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三十年核酸适体技术:适体开发的经验教训、进展和机遇。

Three decades of nucleic acid aptamer technologies: Lessons learned, progress and opportunities on aptamer development.

机构信息

Centre for Comparative Genomics, Murdoch University, Perth 6150, Australia; Perron Institute for Neurological and Translational Science, Perth 6009, Australia; School of Nursing, Zhengzhou University & Nursing Department, The First Affiliated Hospital of Zheng Zhou University, Zhengzhou 450001, China.

School of Nursing, Zhengzhou University & Nursing Department, The First Affiliated Hospital of Zheng Zhou University, Zhengzhou 450001, China.

出版信息

Biotechnol Adv. 2019 Jan-Feb;37(1):28-50. doi: 10.1016/j.biotechadv.2018.11.001. Epub 2018 Nov 5.

Abstract

Aptamers are short single-stranded nucleic acid sequences capable of binding to target molecules in a way similar to antibodies. Due to various advantages such as prolonged shelf life, low batch to batch variation, low/no immunogenicity, freedom to incorporate chemical modification for enhanced stability and targeting capacity, aptamers quickly found their potential in diverse applications ranging from therapy, drug delivery, diagnosis, and functional genomics to bio-sensing. Aptamers are generated by a process called SELEX. However, the current overall success rate of SELEX is far from being satisfactory, and still presents a major obstacle for aptamer-based research and application. The need for an efficient selection strategy consisting of defined procedures to deal with a wide variety of targets is significantly important. In this work, by analyzing key aspects of SELEX including initial library design, target preparation, PCR optimization, and single strand DNA separation, we provide a comprehensive analysis of individual steps to facilitate researchers intending to develop personalized protocols to address many of the obstacles in SELEX. In addition, this review provides suggestions and opinions for future aptamer development procedures to address the concerns on key SELEX steps, and post-SELEX modifications.

摘要

适体是能够与靶分子结合的短单链核酸序列,其结合方式类似于抗体。由于具有延长的货架期、低批次间变异、低/无免疫原性、可以自由进行化学修饰以提高稳定性和靶向能力等各种优点,适体很快就在从治疗、药物输送、诊断和功能基因组学到生物传感等各种应用中找到了潜力。适体是通过一种称为 SELEX 的过程产生的。然而,SELEX 的当前总体成功率远不能令人满意,仍然是适体研究和应用的主要障碍。需要一种有效的选择策略,该策略由定义的程序组成,以处理各种不同的靶标,这一点非常重要。在这项工作中,我们通过分析 SELEX 的关键方面,包括初始文库设计、靶标制备、PCR 优化和单链 DNA 分离,对各个步骤进行了全面分析,以帮助研究人员开发个性化方案来解决 SELEX 中的许多障碍。此外,本综述还为未来的适体开发程序提供了建议和意见,以解决对关键 SELEX 步骤和 SELEX 后修饰的关注。

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