David S. McNabb
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: Louisiana State University in Shreveport (1992); Massachusetts Institute of Technology (1992–1997); Auburn University (2000)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
David S. McNabb's research interests are focused on the study of plant physiology and cultivation. His work has explored various aspects of plant growth and development, including responses to environmental factors and the optimization of agricultural practices. He has contributed to the understanding of plant biology through his publications, though his recent activity in this area is limited.
Metrics
- h-index: 20
- Publications: 38
- Citations: 2,784
Selected Publications
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Engineered FGF compositions and methods of use thereof (2019)Journal of the Arkansas Academy of Science OpenAlex
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Whole-Genome Approach to Understanding the Mechanism of Action of a Histatin 5-Derived Peptide (2019)
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Design of a thrombin resistant human acidic fibroblast growth factor (hFGF1) variant that exhibits enhanced cell proliferation activity (2019)
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Estimating RNA Polymerase Protein Binding Sites on λ DNA Using Solid-State Nanopores (2018)
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The Iron-Dependent Regulation of the Candida albicans Oxidative Stress Response by the CCAAT-Binding Factor (2017)
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Sensing the Binding Sites of RNAP Holoenzyme on λ DNA Attached to a Probe Tip with Solid State Nanopores (2016)
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Heparin-binding peptide as a novel affinity tag for purification of recombinant proteins (2016)
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Production of an anti‐<i>Candida</i> peptide via fed batch and ion exchange chromatography (2016)
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Dielectrophoretic stretching of DNA tethered to a fiber tip (2015)
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Threading Immobilized DNA Molecules Through Solid-State Nanopores (2015)
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Wave-SOM (2013)
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Membrane Permeability Induced by Stereo and Retro Analogs of Histatin 5 (2013)
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DNA Characterization with Ion Beam-Sculpted Silicon Nitride Nanopores (2012)
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<scp>K</scp><sup>+</sup>, <scp>N</scp>a<sup>+</sup>, and <scp>M</scp>g<sup>2+</sup> on <scp>DNA</scp> translocation in silicon nitride nanopores (2012)
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Wave-SOM (2010)
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