Penchovsky Robert, Georgieva Antoniya V, Dyakova Vanya, Traykovska Martina, Pavlova Nikolet
Laboratory of Synthetic Biology and Bioinformatics, Faculty of Biology, Sofia University, "St. Kliment Ohridski", 8 Dragan Tzankov Blvd., 1164 Sofia, Bulgaria.
Antibiotics (Basel). 2024 Feb 27;13(3):221. doi: 10.3390/antibiotics13030221.
This review is focused on antisense and functional nucleic acid used for completely rational drug design and drug target assessment, aiming to reduce the time and money spent and increase the successful rate of drug development. Nucleic acids have unique properties that play two essential roles in drug development as drug targets and as drugs. Drug targets can be messenger, ribosomal, non-coding RNAs, ribozymes, riboswitches, and other RNAs. Furthermore, various antisense and functional nucleic acids can be valuable tools in drug discovery. Many mechanisms for RNA-based control of gene expression in both pro-and-eukaryotes and engineering approaches open new avenues for drug discovery with a critical role. This review discusses the design principles, applications, and prospects of antisense and functional nucleic acids in drug delivery and design. Such nucleic acids include antisense oligonucleotides, synthetic ribozymes, and siRNAs, which can be employed for rational antibacterial drug development that can be very efficient. An important feature of antisense and functional nucleic acids is the possibility of using rational design methods for drug development. This review aims to popularize these novel approaches to benefit the drug industry and patients.
本综述聚焦于用于完全合理的药物设计和药物靶点评估的反义核酸和功能性核酸,旨在减少时间和资金投入,并提高药物研发的成功率。核酸具有独特的性质,在药物研发中作为药物靶点和药物发挥着两个至关重要的作用。药物靶点可以是信使RNA、核糖体RNA、非编码RNA、核酶、核糖开关和其他RNA。此外,各种反义核酸和功能性核酸可以成为药物发现中的宝贵工具。原核生物和真核生物中基于RNA的基因表达调控机制以及工程方法为药物发现开辟了新途径,发挥着关键作用。本综述讨论了反义核酸和功能性核酸在药物递送与设计中的设计原则、应用及前景。这类核酸包括反义寡核苷酸、合成核酶和小干扰RNA,它们可用于高效的合理抗菌药物研发。反义核酸和功能性核酸的一个重要特点是有可能将合理设计方法用于药物研发。本综述旨在推广这些新方法,以造福制药行业和患者。