A combinatorial approach for achieving CNS-selective RNAi

Author:

Ferguson Chantal M1ORCID,Godinho Bruno M D C1,Echeverria Dimas1ORCID,Hassler Matthew1ORCID,Vangjeli Lorenc1,Sousa Jacquelyn1,McHugh Nicholas1,Alterman Julia1ORCID,Hariharan Vignesh1ORCID,Krishnamurthy Pranathi Meda1,Watts Jonathan1ORCID,Rogaev Eveny2,Khvorova Anastasia13ORCID

Affiliation:

1. RNA Therapeutics Institute, University of Massachusetts Medical School , Worcester, MA, 01605,  USA

2. Department of Psychiatry, University of Massachusetts Medical School , Worcester, MA, 01605,  USA

3. Department of Medicine, University of Massachusetts Medical School , Worcester, MA, 01605,  USA

Abstract

Abstract RNA interference (RNAi) is an endogenous process that can be harnessed using chemically modified small interfering RNAs (siRNAs) to potently modulate gene expression in many tissues. The route of administration and chemical architecture are the primary drivers of oligonucleotide tissue distribution, including siRNAs. Independently of the nature and type, oligonucleotides are eliminated from the body through clearance tissues, where their unintended accumulation may result in undesired gene modulation. Divalent siRNAs (di-siRNAs) administered into the CSF induce robust gene silencing throughout the central nervous system (CNS). Upon clearance from the CSF, they are mainly filtered by the kidneys and liver, with the most functionally significant accumulation occurring in the liver. siRNA- and miRNA-induced silencing can be blocked through substrate inhibition using single-stranded, stabilized oligonucleotides called antagomirs or anti-siRNAs. Using APOE as a model target, we show that undesired di-siRNA-induced silencing in the liver can be mitigated through administration of liver targeting GalNAc-conjugated anti-siRNAs, without impacting CNS activity. Blocking unwanted hepatic APOE silencing achieves fully CNS-selective silencing, essential for potential clinical translation. While we focus on CNS/liver selectivity, coadministration of differentially targeting siRNA and anti-siRNAs can be adapted as a strategy to achieve tissue selectivity in different organ combinations.

Funder

Alzheimer's Drug Discovery Foundation

National Institutes of Health

National Institute on Aging

National Institute of General Medical Sciences

Publisher

Oxford University Press (OUP)

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. RNAi-based drug design: considerations and future directions;Nature Reviews Drug Discovery;2024-04-03

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