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Functional Protein-Based Bioinspired Nanomaterials: From Coupled Proteins Synthetic Approaches Nanostructures to Applications

机译:功能性基于蛋白质的生物启发性纳米材料:从偶联蛋白合成方法纳米结构到应用

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摘要

Protein-based bioinspired nanomaterials (PBNs) combines the advantage of the size, shape, and surface chemistry of nanomaterials, the morphology and functions of natural materials, and the physical and chemical properties of various proteins. Recently, there are many exciting developments on biomimetic nanomaterials using proteins for different applications including, tissue engineering, drug delivery, diagnosis and therapy, smart materials and structures, and water collection and separation. Protein-based biomaterials with high biocompatibility and biodegradability could be modified to obtain the healing effects of natural organisms after injury by mimicking the extracellular matrix. For cancer and other diseases that are difficult to cure now, new therapeutic methods involving different kinds of biomaterials are studied. The nanomaterials with surface modification, which can achieve high drug loading, can be used as drug carriers to enhance target and trigger deliveries. For environment protection and the sustainability of the world, protein-based nanomaterials are also applied for water treatment. A wide range of contaminants from natural water source, such as organic dyes, oil substances, and multiple heavy ions, could be absorbed by protein-based nanomaterials. This review summarizes the formation and application of functional PBNs, and the details of their nanostructures, the proteins involved, and the synthetic approaches are addressed.
机译:基于蛋白质的生物启发性纳米材料(PBN)结合了纳米材料的尺寸,形状和表面化学,天然材料的形态和功能以及各种蛋白质的物理和化学特性的优点。近来,在使用仿生纳米材料的蛋白质用于不同应用方面有许多令人振奋的发展,包括组织工程,药物输送,诊断和治疗,智能材料和结构以及水的收集和分离。具有高生物相容性和生物降解性的基于蛋白质的生物材料可以通过模仿细胞外基质来获得损伤后自然生物的愈合效果。对于目前难以治愈的癌症和其他疾病,研究了涉及各种生物材料的新治疗方法。具有表面修饰的纳米材料可实现高载药量,可用作药物载体以增强靶点并触发递送。为了环境保护和世界的可持续性,蛋白质基纳米材料也用于水处理。蛋白质基纳米材料可以吸收来自天然水源的各种污染物,例如有机染料,油类物质和多种重离子。这篇综述总结了功能性PBN的形成和应用,并探讨了它们的纳米结构,涉及的蛋白质和合成方法的细节。

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