化学
体外
体内
单体
小干扰RNA
星团(航天器)
生物化学
细胞生物学
核糖核酸
基因
计算机网络
有机化学
遗传学
生物
计算机科学
聚合物
作者
Vivek Sharma,Maire F. Osborn,Matthew Hassler,Dimas Echeverria,Socheata Ly,E. A. Ulashchik,Yury V. Martynenko-Makaev,Vadim V. Shmanai,Timofei S. Zatsepin,Anastasia Khvorova,Jonathan K. Watts
标识
DOI:10.1021/acs.bioconjchem.8b00365
摘要
GalNAc conjugation is emerging as a dominant strategy for delivery of therapeutic oligonucleotides to hepatocytes. The structure and valency of the GalNAc ligand contributes to the potency of the conjugates. Here we present a panel of multivalent GalNAc variants using two different synthetic strategies. Specifically, we present a novel conjugate based on a support-bound trivalent GalNAc cluster, and four others using a GalNAc phosphoramidite monomer that was readily assembled into tri- or tetravalent designs during solid phase oligonucleotide synthesis. We compared these compounds to a clinically used trivalent GalNAc cluster both in vitro and in vivo. In vitro, cluster-based and phosphoramidite-based scaffolds show a similar rate of internalization in primary hepatocytes, with membrane binding observed as early as 5 min. All tested compounds provided potent, dose-dependent silencing, with 2-4% of injected dose recoverable from liver after 1 week. The two preassembled trivalent GalNAc clusters showed higher tissue accumulation and gene silencing relative to di-, tri-, or tetravalent GalNAc conjugates assembled via phosphoramidite chemistry.
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