Nitinun Bell Varongchayakul
Affiliations: | 2013-2018 | Biomedical Engineering | Boston University, Boston, MA, United States |
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"Nitinun Varongchayakul"
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Publications
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Chen M, Grazon C, Sensharma P, et al. (2020) Hydrogel embedded quantum dot-transcription factor sensor for quantitative progesterone detection. Acs Applied Materials & Interfaces |
Chen M, Nguyen TT, Varongchayakul N, et al. (2020) Surface Immobilized Nucleic Acid-Transcription Factor Quantum Dots for Biosensing. Advanced Healthcare Materials. e2000403 |
Ho RX, Tahboub R, Amraei R, et al. (2019) The cell adhesion molecule IGPR-1 is activated by, and regulates responses of endothelial cells to shear stress. The Journal of Biological Chemistry |
Varongchayakul N, Hersey J, Squires A, et al. (2018) A Solid-State Hard Microfluidic-Nanopore Biosensor with Multilayer Fluidics and On-Chip Bioassay/Purification Chamber. Advanced Functional Materials. 28 |
Varongchayakul N, Song J, Meller A, et al. (2018) Single-molecule protein sensing in a nanopore: a tutorial. Chemical Society Reviews |
Ekladious I, Liu R, Varongchayakul N, et al. (2018) Reinforcement of polymeric nanoassemblies for ultra-high drug loadings, modulation of stiffness and release kinetics, and sustained therapeutic efficacy. Nanoscale |
Varongchayakul N, Huttner D, Grinstaff MW, et al. (2018) Sensing Native Protein Solution Structures Using a Solid-state Nanopore: Unraveling the States of VEGF. Scientific Reports. 8: 1017 |
Aquino P, Honda B, Jaini S, et al. (2017) Coordinated regulation of acid resistance in Escherichia coli. Bmc Systems Biology. 11: 1 |
Varongchayakul N, Grinstaff M, Meller A. (2017) Structural Characterization of Vascular Endothelial Growth Factor by Solid-State Nanopores Biophysical Journal. 112: 154a-155a |
Squires AH, Gilboa T, Torfstein C, et al. (2016) Single-Molecule Characterization of DNA-Protein Interactions Using Nanopore Biosensors. Methods in Enzymology. 582: 353-385 |