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治疗相关寡核苷酸双链体的稳定性制备与评估

Preparing and Evaluating the Stability of Therapeutically Relevant Oligonucleotide Duplexes.

作者信息

Iyer Shreyas G, Kasinski Andrea L

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, IN, USA.

Purdue University Life Sciences Graduate Program, Purdue University, West Lafayette, IN, USA.

出版信息

Bio Protoc. 2024 Apr 20;14(8):e4975. doi: 10.21769/BioProtoc.4975.

Abstract

The field of oligonucleotide therapeutics is rapidly advancing, particularly for combating orphan diseases and cancer. However, the intrinsic instability of oligonucleotides, especially RNA, poses a substantial challenge in the face of the harsh conditions encountered intracellularly and in circulation. Therefore, evaluating the stability of oligos in serum is of great significance when developing oligonucleotide therapeutics. This protocol outlines a dependable and reproducible method for preparing oligonucleotide duplexes, coupled with confirmation by gel electrophoresis. Subsequently, the protocol defines a mechanism to assess the stability of the oligo duplexes in serum. This protocol seeks to establish a standardized reference for researchers, enabling them to compare the impact of various modifications on oligo stability and assess the degradation kinetics effectively. Key features • Adaptable for use with small interfering RNA (siRNA), microRNA (miRNA), antisense oligonucleotides (ASOs), and other unmodified and modified oligonucleotides. • Does not necessitate any Biological Safety Level clearance and offers a rapid, cost-effective, and entirely in vitro procedure. • Allows researchers to evaluate multiple modification patterns that, when coupled with targeting activity, allow for selecting the best modification pattern prior to in vivo analysis.

摘要

寡核苷酸疗法领域正在迅速发展,尤其是在对抗罕见病和癌症方面。然而,寡核苷酸,特别是RNA的内在不稳定性,在面对细胞内和循环中遇到的恶劣条件时构成了重大挑战。因此,在开发寡核苷酸疗法时,评估寡核苷酸在血清中的稳定性具有重要意义。本方案概述了一种可靠且可重复的制备寡核苷酸双链体的方法,并通过凝胶电泳进行确认。随后,该方案定义了一种评估寡核苷酸双链体在血清中稳定性的机制。本方案旨在为研究人员建立一个标准化的参考,使他们能够比较各种修饰对寡核苷酸稳定性的影响,并有效地评估降解动力学。关键特性 • 适用于小干扰RNA(siRNA)、微小RNA(miRNA)、反义寡核苷酸(ASO)以及其他未修饰和修饰的寡核苷酸。 • 无需任何生物安全等级许可,提供快速、经济高效且完全体外的程序。 • 允许研究人员评估多种修饰模式,这些修饰模式与靶向活性相结合,可在体内分析之前选择最佳修饰模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba6c/11056005/74e5633813ac/BioProtoc-14-8-4975-g001.jpg

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