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United States Department of Agriculture

Agricultural Research Service

Related Topics

Krystal Fontenot
Cotton Chemistry and Utilization Research
Research Chemist

Phone: (504) 286-4493
Fax:

1100 ROBERT E. LEE BLVD
BLDG 001 SRRC
NEW ORLEANS , LA 70179


Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)
The in situ synthesis and application of silver nanoparticles as an antimicrobial agent for cotton fibers -
Peptide-cellulose conjugates for protease point of care diagnostics and treatment -
Silver-cotton nanocomposites: nano-design of microfibrillar structure causes morphological changes and increased tenacity -
Nam, S., Condon, B.D., Delhom, C.D., Fontenot, K.R. 2016. Silver-cotton nanocomposites: nano-design of microfibrillar structure causes morphological changes and increased tenacity. Scientific Reports. 6:1-10. DOI: 10.1038/srep37320.
Preparation, characterization, and activity of peptide-cellulosic aerogel protease sensor from cotton -
Protease biosensors based on peptide-nanocellulose conjugates: from molecular design to dressing interface -
Edwards, J.V., Fontenot, K.R., Prevost, N.T., Haldane, D., Pircher, N., Liebner, F., French, A.D., Condon, B.D. 2016. Protease biosensors based on peptide-nanocellulose conjugates: from molecular design to dressing interface. International Journal of Medical Nano Research. 3(2):1-11.
Design, synthesis, and activity of nanocellulosic protease sensors -
Edwards, J.V., Fontenot, K.R., Prevost, N.T., French, A.D., Condon, B.D. 2016. Design, synthesis, and activity of nanocellulosic protease sensors. International Carbohhydrate Symposium. 106.
Human neutrophil elastase peptide sensors conjugated to cellulosic and nanocellulosic materials: part I, synthesis and characterization of fluorescent analogs -
Edwards, J.V., Fontenot, K.R., Haldane, D., Prevost, N.T., Condon, B.D., Grimm, C.C. 2016. Human neutrophil elastase peptide sensors conjugated to cellulosic and nanocellulosic materials: part I, synthesis and characterization of fluorescent analogs. Cellulose. 23(2):1283-1295.
A peptide derivatized cellulosic aerogel from cotton as a point of care diagnostic protease sensor -
Fontenot, K.R., Edwards, J.V., Pircher, N., Liebner, F., Prevost, N.T. 2016. A peptide derivatized cellulosic aerogel from cotton as a point of care diagnostic protease sensor. American Chemical Society National Meeting. CELL 322.
Human neutrophil elastase detection with fluorescent peptide sensors conjugated to cellulosic and nanocellulosic materials: part II, structure/function analysis -
Fontenot, K.R., Edwards, J.V., Haldane, D., Graves, E.E., Santiago Cintron, M., Prevost, N.T., French, A.D., Condon, B.D. 2016. Human neutrophil elastase detection with fluorescent peptide sensors conjugated to cellulosic and nanocellulosic materials: part II, structure/function analysis. Cellulose. 23(2):1297-1309.
Setting the foundation for your future: transitioning from an undergraduate student to research chemist -
Synthesis and assessment of peptide-nanocellulosic biosensors -
Edwards, J.V., Fontenot, K.R., Prevost, N.T., Nam, S., Concha, M.C., Condon, B.D. 2016. Synthesis and assessment of peptide-nanocellulosic biosensors. In: Mondal, Md.I.H., editor. Nanocellulose, Cellulose Nanofibers and Cellulose Nanocomposites. New York, NY: Nova Science Publishers, Inc. p. 475-494.
Understanding the mechanism of action of triazine-phosphonate derivatives as flame retardants for cotton fabrics -
Nguyen, M.M., Al-Abdul-Wahid, M., Fontenot, K.R., Graves, E.E., Chang, S., Condon, B.D., Grimm, C.C., Lorigan, G.A. 2015. Understanding the mechanism of action of triazine-phosphonate derivatives as flame retardants for cotton fabrics. Molecules. 20(6):11236-11256.
The thermal degradation pathway studies of a phosphazene derivative on cotton fabric -
Fontenot, K.R., Nguyen, M.M., Al-Abdul-Wahid, M., Easson, M.W., Chang, S., Lorigan, G.A., Condon, B.D. 2015. The thermal degradation pathway studies of a phosphazene derivative on cotton fabric. Industrial and Engineering Chemistry Research. 120:32-41.
Peptide-nanocellulose sensor for human neutrophil elastase detection -
Edwards, J.V., Fontenot, K.R., Prevost, N.T., Condon, B.D., Haldane, D. 2015. Peptide-nanocellulose sensor for human neutrophil elastase detection. Journal of Wound Repair and Regeneration. 23(2):A20.
Detection of Human Neutrophil Elastase with Fluorescent Peptide Sensors Conjugated to Nanocellulosic Solid Supports Targeting Wound Care Diagnostics -
Fontenot, K.R., Edwards, J.V., Prevost, N.T., Haldane, D. 2015. Detection of Human Neutrophil Elastase with Fluorescent Peptide Sensors Conjugated to Nanocellulosic Solid Supports Targeting Wound Care Diagnostics. American Chemical Society National Meeting. Cell 303.
Application of a phosphazene derivative as a flame retardant for cotton fabric using conventional method and supercritical CO2 -
Fontenot, K.R., Easson, M.W., Smith, J.N., Madison, C.A., Nam, S., Nguyen, M.M., Chang, S., Condon, B.D. 2014. Application of a phosphazene derivative as a flame retardant for cotton fabric using conventional method and supercritical CO2. American Association of Textile Chemists and Colorists Journal of Research. 1(6):16-26.
1,1',4,5-tetrahydrotrispiro[1,3,2-diazaphosphole-2,2'-[1,3,5,2,4,6]triazatriphosphinine-4',6''-dibenzo[d,f][1,3,2]dioxaphosphepine-6',6'''-dibenzo[d,f][1,3,2]dioxaphosphepine] -
Fontenot, K.R., Easson, M.W., Fronczek, F.R., Condon, B.D. 2013. 1,1',4,5-tetrahydrotrispiro[1,3,2-diazaphosphole-2,2'-[1,3,5,2,4,6]triazatriphosphinine-4',6''-dibenzo[d,f][1,3,2]dioxaphosphepine-6',6'''-dibenzo[d,f][1,3,2]dioxaphosphepine]. Acta Crystallographica Section E: Structure Reports Online. 69(9):o1491-o1492.
Design, synthesis and characterization of peptidomimetic conjugate of BODIPY targeting HER2 protein extracellular domain -
Banappagari, S., Mccall, A., Fontenot, K.R., Vicente, M., Gujar, A., Satyanarayanajois, S. 2013. Design, synthesis and characterization of peptidomimetic conjugate of BODIPY targeting HER2 protein extracellular domain. European Journal of Medicinal Chemistry. 65:60-69.
Last Modified: 5/2/2016
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