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首页> 外文期刊>Therapeutic Drug Monitoring >Determination of platinum complexes in clinical samples by a rapid flameless atomic absorption spectrometry assay.
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Determination of platinum complexes in clinical samples by a rapid flameless atomic absorption spectrometry assay.

机译:快速无焰原子吸收光谱法测定临床样品中的铂配合物。

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摘要

The frequent use of platinum (Pt) complexes in cancer chemotherapy and the application of new therapeutic options and dosing strategies have increased the need for rapid analytic procedures to determine Pt concentrations in the biologic fluids of patients. Therefore a flameless atomic absorption spectrometry method for the quantification of Pt in plasma and ultrafiltrate was developed and validated. A simple sample preparation of only one dilution step was established. Only 400 microL of whole blood was required for duplicate analysis of Pt in both matrices. The matrix-specific temperature programs took less than 75 seconds. The lower limit of quantification was 40 ng Pt/mL and 20 ng Pt/mL for plasma and ultrafiltrate, respectively. Suitable linearity could be reached using separate calibration curves for the high and low Pt concentration ranges. Recovery of Pt was complete, and there were no major stability problems. The accuracy and precision of the new method met the international criteria for the validation of bioanalytic methods. In addition, the use of different anticoagulants for clinical sampling, ultrafiltration systems, and ultrafiltration conditions were investigated. The assay has already been extensively applied to pharmacokinetic studies. In conclusion, the new Pt assay proved to be rapid, simple, sensitive, and suitable for clinical use.
机译:铂(Pt)配合物在癌症化学疗法中的频繁使用以及新治疗方法和剂量策略的应用增加了对快速分析程序确定患者生物液中Pt浓度的需求。因此,开发并验证了用于定量测定血浆和超滤液中Pt的无焰原子吸收光谱法。建立了仅一个稀释步骤的简单样品制备方法。在两种基质中重复分析Pt只需要400微升全血。特定于基质的温度程序耗时不到75秒。血浆和超滤液的定量下限分别为40 ng Pt / mL和20 ng Pt / mL。使用高和低Pt浓度范围的单独校准曲线可以达到合适的线性度。 Pt的回收已完成,并且没有重大的稳定性问题。该新方法的准确性和精密度符合生物分析方法验证的国际标准。此外,还研究了在临床采样,超滤系统和超滤条件下使用不同抗凝剂的情况。该测定法已经广泛应用于药代动力学研究。总之,新的Pt检测方法被证明是快速,简单,灵敏的,并且适合临床使用。

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