Suppr超能文献

采用自回避分子识别系统和南极热敏尿嘧啶-DNA-糖基化酶的环介导等温扩增法检测核酸,防止交叉污染。

Loop-mediated isothermal amplification using self-avoiding molecular recognition systems and antarctic thermal sensitive uracil-DNA-glycosylase for detection of nucleic acid with prevention of carryover contamination.

机构信息

State Key Laboratory of Infectious Disease Prevention and Control, National Institute for Communicable Disease Control and Prevention, Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, Chinese Center for Disease Control and Prevention, Changping, Beijing 102206, PR China.

National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Changping, Beijing 102206, PR China.

出版信息

Anal Chim Acta. 2017 Dec 15;996:74-87. doi: 10.1016/j.aca.2017.10.022. Epub 2017 Oct 27.

Abstract

Loop-mediated isothermal amplification (LAMP) is the most popular technique to amplify nucleic acid sequence without the use of temperature cycling. However, LAMP is often confounded by false-positive results, arising from interactions between (hetero-dimer) or within (self-dimerization) primers, off-target hybrids and carryover contaminants. Here, we devised a new LAMP technique that is self-avoiding molecular recognition system (SAMRS) components and antarctic thermal sensitive uracil-DNA-glycosylase (AUDG) enzyme-assisted, termed AUDG-SAMRS-LAMP. Incorporating SAMRS components into 3'-ends of LAMP primers can improve assay's specificity, which completely prevents the non-specific amplification yielding from off-target hybrids and undesired interactions between or within primers. Adding AUDG into reaction mixtures can effectively eliminate the false-positive results arising from carryover contamination, thus the genuine positive reactions are generated from the amplification of target templates. Furthermore, AUDG-SAMRS-LAMP results are confirmed using a new analysis strategy, which is developed for detecting LAMP amplicons by lateral flow biosensor (LFB). Only a single labeled primer is required in the analysis system, thus the false positive results arising from hybridization (the labeled primer and probe, or between two labeled primers) are avoided. Hence, the SAMRS components, AUDG and LFB convert traditional LAMP from a technique suited for the research laboratory into one that has practical value in the field of diagnosis. Human Tuberculosis (TB) is caused by infection with members of Mycobacterium tuberculosis complex (MTC), which are detected by the AUDG-SAMRS-LAMP technique to demonstrate the availability of target analysis. The proof-of-concept method can be reconfigured to detect various nucleic acids by redesigning the specific primers.

摘要

环介导等温扩增(LAMP)是一种最流行的扩增核酸序列的技术,无需使用温度循环。然而,LAMP 经常受到假阳性结果的困扰,这些结果源于引物之间(异二聚体)或内部(自二聚化)、非靶杂交和携带污染物之间的相互作用。在这里,我们设计了一种新的 LAMP 技术,即自我避免分子识别系统(SAMRS)组件和南极热敏尿嘧啶-DNA-糖基化酶(AUDG)酶辅助的技术,称为 AUDG-SAMRS-LAMP。将 SAMRS 组件掺入 LAMP 引物的 3'-末端可以提高测定的特异性,完全防止非特异性扩增产生的非靶杂交和引物之间或内部的非预期相互作用。在反应混合物中添加 AUDG 可以有效消除由携带污染引起的假阳性结果,从而产生真正的阳性反应,即从靶模板的扩增产生。此外,使用侧向流生物传感器(LFB)检测 LAMP 扩增子的新分析策略来验证 AUDG-SAMRS-LAMP 的结果。分析系统只需要一个标记的引物,因此避免了由于杂交(标记的引物和探针,或两个标记的引物之间)引起的假阳性结果。因此,SAMRS 组件、AUDG 和 LFB 将传统的 LAMP 从适用于研究实验室的技术转化为具有诊断领域实用价值的技术。人结核病(TB)是由结核分枝杆菌复合体(MTC)成员感染引起的,通过 AUDG-SAMRS-LAMP 技术检测到,证明了目标分析的可用性。该概念验证方法可以通过重新设计特定的引物来重新配置以检测各种核酸。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验