A high-throughput LC-MS/MS assay for piperaquine from dried blood spots: Improving malaria treatment in resource-limited settings

IF 3.1 4区 医学 Q2 MEDICAL LABORATORY TECHNOLOGY Journal of Mass Spectrometry and Advances in the Clinical Lab Pub Date : 2024-01-01 DOI:10.1016/j.jmsacl.2023.12.004
Daniel Blessborn , Natpapat Kaewkhao , Joel Tarning
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Abstract

Background

Malaria is a parasitic disease that affects many of the poorest economies, resulting in approximately 241 million clinical episodes and 627,000 deaths annually. Piperaquine, when administered with dihydroartemisinin, is an effective drug against the disease. Drug concentration measurements taken on day 7 after treatment initiation have been shown to be a good predictor of therapeutic success with piperaquine. A simple capillary blood collection technique, where blood is dried onto filter paper, is especially suitable for drug studies in remote areas or resource-limited settings or when taking samples from children, toddlers, and infants.

Methods

Three 3.2 mm discs were punched out from a dried blood spot (DBS) and then extracted in a 96-well plate using solid phase extraction on a fully automated liquid handling system. The analysis was performed using LC-MS/MS with a calibration range of 3 – 1000 ng/mL.

Results

The recovery rate was approximately 54–72 %, and the relative standard deviation was below 9 % for low, middle and high quality control levels. The LC-MS/MS quantification limit of 3 ng/mL is sensitive enough to detect piperaquine for up to 4–8 weeks after drug administration, which is crucial when evaluating recrudescence and drug resistance development. While different hematocrit levels can affect DBS drug measurements, the effect was minimal for piperaquine.

Conclusion

A sensitive LC-MS/MS method, in combination with fully automated extraction in a 96-well plate format, was developed and validated for the quantification of piperaquine in DBS. The assay was implemented in a bioanalytical laboratory for processing large-scale clinical trial samples.

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从干血斑中提取哌喹的高通量 LC-MS/MS 检测方法:改善资源有限环境中的疟疾治疗
背景疟疾是一种寄生虫病,影响着许多最贫穷的经济体,每年约有 2.41 亿人发病,62.7 万人死亡。哌喹与双氢青蒿素合用是一种有效的抗疟药物。在开始治疗后的第 7 天测量药物浓度,可以很好地预测哌喹的治疗效果。方法从干血斑(DBS)上打出三个 3.2 毫米的圆片,然后在全自动液体处理系统上使用固相萃取法在 96 孔板中进行提取。结果回收率约为 54-72%,低、中、高质控水平的相对标准偏差均低于 9%。LC-MS/MS 的定量限为 3 纳克/毫升,其灵敏度足以在用药后 4-8 周内检测到哌喹,这对于评估复发和耐药性发展至关重要。结论 开发并验证了一种灵敏的 LC-MS/MS 方法,该方法结合了 96 孔板全自动萃取技术,用于定量检测 DBS 中的哌喹。该检测方法已在生物分析实验室实施,用于处理大规模临床试验样本。
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来源期刊
Journal of Mass Spectrometry and Advances in the Clinical Lab
Journal of Mass Spectrometry and Advances in the Clinical Lab Health Professions-Medical Laboratory Technology
CiteScore
4.30
自引率
18.20%
发文量
41
审稿时长
81 days
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