Institut D'Investigació per a La Gestió Integrada de Zones Costaneres, Campus de Gandia, Universitat Politècnica de València, C/ Paranimf 1, 46730, Grao de Gandia, València, Spain.
Institut D'Investigació per a La Gestió Integrada de Zones Costaneres, Campus de Gandia, Universitat Politècnica de València, C/ Paranimf 1, 46730, Grao de Gandia, València, Spain.
Talanta. 2021 Mar 1;224:121806. doi: 10.1016/j.talanta.2020.121806. Epub 2020 Oct 28.
This paper describes the fabrication of a novel microbore monolithic column modified with magnetite nanoparticles (MNPs) prepared in a poly(ethylene-co-tetrafluoroethylene) (EFTE) tubing, and its application as stationary phase for the chromatographic separation of phosphorylated compounds. In order to obtain the composite column, a two-step procedure was performed. The formation of a glycidyl methacrylate-based monolith inside the activated ETFE tube was firstly carried out. Then, two incorporation approaches of MNPs in monoliths were investigated. The generic polymer was modified with 3-aminopropyltrimethoxysilane (APTMS) to be subsequently attached to MNP surfaces. Alternatively, APTMS-coated MNPs were firstly prepared and subsequently used for attachment onto the monolith surface through reaction of epoxy groups present in the generic monolith. This last strategy gave a reproducible layer of MNPs coated onto the polymer monolith as well as robust and permeable chromatographic columns. The retention behaviour of this MNP-based composite monolithic column was studied by using small phosphorylated compounds (adenosine phosphates). It was found that the retention of model analytes was ruled by partitioning and adsorption HILIC mechanisms. The columns also exhibited satisfactory performance in the separation of these target compounds, showing good chromatographic behaviour after two months of continued use. These composite monolithic columns were also successfully applied to the extraction of a tryptic digest of β-casein.
本文描述了一种新型微径整体柱的制备,该整体柱采用在聚(乙烯-共-四氟乙烯)(EFTE)管中制备的磁性纳米粒子(MNPs)修饰,并将其用作色谱分离磷酸化化合物的固定相。为了获得复合柱,进行了两步法。首先在活化的 EFTE 管内形成基于甲基丙烯酸缩水甘油酯的整体柱。然后,研究了 MNPs 在整体柱中的两种结合方法。通用聚合物用 3-氨丙基三甲氧基硅烷(APTMS)进行改性,然后附着在 MNPs 表面上。或者,首先制备 APTMS 涂覆的 MNPs,然后通过存在于通用整体柱中的环氧基团反应将其用于附着到整体柱表面上。后一种策略在聚合物整体柱上得到了一层可重复的 MNPs 涂层,以及坚固且可渗透的色谱柱。通过使用小的磷酸化化合物(腺苷磷酸)研究了基于 MNPs 的复合整体柱的保留行为。结果发现,模型分析物的保留受分配和吸附 HILIC 机制的控制。这些柱子在这些目标化合物的分离中也表现出了令人满意的性能,在连续使用两个月后表现出了良好的色谱行为。这些复合整体柱还成功地应用于β-酪蛋白胰蛋白酶消化物的提取。