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首页> 外文期刊>Journal of biomedical nanotechnology >Novel Layer-by-Layer Structured Nanofibrous Mats Coated by Protein Films for Dermal Regeneration
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Novel Layer-by-Layer Structured Nanofibrous Mats Coated by Protein Films for Dermal Regeneration

机译:蛋白质膜涂覆的新型层状结构纳米纤维垫,用于真皮再生

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摘要

Layer-by-layer coating technique is effective in modifying the surface of nanofibrous mats, but overmuch film-coating makes the mats less porous to hardly suit the condition for tissue engineering. We developed novel nanofibrous mats layer-by-layer coated by silk fibroin and lysozyme on the cellulose electrospun template via electrostatic interaction. The film-coating assembled on the mats was not excessive because the charge of the proteins varied in the coating process due to different pH value. In addition, pure nature materials made the mats nontoxic, biodegradable and low-cost. The morphology and composition variation during layer-by-layer coating process was investigated and the results showed that the structure and thickness of film-coatings could be well-controlled. The antibacterial assay and in vitro cell experiments indicated that the mats could actively inhibit bacteria and exhibit excellent biocompatibility. In vivo implant assay further verified the mats cultured with human epidermal cells could promote wound healing and avoid wound infection. Therefore, these mats showed promising prospects when performed for dermal reconstruction.
机译:逐层涂覆技术可以有效地修饰纳米纤维垫的表面,但是过多的薄膜涂覆会使垫的孔隙率降低,从而几乎不适合组织工程的条件。我们通过静电相互作用在纤维素静电纺丝模板上开发了由丝纤蛋白和溶菌酶逐层涂覆的新型纳米纤维垫。组装在垫子上的薄膜包衣并不多余,因为蛋白质的电荷在包衣过程中由于不同的pH值而变化。此外,纯天然材料使垫子无毒,可生物降解且成本低廉。研究了逐层涂覆过程中的形貌和组成变化,结果表明可以很好地控制薄膜涂层的结构和厚度。抗菌测定和体外细胞实验表明,该垫子可以有效地抑制细菌并表现出优异的生物相容性。体内植入试验进一步证实了用人表皮细胞培养的垫子可以促进伤口愈合并避免伤口感染。因此,当进行真皮重建时,这些垫子显示出有希望的前景。

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