Crooke Stanley T
Isis Pharmaceuticals, Inc., 2292 Faraday Avenue, Carlsbad, CA 92008, USA.
Curr Mol Med. 2004 Aug;4(5):465-87. doi: 10.2174/1566524043360375.
Antisense technology exploits oligonucleotide analogs to bind to target RNAs via Watson-Crick by hybridization. Once bound, the antisense agent either disables or induces the degradation of the target RNA. Antisense agents may also be used to alter splicing. Developing antisense technology involves the creation of a new pharmacology. The receptors, pre- and mRNAs, had never been studied before as sites for drug binding and action. The drugs, oligonucleotide analogs, had never made or tested as drugs before and no medicinal chemistry had been performed. The receptor binding mechanism, Watson-Crick hybridization had never been demonstrated as feasible to exploit from a pharmacological perspective. The post-receptor binding events were literally unknown and unexplored. During the past decade or more, substantial progress has been made in developing antisense pharmacology. A great deal has been learned about the basic mechanisms of antisense, the medicinal chemistry, the pharmacological, pharmacokinetic and toxicological properties of antisense molecules. Antisense technology has proven of great value in gene functionalization and target validation. With one drug marketed, Vitravene, and approximately 20 antisense drugs in clinical development, it appears that antisense drugs may prove of value in the treatment of a wide range of diseases. In this review, the progress is summarized, the limitations of the technology discussed and the future considered.
反义技术利用寡核苷酸类似物通过沃森-克里克碱基互补配对原则与靶RNA杂交结合。一旦结合,反义药物要么使靶RNA失活,要么诱导其降解。反义药物也可用于改变剪接。反义技术的发展涉及一门新的药理学的创立。受体、前体mRNA和mRNA此前从未作为药物结合和作用的位点进行过研究。药物,即寡核苷酸类似物,此前从未作为药物制备或测试过,也未进行过药物化学研究。受体结合机制,即沃森-克里克碱基互补配对杂交,从药理学角度来看,此前从未被证明是可行的。受体结合后的事件实际上是未知且未被探索的。在过去十年或更长时间里,反义药理学的发展取得了重大进展。人们对反义的基本机制、药物化学、反义分子的药理学、药代动力学和毒理学特性有了很多了解。反义技术在基因功能化和靶点验证方面已被证明具有巨大价值。随着一种药物福米韦生上市,以及大约20种反义药物正在进行临床试验,反义药物似乎可能在治疗多种疾病方面具有价值。在这篇综述中,总结了进展情况,讨论了该技术的局限性,并对未来进行了展望。