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Toxicity mechanisms in Escherichia coli vary for silver nanoparticles and differ from ionic silver A Ivask, A ElBadawy, C Kaweeteerawat, D Boren, H Fischer, Z Ji, ... ACS nano 8 (1), 374-386, 2014 | 621 | 2014 |
The biological chemistry of lead HA Godwin Current opinion in chemical biology 5 (2), 223-227, 2001 | 478 | 2001 |
Dispersion and Stability Optimization of TiO2 Nanoparticles in Cell Culture Media Z Ji, X Jin, S George, T Xia, H Meng, X Wang, E Suarez, H Zhang, ... Environmental science & technology 44 (19), 7309-7314, 2010 | 372 | 2010 |
A Selective, Ratiometric Fluorescent Sensor for Pb2+ S Deo, HA Godwin Journal of the American Chemical Society 122 (1), 174-175, 2000 | 359 | 2000 |
Comparative environmental fate and toxicity of copper nanomaterials AA Keller, AS Adeleye, JR Conway, KL Garner, L Zhao, GN Cherr, J Hong, ... NanoImpact 7, 28-40, 2017 | 345 | 2017 |
Lessons from zinc-binding peptides JM Berg, HA Godwin Annual review of biophysics and biomolecular structure 26 (1), 357-371, 1997 | 325 | 1997 |
Color my nanoworld AD McFarland, CL Haynes, CA Mirkin, RP Van Duyne, HA Godwin Journal of Chemical Education 81 (4), 544A, 2004 | 314 | 2004 |
Reexamination of lead (II) coordination preferences in sulfur-rich sites: implications for a critical mechanism of lead poisoning JS Magyar, TC Weng, CM Stern, DF Dye, BW Rous, JC Payne, ... Journal of the American Chemical Society 127 (26), 9495-9505, 2005 | 277 | 2005 |
Fundamental coordination chemistry, environmental chemistry, and biochemistry of lead (II) ES Claudio, HA Godwin, JS Magyar Progress in inorganic chemistry 51, 1-144, 2002 | 245 | 2002 |
Considerations of environmentally relevant test conditions for improved evaluation of ecological hazards of engineered nanomaterials PA Holden, JL Gardea-Torresdey, F Klaessig, RF Turco, M Mortimer, ... Environmental science & technology 50 (12), 6124-6145, 2016 | 244 | 2016 |
A fluorescent zinc probe based on metal-induced peptide folding HA Godwin, JM Berg Journal of the American Chemical Society 118 (27), 6514-6515, 1996 | 223 | 1996 |
Toxicity of Metal Oxide Nanoparticles in Escherichia coli Correlates with Conduction Band and Hydration Energies C Kaweeteerawat, A Ivask, R Liu, H Zhang, CH Chang, C Low-Kam, ... Environmental science & technology 49 (2), 1105-1112, 2015 | 174 | 2015 |
Nanomaterial categorization for assessing risk potential to facilitate regulatory decision-making H Godwin, C Nameth, D Avery, LL Bergeson, D Bernard, E Beryt, ... ACS nano 9 (4), 3409-3417, 2015 | 165 | 2015 |
Lead Fingers: Pb2+ Binding to Structural Zinc-Binding Domains Determined Directly by Monitoring Lead−Thiolate Charge-Transfer Bands JC Payne, MA ter Horst, HA Godwin Journal of the American Chemical Society 121 (29), 6850-6855, 1999 | 165 | 1999 |
Cu Nanoparticles Have Different Impacts in Escherichia coli and Lactobacillus brevis than Their Microsized and Ionic Analogues C Kaweeteerawat, CH Chang, KR Roy, R Liu, R Li, D Toso, H Fischer, ... ACS nano 9 (7), 7215-7225, 2015 | 147 | 2015 |
Synaptotagmin I is a molecular target for lead CMLS Bouton, LP Frelin, CE Forde, HA Godwin, J Pevsner Journal of neurochemistry 76 (6), 1724-1735, 2001 | 147 | 2001 |
Zebrafish high‐throughput screening to study the impact of dissolvable metal oxide nanoparticles on the hatching enzyme, ZHE1 S Lin, Y Zhao, Z Ji, J Ear, CH Chang, H Zhang, C Low‐Kam, K Yamada, ... Small 9 (9‐10), 1776-1785, 2013 | 143 | 2013 |
A multi-stakeholder perspective on the use of alternative test strategies for nanomaterial safety assessment AE Nel, E Nasser, H Godwin, D Avery, T Bahadori, L Bergeson, E Beryt, ... ACS nano 7 (8), 6422-6433, 2013 | 125 | 2013 |
Five reasons to use bacteria when assessing manufactured nanomaterial environmental hazards and fates PA Holden, JP Schimel, HA Godwin Current opinion in biotechnology 27, 73-78, 2014 | 116 | 2014 |