Nikolaev Institute of Inorganic Chemistry, Siberian Division, Russian Academy of Sciences, Pr Akademika Lavrent'eva 3, Novosibirsk 630090, Russia.
Talanta. 2010 Mar 15;80(5):2187-90. doi: 10.1016/j.talanta.2009.10.046. Epub 2009 Oct 29.
Availability of many biological samples in ample quantity for biomedical investigations sometimes is very restricted. Therefore, there is the need for the simple techniques allowing the analysis of small amount samples. In the present work the two-jet plasma atomic emission spectrometry techniques for the determination of Fe, P, Ca, Mg, Zn, and Cu in whole blood are proposed. The first technique is developed for direct analysis of freeze-dried blood. The sample preparation consisted in a dilution of blood powder (particle size 20 microm or less) with a spectroscopic buffer (graphite powder containing 15 wt.% NaCl). For the analysis of liquid whole blood, previous carbonization (not ashing) of blood evaporated on graphite powder was applied. Calibration samples based on graphite powder containing 15 wt.% NaCl were used. The validation of the techniques was confirmed by the use of different sample preparation procedures (wet acid digestion and dry carbonization), the analysis of IAEA A-13 reference material (freeze-dried bovine whole blood), and the comparison of the results obtained by the proposed technique with the results of the stripping voltammetry technique. Just 20-50 microL of whole blood is quite enough for all determinations. The proposed techniques were successfully applied for the simultaneous determination of Fe, P, Ca, Mg, Zn, and Cu in whole blood of living experimental rats and mice and human blood.
有时,可用于生物医学研究的大量生物样本的可用性受到很大限制。因此,需要简单的技术来分析少量的样本。本工作提出了用于全血中 Fe、P、Ca、Mg、Zn 和 Cu 测定的双射流等离子体原子发射光谱技术。第一种技术是用于直接分析冻干全血的。样品制备包括将血液粉末(粒径小于 20 微米)与光谱缓冲液(含 15wt%NaCl 的石墨粉)稀释。对于液态全血的分析,采用了将蒸发在石墨粉上的血液进行碳化(非灰化)的方法。使用基于含 15wt%NaCl 的石墨粉的校准样品。通过使用不同的样品制备程序(湿酸消解和干法碳化)、对 IAEA A-13 参考物质(冻干牛全血)的分析以及与提出的技术的结果进行比较,验证了技术的有效性。技术。只需 20-50μL 的全血即可完成所有测定。所提出的技术成功地应用于活体实验大鼠和小鼠以及人血中 Fe、P、Ca、Mg、Zn 和 Cu 的同时测定。