William E Antholine
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Explore the profile of William E Antholine including associated specialties, affiliations and a list of published articles.
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64
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1477
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Recent Articles
1.
Campanella A, Nguyen M, Zhang J, Ngendahimana T, Antholine W, Eaton G, et al.
Dalton Trans
. 2021 Apr;
50(15):5342-5350.
PMID: 33881070
Understanding how the ligand shell controls low-frequency electron paramagnetic resonance (EPR) spectroscopic properties of metal ions is essential if they are to be used in EPR-based bioimaging schemes. In this...
2.
Antholine W, Myers C
Int J Mol Sci
. 2019 Jun;
20(12).
PMID: 31234559
An electron paramagnetic resonance (EPR) method was used to determine the concentration of the antitumor agent Triapine in BEAS-2B cells when Triapine was bound to iron (Fe). Knowledge of the...
3.
Antholine W
Int J Mol Sci
. 2019 May;
20(10).
PMID: 31091724
Low-frequency electron paramagnetic resonance (EPR) spectra were obtained for the Co complex of ethylene diamine tetraacetic acid (CoEDTA). It was found that the cobalt hyperfine at -mid is better resolved...
4.
Antholine W, Vasquez-Vivar J, Quirk B, Whelan H, Wu P, Park J, et al.
Int J Mol Sci
. 2019 Mar;
20(5).
PMID: 30845710
In a previous study on chromate toxicity, an increase in the 2Fe2S electron paramagnetic resonance (EPR) signal from mitochondria was found upon addition of chromate to human bronchial epithelial cells...
5.
Antholine W, Zhang S, Gonzales J, Newman N
Int J Mol Sci
. 2018 Nov;
19(11).
PMID: 30423944
Low-frequency electron paramagnetic resonance (EPR) is used to extract the EPR parameter -mid and support the approximate X-band value of -mid for Ba(CoZnTa)O₃. Although the cobalt hyperfine structure for the...
6.
Chitambar C, Al-Gizawiy M, Alhajala H, Pechman K, Wereley J, Wujek R, et al.
Mol Cancer Ther
. 2018 Mar;
17(6):1240-1250.
PMID: 29592883
Gallium, a metal with antineoplastic activity, binds transferrin (Tf) and enters tumor cells via Tf receptor1 (TfR1); it disrupts iron homeostasis leading to cell death. We hypothesized that TfR1 on...
7.
Johnson B, Antholine W, Lindeman S, Graham M, Mankad N
J Am Chem Soc
. 2016 Sep;
138(40):13107-13110.
PMID: 27685680
During bacterial denitrification, two-electron reduction of NO occurs at a [Cu(μ-S)] catalytic site (Cu*) embedded within the nitrous oxide reductase (NOR) enzyme. In this Communication, an amidinate-supported [Cu(μ-S)] model cluster...
8.
Lane A, Barnes C, Antholine W, Wang D, Fiedler A, Walensky J
Inorg Chem
. 2015 Aug;
54(17):8509-17.
PMID: 26252561
Molecular examples of mixed-valence copper complexes through chemical oxidation are rare but invoked in the mechanism of substrate activation, especially oxygen, in copper-containing enzymes. To examine the cooperative chemistry between...
9.
Johnson B, Antholine W, Lindeman S, Mankad N
Chem Commun (Camb)
. 2015 Jun;
51(59):11860-3.
PMID: 26111160
To model the (His)7Cu4Sn (n = 1 or 2) active sites of nitrous oxide reductase, the first Cu4(μ4-S) cluster supported only by nitrogen donors has been prepared using amidinate supporting...
10.
Vollmer M, Machan C, Clark M, Antholine W, Agarwal J, Schaefer 3rd H, et al.
Organometallics
. 2015 Apr;
34(1):3-12.
PMID: 25892841
The synthesis and characterization of new Mn(I)- and Re(I)-centered organometallic complexes fashioned with 1,4-diazabutadiene (DAB) ligands is reported. Ten compounds of the type -(α-diimine)M(CO)Br (M = Mn, Re) were obtained...