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采用表面增强拉曼散射法对人血清中甲氨蝶呤进行定量分析——迈向治疗药物监测。

Quantification of Methotrexate in Human Serum Using Surface-Enhanced Raman Scattering-Toward Therapeutic Drug Monitoring.

机构信息

Center for Intelligent Drug Delivery and Sensing Using Microcontainers and Nanomechanics (IDUN), Department of Health Technology, Technical University of Denmark, Kongens Lyngby 2800, Denmark.

BioInnovation Institute Foundation, Copenhagen N 2200, Denmark.

出版信息

ACS Sens. 2021 Jul 23;6(7):2664-2673. doi: 10.1021/acssensors.1c00643. Epub 2021 Jun 18.

Abstract

Therapeutic drug monitoring (TDM) can improve clinical care when using drugs with pharmacokinetic variability and a narrow therapeutic window. Rapid, reliable, and easy-to-use detection methods are required in order to decrease the time of analysis and can also enable TDM in resource-limited settings or even at bedside. Monitoring methotrexate (MTX), an anticancer drug, is critical since it is needed to follow the drug clearance rate and decide how to administer the rescue drug, leucovorin (LV), in order to avoid toxicity and even death. We show that with the optimized nanopillar-assisted separation (NPAS) method using surface-enhanced Raman scattering, we were able to measure MTX in PBS and serum in the linear range of 5-150 μM and confirmed that MTX detection can be carried out even in the presence of LV. Additionally, when NPAS was combined with centrifugal filtration, a quantification limit of 2.1 μM for MTX in human serum sample was achieved. The developed detection method enables fast detection (10 min) and quantification of MTX from human serum (>90% accuracy). Furthermore, we show the potential of the developed method for TDM, when quantifying MTX from clinical samples, collected from patients who are undergoing high-dose MTX therapy.

摘要

治疗药物监测(TDM)在使用药代动力学变异性和治疗窗狭窄的药物时可以改善临床护理。需要快速、可靠和易于使用的检测方法,以减少分析时间,并且还可以在资源有限的环境中甚至在床边进行 TDM。监测甲氨蝶呤(MTX)是至关重要的,因为需要跟踪药物清除率并决定如何给予解毒药物亚叶酸(LV),以避免毒性甚至死亡。我们展示了使用表面增强拉曼散射的优化纳米柱辅助分离(NPAS)方法,我们能够在 PBS 和血清中在 5-150 μM 的线性范围内测量 MTX,并证实即使在 LV 存在的情况下也可以进行 MTX 检测。此外,当 NPAS 与离心过滤结合使用时,在人血清样本中实现了 MTX 的定量下限为 2.1 μM。开发的检测方法能够快速检测(10 分钟)并从人血清中定量 MTX(>90%的准确性)。此外,我们展示了当从接受高剂量 MTX 治疗的患者采集的临床样本中定量 MTX 时,该方法在 TDM 中的应用潜力。

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