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Keratins extracted from Merino wool and Brown Alpaca fibres: Thermal, mechanical and biological properties of PLLA based biocomposites

机译:从美利奴羊毛和棕羊驼毛纤维中提取的角蛋白:基于PLLA的生物复合材料的热,机械和生物学特性

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摘要

Keratins extracted from Merino wool (KM) and Brown Alpaca fibres (KA) by sulphitolysis and commercial hydrolyzed keratins (KH) were used as fillers in poly(L-lactic) acid based biocomposites processed by solvent casting in chloroform. Different contents (1 wt.% and 5 wt.%) of keratins were considered and the morphological, thermal, mechanical, chemical and biological behaviours of the developed PLLA biocomposites were investigated. The results confirmed that surface morphologies of biocomposites revealed specific round-like surface topography function of different microsized keratin particles in different weight contents, such as the analysis of bulk morphologies which confirmed a phase adhesion strictly dependent by the keratin source. Transparency and thermal responses were deeply affected by the presence of the different keratins and their interaction with the PLLA matrix. Tensile test results underlined the possibility to modulate the mechanical behaviour of PLLA selecting the keratin type and content in order to influence positively the elastic and/or plastic response. It was demonstrated that surface characteristics of PLLA/KA systems also influenced the bovine serum albumin adsorption, moreover PLLA and PLLA biocomposites based on different kinds of keratins supported the culture of human bone-marrow mesenchymal stem cells, indicating that these biocomposites could be useful materials for medical applications.
机译:通过硫化作用从美利奴羊毛(KM)和棕羊驼毛纤维(KA)中提取的角蛋白和商业水解角蛋白(KH)用作在溶剂中在氯仿中浇铸的聚(L-乳酸)酸基生物复合材料的填充剂。考虑了不同含量(1重量%和5重量%)的角蛋白,并研究了所开发的PLLA生物复合材料的形态,热,机械,化学和生物学行为。结果证实,生物复合材料的表面形态揭示了不同重量含量的不同微尺寸角蛋白颗粒具有特定的圆形表面形貌功能,例如对本体形态的分析,其证实了严格依赖于角蛋白来源的相粘附。透明性和热响应受到不同角蛋白的存在及其与PLLA基质的相互作用的深刻影响。拉伸测试结果强调了调节PLLA选择角蛋白类型和含量的机械行为的可能性,以积极影响弹性和/或塑性响应。结果表明,PLLA / KA系统的表面特性也影响了牛血清白蛋白的吸附,此外,基于不同角蛋白的PLLA和PLLA生物复合材料支持人骨髓间充质干细胞的培养,表明这些生物复合材料可能是有用的材料。用于医疗应用。

著录项

  • 来源
    《Materials science & engineering》 |2015年第2期|394-406|共13页
  • 作者单位

    Materials Engineering Center, UdR INSTM, University of Perugia, Strada di Pentima 4, 05100 Terni, Italy;

    CNR-ISOF, Institute of Organic Synthesis and Photoreactivity, Via P. Gobetti, 101-40129 Bologna, Italy;

    Materials Engineering Center, UdR INSTM, University of Perugia, Strada di Pentima 4, 05100 Terni, Italy;

    Department of Chemistry, Biology and Biotechnology, Biochemistry and Molecular Biology Unit, University of Perugia, Via del Giochetto, 06126 Perugia, Italy;

    Department of Chemistry, Biology and Biotechnology, Biochemistry and Molecular Biology Unit, University of Perugia, Via del Giochetto, 06126 Perugia, Italy;

    Department of Chemistry, Biology and Biotechnology, Biochemistry and Molecular Biology Unit, University of Perugia, Via del Giochetto, 06126 Perugia, Italy;

    University of Camerino, School of Architecture and Design, V.le della Rimembranza, 63100 Ascoli Piceno, Italy;

    Materials Engineering Center, UdR INSTM, University of Perugia, Strada di Pentima 4, 05100 Terni, Italy;

    Materials Engineering Center, UdR INSTM, University of Perugia, Strada di Pentima 4, 05100 Terni, Italy;

    Materials Engineering Center, UdR INSTM, University of Perugia, Strada di Pentima 4, 05100 Terni, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly(L-lactic) add; Keratin; Protein; Biocomposite; Biomedical applications;

    机译:聚(L-乳酸)加;角蛋白;蛋白;生物复合材料生物医学应用;

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