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一种用于测量新生儿血浆总同型半胱氨酸的新型高效液相色谱微量法。

A new HPLC micromethod to measure total plasma homocysteine in newborn.

作者信息

Bartesaghi S, Accinni R, De Leo G, Cursano C F, Campolo J, Galluzzo C, Vegezzi P G, Parodi O

机构信息

Sacra Famiglia FBF-AfaR, Erba (CO), Italy.

出版信息

J Pharm Biomed Anal. 2001 Mar;24(5-6):1137-41. doi: 10.1016/s0731-7085(00)00573-2.

Abstract

Total plasma homocysteine (tHcy) in children may be an useful biochemical marker for genetic risk of premature cardiovascular disease. We reported a rapid, isocratic HPLC method able to process very small amount of newborn plasma samples. A blood sample from heel capillary circulation was collected, using a heparinized capillary glass tube. Plasma sample from 1 to 10 microl was derivatized with ammonium-7-fluorobenzo-2-oxa-1,3-diazole-4-sulphonate after reduction with tri-n-butylphosphine and analyzed on Discovery C18 column, with a solution of acetonitrile-dihydrogenphosphate 0.1 M (8:92 v/v pH*2.1). This assay ensures a good recovery (95%), precision (CV 4.5%) and linearity (y=2.41x + 0.31, r=1). Due to its simplicity and reliability, our method is suitable for routine analysis of tHcy and other aminothiols (Cys, Cys-Gly, GSH) assessed for clinical and research purposes. With this HPLC method we have assayed tHcy levels in 1400 apparently healthy newborn babies (tHcy mean value=4.9+/-2.7 microM). In conclusion, this accurate and linear HPLC method allows measurement of tHcy in newborn during the routinary capillary blood collection in the fourth living day without any other invasive procedure.

摘要

儿童血浆总同型半胱氨酸(tHcy)可能是心血管疾病遗传风险的一个有用生化标志物。我们报道了一种快速等度高效液相色谱法,该方法能够处理极少量的新生儿血浆样本。使用肝素化毛细管玻璃管收集足跟毛细血管循环的血样。将1至10微升的血浆样本用三正丁基膦还原后,用7-氟苯并-2-恶唑-1,3-二氮杂环丁烷-4-磺酸盐铵进行衍生化,并在Discovery C18柱上进行分析,流动相为乙腈-0.1 M磷酸二氢盐溶液(8:92 v/v,pH 2.1)。该检测方法具有良好的回收率(95%)、精密度(CV 4.5%)和线性(y = 2.41x + 0.31,r = 1)。由于其简单性和可靠性,我们的方法适用于tHcy以及用于临床和研究目的评估的其他氨基硫醇(半胱氨酸、半胱氨酸-甘氨酸、谷胱甘肽)的常规分析。通过这种高效液相色谱法,我们检测了1400名看似健康的新生儿的tHcy水平(tHcy平均值 = 4.9±2.7 microM)。总之,这种准确且线性的高效液相色谱法允许在出生后第四天常规采集足跟毛细血管血时测量新生儿的tHcy,无需任何其他侵入性操作。

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