Jiang Yuhang, Lu Qiao, Wang Yongheng, Xu Emily, Ho Alison, Singh Priya, Wang Yifei, Jiang Zhaozhong, Yang Fan, Tietjen Gregory T, Cresswell Peter, Saltzman W Mark
Department of Biomedical Engineering , Yale University , New Haven , Connecticut 06511 , United States.
Department of Immunobiology , Yale University School of Medicine , New Haven , Connecticut 06520 , United States.
Nano Lett. 2020 Feb 12;20(2):1117-1123. doi: 10.1021/acs.nanolett.9b04426. Epub 2020 Jan 31.
Endosomal escape is a key step for intracellular drug delivery of nucleic acids, but reliable and sensitive methods for its quantitation remain an unmet need. In order to rationally optimize the mRNA transfection efficiency of a library of polymeric materials, we designed a deactivated Renilla luciferase-derived molecular probe whose activity can be restored only in the cytosol. This probe can be coencapsulated with mRNA in the same delivery vehicle, thereby accurately measuring its endosomal escape efficiency. We examined a library of poly(amine--ester) (PACE) polymers with different end groups using this probe and observed a strong correlation between endosomal escape and transfection efficiency ( = 0.9334). In addition, we found that mRNA encapsulation efficiency and endosomal escape, but not uptake, were determinant factors for transfection efficiency. The polymers with high endosomal escape/transfection efficiency also showed good transfection efficiency , and mRNA expression was primarily observed in spleens after intravenous delivery. Together, our study suggests that the luciferase probe can be used as an effective tool to quantitate endosomal escape, which is essential for rational optimization of intracellular drug delivery systems.
内体逃逸是核酸细胞内给药的关键步骤,但用于定量的可靠且灵敏的方法仍未得到满足。为了合理优化聚合物材料库的mRNA转染效率,我们设计了一种源自无活性海肾荧光素酶的分子探针,其活性仅在细胞质中才能恢复。该探针可与mRNA共封装在同一递送载体中,从而准确测量其内体逃逸效率。我们使用该探针检测了具有不同端基的聚(胺 - 酯)(PACE)聚合物库,并观察到内体逃逸与转染效率之间存在很强的相关性(r = 0.9334)。此外,我们发现mRNA封装效率和内体逃逸而非摄取是转染效率的决定性因素。具有高内体逃逸/转染效率的聚合物也显示出良好的转染效率,静脉给药后主要在脾脏中观察到mRNA表达。总之,我们的研究表明荧光素酶探针可作为定量内体逃逸的有效工具,这对于合理优化细胞内给药系统至关重要。