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短寡核苷酸等温指数扩增的稳健序列设计空间。

Robust Sequence Design Space for the Isothermal Exponential Amplification of Short Oligonucleotides.

机构信息

Department of Chemical & Biomolecular Engineering, National University of Singapore, Singapore, 117585, Singapore.

出版信息

Small. 2024 Nov;20(47):e2405250. doi: 10.1002/smll.202405250. Epub 2024 Aug 24.

Abstract

Advances in isothermal amplification techniques have accelerated development in biosensing applications and the design of complex molecular devices. The exponential amplification reaction technique, or EXPAR, is uniquely positioned to process molecular information from short oligonucleotide strands (≈10 nucleotides length) typically encountered in molecular computing or microRNA detection. Despite its conceptual simplicity (requiring only a template strand and two enzymes), the issue of nonspecific background amplification has hindered broader adoption. In this work, a new system configuration is established at 37 °C to achieve significantly improved performance. Critical sequence motifs responsible for the excellent signal-to-background profile are identified and generalized as a universal adapter design framework. Orthogonal template sequences generated from the framework are implemented for a triplex reaction and successfully evaluated mixtures of multiple-target inputs in a single-step, one-pot format without the need for exogenous agents.

摘要

等温扩增技术的进步加速了生物传感应用和复杂分子器件的设计。指数扩增反应技术(EXPAR)独特地适用于处理分子计算或 microRNA 检测中常见的短寡核苷酸链(≈10 个核苷酸长度)的分子信息。尽管其概念简单(仅需要模板链和两种酶),但非特异性背景扩增的问题阻碍了其更广泛的应用。在这项工作中,建立了一个新的 37°C 系统配置,以实现显著改善的性能。确定了负责优异信号背景比的关键序列基序,并将其概括为通用适配器设计框架。从该框架生成的正交模板序列用于三联体反应,并成功地在单个一步、一锅格式的混合物中评估了多个靶标输入,而无需外源性试剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e276/11579956/56ace9b40703/SMLL-20-2405250-g004.jpg

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