Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 20 of 77 for “"M13"”.
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Assay for Rifampicin Resistant M13 RF Synthesis
… of its ability to initiate the synthesis of M13 complementary strands in the presence of the antibiotic rifampicin. A segment of DNA carrying the sequence recognized by the replication protein n' has been isolated from bacteriophage ØX174 and cloned into an Ml3 bacteriophage vector. Protein …
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Engineering M13 bacteriophage platforms for cancer therapy applications
Two novel schemes for engineering M13 bacteriophage for application in the diagnosis, imaging and treatment of human tumors are proposed. Firstly, by exploiting the uniquely malleable biology of the M13 filamentous phage, we have engineered filamentous phages of shorter lengths by constructing our …
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Engineering M13 Bacteriophage Nanoplatforms for Diagnostic and Therapeutic Applications
M13 bacteriophage, a naturally monodisperse multifunctional nanostructure, consists of thousands of distinct protein subunits organized in a filamentous viral capsid; 900nm in length and 6nm in diameter. All M13 capsids are amenable to mutation and can be tuned for the binding and nucleation of …
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Searching for M13 bacteriophage with high affinity for nanodiamond particles
… In this experiment, a pIII library of M13 bacteriophage were panned versus 100 nm nanodiamonds enriched with approximately 500 nitrogen vacancy centers to find phage that have an affinity for these nanoparticles. The phage DNA was sequenced and found to have the protein sequence …
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Versatility of M13 bacteriophage in medicine : vaccine storage and cancer diagnostics
… of engineering the filamentous bacteriophage, M13, for the prevention, diagnosis, and treatment of human disease are proposed. Both ways are founded on the unique structural properties of the M13 bacteriophage and the ability of its major and minor coat proteins, p3 and p8, to be manipulated to …
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Design and screening of degenerate-codon-based protein ensembles with M13 bacteriophage
… phase-change material onto the filamentous M13 phage surface.
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Highly - conductive cathode for lithium-ion battery using M13 phage - SWCNT complex
… synthesize nano-scale particles, and using the M13 virus has shown to be an early solution. The addition of conductive material, such as single-walled carbon nanotubes (SWCNT or CNT), also improves the conductivity of the electrode, further improving the battery's rate capabilities (Lee et al., …
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Biology's wires and motors : single-molecule mechanics of M13 bacteriophage and kinesin
… reveal the mechanics of two biological systems - M13 filamentous bacteriophage and kinesin motor protein - and the properties of their underlying parts. M13 is a filamentous virus that has elicited the interest of the engineering community for its use in phage display of combinatorial peptide …
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Nucleic acid binding properties of the gene-5 protein encoded by bacteriophage M13
Contains fulltext : mmubn000001_052894541.pdf (Publisher’s version ) (Open Access)
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M13 bacteriophage-enabled assembly of nanocomposites : synthesis and application in energy conversion devices
… thesis, by utilizing the biological scaffolds of M13 bacteriophage, nanocomposites with novel nanostructures and various functional nanomaterials have been synthesized, assembled, and fabricated into devices. Using excellent properties from each functional material in the nanocomposites, …
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Investigation of layer-by-layer assembly and M13 bacteriophage nanowires for dye-sensitized solar cells
… by substituting a negatively charged variant of M13 bacteriophage for the negatively charged polymer during the dip LbL assembly process, phage can be incorporated into a hybrid material with characteristics of both its biological and polymeric components. The resulting mesoporous polymer films …
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M13 virus/single-walled carbon nanotubes as a materials platform for energy devices and biomedical applications
… devices are presented. Genetically engineered M13 virus clones are developed to assemble SWNTs and technically important inorganic materials biomineralized on the protein surfaces of M13 virus to create hybrid nano-structured electrodes for high power Li+ ion batteries and highly efficient …
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Hybrid nanostructure designs facilitated by M13 virus for lithium ion battery and lithium air battery electrodes
… By rationally designing genetic sequences of the M13 virus, graphene sheets were homogeneously distributed throughout bismuth oxyfluorides cathodes as conducting paths. Second, large surface area cathodes were developed with virus-templated manganese oxide nanowires. These electrodes were applied …
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Isolation And Analysis Of Peptides Binding To Helix 69 Of E. Coli 23 S Rrna From M13 Phage Display
<p>Peptides binding to helix 69 of domain IV or residues 1906-1924, of 23 S rRNA of E.coli were being selected from a heptapeptide phage library. An experimental system including biotin labeling of RNA and then affinity selection through four rounds was being followed. After sequencing phage clones …
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M13 virus-enabled assembly of 3D nanostructured composites : synthesis and applications in solar energy conversion and electrochemical energy storage devices
… One of the approaches is to genetically engineer M13 bacteriophage (M13 virus) to display proteins with specific functionalities, which allow the synthesis and organization of hybrid materials in environmentally friendly manners. The primary goal of my Ph.D. thesis has been to develop M13 …
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Fabrication of 1-dimensional nanowires from genetically modified M13 phage through surfactant-mediated hybridization and the applications in medical diagnosis, energy devices, and catalysis
… The bio-mineralization of genetically engineered M13 bacteriophage resulted in one-dimensional nanowires having outstanding properties in diverse applications. As a bridge between the chemical synthesis of nanostructures and the bio-mineralization of M13 phage, surfactant molecules were introduced …
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Biotemplated resin and carbon nanomaterials for energy and environmental applications
The M13 bacteriophage had been shown to be a highly versatile toolkit for growing and assembling nanomaterials with technological importance. Inspired by the natural biomineralization process, much of the existing literature focused on genetically engineering the M13 viral capsid for interaction …
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Estimates of Phytoplankton carbon from high resolution optical sensors in the Southern Ocean
… based on backscattering (named 30%POC, B05 and M13) and one on chlorophyll (S09). The methods are different in their empirical formulations and source of original data. Three methods showed similar results despite the fact that one of them makes use of chlorophyll to derive Cphyto. Method M13 …
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Nanostructured electrodes for lithium ion batteries using biological scaffolds
… device is important. To meet these needs, a M13 virus based biological toolkit was utilized in this work for controlling nanostructures of lithium ion battery electrodes which is a critical process in developing electrodes materials for high power applications. The M13 biological toolkit …
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Genetically engineered phage fibers and coatings for antibacterial applications
… temperature. Facile genetic engineering of the M13 virus (bacteriophage) genome leverages the well-known antibacterial properties of silver ions to kill bacteria. Predominant expression of negatively-charged glutamic acid (E3) peptides on the pVIII major coat proteins of M13 bacteriophage (or …
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