
Peptides and Peptide-based Biomaterials and their Biomedical Applications
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Andrew Careis a Research Fellow in the ARC Centre of Excellence for Nanoscale BioPhotonics, a transdisciplinary research centre that aims to develop innovative nanotechnologies to investigate complex living systems. He obtained his PhD from Macquarie University (MQ) in Sydney, Australia. Andrew is also a member of both the MQ Biomolecular Discovery and Design Research Centre and the MQ BioFocus Research Centre. His current research is focused on the development of engineered biomolecules, including solid-binding peptides, to control the self-assembly and biofunctionalisation of materials and biomolecules in a range of biomedical and biotechnological applications.
Peter Bergquist is Emeritus Professor in the Biomolecular Discovery and Design Research Centre at Macquarie University and Emeritus Professor in the Department of Molecular Medicine & Pathology at The University of Auckland Medical School. He has a PhD and DSc from the University of Auckland in New Zealand andhas been a Postdoctoral Fellow and Research Fellow at Harvard Medical School, Yale and Oxford Universities and a Visiting Fellow at New York University School of Medicine. His recent publications reflect research performed with the Environmental Biotechnology Co-operative Research Centre in Australia and he developed research expertise in gas phase catalysis and biofunctionalisation of inorganic matrices containing silica. He has been on the editorial boards of several significant journals such as Applied and Environmental Microbiology and Journal of Bacteriology.
Inhalt
Programmable Bio-Surfaces for Biomedical Applications.- Solid-binding Peptides in Biomedicine.- Molecular Modelling of Peptide-based Materials for Biomedical Applications.- Design principles of peptide based self-assembled nanomaterials.- Bioprinting and Biofabrication with Peptide and Protein Biomaterials.- Peptides as Bio-Inspired Molecular Electronic Materials.- Peptide-Based Materials for Cartilage Tissue Regeneration.- Peptides and Drug Delivery.- Peptide Lipidation - A Synthetic Strategy to Afford Peptide Based Therapeutics.- Molecular Engineering of Conus Peptides as Therapeutic Leads.- Uptake Mechanism of Cell-Penetrating Peptides.- Empowering the Potential of Cell-Penetrating Peptides for Targeted Intracellular Delivery via Molecular Self-Assembly.- The Current Role of Cell-Penetrating Peptides in Cancer Therapy.