Chinchilla-Cárdenas Danny Jair, Cruz-Méndez Juan Sebastian, Petano-Duque Julieth Michel, García Ramón Ovidio, Castro Lyda R, Lobo-Castañón María Jesús, Cancino-Escalante Giovanni Orlando
Laboratorio de Biología Molecular y Genética Animal Mascolab, Calle 49 Sur # 45ª-300, Oficina 1202, Centro Empresarial S48 Tower, Envigado 055422, Antioquia, Colombia.
Laboratorio de Biología Molecular y Genética Animal Mascolab, Calle 49 Sur # 45ª-300, Oficina 1202, Centro Empresarial S48 Tower, Envigado 055422, Antioquia, Colombia; Group of Biosocial Studies of the Body-EBSC, Faculty of Dentistry, Universidad de Antioquia, La Candelaria, Medellín 050010, Antioquia, Colombia.
J Genet Eng Biotechnol. 2024 Sep;22(3):100400. doi: 10.1016/j.jgeb.2024.100400. Epub 2024 Jul 25.
Aptamers are single-stranded oligonucleotide sequences capable of binding to specific ligands with high affinity. In this manner, they are like antibodies but have advantages such as lower manufacturing costs, lower immunogenicity, fewer batch-to-batch differences, a longer shelf life, high tolerance to different molecular milieus, and a greater number of potential targets. Due to their special features, they have been used in drug delivery, biosensor technology, therapy, and diagnostics. The methodology that allowed its production was the "Systematic Evolution of Ligands by Exponential enrichment" (SELEX). Unfortunately, the traditional protocol is time-consuming and laborious. Therefore, numerous variants with considerable optimization steps have been developed, nonetheless, there are still challenges to achieving real applications in the clinical field. Among them, are control of in vivo activities, fast renal filtration, degradation by nucleases and toxicity testing. This review focuses on current technologies based on SELEX, the critical factors for successful aptamer selection, and its upcoming biomedical and biotechnological applications.
适体是能够以高亲和力结合特定配体的单链寡核苷酸序列。通过这种方式,它们类似于抗体,但具有生产成本较低、免疫原性较低、批次间差异较小、保质期较长、对不同分子环境的耐受性较高以及潜在靶标数量较多等优点。由于其特殊特性,它们已被用于药物递送、生物传感器技术、治疗和诊断。使其产生的方法是“指数富集配体系统进化”(SELEX)。不幸的是,传统方案既耗时又费力。因此,已经开发了许多经过大量优化步骤的变体,尽管如此,在临床领域实现实际应用仍然存在挑战。其中包括体内活性的控制、快速肾滤过、核酸酶降解和毒性测试。本综述重点关注基于SELEX的当前技术、成功选择适体的关键因素及其即将到来的生物医学和生物技术应用。