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Replacing antibodies: Engineering new binding proteins

机译:取代抗体:工程化新的结合蛋白

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Nature's reliance on proteins to carry out nearly all biological processes has led to the evolution of biomolecules that exhibit a seemingly endless range of functions. Much research has been devoted toward advancing this process in the laboratory in order to create new proteins with improved or unique capabilities. The protein-engineering field has rapidly evolved from pioneering studies in engineering protein stability and activity to an application-driven powerhouse on the forefront of emerging technologies in biomedical engineering and biotechnology. A classic protein-engineering technique in the medical field has focused on manipulating antibodies and antibody fragments for various applications. New classes of alternative scaffolds have recently challenged this paradigm, and these structures have been successfully engineered for applications including targeted cancer therapy, regulated drug delivery, in vivo imaging, and a host of others. This review aims to capture recent advances in the engineering of nonimmunoglobulin scaffolds as well as some of the applications for these molecular recognition elements in the biomedical field.
机译:大自然对蛋白质的依赖几乎可以完成所有的生物过程,从而导致了生物分子的进化,这些分子表现出无穷无尽的功能。为了创建具有改进或独特功能的新蛋白质,许多研究致力于在实验室中推进这一过程。蛋白质工程领域已经从工程蛋白质稳定性和活性方面的开创性研究迅速发展到了在生物医学工程和生物技术领域新兴技术前沿的应用驱动的强大力量。医学领域的经典蛋白质工程技术集中于操纵抗体和抗体片段以用于各种应用。新型替代支架最近挑战了这一范例,并且这些结构已经成功设计用于各种应用,包括靶向癌症治疗,调节药物递送,体内成像以及许多其他应用。这篇综述旨在捕捉非免疫球蛋白支架工程的最新进展以及这些分子识别元件在生物医学领域的一些应用。

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