Division of Medicinal and Natural Products Chemistry, College of Pharmacy, University of Iowa, Iowa City, IA, 52242, USA.
Gene Ther. 2018 Oct;25(7):473-484. doi: 10.1038/s41434-018-0038-3. Epub 2018 Aug 28.
The metabolic instability of mRNA currently limits its utility for gene therapy. Compared to plasmid DNA, mRNA is significantly more susceptible to digestion by RNase in the circulation following systemic dosing. To increase mRNA metabolic stability, we hybridized a complementary reverse mRNA with forward mRNA to generate double-stranded mRNA (dsmRNA). RNase A digestion of dsmRNA established a 3000-fold improved metabolic stability compared to single-stranded mRNA (ssmRNA). Formulation of a dsmRNA polyplex using a PEG-peptide further improved the stability by 3000-fold. Hydrodynamic dosing and quantitative bioluminescence imaging of luciferase expression in the liver of mice established the potent transfection efficiency of dsmRNA and dsmRNA polyplexes. However, hybridization of the reverse mRNA against the 5' and 3' UTR of forward mRNA resulted in UTR denaturation and a tenfold loss in expression. Repeat dosing of dsmRNA polyplexes produced an equivalent transient expression, suggesting the lack of an immune response in mice. Co-administration of excess uncapped dsmRNA with a dsmRNA polyplex failed to knock down expression, suggesting that dsmRNA is not a Dicer substrate. Maximal circulatory stability was achieved using a fully complementary dsmRNA polyplex. The results established dsmRNA as a novel metabolically stable and transfection-competent form of mRNA.
mRNA 的代谢不稳定性目前限制了其在基因治疗中的应用。与质粒 DNA 相比,mRNA 在全身给药后循环中更易被 RNase 消化。为了提高 mRNA 的代谢稳定性,我们将互补的反义 mRNA 与正义 mRNA 杂交,生成双链 mRNA(dsmRNA)。与单链 mRNA(ssmRNA)相比,RNase A 消化 dsmRNA 可显著提高代谢稳定性,提高了 3000 倍。使用 PEG-肽形成 dsmRNA 多聚物进一步将稳定性提高了 3000 倍。通过对小鼠肝脏中荧光素酶表达的动力学给药和定量生物发光成像,建立了 dsmRNA 和 dsmRNA 多聚物的高效转染效率。然而,反义 mRNA 与正义 mRNA 的 5' 和 3'UTR 的杂交导致 UTR 变性,表达水平下降了十倍。重复给予 dsmRNA 多聚物可产生等效的瞬时表达,表明小鼠中缺乏免疫反应。与 dsmRNA 多聚物一起给予过量未加帽的 dsmRNA 未能降低表达,表明 dsmRNA 不是 Dicer 底物。使用完全互补的 dsmRNA 多聚物可实现最大的循环稳定性。这些结果确立了 dsmRNA 作为一种新型代谢稳定且转染有效的 mRNA 形式。