Determination of dissolved thiols using solid-phase extraction and liquid chromatographic determination of fluorescently derivatized thiolic compounds.
暂无分享,去创建一个
M. Shafer | D. Armstrong | D. Karner | K. Vang | D. Tang
[1] Y. Hiraku,et al. Determination of intracellular glutathione and thiols by high performance liquid chromatography with a gold electrode at the femtomole level: comparison with a spectroscopic assay. , 2002, Biochimica et biophysica acta.
[2] C. Hung,et al. The distribution of biogenic thiols in surface waters of Galveston Bay , 2000 .
[3] H. Schat,et al. Derivatization of phytochelatins from Silene vulgaris, induced upon exposure to arsenate and cadmium: comparison of derivatization with Ellman's reagent and monobromobimane. , 2000, Journal of agricultural and food chemistry.
[4] P. Santschi,et al. Analysis of biogenic thiols in natural water samples by high-performance liquid chromatographic separation and fluorescence detection with ammonium 7-fluorobenzo-2-oxa-1,3-diazole-4-sulfonate (SBD-F) , 2000 .
[5] C. M. G. van den Berg,et al. Copper‐induced release of complexing ligands similar to thiols by Emiliania huxleyi in seawater cultures , 1999 .
[6] J. R. Kramer,et al. Structural chemistry and geochemistry of silver‐sulfur compounds: Critical review , 1999 .
[7] C. V. D. Berg,et al. Folic acid and glutathione in the water column of the North East Atlantic , 1998 .
[8] A. Kabziński,et al. The determination of environmental and industrial exposure to heavy metals based on the quantitative isolation of metallothionein from human fluids, with application of covalent affinity chromatography with thiol-disulphide interchange gel as a solid-phase extraction support. , 1998, Talanta.
[9] R. Moratti,et al. Study of factors affecting the determination of total plasma 7-fluorobenzo-2-oxa-1,3-diazole-4-sulfonate (SBD)-thiol derivatives by liquid chromatography. , 1998, Journal of chromatography. B, Biomedical sciences and applications.
[10] C. M. G. van den Berg,et al. Evidence for Strong Copper(I) Complexation by Organic Ligands in Seawater , 1998 .
[11] D. de Zeeuw,et al. Bioanalysis of captopril: two sensitive high-performance liquid chromatographic methods with pre- or postcolumn fluorescent labeling. , 1997, Journal of chromatography. B, Biomedical sciences and applications.
[12] F. Morel,et al. Export of Cadmium and Phytochelatin by the Marine Diatom Thalassiosira weissflogii , 1996 .
[13] J. Wijnholds,et al. HPLC analysis of nonprotein thiols in planktonic diatoms: pool size, redox state and response to copper and cadmium exposure , 1996 .
[14] B. Ahner,et al. Phytochelatin production in marine algae. 2. Induction by various metals , 1995 .
[15] W. Maccrehan,et al. Determination of hydrophilic thiols in sediment porewater using ion-pair liquid chromatography coupled to electrochemical detection , 1988 .
[16] P. Sarradin,et al. Determination of reduced sulfur compounds by high-performance liquid chromatography in hydrothermal seawater and body fluids from Riftia pachyptila , 1998 .
[17] M. Tabatabai. Biogenic Sulfur in the Environment (ACS Symposium Series 393) , 1991 .
[18] K. Mopper,et al. Field method for determination of traces of thiols in natural waters , 1990 .
[19] G. Newton,et al. Determination of low-molecular-weight thiols using monobromobimane fluorescent labeling and high-performance liquid chromatography. , 1987, Methods in enzymology.