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Nanobody and aptamer as targeting moiety against bacterial toxins: therapeutic and diagnostic applications

机译:纳米抗体和适体作为针对细菌毒素的靶向部分:治疗和诊断应用

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摘要

Infectious diseases are common life-threatening problems mediated by pathogen micro-organisms that cause morbidity and mortality worldwide. Currently, there is an increasing rate of the bacterial infections and emergence of the new antibiotic resistance in human societies. On the other hand, early detection of the bacterial infection present in biological samples suffers from extended time, high cost, and laborious methods. Therefore, there is a permanent need for robust diagnostic and therapeutic tools against bacterial agents. Recently, specific targeting bio-molecules, such as aptamer and nanobody have been appeared as specific and effective tools for biomedical application. They have excellent physicochemical parameters that make them superior to diagnosis and treatment of infectious agents achievable from diverse large libraries through systematic evolution of ligands by exponential enrichment (SELEX) or phage display process, respectively. The present study provides an overview of nanobody and aptamer and their method description. Main contexts of article focus on the application of nanobody and aptamer as an inhibiting moiety for some bacterial toxins.
机译:传染病是病原体微生物介导的常见危及生命的问题,导致全世界发病率和死亡率。目前,细菌感染的增加和​​人类社会中新抗生素抗性的出现率。另一方面,早期检测生物样品中存在的细菌感染患有延长的时间,高成本和费力的方法。因此,对细菌剂的鲁棒诊断和治疗工具具有永久性需求。最近,已经出现了特异性靶向生物分子,例如适体和纳米曲面为生物医学应用的具体和有效工具。它们具有优异的物理化学参数,使其优于通过通过指数富集(SELEX)或噬菌体展示过程的配体的系统演化来诊断和治疗各种大型文库中可实现的传染病。本研究提供了纳米曲面和适体及其方法描述的概述。文章的主要背景专注于将纳米谱和适体的应用作为一些细菌毒素的抑制部分。

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