Yu Xueliang, Liu Shuai, Cheng Qiang, Lee Sang M, Wei Tuo, Zhang Di, Farbiak Lukas, Johnson Lindsay T, Wang Xu, Siegwart Daniel John
Department of Biochemistry, Simmons Comprehensive Cancer Center, The University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Pharmaceutics. 2021 Nov 12;13(11):1914. doi: 10.3390/pharmaceutics13111914.
Messenger RNA (mRNA) has generated great attention due to its broad potential therapeutic applications, including vaccines, protein replacement therapy, and immunotherapy. Compared to other nucleic acids (e.g., siRNA and pDNA), there are more opportunities to improve the delivery efficacy of mRNA through systematic optimization. In this report, we studied a high-throughput library of 1200 functional polyesters for systemic mRNA delivery. We focused on the chemical investigation of hydrophobic optimization as a method to adjust mRNA polyplex stability, diameter, pKa, and efficacy. Focusing on a region of the library heatmap (PE4K-A17), we further explored the delivery of luciferase mRNA to IGROV1 ovarian cancer cells in vitro and to C57BL/6 mice in vivo following intravenous administration. PE4K-A17-0.2C8 was identified as an efficacious carrier for delivering mRNA to mouse lungs. The delivery selectivity between organs (lungs versus spleen) was found to be tunable through chemical modification of polyesters (both alkyl chain length and molar ratio in the formulation). Cre recombinase mRNA was delivered to the Lox-stop-lox tdTomato mouse model to study potential application in gene editing. Overall, we identified a series of polymer-mRNA polyplexes stabilized with Pluronic F-127 for safe and effective delivery to mouse lungs and spleens. Structure-activity relationships between alkyl side chains and in vivo delivery were elucidated, which may be informative for the continued development of polymer-based mRNA delivery.
信使核糖核酸(mRNA)因其广泛的潜在治疗应用而备受关注,这些应用包括疫苗、蛋白质替代疗法和免疫疗法。与其他核酸(如小干扰RNA和质粒DNA)相比,通过系统优化提高mRNA递送效率的机会更多。在本报告中,我们研究了一个包含1200种功能性聚酯的高通量文库,用于全身mRNA递送。我们重点对疏水优化进行化学研究,以此作为一种调节mRNA多聚体稳定性、直径、pKa和递送效率的方法。聚焦于文库热图的一个区域(PE4K-A17),我们进一步探索了荧光素酶mRNA在静脉注射后体外递送至IGROV1卵巢癌细胞以及体内递送至C57BL/6小鼠的情况。PE4K-A17-0.2C8被确定为一种将mRNA递送至小鼠肺部的有效载体。发现通过聚酯的化学修饰(制剂中的烷基链长度和摩尔比)可以调节器官之间(肺与脾)的递送选择性。将Cre重组酶mRNA递送至Lox-stop-lox tdTomato小鼠模型,以研究其在基因编辑中的潜在应用。总体而言,我们鉴定出了一系列用普朗尼克F-127稳定的聚合物-mRNA多聚体,可安全有效地递送至小鼠肺部和脾脏。阐明了烷基侧链与体内递送之间的构效关系,这可能为基于聚合物的mRNA递送的持续发展提供参考。