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SELEX 协议的具体方面:单链 DNA 生成的不同方法。

Specific Aspects of SELEX Protocol: Different Approaches for ssDNA Generation.

作者信息

Garanin Alexandr, Shalaev Andrey, Zabegina Lidia, Kadantseva Ekaterina, Sharonova Tatiana, Malek Anastasia

机构信息

Subcellular Technology Lab, N.N. Petrov National Medical Research Center of Oncology, St. Petersburg 197758, Russia.

出版信息

Methods Protoc. 2025 Apr 6;8(2):36. doi: 10.3390/mps8020036.

Abstract

BACKGROUND

Synthetic DNA aptamers are a class of molecules with potential applications in medicine, serving as molecular sensors or ligands for targeted drug delivery. Systematic evolution of ligands by exponential enrichment (SELEX) is a technology for selecting functional aptamers that was first reported three decades ago and has been actively developed since. SELEX involves multiple iterations of two fundamental steps: (i) target affinity-based partitioning of aptamers from a random library and (ii) amplification of selected aptamers by PCR, followed by isolation of single-stranded DNA (ssDNA). SELEX protocols have diversified considerably, with numerous variations possible for each step. This heterogeneity makes it challenging to identify optimal methods. Comparative analysis of different approaches for the major stages of SELEX is therefore of considerable practical importance.

METHODS

Four widely used methods for ssDNA generation were performed in parallel: (a) PCR followed by digestion of the antisense strand with exonuclease lambda, (b) PCR with an extended primer followed by size-dependent strand separation using denaturing PAGE, (c) asymmetric PCR, and (d) asymmetric PCR with a primer-blocker.

RESULTS

The specificity, efficiency, reproducibility, and duration of each method were compared.

CONCLUSIONS

Asymmetric PCR with a primer-blocker yielded the most favorable results.

摘要

背景

合成DNA适配体是一类在医学中具有潜在应用的分子,可用作分子传感器或靶向药物递送的配体。指数富集配体系统进化技术(SELEX)是一种用于筛选功能性适配体的技术,该技术于三十年前首次报道,此后一直在积极发展。SELEX涉及两个基本步骤的多次迭代:(i)基于靶标亲和力从随机文库中对适配体进行分区,以及(ii)通过聚合酶链反应(PCR)扩增所选适配体,随后分离单链DNA(ssDNA)。SELEX方案已经有了很大的多样化,每个步骤都有许多可能的变体。这种异质性使得确定最佳方法具有挑战性。因此,对SELEX主要阶段的不同方法进行比较分析具有相当大的实际重要性。

方法

并行进行了四种广泛使用的生成ssDNA的方法:(a)PCR,随后用λ核酸外切酶消化反义链;(b)使用延伸引物进行PCR,随后使用变性聚丙烯酰胺凝胶电泳进行大小依赖性链分离;(c)不对称PCR;以及(d)使用引物阻断剂的不对称PCR。

结果

比较了每种方法的特异性、效率、可重复性和持续时间。

结论

使用引物阻断剂的不对称PCR产生了最有利的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43a7/12029403/25696888ea41/mps-08-00036-g001.jpg

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