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Conferring Biological Activity to Native Spider Silk: A Biofunctionalized Protein-Based Microfiber

机译:赋予天然蜘蛛丝的生物活性:基于生物官能化的蛋白质微纤维

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Spider silk is an extraordinary material with physical properties comparable to the best scaffolding/structural materials, and as a fiber it can be manipulated with ease into a variety of configurations. Our work here demonstrates that natural spider silk fibers can also be used to organize biological components on and in devices through rapid and simple means. Micron scale spider silk fibers (5-10 mu m in diameter) were surface modified with a variety of biological entities engineered with pentaglutamine tags via microbial transglutaminase (mTG). Enzymes, enzyme pathways, antibodies, and fluorescent proteins were all assembled onto spider silk fibers using this biomolecular engineering/biofabrication process. Additionally, arrangement of biofunctionalized fiber should in of itself generate a secondary level of biomolecular organization. Toward this end, as proofs of principle, spatially defined arrangement of biofunctionalized spider silk fiber was shown to generate effects specific to silk position in two cases. In one instance, arrangement perpendicular to a flow produced selective head and neck carcinoma cell capture on silk with antibodies complexed to conjugated protein G. In a second scenario, asymmetric bacterial chemotaxis arose from asymmetric conjugation of enzymes to arranged silk. Overall, the biofabrication processes used here were rapid, required no complex chemistries, were biologically benign, and also the resulting engineered silk microfibers were flexible, readily manipulated and functionally active. Deployed here in microfluidic environments, biofunctional spider silk fiber provides a means to convey complex biological functions over a range of scales, further extending its potential as a biomaterial in biotechnological settings. (C) 2016 Wiley Periodicals, Inc.
机译:蜘蛛丝是一种非凡的材料,具有与最佳脚手架/结构材料相当的物理性质,并且作为纤维,可以轻松地操纵它的各种配置。我们在这里的工作表明,天然蜘蛛丝纤维也可用于通过快速简单的方式在设备上组织生物成分。微米级蜘蛛丝纤维(直径为5-10μm),用各种生物实体通过微生物转谷氨酰胺酶(MTG)设计。酶,酶途径,抗体和荧光蛋白全部组装在蜘蛛丝纤维上,使用该生物分子工程/生物结缔组件。另外,生物官能化纤维的排列本身应该产生二级生物分子组织。朝向此目的,作为原理的证据,显示了生物官能化蜘蛛丝纤维的空间定义的布置,在两种情况下显示了对丝绸位置的特异性特异性的影响。在一个实例中,垂直于流动的布置产生的选择性头部和颈部癌细胞捕获,丝用抗体络合到共轭蛋白G.在第二种情况下,不对称的细菌趋化性从酶的不对称缀合到布置丝。总体而言,这里使用的生物制作过程迅速,不需要复杂的化学物质,在生物学上是良性的,也是所得的工程丝微纤维是柔性的,容易操纵和功能活性的。在这里部署在微流体环境中,生物功能蜘蛛丝纤维提供了一种在一系列鳞片上传递复杂的生物功能的方法,进一步将其作为生物材料中的生物材料的潜力延伸。 (c)2016 Wiley期刊,Inc。

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