Prakash Thazha P, Bhat Balkrishen
Department of Medicinal Chemistry, Isis Pharmaceuticals, Inc., Carlsbad, CA 92008, USA.
Curr Top Med Chem. 2007;7(7):641-9. doi: 10.2174/156802607780487713.
Chemically modified antisense oligonucleotides are currently progressing in multiple clinical trials. Among several chemical modifications made, modification of the 2'-position has proved most successful. Second generation antisense oligonucleotides incorporating these 2'-modifications exhibit high binding affinity to target RNA, enhanced metabolic stability, and improved pharmacokinetic and toxicity profiles. This is, in part, due to the enhanced biophysical properties of second generation antisense oligonucleotides. 2'-Modifications that influence the sugar to adopt a 3'-endo sugar pucker can improve properties such as affinity. 2'-Modifications that provide a gauche effect and/or a charge effect can play a significant role in the level of nuclease resistance. The heterocyclic base modifications such as 2-thiothymine provides additive effect on the affinity of 2'-F and 2'-O-MOE modifications. This review summarizes the structural and biophysical properties of selected 2'-modified nucleosides which are candidates for use in oligonucleotide therapeutics.
化学修饰的反义寡核苷酸目前正在多个临床试验中取得进展。在进行的几种化学修饰中,2'-位的修饰已被证明最为成功。纳入这些2'-修饰的第二代反义寡核苷酸对靶RNA表现出高结合亲和力、增强的代谢稳定性以及改善的药代动力学和毒性特征。这部分归因于第二代反义寡核苷酸增强的生物物理性质。影响糖采取3'-内型糖折叠的2'-修饰可以改善诸如亲和力等性质。提供邻位交叉效应和/或电荷效应的2'-修饰可以在核酸酶抗性水平中发挥重要作用。诸如2-硫代胸腺嘧啶等杂环碱基修饰对2'-氟和2'-O-甲氧基乙基修饰的亲和力具有加和效应。本综述总结了选定的2'-修饰核苷的结构和生物物理性质,这些核苷是寡核苷酸治疗的候选物。