| Literature DB >> 33448219 |
Mingyang Li1,2, Jicheng Dong1,2, Fang Cheng1,2, Chunmei Li1,2, Huanan Wang3, Tao Sun4, Wei He1,5, Qing Wang1,2.
Abstract
For active targeting nanodrug delivery systems conjugated with antibodies, both lack of control of the antibody at the molecular level and protein corona formation remarkably decreases targeting efficacy. Herein, we designed a series of silica nanoparticles toward HER2-positive breast cancer cells, with an anti-HER2 Fab-6His density ranging from 50 to 180 molecules per nanoparticle. Through the site-directed immobilization method we developed, the antigen-binding domain of anti-HER2 Fab was mostly accessible to the HER2 receptor. Both polyethylene glycol (PEG) chains and a high density of Fab were shown to suppress protein corona formation and macrophage uptake. The dependency of targeting efficacy and cytotoxicity on Fab density was shown using a series of breast cancer cell lines with different levels of the HER2 expression. The high density of Fab stimulates quick responses from HER2-positive cells. Combined with PEG chains, conjugated antibodies with a well-controlled orientation and density significantly improves delivery performance and sheds light on the design and preparation of an improved active targeting nanodrug delivery system.Entities:
Keywords: HER2; active targeting; density; efficacy; protein corona
Year: 2021 PMID: 33448219 DOI: 10.1021/acs.molpharmaceut.0c01090
Source DB: PubMed Journal: Mol Pharm ISSN: 1543-8384 Impact factor: 4.939