Department of Plastic and reconstructive Microsurgery, China-Japan Union Hospital, Jilin University, Xiantai Street 126, Changchun, 130033, PR China.
Department of Medical Cosmetology, South China Hospital, Medical School, Shenzhen University, Shenzhen, 518116, PR China.
Talanta. 2023 Sep 1;262:124690. doi: 10.1016/j.talanta.2023.124690. Epub 2023 May 19.
A green, efficient and easy sample pretreatment method of magnetic ionic liquid-based liquid-liquid microextraction (MIL-based LLME) combined with a sensitive, rapid and precise analytical method of ultra-performance liquid chromatography coupled with triple-quadrupole tandem mass spectrometry (UPLC-QqQ/MS) was developed to simultaneously - determining of neurotransmitters (NTs) in biosamples. Two magnetic ionic liquids (MILs), [P][GdCl] and [P][CoCl] tested, and the latter was selected as the extraction solvent due to its advantages of visual recognition, paramagnetic behavior and higher extraction efficiency. Facile magnetic separation of MIL containing analytes from matrix was realized by applying external magnetic field without rather than centrifugation. Experimental parameters that would influence the extraction efficiency, including type and amount of MIL, extraction time, speed of the vortex process, salt concentration, and environmental pH, were optimized obtained. The proposed method was successfully applied to the simultaneous extraction and determination of 20 NTs in human cerebrospinal fluid and plasma samples. Excellent analytical performance indicates the broad potential of this method for clinical diagnosis and therapy of neurological diseases.
建立了一种绿色、高效、简便的基于磁性离子液体的液-液微萃取(MIL 基 LLME)与超高效液相色谱-串联三重四极杆质谱(UPLC-QqQ/MS)灵敏、快速、准确的分析方法,用于同时测定生物样品中的神经递质(NTs)。测试了两种磁性离子液体(MILs),[P][GdCl]和[P][CoCl],由于后者具有可视化识别、顺磁性和更高萃取效率的优点,因此被选为萃取溶剂。通过施加外部磁场而不是离心来实现含有分析物的 MIL 与基质的简便磁分离。优化了影响萃取效率的实验参数,包括 MIL 的类型和用量、萃取时间、涡旋速度、盐浓度和环境 pH 值。该方法成功应用于人脑脊液和血浆样品中 20 种 NTs 的同时提取和测定。优异的分析性能表明,该方法具有广泛的临床诊断和治疗神经疾病的潜力。