[Zirconium-based metal-organic framework composites for solid phase extraction of brevetoxin-A from seawater].

Zong-Bao Chen, Shi-Ye Xie, Yong-Jun Liu, Wen-Min Zhang, Min Fang, Lan Zhang
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Abstract

Red tides are a type of natural marine disaster caused by harmful algae characterized by a high toxicity, wide distribution, and long duration. Since the concentration of algal toxins in seawater increases with the occurrence of red tides, algal toxins detected in seawater could be used to predict the occurrence and evolution of red tides. Brevetoxin-A (BTX-A) is a secondary metabolite produced by the harmful algae Karenia brevis, whose detection in seawater could form the basis of an accurate warning system for incoming red tides. However, due to the inherent complexity of the seawater matrix and the extremely low levels of BTX-A in seawater, the use of instruments for its direct detection is difficult. Therefore, there is an urgent need to develop a sample pretreatment method for the efficient enrichment of BTX-A in seawater. In this study, a metal-organic backbone material (UiO-66) and its composite with silica microspheres (SiO2@UiO-66) were successfully synthesized using the solvothermal method. The prepared SiO2@UiO-66 exhibited good hydrophilicity, water stability, and large specific surface area. Furthermore, it also exhibited hydrogen bonding and electrostatic interactions with BTX-A, had a strong affinity for BTX-A, and was able to efficiently adsorb BTX-A in complex matrices. Therefore, SiO2@UiO-66 showed potential as a novel packing material for the extraction of BTX-A from solid phase extraction columns. Combined with high performance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS), a highly sensitive detection method for the determination of BTX-A in marine water was established. The established analytical method had a low detection limit (3.0 pg/mL), a wide linear range (10.0 -200.0 pg/mL), and a good linear relationship (R=0.9992). Combined with the Fujian Province Red Tide Monitoring and Early Warning Information 2021 issued by the Fujian Provincial Oceanic and Fisheries Bureau, the analytical method established herein was successfully applied to analyze and monitor the content of BTX-A in actual seawater samples. This highlights the proposed system's potential for use as an early warning factor in the monitoring of red tides, representing a simple and fast pretreatment methodology for the detection of BTX-A in seawater.

[锆基金属有机框架复合材料用于固相萃取海水中的布维毒素-A]。
赤潮是由有害藻类引起的一种海洋自然灾害,具有毒性强、分布广、持续时间长等特点。由于海水中藻类毒素的浓度会随着赤潮的发生而增加,海水中检测到的藻类毒素可用于预测赤潮的发生和演变。布雷毒素-A(BTX-A)是有害藻类卡伦藻(Karenia brevis)产生的一种次级代谢产物,在海水中检测到这种毒素可作为赤潮来临时准确预警系统的基础。然而,由于海水基质本身的复杂性以及海水中 BTX-A 的含量极低,很难使用仪器对其进行直接检测。因此,迫切需要开发一种样品预处理方法,以有效富集海水中的 BTX-A。本研究采用溶热法成功合成了一种金属有机骨架材料(UiO-66)及其与二氧化硅微球的复合材料(SiO2@UiO-66)。所制备的 SiO2@UiO-66 具有良好的亲水性、水稳定性和较大的比表面积。此外,它还与 BTX-A 存在氢键和静电作用,对 BTX-A 有很强的亲和力,能够在复杂基质中高效吸附 BTX-A。因此,SiO2@UiO-66 具有作为新型填料的潜力,可用于从固相萃取柱中萃取 BTX-A。结合高效液相色谱-串联质谱法(HPLC-MS/MS),建立了测定海水中 BTX-A 的高灵敏度检测方法。该方法检出限低(3.0 pg/mL),线性范围宽(10.0 -200.0 pg/mL),线性关系良好(R=0.9992)。结合福建省海洋与渔业局发布的《福建省赤潮监测预警信息 2021》,本文建立的分析方法成功应用于实际海水样品中 BTX-A 含量的分析监测。这凸显了所提出的系统作为赤潮监测预警因子的潜力,是一种简单、快速的海水中 BTX-A 检测前处理方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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