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用于测定猪肉和鱼肉中六种生物胺的疏水介孔二氧化硅包覆固相微萃取箭式系统

Hydrophobic Mesoporous Silica-Coated Solid-Phase Microextraction Arrow System for the Determination of Six Biogenic Amines in Pork and Fish.

作者信息

Chen Mengfei, Lan Hangzhen, Pan Daodong, Zhang Tao

机构信息

State Key Laboratory for Quality and Safety of Agro-products, Key Laboratory of Animal Protein Deep Processing Technology of Zhejiang Province, Zhejiang-Malaysia Joint Research Laboratory for Agricultural Product Processing and Nutrition and College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo 315800, China.

出版信息

Foods. 2023 Jan 28;12(3):578. doi: 10.3390/foods12030578.

Abstract

In this study, a functionalized mesoporous silica-coated solid-phase microextraction (SPME) Arrow system was developed for the enrichment of six biogenic amines (BAs) from pork and fish samples before gas chromatographic separation with a mass spectrometer as a detector. MCM-41 was utilized as the substrate material and thereby functionalized by titanate and sodium dodecyl sulfate to adjust its surface acidity and hydrophobicity, respectively. The functionalized MCM-41 (named as MCM-T-H) was coated on a bare SPME Arrow using the dipping method and polyacrylonitrile was used as the adhesive. The extraction capacity and selectivity of the MCM-T-H-SPME Arrow for six kinds of derivatized BAs were studied and compared with commercial SPME Arrows. Experimental parameters, e.g., sample volume, derivatization reagent amount, extraction time, and desorption time, which have a dramatic effect on SPME Arrow pretreatment, were optimized. Acidity enhanced MCM-T-H coating showed a much higher affinity to derivatized BAs compared to a commercial SPME Arrow in terms of extraction capacity. In addition, hydrophobicity modification significantly reduced the interference of water molecules on the interaction between MCM-T-H and the derivatized BAs. The MCM-T-H-SPME Arrow showed efficient separation and enrichment capacity for derivatized BAs from complex matrices and therefore, the sample pretreatment time was saved. According to the experimental results, the optimal condition was to add 10 μL derivatization reagent to a 10 mL sample and maintain an agitation speed of 1250 r min. The MCM-T-H-SPME showed excellent reproducibility (RSD < 9.8%) and fast adsorption kinetics (30 min) and desorption kinetics (5 min) for derivatized BAs under optimal conditions. In summary, the MCM-T-H-SPME Arrow based method was employed for accurate monitoring of the variations of BAs in pork and fish, and good results were achieved.

摘要

在本研究中,开发了一种功能化介孔二氧化硅涂层的固相微萃取(SPME)箭形装置,用于在气相色谱分离并以质谱仪作为检测器之前,从猪肉和鱼肉样品中富集六种生物胺(BAs)。使用MCM - 41作为基底材料,并分别通过钛酸酯和十二烷基硫酸钠对其进行功能化,以调节其表面酸度和疏水性。采用浸渍法将功能化的MCM - 41(命名为MCM - T - H)涂覆在裸SPME箭形装置上,并使用聚丙烯腈作为粘合剂。研究了MCM - T - H - SPME箭形装置对六种衍生化生物胺的萃取能力和选择性,并与商用SPME箭形装置进行了比较。对样品体积、衍生化试剂量、萃取时间和解吸时间等对SPME箭形装置预处理有显著影响的实验参数进行了优化。在萃取能力方面,与商用SPME箭形装置相比,酸度增强的MCM - T - H涂层对衍生化生物胺具有更高的亲和力。此外,疏水性改性显著降低了水分子对MCM - T - H与衍生化生物胺之间相互作用的干扰。MCM - T - H - SPME箭形装置对复杂基质中的衍生化生物胺显示出高效的分离和富集能力,因此节省了样品预处理时间。根据实验结果,最佳条件是向10 mL样品中加入10 μL衍生化试剂,并保持搅拌速度为1250 r/min。在最佳条件下,MCM - T - H - SPME对衍生化生物胺显示出优异的重现性(RSD < 9.8%)以及快速的吸附动力学(30 min)和解吸动力学(5 min)。综上所述,基于MCM - T - H - SPME箭形装置的方法用于准确监测猪肉和鱼肉中生物胺的变化,并取得了良好的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6c7/9914681/1b049c49c7b5/foods-12-00578-g001.jpg

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