Site‐Specific Antibody Assembly on Nanoparticles via a Versatile Coating Method for Improved Cell Targeting

Author:

Zhang Qianyi12,Liang Jieying12,Bongers Andre3,Richardson Joseph J.4,Liang Kang125ORCID,Gu Zi126ORCID

Affiliation:

1. School of Chemical Engineering University of New South Wales Sydney NSW 2052 Australia

2. Australian Centre for NanoMedicine (ACN) University of New South Wales Sydney NSW 2052 Australia

3. Biological Resources Imaging Laboratory Mark wainwright Analytical Centre The University of New South Wales Sydney NSW 2052 Australia

4. School of Engineering RMIT University Melbourne Victoria 3000 Australia

5. Graduate School of Biomedical Engineering The University of New South Wales Sydney NSW 2052 Australia

6. UNSW RNA Institute University of New South Wales Sydney NSW 2052 Australia

Abstract

AbstractAntibody‐nanoparticle conjugates are promising candidates for precision medicine. However, developing a controllable method for conjugating antibodies to nanoparticles without compromising the antibody activity represents a critical challenge. Here, a facile and generalizable film‐coating method is presented using zeolitic imidazole framework‐8 (ZIF‐8) to immobilize antibodies on various nanoparticles in a favorable orientation for enhanced cell targeting. Different model and therapeutic antibodies (e.g., Herceptin) are assembled on nanoparticles via a biomineralized film‐coating method and exhibited high antibody loading and targeting efficiencies. Importantly, the antibodies selectively bind to ZIF‐8 via their Fc regions, which favorably exposes the functional Fab regions to the biological target, thus improving the cell targeting ability of antibody‐coated nanoparticles. In combination, molecular dynamics simulations and experimental studies on antibody immobilization, orientation efficiency, and biofunctionality collectively demonstrate that this versatile site‐specific antibody conjugation method provides effective control over antibody orientation and leads to improved cell targeting for a variety of nanoparticles.

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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