Hemmati Maryam, Rajabi Maryam, Asghari Alireza
Department of Chemistry, Semnan University, Semnan 2333383-193, Iran.
Department of Chemistry, Semnan University, Semnan 2333383-193, Iran.
J Chromatogr A. 2017 Nov 17;1524:1-12. doi: 10.1016/j.chroma.2017.09.045. Epub 2017 Sep 21.
In this research work, two consecutive dispersive solid/liquid phase microextractions based on efficient extraction media were developed for the influential and clean pre-concentration of clonazepam and lorazepam from complicated bio-samples. The magnetism nature of the proposed nanoadsorbent proceeded the clean-up step conveniently and swiftly (∼5min), pursued by a further enrichment via a highly effective and rapid emulsification microextraction process (∼4min) based on a deep eutectic solvent (DES). Finally, the instrumental analysis step was practicable via high performance liquid chromatography-ultraviolet detection. The solid phase used was an adequate magnetic nanocomposite termed as polythiophene-sodium dodecyl benzene sulfonate/iron oxide (PTh-DBSNa/FeO), easily and cost-effectively prepared by the impressive co-precipitation method followed by the efficient in situ sonochemical oxidative polymerization approach. The identification techniques viz. FESEM, XRD, and EDX certified the supreme physico-chemical properties of this effective nanosorbent. Also the powerful liquid extraction agent, DES, based on bio-degradable choline chloride, possessed a high efficiency, tolerable safety, low cost, and facile and mild synthesis route. The parameters involved in this versatile hyphenated procedure, efficiently evaluated via the central composite design (CCD), showed that the best extraction conditions consisted of an initial pH value of 7.2, 17mg of the PTh-DBSNa/FeO nanocomposite, 20 air-agitation cycles (first step), 245μL of methanol, 250μL of DES, 440μL of THF, and 8 air-agitation cycles (second step). Under the optimal conditions, the understudied drugs could be accurately determined in the wide linear dynamic ranges (LDRs) of 4.0-3000ngmL and 2.0-2000ngmL for clonazepam and lorazepam, respectively, with low limits of detection (LODs) ranged from 0.7 to 1.0ngmL. The enrichment factor (EF) and percentage extraction recovery (%ER) values were found to be 75 and 57% for clonazepam and 56 and 42% for lorazepam at the spiked level of 75.0ngmL, possessing proper repeatabilities (relative standard deviation values (RSDs) below 5.9%, n=3). These valid analytical features provided quite accurate drug analyses at therapeutically low spans and levels below potentially toxic domains, implying a proper purification/enrichment of the proposed microextraction procedure.
在本研究工作中,基于高效萃取介质开发了两种连续的分散固/液相微萃取方法,用于从复杂生物样品中有影响地、清洁地预富集氯硝西泮和劳拉西泮。所提出的纳米吸附剂的磁性特性方便快捷地(约5分钟)进行了净化步骤,随后通过基于深共熔溶剂(DES)的高效快速乳化微萃取过程(约4分钟)进一步富集。最后,通过高效液相色谱 - 紫外检测进行仪器分析步骤。所使用的固相是一种合适的磁性纳米复合材料,称为聚噻吩 - 十二烷基苯磺酸钠/氧化铁(PTh - DBSNa/FeO),通过令人印象深刻的共沉淀法,随后采用高效的原位声化学氧化聚合法,轻松且经济高效地制备而成。鉴定技术,即场发射扫描电子显微镜(FESEM)、X射线衍射(XRD)和能谱分析(EDX),证实了这种有效纳米吸附剂的卓越物理化学性质。此外,基于可生物降解的氯化胆碱的强大液体萃取剂DES具有高效率、可接受的安全性、低成本以及简便温和的合成路线。通过中心复合设计(CCD)有效评估的这种多功能联用程序中涉及的参数表明,最佳萃取条件包括初始pH值为7.2、17mg的PTh - DBSNa/FeO纳米复合材料、20次空气搅拌循环(第一步)、245μL甲醇、250μL DES、440μL四氢呋喃和8次空气搅拌循环(第二步)。在最佳条件下,对于氯硝西泮和劳拉西泮,分别在4.0 - 3000ng/mL和2.0 - 2000ng/mL的宽线性动态范围(LDRs)内可以准确测定所研究的药物,检测限(LODs)低至0.7至1.0ng/mL。在75.0ng/mL的加标水平下,氯硝西泮的富集因子(EF)和萃取回收率(%ER)值分别为75和57%,劳拉西泮为56和42%,具有良好的重复性(相对标准偏差值(RSDs)低于5.9%,n = 3)。这些有效的分析特征在治疗低范围和低于潜在毒性域的水平下提供了相当准确的药物分析,这意味着所提出的微萃取程序具有适当的净化/富集效果。