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Kathleen W Swana
Kathleen W Swana
DEVCOM Soldier Center
Adresse e-mail validée de mail.mil
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Année
Antimicrobial peptide alamethicin insertion into lipid bilayer: A QCM-D exploration
KF Wang, R Nagarajan, TA Camesano
Colloids and Surfaces B: Biointerfaces 116, 472-481, 2014
752014
Size dependence of gold nanoparticle interactions with a supported lipid bilayer: A QCM-D study
CM Bailey, E Kamaloo, KL Waterman, KF Wang, R Nagarajan, ...
Biophysical chemistry 203, 51-61, 2015
672015
Characterization of supported lipid bilayer disruption by chrysophsin-3 using QCM-D
KF Wang, R Nagarajan, CM Mello, TA Camesano
The Journal of Physical Chemistry B 115 (51), 15228-15235, 2011
562011
Differentiating antimicrobial peptides interacting with lipid bilayer: Molecular signatures derived from quartz crystal microbalance with dissipation monitoring
KF Wang, R Nagarajan, TA Camesano
Biophysical chemistry 196, 53-67, 2015
532015
Para-aramid fiber sheets for simultaneous mechanical and thermal protection in extreme environments
GM Gonzalez, J Ward, J Song, K Swana, SA Fossey, JL Palmer, ...
Matter 3 (3), 742-758, 2020
482020
Thermochromic fibers via electrospinning
J Nguyen, RM Stwodah, CL Vasey, BE Rabatin, B Atherton, PA D’Angelo, ...
Polymers 12 (4), 842, 2020
242020
Color space transformation-based algorithm for evaluation of thermochromic behavior of cholesteric liquid crystals using polarized light microscopy
SL Levit, J Nguyen, NP Hattrup, BE Rabatin, R Stwodah, CL Vasey, ...
ACS omega 5 (13), 7149-7157, 2020
102020
Atomic force microscopy to characterize antimicrobial peptide-induced defects in model supported lipid bilayers
KW Swana, R Nagarajan, TA Camesano
Microorganisms 9 (9), 1975, 2021
72021
Formation of a fully anionic supported lipid bilayer to model bacterial inner membrane for QCM-D studies
KW Swana, TA Camesano, R Nagarajan
Membranes 12 (6), 558, 2022
62022
Thermochromic Fibers Via Electrospinning
JA Wimberly, U Coblentz, J Nguyen, R Stwodah, CL Vasey, B Rabatin, ...
2020 Virtual AIChE Annual Meeting, 2020
2020
Monitoring the temperature-responsive behavior of cholesteric liquid crystal films and emulsions using QCM-D
K Swana, P D'Angelo, C Tang
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 258, 2019
2019
Nanotoxicology: Exploring nanoparticle-model membrane interactions
C Bailey-Hytholt, E Kamaloo, KI Waterman, K Swana, T Camesano, ...
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 257, 2019
2019
QCM-D and spectroscopic study of cholesteric liquid crystals for temperature-responsive materials
K Swana, P D'Angelo, S Levit, R Stwodah, MK Gillard, C Tang
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 256, 2018
2018
Empirical and computational studies drive complete understanding of the mechanism of silane-mediated reductions of phosphine oxides
K Wang, J Buonomo, C Aldrich
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 255, 2018
2018
Monitoring the formation of Gram-positive bacterial membrane mimics using QCM-D
K Wang, R Nagarajan, T Camesano
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 250, 2015
2015
Comparison of peptide structure-lipid bilayer interactions for alamethicin, chrysophsin-3, indolicidin, and SMAP-29: Differentiation through QCM-D signatures
KF Wang, R Nagarajan, TA Camesano
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 248, 2014
2014
Characterizing molecular-scale interactions between antimicrobial peptides and model cell membranes
KF Wang
Worcester Polytechnic Institute, 2014
2014
Correction to “Characterization of Supported Lipid Bilayer Disruption by Chrysophsin-3 Using QCM-D”
KF Wang, R Nagarajan, CM Mello, TA Camesano
The Journal of Physical Chemistry B 117 (48), 15232-15232, 2013
2013
Using QCM-D to compare the actions of antimicrobial peptides alamethicin, chrysophsin-3, indolicidin, and SMAP-29 on a supported lipid membrane
KF Wang, R Nagarajan, TA Camesano
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 245, 2013
2013
Using QCM-D to deduce the mechanism of SMAP-29 action on a model membrane
KF Wang, R Nagarajan, CM Mello, TA Camesano
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 243, 2012
2012
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