scholarly journals Non-diffusing radiochromic leuco-crystal violet hydrogel dosimeter

2017 ◽  
Vol 847 ◽  
pp. 012009 ◽  
Author(s):  
K J Jordan ◽  
T Lindenmaier ◽  
K H Dekker
2018 ◽  
Vol 35 (8) ◽  
pp. 1484-1496 ◽  
Author(s):  
Marc H. G. Berntssen ◽  
Rita Hannisdal ◽  
Louise Buttle ◽  
Rudolf Hoogenveen ◽  
Marcel Mengelers ◽  
...  

1995 ◽  
Vol 50 (3-4) ◽  
pp. 209-219 ◽  
Author(s):  
Walter A. Prtitz

Selenite and selenocystamine [(CyaSe)2] efficiently activate the decomposition of H2O2 y GSH and by other thiols, as demonstrated using a leuco crystal violet POD-based H2O2 assay which is applicable (unlike other assays) also in presence of thiols. The GPx-like activities were estimated to be 3.6 and 2.7 μmol H2O2/min per μmol SeO32- and (CyaSe)2, respectively. Both selenium compounds also activate reduction of the heterocyclic N-oxide resazurin (RN→O) to resorufin (RN) by GSH; H2O2 competes with reduction of this dye. GSSeH and CyaSeH, formed by interaction of GSH with SeO32- and (CyaSe)2, respectively, are likely to be the active reductants. CyaSeH, generated γ-radiolytically from (CyaSe)2, exhibits an absorption peak at 243 nm and is removed by H2O2 with a rate constant of 9.7x102 ᴍ-1 s-1, and slightly slower by hydroperoxides. We have no evidence for one-electron interactions between GSSeH or CyaSeH and H2O2, with formation of free radical intermediates, as previously proposed in the case of selenium-activated reduction of cytochrome c by GSH (Levander et al., Biochemistry 23, 4591-4595 (1973)). Our results can be explained by O-atom transfer from the substrate to the active selenol group. RSeH + H2O2 (RN→O)→RSeOH + H2O (RN), and recycling of RSeOH to RSeH (+ H2O) by GSH, analogous to the selenenic acid pathway of GPx. The substrate specificity appears to be different, however, in that GPx is unable to catalyse RN→O reduction, and GSSeH hardly catalyses the decomposition of cumene- or t-butyl-hydroperoxide; CyaSeH, on the other hand, is active also with the hydroperoxides. RN→O is reduced to RN also by certain oxidizing free radicals, e.g. by the thiyl CyaS·; O -atom transfer may in this case lead to the generation of reactive oxyl radicals.


2009 ◽  
Vol 54 (22) ◽  
pp. 6791-6808 ◽  
Author(s):  
Steven Babic ◽  
Jerry Battista ◽  
Kevin Jordan

2013 ◽  
Vol 96 (5) ◽  
pp. 1152-1157 ◽  
Author(s):  
Dominique Hurtaud-Pessel ◽  
Pierrick Couëdor ◽  
Eric Verdon ◽  
Dawn Dowell

Abstract During the AOAC Annual Meeting held from September 30 to October 3, 2012 in Las Vegas, NV, the Expert Review Panel (ERP) on Veterinary Drug Residues reviewed data for the method for determination of residues of three triphenylmethane dyes and their metabolites (malachite green, leuco malachite green, crystal violet, leuco crystal violet, and brilliant green) in aquaculture products by LC/MS/MS, previously published in the Journal of Chromatography A 1218, 1632–1645 (2006). The method data were reviewed and compared to the standard method performance requirements (SMPRs) found in SMPR 2009.001, published in AOAC's Official Methods of Analysis, 19th Ed. (2012). The ERP determined that the data were acceptable, and the method was approved AOAC Official First Action. The method uses acetonitrile to isolate the analyte from the matrix. Then determination is conducted by LC/MS/MS with positive electrospray ionization. Accuracy ranged from 100.1 to 109.8% for samples fortified at levels of 0.5, 0.75, 1.0, and 2.0 μg/kg. Precision ranged from 2.0 to 10.3% RSD for the intraday samples and 1.9 to 10.6% for the interday samples analyzed over 3 days. The described method is designed to accurately operate in the analytical range from 0.5 to 2 μg/kg, where the minimum required performance limit for laboratories has been fixed in the European Union at 2.0 μg/kg for these banned substances and their metabolites. Upper levels of concentrations (1–100 μg/kg) can be analyzed depending on the different optional calibrations used.


2019 ◽  
Vol 64 (17) ◽  
pp. 175017 ◽  
Author(s):  
Konstantina Kouvati ◽  
Malwina Jaszczak ◽  
Panagiotis Papagiannis ◽  
Slawomir Kadlubowski ◽  
Radosław Wach ◽  
...  

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