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水相为流动相的温度响应色谱法用于治疗药物监测。

Temperature responsive chromatography for therapeutic drug monitoring with an aqueous mobile phase.

机构信息

Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato, Tokyo, 105-8512, Japan.

出版信息

Sci Rep. 2021 Dec 6;11(1):23508. doi: 10.1038/s41598-021-02998-2.

Abstract

Therapeutic drug monitoring is a key technology for effective pharmacological treatment. In the present study, a temperature-responsive chromatography column was developed for safe and simple therapeutic drug monitoring without the use of organic solvents. Poly(N-isopropylacrylamide) (PNIPAAm) hydrogel-modified silica beads were prepared via a condensation reaction and radical polymerization. The temperature-dependent elution behavior of the drugs was observed using a PNIPAAm-modified silica-bead packed column and an all-aqueous mobile phase. Sharp peaks with reproducible retention times were observed at temperatures of 30 °C or 40 °C because the PNIPAAm hydrogel on the silica beads shrinks at these temperatures, limiting drug diffusion into the PNIPAAm hydrogel layer. The elution behavior of the sample from the prepared column was examined using a mixture of serum and model drugs. The serum and drugs were separated on the column at 30 °C or 40 °C, and the concentration of the eluted drug was obtained using the calibration curve. The results show that the prepared chromatography column would be useful for therapeutic drug monitoring because the drug concentration in serum can be measured without using organic solvents in the mobile phase and without any need for sample preparation.

摘要

治疗药物监测是实现有效药物治疗的关键技术。在本研究中,开发了一种无需使用有机溶剂的温度响应型色谱柱,用于安全、简单的治疗药物监测。通过缩合反应和自由基聚合制备了聚(N-异丙基丙烯酰胺)(PNIPAAm)水凝胶修饰的硅胶珠。通过填充有 PNIPAAm 修饰的硅胶珠的柱和全水相流动相观察了药物的温度依赖性洗脱行为。在 30°C 或 40°C 的温度下观察到具有重现保留时间的尖锐峰,因为硅胶珠上的 PNIPAAm 水凝胶在这些温度下收缩,限制了药物扩散到 PNIPAAm 水凝胶层中。使用血清和模型药物的混合物检查了从制备的柱中洗脱的样品的洗脱行为。在 30°C 或 40°C 下,血清和药物在柱上分离,使用校准曲线获得洗脱药物的浓度。结果表明,由于在流动相中不使用有机溶剂并且不需要样品制备即可测量血清中的药物浓度,因此制备的色谱柱将可用于治疗药物监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f8/8648775/e878c8218b76/41598_2021_2998_Fig1_HTML.jpg

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