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Superhydrophobic/hydrophobic nanofibrous network with tunable cell adhesion: Fabrication, characterization and cellular activities

机译:具有可调节细胞粘附力的超疏水/疏水纳米纤维网络:制备,表征和细胞活性

摘要

Superhydrophobic/hydrophobic nanofibrous networks have attracted much attention because of their potential applications in tissue engineering. Cell growth in the scaffold of tissue engineering can be controlled by the hydrophobicity of the scaffold. The superhydrophobic/hydrophobic surfaces are usually made from synthesized polymers, which generally are not biocompatible and biodegradable and, thus, not suitable for biomedical applications. Zein is an amphiphilic protein from corn, and it is potential for hydrophobic surface formation. This work aims to make zein superhydrophobic/hydrophobic nanofibrous network using electrospinning. The formed zein networks show high hydrophobicity with the water contact angles ranging from 130.5 ± 1.0° to 153.6 ± 2.1°. The cell attachment and growth on the zein networks are studied. It is observed that the amount of the cells attached and grown in the zein nanofibrous networks are higher than the ones on the conventional zein casting films. The results indicate that the electrospun zein nanofibrous network has great potential as scaffold in tissue engineering to support cell growth and tissue regeneration.
机译:超疏水/疏水纳米纤维网络因其在组织工程中的潜在应用而备受关注。组织工程学支架中的细胞生长可以通过支架的疏水性来控制。超疏水/疏水表面通常由合成的聚合物制成,该聚合物通常不具有生物相容性和生物可降解性,因此不适合生物医学应用。玉米蛋白是玉米的两亲蛋白,具有形成疏水表面的潜力。这项工作旨在通过静电纺丝使玉米醇溶蛋白超疏水/疏水纳米纤维网络。形成的玉米蛋白网络显示出高疏水性,水接触角范围为130.5±1.0°至153.6±2.1°。研究了玉米醇溶蛋白网络上的细胞附着和生长。观察到,玉米醇溶蛋白纳米纤维网络中附着和生长的细胞的数量高于常规玉米醇溶蛋白流延膜上的细胞的数量。结果表明,电纺玉米醇溶蛋白纳米纤维网络作为组织工程中的支架具有巨大的潜力,以支持细胞生长和组织再生。

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