[磺化磁性石墨氮化碳固相萃取-超高效液相色谱-串联质谱法筛选淡水鱼中孔雀石绿和白孔雀石绿]。

IF 1.2 4区 化学 Q4 CHEMISTRY, ANALYTICAL 色谱 Pub Date : 2023-08-01 DOI:10.3724/SP.J.1123.2022.12009
Er-Qiong Meng, Qi-Xun Nian, Feng Li, Qiu-Ping Zhang, Qian Xu, Chun-Min Wang
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Graphite carbon nitride (GCN), a polymer material composed of C, N, and H, has good chemical and thermal stability, a large specific surface area, and a large number of active sites. It has a wide range of application prospects in adsorption and can be used in food safety testing when compounded with Fe<sub>3</sub>O<sub>4</sub> to form magnetic graphite carbon nitride (MGCN). In this study, sulfonated magnetic graphite carbon nitride (S-MGCN) was prepared by further functionalizing MGCN with sulfonic acid. After characterization by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FT-IR), and vibrating sample magnetometry (VSM), a magnetic solid-phase extraction (MSPE) method based on S-MGCN was established to extract MG and LMG from freshwater fish. The targets were screened using ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). Following sulfonic acid functionalization, S-MGCN showed increased electrostatic interactions based on the MGCN adsorption mechanism, which includes hydrogen bonds and <i>π-π</i> interactions; thus, its adsorption efficiency was significantly improved. The matrix effects were -42.21% and -33.77% before functionalization, -11.40% and -7.84% after functionalization, thus confirming that S-MGCN has significant matrix removal ability. Given that S-MGCN demonstrated excellent efficiency as an MSPE adsorbent, the adsorption conditions for S-MGCN were optimized. The optimal conditions were as follows: adsorbent dosage, 15 mg; adsorption time, 2 min; solution pH, 5; and ionic strength, not adjusted. Under these conditions, the adsorption efficiency of S-MGCN could reach 94.2%. Different organic solvents were used to elute adsorbed MG and LMG, and the desorption efficiency peaked when 1%(v/v) ammonia acetonitrile was used as the elution solvent. The elution volume was also optimized, and a maximum desorption efficiency of 93.2% was obtained when 1 mL of 1%(v/v) ammonia acetonitrile was added to S-MGCN. The limits of detection (LODs) and quantification (LOQs) of the two targets were determined at signal-to-noise ratios (<i>S/N</i>) of 3 and 10, respectively. The LODs and LOQs were 0.075 μg/kg and 0.25 μg/kg, respectively. The linear ranges of the two target compounds were 0.25-20.0 μg/kg with correlation coefficients (<i>r</i>) greater than 0.998. To assess accuracy and precision, we prepared spiked samples at three levels (low, medium, and high) with six parallel samples per level (<i>n</i>=6). The recoveries ranged from 88.8% to 105.9%. The intra- and inter-day relative standard deviations were 5.4%-13.7% (<i>n</i>=6) and 3.3%-11.1% (<i>n</i>=3), respectively. Compared with the national standard method, the proposed method features simpler sample pretreatment procedures, less use of organic reagents (5 mL), and a shorter extraction time (2 min); moreover, the method does not require complicated elution steps, and the eluent can be directly analyzed by UPLC-MS/MS. The test results of actual samples were consistent with those obtained via the national standard method, thus confirming the practical feasibility of the developed method. The proposed MSPE method based on S-MGCN is an efficient and environmentally friendly method that could provide a new methodological reference for the sensitive screening of MG and LMG in actual samples.</p>","PeriodicalId":9864,"journal":{"name":"色谱","volume":"41 8","pages":"673-682"},"PeriodicalIF":1.2000,"publicationDate":"2023-08-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10398829/pdf/cjc-41-08-673.pdf","citationCount":"0","resultStr":"{\"title\":\"[Sulfonated magnetic graphite carbon nitride solid-phase extraction-ultra performance liquid chromatography-tandem mass spectrometry for screening malachite green and leucomalachite green in freshwater fish].\",\"authors\":\"Er-Qiong Meng,&nbsp;Qi-Xun Nian,&nbsp;Feng Li,&nbsp;Qiu-Ping Zhang,&nbsp;Qian Xu,&nbsp;Chun-Min Wang\",\"doi\":\"10.3724/SP.J.1123.2022.12009\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Malachite green (MG) and its metabolite, leucomalachite green (LMG), exert toxic effects on the human body. 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引用次数: 0

摘要

孔雀石绿(MG)及其代谢产物白垩孔雀石绿(LMG)对人体具有毒性作用。使用这些染料是非法的,但在水产品中仍然检测到它们。淡水鱼是不合格率较高的水产品。因此,对淡水鱼中MG和LMG进行敏感筛选,对保证水产品安全具有重要意义。由于鱼中MG和LMG含量较低,且实际样品基质复杂,检测前需先进行样品制备,纯化杂质,富集目标化合物。石墨氮化碳(GCN)是一种由碳、氮、氢组成的高分子材料,具有良好的化学稳定性和热稳定性,比表面积大,活性位点多。它在吸附方面具有广泛的应用前景,与Fe3O4复合形成磁性石墨氮化碳(MGCN)可用于食品安全检测。本研究通过磺酸对磁性石墨氮化碳进行进一步功能化,制备了磺化磁性石墨氮化碳(S-MGCN)。通过扫描电镜(SEM)、傅里叶变换红外光谱(FT-IR)和振动样品磁强计(VSM)表征,建立了基于S-MGCN的磁固相萃取(MSPE)方法提取淡水鱼中MG和LMG。采用超高效液相色谱-串联质谱(UPLC-MS/MS)对目标物进行筛选。磺酸功能化后,S-MGCN的静电相互作用增强,吸附机理包括氢键和π-π相互作用;因此,其吸附效率显著提高。功能化前的基质效应分别为-42.21%和-33.77%,功能化后的基质效应分别为-11.40%和-7.84%,表明S-MGCN具有显著的基质去除能力。考虑到S-MGCN作为MSPE吸附剂具有优异的吸附效果,对S-MGCN的吸附条件进行了优化。最佳工艺条件为:吸附剂用量为15 mg;吸附时间,2 min;溶液pH, 5;离子强度,没有调整。在此条件下,S-MGCN的吸附效率可达94.2%。用不同的有机溶剂洗脱吸附的MG和LMG,以1%(v/v)的氨乙腈为洗脱溶剂时,解吸效率最高。同时对洗脱体积进行了优化,在S-MGCN中加入1 mL 1%(v/v)的氨乙腈,最大解吸效率为93.2%。分别在信噪比(S/N)为3和10时测定两种靶标的检出限(lod)和定量限(loq)。检出限和限限分别为0.075 μg/kg和0.25 μg/kg。两种目标化合物的线性范围为0.25 ~ 20.0 μg/kg,相关系数(r)均大于0.998。为了评估准确性和精密度,我们制备了三个水平(低、中、高)的加标样品,每个水平有6个平行样品(n=6)。加样回收率为88.8% ~ 105.9%。日内、日间相对标准偏差分别为5.4% ~ 13.7% (n=6)和3.3% ~ 11.1% (n=3)。与国标法相比,本方法样品前处理步骤简单,有机试剂用量少(5 mL),提取时间短(2 min);该方法不需要复杂的洗脱步骤,可直接通过UPLC-MS/MS对洗脱液进行分析。实际样品的测试结果与国家标准方法的测试结果一致,从而证实了所建立方法的实际可行性。基于S-MGCN的MSPE方法是一种高效、环保的方法,可为实际样品中MG和LMG的敏感筛选提供新的方法学参考。
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[Sulfonated magnetic graphite carbon nitride solid-phase extraction-ultra performance liquid chromatography-tandem mass spectrometry for screening malachite green and leucomalachite green in freshwater fish].

Malachite green (MG) and its metabolite, leucomalachite green (LMG), exert toxic effects on the human body. The use of these dyes is illegal, but they are still detected in aquatic products. Freshwater fish are aquatic products with the high non-qualified rates. Therefore, the sensitive screening of MG and LMG in freshwater fish is of great importance to ensure the safety of aquatic products. Owing to the low contents of MG and LMG in fish and the complex matrix of actual samples, sample preparation is required before detection to purify impurities and enrich the target compounds. Graphite carbon nitride (GCN), a polymer material composed of C, N, and H, has good chemical and thermal stability, a large specific surface area, and a large number of active sites. It has a wide range of application prospects in adsorption and can be used in food safety testing when compounded with Fe3O4 to form magnetic graphite carbon nitride (MGCN). In this study, sulfonated magnetic graphite carbon nitride (S-MGCN) was prepared by further functionalizing MGCN with sulfonic acid. After characterization by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FT-IR), and vibrating sample magnetometry (VSM), a magnetic solid-phase extraction (MSPE) method based on S-MGCN was established to extract MG and LMG from freshwater fish. The targets were screened using ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). Following sulfonic acid functionalization, S-MGCN showed increased electrostatic interactions based on the MGCN adsorption mechanism, which includes hydrogen bonds and π-π interactions; thus, its adsorption efficiency was significantly improved. The matrix effects were -42.21% and -33.77% before functionalization, -11.40% and -7.84% after functionalization, thus confirming that S-MGCN has significant matrix removal ability. Given that S-MGCN demonstrated excellent efficiency as an MSPE adsorbent, the adsorption conditions for S-MGCN were optimized. The optimal conditions were as follows: adsorbent dosage, 15 mg; adsorption time, 2 min; solution pH, 5; and ionic strength, not adjusted. Under these conditions, the adsorption efficiency of S-MGCN could reach 94.2%. Different organic solvents were used to elute adsorbed MG and LMG, and the desorption efficiency peaked when 1%(v/v) ammonia acetonitrile was used as the elution solvent. The elution volume was also optimized, and a maximum desorption efficiency of 93.2% was obtained when 1 mL of 1%(v/v) ammonia acetonitrile was added to S-MGCN. The limits of detection (LODs) and quantification (LOQs) of the two targets were determined at signal-to-noise ratios (S/N) of 3 and 10, respectively. The LODs and LOQs were 0.075 μg/kg and 0.25 μg/kg, respectively. The linear ranges of the two target compounds were 0.25-20.0 μg/kg with correlation coefficients (r) greater than 0.998. To assess accuracy and precision, we prepared spiked samples at three levels (low, medium, and high) with six parallel samples per level (n=6). The recoveries ranged from 88.8% to 105.9%. The intra- and inter-day relative standard deviations were 5.4%-13.7% (n=6) and 3.3%-11.1% (n=3), respectively. Compared with the national standard method, the proposed method features simpler sample pretreatment procedures, less use of organic reagents (5 mL), and a shorter extraction time (2 min); moreover, the method does not require complicated elution steps, and the eluent can be directly analyzed by UPLC-MS/MS. The test results of actual samples were consistent with those obtained via the national standard method, thus confirming the practical feasibility of the developed method. The proposed MSPE method based on S-MGCN is an efficient and environmentally friendly method that could provide a new methodological reference for the sensitive screening of MG and LMG in actual samples.

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来源期刊
色谱
色谱 CHEMISTRY, ANALYTICAL-
CiteScore
1.30
自引率
42.90%
发文量
7198
期刊介绍: "Chinese Journal of Chromatography" mainly reports the basic research results of chromatography, important application results of chromatography and its interdisciplinary subjects and their progress, including the application of new methods, new technologies, and new instruments in various fields, the research and development of chromatography instruments and components, instrument analysis teaching research, etc. It is suitable for researchers engaged in chromatography basic and application technology research in scientific research institutes, master and doctoral students in chromatography and related disciplines, grassroots researchers in the field of analysis and testing, and relevant personnel in chromatography instrument development and operation units. The journal has columns such as special planning, focus, perspective, research express, research paper, monograph and review, micro review, technology and application, and teaching research.
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[Off-line comprehensive two-dimensional countercurrent chromatography-liquid chromatography separation of Curcuma volatile oil]. [Advances in synthesis methods and applications of microporous organic networks for sample preparation]. [Application progress of on-line sample preparation techniques coupled with liquid chromatography-mass spectrometry system in the detection of food hazards]. [Chiral capillary gas chromatography for the separation of the enantiomers of 4-chloromethyl-2,2-dimethyl-1,3-dioxolane]. [Determination of 14 β-agonists in animal meat by ultra high performance liquid chromatography-tandem mass spectrometry].
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