至 5wt/v PVP 时从 1.2 µm 到 34nm 变化。添加微晶纤维素 (MCC) 并对 PVP 纤维进行光交联以增强机械强度。在存在微晶纤维素的情况下,静电纺丝纤维的机械性能增强了 279%,而在 8 小时的 UV 光辐射下进行光交联时,则增强了 125%。UV 交联显著提高了最终垫的疏水性,报道接触角大于 90°在 16 小时。进行蛋白质粘附测试以指示静电纺膜绕过血桨产物的能力。仅添加 2wt/v 的卵磷脂即可记录到零蛋白质粘附。