预定位
粘液
化学
药物输送
聚乙二醇化
毒品携带者
上皮
跨细胞
生物物理学
纳米技术
聚乙二醇
抗体
细胞
免疫学
材料科学
单克隆抗体
医学
生物化学
放射免疫疗法
生物
病理
内吞作用
生态学
作者
Justin T. Huckaby,Christina L. Parker,Timothy M. Jacobs,Alison Schaefer,Daniel Wadsworth,Alexander K. Nguyen,Anting Wang,Jay Newby,Samuel K. Lai
标识
DOI:10.1002/anie.201814665
摘要
Mucus represents a major barrier to sustained and targeted drug delivery to mucosal epithelium. Ideal drug carriers should not only rapidly diffuse across mucus, but also bind the epithelium. Unfortunately, ligand-conjugated particles often exhibit poor penetration across mucus. In this work, we explored a two-step "pretargeting" approach through engineering a bispecific antibody that binds both cell-surface ICAM-1 and polyethylene glycol (PEG) on the surface of nanoparticles, thereby effectively decoupling cell targeting from particle design and formulation. When tested in a mucus-coated Caco-2 culture model that mimics the physiological process of mucus clearance, pretargeting increased the amount of PEGylated particles binding to cells by around 2-fold or more compared to either non-targeted or actively targeted PEGylated particles. Pretargeting also markedly enhanced particle retention in mouse intestinal tissues. Our work underscores pretargeting as a promising strategy to improve the delivery of therapeutics to mucosal surfaces.
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