Fig. 1. a) Total ion chromatogram (TIC) for the L. gibba sample, b) Extracted ion chromatogram of GSH and PCs from the TIC of L. gibba, c) Extracted ion chromatogram of GSH and PCs from the standard solution at 10 μg mL 1.Published as part of Lara-Almaz, Nancy, an, Zarazúa-Ortega, Graciela, Avila-P, Pedro, erez, Barrera-Díaz, Carlos Eduardo & Cedillo-Cruz, Alberto, 2021, Validation and uncertainty estimation of analytical method for quantification of phytochelatins in aquatic plants by UPLC-MS, pp. 1-9 in Phytochemistry (112643) 183 on page 3, DOI: 10.1016/j.phytochem.2020.112643, http://zenodo.org/record/829163
Fig. 4. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs using heterologous expr...
Reports on the occurrence of the cyanobacterial toxin cylindrospermopsin (CYN) have increased worldw...
Fig. 3. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs expressed in TX-TL. (A)...
Fig. 3. Contribution of the sources (%) to the total uncertainty for the quantification of GSH and P...
Fig. 2. Ishikawa diagram representing the main sources of uncertainties for measuring GSH and PC con...
Lara-Almaz, Nancy, an, Zarazúa-Ortega, Graciela, Avila-P, Pedro, erez, Barrera-Díaz, Carlos Eduardo,...
Phytochelatins (PCs) and glutathione (GSH) are -SH-containing compounds produced by a range of organ...
Fig. 2. Representative total ion current (TIC) UPLC-MS chromatogram of extracts of Posidonia oceanic...
A rapid, accurate and simple method was developed for the simultaneous determination of glutathione ...
Fig. 4. HPLC-MS chromatogram of desulfoglucosinolates (dGSLs) prepared from glucosinolates (GSLs) fr...
Study of the composition of biologically active fractions from plant extracts by advanced techniques...
Fig. 3. HPLC-MS chromatograms of desulfoglucosinolates (dGSLs) prepared from glucosinolates (GSLs) i...
Fig. 1. Positive- and negative-ion mass chromatograms and extracted wavelength chromatogram (300 ± 4...
Fig. 2. A - Typical HPLC profile of a Phyllospadix torreyi crude extract (recorded at 330 nm). Peak ...
Fig. 2. Detection of thioglucose-acylated glucosinolates (GSLs) by HPLC-MS of desulfated derivatives...
Fig. 4. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs using heterologous expr...
Reports on the occurrence of the cyanobacterial toxin cylindrospermopsin (CYN) have increased worldw...
Fig. 3. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs expressed in TX-TL. (A)...
Fig. 3. Contribution of the sources (%) to the total uncertainty for the quantification of GSH and P...
Fig. 2. Ishikawa diagram representing the main sources of uncertainties for measuring GSH and PC con...
Lara-Almaz, Nancy, an, Zarazúa-Ortega, Graciela, Avila-P, Pedro, erez, Barrera-Díaz, Carlos Eduardo,...
Phytochelatins (PCs) and glutathione (GSH) are -SH-containing compounds produced by a range of organ...
Fig. 2. Representative total ion current (TIC) UPLC-MS chromatogram of extracts of Posidonia oceanic...
A rapid, accurate and simple method was developed for the simultaneous determination of glutathione ...
Fig. 4. HPLC-MS chromatogram of desulfoglucosinolates (dGSLs) prepared from glucosinolates (GSLs) fr...
Study of the composition of biologically active fractions from plant extracts by advanced techniques...
Fig. 3. HPLC-MS chromatograms of desulfoglucosinolates (dGSLs) prepared from glucosinolates (GSLs) i...
Fig. 1. Positive- and negative-ion mass chromatograms and extracted wavelength chromatogram (300 ± 4...
Fig. 2. A - Typical HPLC profile of a Phyllospadix torreyi crude extract (recorded at 330 nm). Peak ...
Fig. 2. Detection of thioglucose-acylated glucosinolates (GSLs) by HPLC-MS of desulfated derivatives...
Fig. 4. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs using heterologous expr...
Reports on the occurrence of the cyanobacterial toxin cylindrospermopsin (CYN) have increased worldw...
Fig. 3. UPLC-MS analysis of isoquercitrin converted from quercetin by ArUGTs expressed in TX-TL. (A)...