信使核糖核酸
阳离子聚合
转染
化学
内体
聚合物
细胞内
亚甲基
基因传递
体外
生物物理学
生物化学
生物
有机化学
基因
作者
Anita Jarzębińska,Tamara Pasewald,Jana Lambrecht,Olga Mykhaylyk,Linda Kümmerling,Philipp Beck,Günther Hasenpusch,Carsten Rudolph,Christian Plank,Christian Dohmen
标识
DOI:10.1002/anie.201603648
摘要
Abstract The development of chemically modified mRNA holds great promise as a new class of biologic therapeutics. However, the intracellular delivery and endosomal escape of mRNA encapsulated in nanoparticles has not been systematically investigated. Here, we synthesized a diverse set of cationic polymers and lipids from a series of oligoalkylamines and subsequently characterized their mRNA delivery capability. Notably, a structure with an alternating alkyl chain length between amines showed the highest transfection efficiency, which was linked to a high buffering capacity in a narrow range of pH 6.2 to 6.5. Variation in only one methylene group resulted in enhanced mRNA delivery to both the murine liver as well as porcine lungs after systemic or aerosol administration, respectively. These findings reveal a novel fundamental structure–activity relationship for the delivery of mRNA that is independent of the class of mRNA carrier and define a promising new path of exploration in the field of mRNA therapeutics.
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