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M13 bacteriophage
Single M13 Bacteriophage Tethering and Stretching
JACK GRIFFITH, Ph
Determination of the Survival of Bacteriophage M13 from Chemical and Physical Challenges to Assist in Its Sustainable Bioprocessing
Genome-Wide Comparison of Phage M13-Infected Vs. Uninfected Escherichia Coli
Production of Tunable Nanomaterials Using Hierarchically Assembled
Engineered Phagemids for Nonlytic, Targeted Antibacterial Therapies
Thesis a Kinetic Model Development of the M13
Detection and Destruction of Escherichia Coli Bacteria and Bacteriophage Using Biofunctionalized Nanoshells
Resident Viruses and Their Interactions with the Immune System
Basics of Antibody Phage Display Technology
Bacteriophage-Based Vaccines: a Potent Approach for Antigen Delivery
Comprehensive Mutagenesis of the C-Terminal Domain of the M13 Gene-3 Minor Coat Protein: the Requirements for Assembly Into the Bacteriophage Particle
Assembly of Bacteriophage Into Functional Materials
Application of Bacteriophages in Nanotechnology
Arming Filamentous Bacteriophage, a Nature-Made Nanoparticle, for New Vaccine and Immunotherapeutic Strategies
Filamentous Bacteriophage: Biology, Phage Display and Nanotechnology Applications
Refactored M13 Bacteriophage As a Platform for Tumor Cell Imaging and Drug Delivery
A Review of the Methods for Concentrating M13 Phage
Top View
Sample & Assay Technologies Qiaprep® M13 Handbook
2012-Yoo-Biomaterials.Pdf
M13 Bacteriophage-Based Self-Assembly Structures and Their Functional Capabilities
The Many Applications of Engineered Bacteriophages— an Overview
Increased Fragility of Escherichia Coli After Infection with Bacteriophage M13 A
Isolation of Single-Stranded DNA from M13 Phage Using QIAGEN
The NMR–Rosetta Capsid Model of M13 Bacteriophage Reveals a Quadrupled Hydrophobic Packing Epitope
Probing Molecular Mechanisms of M13 Bacteriophage Adhesion
Bacteriophages As Therapeutic and Diagnostic Vehicles in Cancer
M13 Bacteriophage-Templated Gold Nanowires As Stretchable Electrodes in Perovskite Solar Cells† Cite This: Mater
Single-Strand Interruptions in Replicating Chromosomes Cause Double-Strand Breaks
A Minimized M13 Coat Protein Defines the Requirements For
To Obtain Approval for Projects to Develop Genetically Modified Organisms in Containment
UC Riverside UC Riverside Electronic Theses and Dissertations
Conformations of the Single-Stranded DNA of Bacteriophage M13* Arleen B
Bacteriophage M13 As a Scaffold for Preparing Conductive Polymeric Composite Fibers
Genetically Modified Bacteriophages
Cell and Nanomaterial-Based Approaches for Diagnosis and Chemotherapy of Metastatic
Bacteriophages and Phage-Inspired Nanocarriers for Targeted Delivery of Therapeutic Cargos.” Advanced Drug Delivery Reviews 106 (November): 45–62