DOI: 10.1021/acs.biomac.5c02711 ISSN: 1525-7797

Revealing Nanomedicine Design Principles for Efficient siRNA Delivery to the Central Nervous System

Zhe Tan, Supreet Kaur, Ritam Das, Saeideh Nozohouri, Harmon Johnson, Xingyan Liu, Hao-Cheng Chueh, Lujain Al-Sowaimel, Zhefeng Li, Claire Moront, Maddie Carlini, Samantha Sarett, Scott Brown, Michelle Lynn Hall

Abstract

A series of polymer nanocapsules were designed and synthesized for non-viral siRNA delivery to the central nervous system via intracerebroventricular injection. Various factors can contribute to superior diffusion profiles. In this study, we find that size, charge, and morphology play important roles. Further, we report an analysis that demonstrates the subtle effects that small chemical changes can have on whole-particle properties and the corresponding in vivo readouts. We use computational modeling to reveal previously unconsidered design criteria and hypothesize that cargo-templating considerations appear sufficient to connect differences in the internal structural organization to observed whole-particle properties. Collectively, computational and experimental findings work in synergy to deepen our molecular-level investigative capabilities to design and optimize nucleic acid delivery systems.