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Transglutaminase mediated grafting of silk proteins onto wool fabrics leading to improved physical and mechanical properties

机译:转谷氨酰胺酶介导的丝绸蛋白接枝到羊毛织物上,从而改善了物理和机械性能

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Transglutaminases have the ability to incorporate primary amines and to graft peptides(containing glutamine or lysine residues)into proteins.These properties enable transglutaminases to be used in the grafting of a range of compounds including peptides and/or proteins onto wool fibres,altering their functionality.In this paper we investigated the transglutaminase mediated grafting of silk proteins into wool and its effect on wool properties.A commercial hydrolysed silk preparation was compared with silk sericin.The silk sericin protein was labelled with a fluorescent probe which was used to demonstrate the efficiency of the TGase grafting of such proteins into wool fibres.The TGase mediated grafting of these proteins led to a significant effect on the properties of wool yarn and fabric,resulting in increased bursting strength,as well as reduced levels of felting shrinkage and improved fabric softness.Also observed was an accumulation of deposits on the surface of the treated wool fibres when monitored by SEM and alterations in the thermal behaviour of the modified fibres,in particular for mTGase/sericin treated fibres which,with the confocal studies,corroborate the physical changes observed on the treated wool fabric.
机译:转谷氨酰胺酶具有掺入伯胺和将肽(含有谷氨酰胺或赖氨酸残基)嫁接到蛋白质中的能力,这些特性使转谷氨酰胺酶可以用于将包括肽和/或蛋白质在内的多种化合物嫁接到羊毛纤维上,从而改变其功能本文研究了转谷氨酰胺酶介导的蚕丝蛋白接枝羊毛及其对羊毛性能的影响,比较了一种商业水解的蚕丝制剂与丝胶的特性,并用荧光探针标记了丝胶蛋白,以证明其有效性。 TGase介导的这些蛋白质的接枝对羊毛纱线和织物的性能产生重大影响,导致破裂强度的增加,以及毡缩收缩率的降低和织物柔软度的改善。还观察到在处理过的羊毛纤维表面上堆积了沉积物当通过SEM监测时,以及改性纤维的热性能的变化,特别是对于经mTGase /丝氨酸处理的纤维的热行为的变化,通过共聚焦研究,证实了在处理过的羊毛织物上观察到的物理变化。

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