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首页> 外文期刊>Biomacromolecules >Sticky Situation: An Investigation of Robust Aqueous-Based Recombinant Spider Silk Protein Coatings and Adhesives
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Sticky Situation: An Investigation of Robust Aqueous-Based Recombinant Spider Silk Protein Coatings and Adhesives

机译:粘性情况:鲁棒水性重组蜘蛛丝蛋白涂层和胶粘剂的研究

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摘要

The mechanical properties and biocompatibility of spider silks have made them one of the most sought after and studied natural biomaterials. A biomimetic process has been developed that uses water to solvate purified recombinant spider silk proteins (rSSps) prior to material formation. The absence of harsh organic solvents increases cost effectiveness, safety, and decreases the environmental impact of these materials.. This development allows for the investigation of aqueous-based rSSps as coatings and adhesives and their potential applications. In these studies it was determined that fiber-based rSSps in nonfiber formations have the capability to coat and adhere numerous substrates, whether rough, smooth, hydrophobic, or hydrophilic. Further, these materials can be functionalized for a variety of processes. Drug-eluting coatings have been made with the capacity to release a variety of compounds in addition to their inherent ability to prevent blood clotting and biofouling. Additionally, spider silk protein adhesives are strong enough to outperform some conventional glues and still display favorable tissue implantation properties. The physical properties, corresponding capabilities, and potential applications of these nonfibrous materials were characterized in this study. Mechanical properties, ease of manufacturing, biodegradability, biocompatibility, and functionality are the hallmarks of these revolutionary spider silk protein materials.
机译:蜘蛛丝的机械性能和生物相容性使其成为最受追捧和研究的天然生物材料之一。已经开发出一种仿生方法,该方法在形成材料之前先用水溶解纯化的重组蜘蛛丝蛋白(rSSps)。不含苛刻的有机溶剂可提高成本效益,安全性并降低这些材料对环境的影响。这一进展使人们能够研究水性rSSps作为涂料和粘合剂的用途及其潜在应用。在这些研究中,已确定非纤维结构中的基于纤维的rSSps具有涂覆和粘附多种基材的能力,无论是粗糙,光滑,疏水还是亲水。此外,这些材料可以针对各种工艺进行功能化。除具有防止血液凝结和生物结垢的固有能力外,药物洗脱涂层还具有释放多种化合物的能力。此外,蜘蛛丝蛋白胶粘剂的强度足以胜过某些常规胶粘剂,并且仍显示出良好的组织植入性能。在这项研究中表征了这些非纤维材料的物理性质,相应的功能以及潜在的应用。机械性能,易于制造,生物降解性,生物相容性和功能性是这些革命性蜘蛛丝蛋白材料的标志。

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