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基于纸质的分子印迹-互穿聚合物网络用于现场采集和微萃取干血斑,用于毛细管电泳测定卡马西平。

Paper-based molecularly imprinted-interpenetrating polymer network for on-spot collection and microextraction of dried blood spots for capillary electrophoresis determination of carbamazepine.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Mahidol University, 447 Sri-Ayudhaya Rd., Rajathevee, Bangkok, 10400, Thailand.

Institute of Analytical Chemistry of the Czech Academy of Sciences, Veveří 97, 602 00, Brno, Czech Republic.

出版信息

Anal Bioanal Chem. 2020 May;412(12):2721-2730. doi: 10.1007/s00216-020-02523-w. Epub 2020 Feb 27.

DOI:10.1007/s00216-020-02523-w
PMID:32103309
Abstract

Carbamazepine is an antiepileptic drug with a narrow therapeutic index, which requires an efficient method for blood level monitoring. Finger-prick dried blood spot (DBS) collection is an alternative microsampling technique, which is less invasive than conventional venipuncture. Paper-based molecularly imprinted-interpenetrating polymer networks (MI-IPN) were developed as blood collection devices, which allowed for selective on-spot microextraction of carbamazepine from DBS. A hybrid of homogeneous polystyrene and silica gel polymer was synthesized and coated on a Whatman Grade 1 filter paper. Proteins and other interferences in the blood samples were eliminated by using the MI-IPN collection devices, and the resulting DBS extracts were suitable for direct injection into the capillary electrophoretic instrument. The lower limit of quantitation of 4 μg/mL in capillary blood was achieved by the sweeping-micellar electrokinetic chromatography method using a KCl-containing matrix, which was sufficient for the therapeutic drug monitoring purposes. Method accuracies were in the range of 88.4 ± 4.5% to 94.5 ± 2.7% with RSD values ≤ 5.1%. The developed paper-based MI-IPN provided superior extraction efficiencies (92.2 ± 2.5%) in comparison with commercially available DBS collection cards, i.e., Whatman 903 protein saver card (59.8 ± 2.8%) and GenCollect™ 2.0 card (47.2 ± 1.4%). The paper-based MI-IPN devices for DBS collection and on-spot extraction were characterized by simple fabrication, low costs, disposability, and reduction in sample preparation steps, and their further developments might open new perspectives in clinical applications, such as in therapeutic drug monitoring. Graphical abstract.

摘要

卡马西平是一种治疗指数较窄的抗癫痫药物,需要有效的血药浓度监测方法。指尖干式血斑(DBS)采集是一种替代的微采样技术,比传统静脉穿刺的侵入性更小。基于纸的分子印迹-互穿聚合物网络(MI-IPN)被开发为血液采集装置,允许从 DBS 中选择性地现场微提取卡马西平。均相聚苯乙烯和硅胶聚合物的混合物被合成并涂覆在 Whatman Grade 1 滤纸上。通过 MI-IPN 收集装置消除了血液样本中的蛋白质和其他干扰物,得到的 DBS 提取物适合直接注入毛细管电泳仪。使用含 KCl 的基质,通过胶束电动色谱法,在毛细管血中实现了 4μg/mL 的定量下限,足以满足治疗药物监测的目的。方法准确度在 88.4±4.5%至 94.5±2.7%之间,RSD 值≤5.1%。与市售的 DBS 采集卡(即 Whatman 903 蛋白保存卡和 GenCollect™2.0 卡)相比,基于纸的 MI-IPN 提供了更高的提取效率(92.2±2.5%)。基于纸的 MI-IPN 用于 DBS 采集和现场提取的特点是制造简单、成本低、一次性使用以及减少样品制备步骤,其进一步发展可能为临床应用开辟新的前景,例如治疗药物监测。

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