Nicole L. Fry, Ph.D.
Affiliations: | Chemistry | University of California, Santa Cruz, Santa Cruz, CA, United States |
Area:
Inorganic Chemistry, Protein Active Site Modeling, Design and Syntheses of NO- and CO-donors, Green ChemistryGoogle:
"Nicole Fry"Mean distance: 8.22 | S | N | B | C | P |
Parents
Sign in to add mentorPradip K. Mascharak | grad student | 2012 | UC Santa Cruz | |
(The influence of ligand parameters on the photolability of nitric oxide from designed iron, manganese, and ruthenium nitrosyls under visible light.) |
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Publications
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Sen S, Kawahara B, Fry NL, et al. (2013) A light-activated NO donor attenuates anchorage independent growth of cancer cells: Important role of a cross talk between NO and other reactive oxygen species Archives of Biochemistry and Biophysics. 540: 33-40 |
De Boer-Maggard TR, Fry NL, Mascharak PK. (2013) Evidence of dexter energy transfer in NO photolability of dye-sensitized ruthenium nitrosyls Inorganica Chimica Acta. 406: 190-195 |
Gonzalez MA, Carrington SJ, Fry NL, et al. (2012) Syntheses, structures, and properties of new manganese carbonyls as photoactive CO-releasing molecules: design strategies that lead to CO photolability in the visible region. Inorganic Chemistry. 51: 11930-40 |
Fry NL, Mascharak PK. (2012) Photolability of NO in designed metal nitrosyls with carboxamido-N donors: A theoretical attempt to unravel the mechanism Dalton Transactions. 41: 4726-4735 |
Merkle AC, Fry NL, Mascharak PK, et al. (2011) Mechanism of NO photodissociation in photolabile manganese-NO complexes with pentadentate N5 ligands. Inorganic Chemistry. 50: 12192-203 |
Fry NL, Wei J, Mascharak PK. (2011) Triggered dye release via photodissociation of nitric oxide from designed ruthenium nitrosyls: Turn-ON fluorescence signaling of nitric oxide delivery Inorganic Chemistry. 50: 9045-9052 |
Gonzalez MA, Fry NL, Burt R, et al. (2011) Designed iron carbonyls as carbon monoxide (CO) releasing molecules: Rapid CO release and delivery to myoglobin in aqueous buffer, and vasorelaxation of mouse aorta Inorganic Chemistry. 50: 3127-3134 |
Fry NL, Mascharak PK. (2011) Photoactive ruthenium nitrosyls as NO donors: How to sensitize them toward visible light Accounts of Chemical Research. 44: 289-298 |
Fry NL, Heilman BJ, Mascharak PK. (2011) Dye-tethered ruthenium nitrosyls containing planar dicarboxamide tetradentate N4 ligands: Effects of in-plane ligand twist on NO photolability Inorganic Chemistry. 50: 317-324 |
Fry NL, Zhao XP, Mascharak PK. (2011) Density functional theory studies on a designed photoactive {FeNO} 6 nitrosyl and the corresponding photoinactive {FeNO}7 species: Insight into the origin of NO photolability Inorganica Chimica Acta. 367: 194-198 |