Journal article

Surface charge effects in protein adsorption on nanodiamonds

M Aramesh, O Shimoni, K Ostrikov, S Prawer, J Cervenka

Nanoscale | Published : 2015

Abstract

Understanding the interaction of proteins with charged diamond nanoparticles is of fundamental importance for diverse biomedical applications. Here we present a thorough study of protein binding, adsorption kinetics and structure on strongly positively (hydrogen-terminated) and negatively (oxygen-terminated) charged nanodiamond particles using a quartz crystal microbalance by dissipation and infrared spectroscopy. By using two model proteins (bovine serum albumin and lysozyme) of different properties (charge, molecular weight and rigidity), the main driving mechanism responsible for the protein binding to the charged nanoparticles was identified. Electrostatic interactions were found to domi..

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University of Melbourne Researchers

Grants

Awarded by Australian Research Council


Funding Acknowledgements

We acknowledge financial support from the University of Melbourne research and CSIRO top-up scholarships. The authors wish to acknowledge the research facility and technical assistance from the Nanostructured Interfaces and Materials Science Group (NIMS) led by Prof. Frank Caruso at the department of Chemical and Biomolecular Engineering, the University of Melbourne. This research was supported under Australian Research Council's Discovery Projects funding scheme (project number DE120101100). K.O acknowledges support from the ARC Future Fellowship and CSIRO OCE Science Leadership Scheme.