囊性纤维化
粘液
纳米颗粒
纳米技术
生物
医学
材料科学
内科学
生态学
作者
Belal Tafech,Mohammad‐Reza Rokhforouz,Jerry Leung,Molly M. H. Sung,Paulo J.C. Lin,Don D. Sin,Daniel Lauster,Stephan Block,Bradley S. Quon,Ying K. Tam,Pieter R. Cullis,James J. Feng,Sarah Hedtrich
标识
DOI:10.1002/adhm.202304525
摘要
Mucus forms the first defense line of human lungs, and as such hampers the efficient delivery of therapeutics to the underlying epithelium. This holds particularly true for genetic cargo such as CRISPR-based gene editing tools which cannot readily surmount the mucosal barrier. While lipid nanoparticles (LNPs) emerge as versatile non-viral gene delivery systems that can help overcome the delivery challenge, many knowledge gaps remain, especially for diseased states such as cystic fibrosis (CF). This study provides fundamental insights into Cas9 mRNA or ribonucleoprotein-loaded LNP-mucus interactions in healthy and diseased states by assessing the impact of the genetic cargo, mucin sialylation, mucin concentration, ionic strength, pH, and polyethylene glycol (PEG) concentration and nature on LNP diffusivity leveraging experimental approaches and Brownian dynamics (BD) simulations. Taken together, this study identifies key mucus and LNP characteristics that are critical to enabling a rational LNP design for transmucosal delivery.
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