1998
DOI: 10.1016/s0378-4347(98)00373-9
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High-performance liquid chromatographic method for rapid and highly sensitive determination of histidine using postcolumn fluorescence detection with o-phthaldialdehyde

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Cited by 47 publications
(30 citation statements)
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“…19 As a result, separation of UCA isomers and histidine was achieved at 40˚C on a C18 reversed phase column with a 7:93 (v/v) mixture of acetonitrile and 20 mM phosphate buffer (pH 3.7) containing 5 mM sodium heptanesulfonate at a flow rate of 0.5 ml min -1 . After the separation, UV (264 nm) detector and the postcolumn derivatization with OPA were used for the sequential detections of UCA isomers and histidine.…”
Section: Hplc Methods For the Simultaneous Determinations Of Uca Isomementioning
confidence: 99%
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“…19 As a result, separation of UCA isomers and histidine was achieved at 40˚C on a C18 reversed phase column with a 7:93 (v/v) mixture of acetonitrile and 20 mM phosphate buffer (pH 3.7) containing 5 mM sodium heptanesulfonate at a flow rate of 0.5 ml min -1 . After the separation, UV (264 nm) detector and the postcolumn derivatization with OPA were used for the sequential detections of UCA isomers and histidine.…”
Section: Hplc Methods For the Simultaneous Determinations Of Uca Isomementioning
confidence: 99%
“…After the separation, UV (264 nm) detector and the postcolumn derivatization with OPA were used for the sequential detections of UCA isomers and histidine. The postcolumn derivatization was carried out under the same conditions as our original ones 19 except that acetonitrile was used instead of methanol as a solvent for OPA. Figure 1 shows chromatograms of a standard mixture of 20 amino acids, cis-and trans-UCA, glutathione and pyroglutamic acid, the last one is known to present in the skin.…”
Section: Hplc Methods For the Simultaneous Determinations Of Uca Isomementioning
confidence: 99%
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“…Up to date, there have emerged lots of L-histidine detection methods, including capillary electrophoresis (Zhang and Sun, 2004;Zhou et al, 2010), liquid chromatography (Tateda et al, 1998), electrochemistry Huang et al, 2012;Liang et al, 2011), colorimetry Zhang et al, 2012b), spectrofluorimetry (Elbaz et al, 2008;Folmer-Andersen et al, 2005;Fu et al, 2013;He et al, 2013He et al, , 2012Huang et al, 2012;Kong et al, 2011;Li et al, 2013;Oliveira et al, 2013;Wu and Yan, 2010;Zhou et al, 2014). These methods, while most successful, some of them still suffer drawbacks, including cumbersome optical equipment, expensive robotic facilities and complicated operation procedures, tedious pre-treatment of the biological sample, or lower limit detection etc.…”
Section: Introductionmentioning
confidence: 99%