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Synthesis, characterization, and application of griseofulvin surface molecularly imprinted polymers as the selective solid phase extraction sorbent in rat plasma samples

机译:Griseofulvin表面的合成,表征和施用分子压印聚合物作为大鼠等离子体样品的选择性固相萃取吸附剂

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In present study, an investigation was carried out to develop and validate an analytical method for the selective extraction and determination of griseofulvin (GSF) from plasma samples. For this purpose, a rational approach was made to synthesize and characterize the surface molecularly imprinted polymers (SMIPs). The SMIPs were utilized as solid phase extraction (SPE) sorbents. The SMIPs were prepared by using GSF as template molecule on the surface of modified silica particles through a non-covalent technique. The particles demonstrated high adsorption capacity (119.1 mu g/mL), fast adsorption equilibrium time (30 min) and good recognition selectivity for the template drug. The scanning electron microscopy and infrared spectroscopy were used to explain the structural and morphological characteristics of the SMIPs and surface non-imprinted polymers. The SPE method was combined with HPLC for plasma analysis. The method validation results demonstrated that the established method possessed good linearity for GSF ranging from 0.1 to 50 mu g/mL (R-2 = 0.997). The limit of detection for this method was 0.02 mu g/mL for rat plasma samples. The recoveries of GSF from spiked plasma samples were (90.7-97.7%) and relative standard deviations were (0.9-4.5%). Moreover, the SMIPs as selective SPE sorbent can be reused more than 8 times which is a clear advantage over commercial SPE sorbents. Finally, the usefulness of the proposed strategy was assessed by extraction and detection of GSF in real rat plasma samples. (C) 2019 Production and hosting by Elsevier B.V. on behalf of King Saud University.
机译:在目前的研究中,进行了调查以开发和验证从等离子体样品选择性提取和测定Griseofulvin(GSF)的分析方法。为此目的,制备合理的方法,合成和表征表面分子印迹聚合物(SMIP)。 SMIPS用作固相萃取(SPE)吸附剂。通过使用非共价技术在改性二氧化硅颗粒表面上使用GSF作为模板分子来制备SMIP。颗粒显示出高吸附能力(119.1μg/ ml),快速吸附平衡时间(30分钟)和模板药物的良好识别选择性。扫描电子显微镜和红外光谱用于解释缺水和表面非印记聚合物的结构和形态学特征。将SPE方法与HPLC合并进行等离子体分析。该方法验证结果表明,已建立的方法具有0.1至50μmg/ ml(R-2 = 0.997)的GSF具有良好的线性度。对于大鼠等离子体样品,该方法的检测极限为0.02μg/ ml。来自掺入血浆样品的GSF的回收率(90.7-97.7%)和相对标准偏差(0.9-4.5%)。此外,SMIPS作为选择性SPE吸附剂可以重复使用超过8次,这是在商业SPE吸附剂上清晰的优势。最后,通过在真正的大鼠等离子体样品中提取和检测GSF来评估所提出的策略的有用性。 (c)2019年Elsevier B.V的生产和托管。代表沙特大学国王。

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