乙酰丙酮与甲醛缩合反应的高效液相色谱法和荧光检测法测定尿中delta-氨基乙酰丙酸的改进。

Y Endo, A Okayama, G Endo, T Ueda, N Nakazono, S Horiguchi
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引用次数: 8

摘要

我们改进了柱前乙酰丙酮和甲醛衍生化后用hplc -荧光仪测定尿中delta-氨基乙酰丙酸(ALA)的方法,得到了一个稳定的ALA衍生物,各种尿液成分对ALA没有任何影响,从尿液样品中ALA的回收率为100.9 +/- 5.5%,n = 85)。修改后的程序为:尿样20微升,乙酰丙酮溶液5 ml(乙酰丙酮/乙醇/含有4毫克NaCl的蒸馏水);15/10/75),与9.3%甲醛溶液0.45 ml混合,煮沸15 min。用高效液相色谱法分离ALA的荧光衍生物,荧光仪在Ex 246 nm和Em 458 nm处进行分析。使用梯度程序,ALA衍生物的保留时间为7.3 min,每隔13 min可重复分析。该方法测定的尿液ALA浓度与Mauzerall-Granick (M-G)法测定的ALA浓度呈显著相关(n = 85, r = 0.993, p < 0.001)。然而,我们的方法得到的值低于用M-G方法得到的值。40名无铅工人尿ALA浓度范围为0.1 ~ 2.3 mg/g肌酐,平均+/- SD为1.1 +/- 0.4 mg/g肌酐。
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Improvement of urinary delta-aminolevulinic acid determination by HPLC and fluorescence detection using condensing reaction with acetylacetone and formaldehyde.

We improved the method for determining urinary delta-aminolevulinic acid (ALA) by HPLC-fluorometer after pre-column derivatization with acetylacetone and formaldehyde, and a stable ALA derivative was obtained without any effect from various urinary components as demonstrated by the complete recovery of ALA (100.9 +/- 5.5%, n = 85) from the urine samples. The modified procedure was as follows: Twenty microliters of urine sample, 5 ml of acetylacetone solution (acetylacetone/ethanol/distilled water containing 4 milligrams of NaCl; 15/10/75), and 0.45 ml of 9.3% formaldehyde solution were mixed and boiled for 15 min. The fluorescent derivative of ALA was separated and analyzed by HPLC with the fluorometer at Ex 246 nm and Em 458 nm. Using a gradient program, the retention time of the ALA derivative was 7.3 min and the analysis could be repeated at 13 min intervals. Concentrations of ALA in urine samples measured by this method were significantly correlated with those measured by the Mauzerall-Granick (M-G) method (n = 85, r = 0.993, p < 0.001). The values obtained by our method were, however, lower than those obtained by the M-G method. Urinary ALA concentrations of 40 non-lead workers ranged from 0.1 to 2.3 mg/g creatinine with the mean +/- SD of 1.1 +/- 0.4 mg/g creatinine as measured by the present method.

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