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首页> 外文期刊>Analytica chimica acta >Sub-picomole high-performance liquid chromatographic/mass spectrometric determination of glutathione in the maize (Zea mays L.) kernels exposed to cadmium
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Sub-picomole high-performance liquid chromatographic/mass spectrometric determination of glutathione in the maize (Zea mays L.) kernels exposed to cadmium

机译:亚双酚高效液相色谱/质谱法测定暴露于镉的玉米(Zea mays L.)籽粒中的谷胱甘肽

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Changes in fresh weight,total protein amounts (Bradford's method),cadmium concentration (DPASV) and glutathione content (HPLC/MS) were studied in maize kernels cultivated for 5 days at three different cadmium concentrations (0,10 and 100 mumol l(~-1) CdCl_2).A highly sensitive HPLC/MS method was used for the determination of glutathione on a reversed-phase Atlantis dCjg chromatographic column (150 mm x 2.1 mm,3 mum particle size).An isocratic mode with acetonitrile-0.01% TFA (5:95,flow rate 0.1 ml min~(-1) and 30 deg C) was applied.The mlz spectra and the data for the selected ion monitoring (SIM) mode were recorded at m/z for glutathione 308 -> 179.Cadmium concentration was measured by a differential pulse adsorptive stripping voltammetry (DPASV) after deposition on a hanging mercury drop electrode (HMDE) at potential -0.7 V (accumulation time 180 s,acetate buffer of pH 3.6,22 deg C).An AUTOLAB with a VA-Stand 663 and a three-electrode system consisting of the HMDE as a working electrode with area 0.4 mm~2,an Ag/AgCl/3 mol l~(-1) KC1 as a reference electrode and a Pt-wire as an auxiliary electrode was employed.The maize kernels exposed to the highest cadmium concentration (100 mumol l~(-1)) germinated formerly and much better.A rapid increase of the fresh weight probably relates with more intensive uptake of water in order to decrease cadmium concentration.An intensive preservation of homeostasis of Cd~(2+) ions in the germinating plants by defending mechanisms might explain differences of uptake rate of cadmium.The linear increase of GSH content with the exposure time at all studied concentration suggests the defending mechanisms might be triggered by concentrations of a heavy metal.
机译:研究了在三种不同镉浓度(0,10和100μmoll(〜)的条件下培养5天的玉米粒中鲜重,总蛋白量(Bradford方法),镉浓度(DPASV)和谷胱甘肽含量(HPLC / MS)的变化。 -1)CdCl_2)。使用高灵敏度的HPLC / MS方法在反相Atlantis dCjg色谱柱(150 mm x 2.1 mm,3微米粒径)上测定谷胱甘肽。乙腈-0.01%的等度模式使用TFA(5:95,流速0.1 ml min〜(-1)和30摄氏度)。谷胱甘肽308的mlz谱图和所选离子监测(SIM)模式的数据以m / z记录-> 179.镉的浓度是通过在-0.7 V电位(累积时间180 s,pH 3.6,22℃的乙酸缓冲液)上沉积在悬挂的汞滴电极(HMDE)上后,通过差分脉冲吸附溶出伏安法(DPASV)测量的。具有VA-Stand 663的AUTOLAB和由HMDE组成的三电极系统作为工作电极电极面积为0.4 mm〜2,以Ag / AgCl / 3 mol l〜(-1)KCl为参比电极,以Pt丝为辅助电极,玉米籽粒暴露于最高镉浓度(100μmol l〜(-1))发芽较早,发芽更好,鲜重的快速增加可能与更大量地吸收水分以降低镉的浓度有关.Cd〜(2+)离子在植物体内的稳态保存在所有研究浓度下,谷胱甘肽含量随暴露时间的线性增加表明,防御机制可能由重金属的浓度触发。

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