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Nano-hybrid electrospun non-woven mats made of wool keratin and hydrotalcites as potential bio-active wound dressings

机译:Nano-hybrid实际上电纺制成的无纺布垫羊毛角蛋白和水滑石的潜力生物活性的伤口敷料

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摘要

In this work, nano-hybrid electrospun non-woven mats made of wool keratin combined with diclofenac loaded hydrotalcites (HTD) were prepared and characterized as potential drug delivery systems and scaffolds for fibroblast cell growth. Nano-hybrid electrospun non-woven mats showed a good adaptability to wet skin, effortlessly conforming to the three-dimensional topography of the tissue. Nanosized HTD exercised an overall reinforcing action on the electrospun non-woven mats since the nanohybrid samples displayed a reduced swelling ratio and a slower degradation profile compared to keratin-based nanofiber non-woven mats containing free diclofenac, without negative effects on drug release. The cell viability test indicated a decreased toxicity of the drug when loaded into nanofibers and confirmed the biocompatibility of keratin/HTD electrospun non-woven mats; moreover, a controlled diclofenac release within the first 24 hours does not compromise the fibroblast cell growth in a significant manner.
机译:在这工作,nano-hybrid实际上电纺无纺布垫制成的羊毛角蛋白结合双氯芬酸的水滑石(HTD)准备和特征作为潜在药物输送系统,为纤维母细胞支架细胞生长。垫湿皮肤适应性好,毫不费力地符合三维的地形的组织。全面加强行动实际上电纺无纺布垫自nanohybrid样本显示一个减少溶胀比和较慢退化概要keratin-based相比纳米纤维无纺布垫包含免费的对药物双氯芬酸,没有负面影响释放。当加载到降低毒性的药物纳米纤维的生物相容性和确认角蛋白/ HTD实际上电纺无纺布垫;控制双氯芬酸释放在第一24小时不妥协成纤维细胞的细胞增长的一个重要方式。

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