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ACS Chemical Biology, ISSN 1554-8929, 05/2016, Volume 11, Issue 5, pp. 1167 - 1179
Long fascinating to biologists, viruses offer nanometer-scale benchtops for building molecular-scale devices and materials. Viruses tolerate a wide range of... 
GOLD NANOPARTICLES | FILAMENTOUS PHAGE | PEPTIDE PHAGE LIBRARY | BIOCHEMISTRY & MOLECULAR BIOLOGY | GENETICALLY-ENGINEERED VIRUSES | PROSTATE-CANCER | CARBOHYDRATE-BINDING PROTEINS | M13 BACTERIOPHAGE | WALLED CARBON NANOTUBES | LATERAL-FLOW ASSAYS | DIRECTED SYNTHESIS | Genetic Engineering - methods | Bacteriophages - chemistry | Biomimetics - methods | Viruses - genetics | Nanotechnology - methods | Humans | Regenerative Medicine - methods | Bioelectric Energy Sources - virology | Animals | Viruses - chemistry | Bacteriophages - genetics | Biosensing Techniques - methods | Drug Delivery Systems - methods | Inherent phage functionalities: Easily accessible and modifiable sidechain functionalities inherent to the phage coat proteins | Imparted phage functionalities: Functionalities such as aldehydes chemically installed onto the phage surface with or without the need for prior genetic modification | Phage wrapping: The concept of non-covalently covering the negatively charged phage surface with a positively charged peptide | Phagemid display: The display of peptides and proteins on coat proteins with a maximum of 15% incorporation. The remainder of the unmodified coat proteins are provided by a helper phage during propagation | PEGylated phage: Covalently or non-covalently coating the phage surface with the protein adhesion-resistant polymer, polyethylene glycol | Biomimetic phage: The self-assembly of phage into liquid crystalline films with topographical features mimicking the extra-cellular matrix | Phage vector display: The display of a genetically-encoded peptide on every copy of a phage coat protein; for example, display on every major coat protein, P8, is limited to peptides with six or fewer amino acids | Phage nucleation: The charge-based nucleation of cationic species, followed by reduction and oxidation to provide crystalline minerals
Journal Article
Journal Article
Journal Article
Nature Biotechnology, ISSN 1087-0156, 06/2019, Volume 37, Issue 6, pp. 692 - 692
In the version of this article initially published, we listed 13 companies that were developing phage therapies a decade ago and stated that only a few are... 
Phages
Journal Article
Journal Article