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Protein-engineered biomaterials: highly tunable tissue engineering scaffolds.

机译:蛋白质工程生物材料:高度可调的组织工程支架。

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A common goal in tissue engineering is to attain the ability to tailor specific cell-scaffold interactions and thereby gain control over cell behavior. The tunable nature of protein-engineered biomaterials enables independent tailoring of a range of biomaterial properties, creating an attractive alternative to synthetic polymeric scaffolds or harvested natural scaffolds. Protein-engineered biomaterials are comprised of modular peptide domains with various functionalities that are encoded into a DNA plasmid, transfected into an organism of choice, and expressed and purified to yield a biopolymer with exact molecular-level sequence specification. Because of the modular design strategy of protein-engineered biomaterials, these scaffolds can be easily modified to enable optimization for specific tissue engineering applications. By including multiple peptide domains with different functionalities in a single, modular biomaterial, the scaffolds can be designed to mimic the diverse properties of the natural extracellular matrix, including cell adhesion, cell signaling, elasticity, and biodegradability. Recently, the field of protein-engineered biomaterials has expanded to include functional modules that are not normally present in the extracellular matrix, thus expanding the scope and functionality of these materials. For example, these modules can include noncanonical amino acids, inorganic-binding domains, and DNA-binding sequences. The modularity, tunability, and sequence specificity of protein-engineered biomaterials make them attractive candidates for use as substrates for a variety of tissue engineering applications.
机译:组织工程学的共同目标是获得定制特定细胞-支架相互作用的能力,从而获得对细胞行为的控制。蛋白质工程化生物材料的可调节性质使得能够对各种生物材料特性进行独立定制,从而为合成聚合物支架或收获的天然支架提供了有吸引力的替代方案。蛋白质工程化的生物材料由具有各种功能的模块化肽域组成,这些功能域被编码到DNA质粒中,转染到所选的生物体中,并表达和纯化以产生具有精确分子水平序列规格的生物聚合物。由于蛋白质工程化生物材料的模块化设计策略,这些支架可以轻松修改以实现针对特定组织工程应用的优化。通过在单一的模块化生物材料中包含具有不同功能的多个肽域,可以设计支架以模拟天然细胞外基质的多种特性,包括细胞粘附,细胞信号传导,弹性和生物降解性。最近,蛋白质工程生物材料的领域已经扩展到包括通常在细胞外基质中不存在的功能模块,从而扩展了这些材料的范围和功能。例如,这些模块可以包括非规范氨基酸,无机结合域和DNA结合序列。蛋白质工程化生物材料的模块性,可调性和序列特异性使其成为各种组织工程应用的底物的诱人候选人。

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