化学
树枝状大分子
杰纳斯
荧光素酶
两亲性
核糖核酸
信使核糖核酸
体内
纳米医学
生物物理学
纳米技术
生物化学
纳米颗粒
有机化学
转染
基因
生物
生物技术
共聚物
材料科学
聚合物
作者
Dipankar Sahoo,Elena N. Atochina‐Vasserman,Devendra S. Maurya,Mahwish Arshad,Santhosh Chenna,Nathan Ona,Jessica A. Vasserman,Houping Ni,Drew Weissman,Virgil Percéc
摘要
Constitutional isomerism has been previously demonstrated by one of our laboratories to represent a powerful design strategy for the elaboration of complex functional self-organizations. Here we report the design, synthesis, and characterization of 14 positional, skeletal, and functional constitutional isomeric one-component, multifunctional, sequence-defined, amphiphilic ionizable Janus dendrimers (IAJDs). Their coassembly by simple injection with luciferase mRNA (Luc-mRNA) to form dendrimersome nanoparticles (DNPs) was studied. Subsequently, the resulting DNPs were employed to investigate, with screening experiments, the delivery of Luc-mRNA in vivo. Constitutional isomerism was shown to produce changes of up to two orders of magnitude of the total-body luciferase activity and targeted luciferase activity to the spleen and liver, of up to three orders of magnitude difference in targeted luciferase activity to the lungs and up to six orders of magnitude to lymph nodes. These results indicate that constitutional isomerism may represent not only a simple but also an important synthetic strategy that most probably may impact the activity of all components of synthetic vectors used in RNA-based nanomedicine, including in mRNA vaccines and therapeutics.
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