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适体筛选与小分子适体传感器的研究进展。

Advances in aptamer screening and small molecule aptasensors.

机构信息

Future Technology R and D Center, SK Telecom, 9-1 Sunae-dong, Bundang-gu, Seongnam, 463-838, Republic of Korea.

出版信息

Adv Biochem Eng Biotechnol. 2014;140:29-67. doi: 10.1007/10_2013_225.

Abstract

It has been 20 years since aptamer and SELEX (systematic evolution of ligands by exponential enrichment) were described independently by Andrew Ellington and Larry Gold. Based on the great advantages of aptamers, there have been numerous isolated aptamers for various targets that have actively been applied as therapeutic and analytical tools. Over 2,000 papers related to aptamers or SELEX have been published, attesting to their wide usefulness and the applicability of aptamers. SELEX methods have been modified or re-created over the years to enable aptamer isolation with higher affinity and selectivity in more labor- and time-efficient manners, including automation. Initially, most of the studies about aptamers have focused on the protein targets, which have physiological functions in the body, and their applications as therapeutic agents or receptors for diagnostics. However, aptamers for small molecules such as organic or inorganic compounds, drugs, antibiotics, or metabolites have not been studied sufficiently, despite the ever-increasing need for rapid and simple analytical methods for various chemical targets in the fields of medical diagnostics, environmental monitoring, food safety, and national defense against targets including chemical warfare. This review focuses on not only recent advances in aptamer screening methods but also its analytical application for small molecules.

摘要

自从 Andrew Ellington 和 Larry Gold 分别独立描述适体和 SELEX(指数富集的配体系统进化)以来,已经过去了 20 年。基于适体的巨大优势,已经有大量针对各种靶标的分离适体被积极用作治疗和分析工具。已经发表了 2000 多篇与适体或 SELEX 相关的论文,证明了它们的广泛用途和适体的适用性。SELEX 方法多年来不断得到改进或重新创建,以实现更高亲和力和选择性的适体分离,方法更加省时省力,包括自动化。最初,大多数关于适体的研究都集中在具有生理功能的蛋白质靶标上,它们被用作治疗剂或诊断受体。然而,尽管人们对医学诊断、环境监测、食品安全和国防等领域中各种化学靶标的快速简单分析方法的需求不断增加,但针对有机或无机化合物、药物、抗生素或代谢物等小分子的适体研究还不够充分。本综述不仅关注适体筛选方法的最新进展,还关注适体在小分子分析方面的应用。

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