
About
Dr. Dominic Glover is a Senior Lecturer at the University of New South Wales (UNSW) in the School of Biotechnology and Biomolecular Sciences, a position he has held since 2017. Prior to this, he served as a Project Scientist, Associate Specialist, and Postdoctoral Research Fellow in the Department of Chemical and Biomolecular Engineering at the University of California, Berkeley from 2010 to 2016.
Dr. Glover's research focuses on applying synthetic biology for the engineering of proteins into structured and functional biomaterials. His work centers on creating standardized protein building blocks composed of ultrastable filamentous proteins and connectors that assemble into geometrically-defined structures of controllable size and shape. This research has significant implications for developing protein nanostructures with atomic-level accuracy, opening new possibilities in biomaterials including electrically conductive protein nanowires for biosensors and enzyme catalysis, engineered metabolic pathways, and tissue scaffolds for regenerative medicine.
Analysis of Dr. Glover's recent publications reveals a strong focus on protein self-assembly, biomaterials engineering, and the development of protein-based nanotechnologies. His work spans multiple disciplines including structural biology, nanotechnology, bioelectronics, and synthetic biology. A notable trend in his research is the application of protein engineering principles to create functional biomaterials with specific electronic, catalytic, and structural properties. His team has made significant contributions to understanding protein filament assembly, developing purification methods for protein nanostructures, and creating conductive protein nanowires for energy applications.
Dr. Glover has established collaborative research relationships with scientists both within UNSW and internationally, particularly with researchers at the University of California, Berkeley. His laboratory appears to focus on protein engineering approaches to create novel biomaterials with applications in energy harvesting, biosensing, and regenerative medicine. While specific grant information is not provided in the available text, his extensive publication record suggests successful funding for his research program.
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