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扩展核酸(exNA):一种新型的、具有生物相容性的骨架,可显著提高寡核苷酸的功效 。

Extended Nucleic Acid (exNA): A Novel, Biologically Compatible Backbone that Significantly Enhances Oligonucleotide Efficacy .

作者信息

Yamada Ken, Hariharan Vignesh Narayan, Caiazzi Jillian, Miller Rachael, Furguson Chantal, Sapp Ellen, Fakih Hassan, Tan Qi, Yamada Nozomi, Furgal Raymond C, Paquette Joseph, Bramato Brianna, McHugh Nicholas, Summers Ashley, Lochmann Clemens, Godinho Bruno M D C, Hildebrand Samuel, Echeverria Dimas, Hassler Matthew R, Alterman Julia F, DiFiglia Marian, Aronin Neil, Khvorova Anastasia

机构信息

RNA Therapeutics Institute, University of Massachusetts Chan Medical School, 368 Plantation Street, Worcester, Massachusetts 01605, United States.

Department of Medicine, University of Massachusetts Chan Medical School; Charlestown, Massachusetts, United State.

出版信息

bioRxiv. 2023 May 26:2023.05.26.542506. doi: 10.1101/2023.05.26.542506.

Abstract

Metabolic stabilization of therapeutic oligonucleotides requires both sugar and backbone modifications, where phosphorothioate (PS) is the only backbone chemistry used in the clinic. Here, we describe the discovery, synthesis, and characterization of a novel biologically compatible backbone, extended nucleic acid (exNA). Upon exNA precursor scale up, exNA incorporation is fully compatible with common nucleic acid synthetic protocols. The novel backbone is orthogonal to PS and shows profound stabilization against 3'- and 5'-exonucleases. Using small interfering RNAs (siRNAs) as an example, we show exNA is tolerated at most nucleotide positions and profoundly improves in vivo efficacy. A combined exNA-PS backbone enhances siRNA resistance to serum 3'-exonuclease by 32-fold over PS backbone and >1000-fold over the natural phosphodiester backbone, thereby enhancing tissue exposure (6-fold), tissues accumulation (4- to 20-fold), and potency both systemically and in brain. The improved potency and durability imparted by exNA opens more tissues and indications to oligonucleotide-driven therapeutic interventions.

摘要

治疗性寡核苷酸的代谢稳定性需要对糖基和骨架进行修饰,其中硫代磷酸酯(PS)是临床上唯一使用的骨架化学修饰。在此,我们描述了一种新型生物相容性骨架——扩展核酸(exNA)的发现、合成及特性。随着exNA前体的扩大生产,exNA的掺入与常见核酸合成方案完全兼容。这种新型骨架与PS正交,对3'-和5'-核酸外切酶具有显著的稳定性。以小干扰RNA(siRNA)为例,我们发现exNA在大多数核苷酸位置都能被耐受,并能显著提高体内疗效。与PS骨架相比,exNA-PS组合骨架使siRNA对血清3'-核酸外切酶的抗性增强约32倍,与天然磷酸二酯骨架相比增强超过1000倍,从而增强了组织暴露(约6倍)、组织蓄积(4至20倍)以及全身和脑部的效力。exNA赋予的增强效力和耐久性为寡核苷酸驱动的治疗干预开辟了更多组织和适应症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2310/10245983/55862dcbf7a1/nihpp-2023.05.26.542506v1-f0001.jpg

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