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离子交换色谱法评估土霉素环境污染。

Ion-exchange chromatography in the assessment of environmental pollution with chlortetracycline.

机构信息

Department of Chemistry, Faculty of Agriculture and Forestry, University of Warmia and Mazury in Olsztyn, Pl. Łódzki 4,10-727 Olsztyn, Poland.

Department of Chemistry, Faculty of Agriculture and Forestry, University of Warmia and Mazury in Olsztyn, Pl. Łódzki 4,10-727 Olsztyn, Poland.

出版信息

Aquat Toxicol. 2024 Dec;277:107142. doi: 10.1016/j.aquatox.2024.107142. Epub 2024 Nov 2.

Abstract

Chemical substances such as drugs pose a threat to the environment. One of the substances recorded in soil and water is chlortetracycline, an antibiotic used in veterinary medicine. Plants exposed to such xenobiotics show changes in the content of biogenic amines. An analytical technique - ion exchange chromatography is used to assess their content. The occurrence of these active compounds is used to determine the degree of environmental pollution with chemical substances. The study aimed to evaluate the toxicity of chlortetracycline (CTC) at concentrations of 0; 0.05; 0.1; 0.2 0.5;1; 2; 3; and 5 mM towards the test organism Lemna minor, and determine the content of biogenic amines in the plant tissues. The content of biogenic amines was analyzed by ion-exchange chromatography with post-column ninhydrin derivatization and photometric detection. The Lemna test proved that increasing concentrations of CTC had a toxic effect on the plants. It was calculated that the Lowest Observed Effects Concentration (LOEC) of CTC at >0.04 mM and >0.05 mM was phytotoxic to L. minor growth and yield. It was determined that the levels of histamine, tyramine, and cadaverine exhibited an increase, reaching 1.04, 1.90, and 3.10 µg g of tissue at 2.00 mM CTC. Simultaneously, spermine and putrescine increased to 1.21 and 3.89 µg g of tissue at concentrations of 0.10 and 0.50 mM of the drug. Conversely, the study revealed an over 88 % reduction in spermidine in plants at 5 mM of CTC. Using ion-exchange chromatography, analysis of biogenic amines, particularly spermidine and cadaverine, highlighted these intra-tissue compounds as sensitive biomarkers for water contamination with the tested drug. This research confirmed that the Lemna test is effective for assessing CTC toxicity and that ion-exchange chromatography is useful for evaluating environmental pollution by this antibiotic.

摘要

化学物质如药物对环境构成威胁。在土壤和水中记录到的一种物质是金霉素,一种用于兽医的抗生素。暴露于此类异生物质的植物表现出生物胺含量的变化。一种分析技术 - 离子交换色谱法用于评估其含量。这些活性化合物的存在用于确定化学物质对环境的污染程度。本研究旨在评估浓度为 0;0.05;0.1;0.2 0.5;1;2;3;和 5 mM 的金霉素(CTC)对测试生物浮萍的毒性,并确定植物组织中生物胺的含量。生物胺的含量通过离子交换色谱法分析,柱后衍生化和分光光度检测。浮萍测试证明,CTC 浓度的增加对植物具有毒性作用。计算得出,CTC 浓度>0.04 mM 和>0.05 mM 时的最低观察效应浓度(LOEC)对浮萍的生长和产量具有植物毒性。确定组氨酸、酪胺和尸胺的水平增加,在 2.00 mM CTC 时达到 1.04、1.90 和 3.10 µg g 组织。同时,在药物浓度为 0.10 和 0.50 mM 时,亚精胺和腐胺增加到 1.21 和 3.89 µg g 组织。相反,研究表明,在 5 mM CTC 下,植物中的腐胺减少了 88 %以上。使用离子交换色谱法,对生物胺的分析,特别是腐胺和尸胺的分析,强调了这些组织内化合物作为该药物污染水的敏感生物标志物。这项研究证实,浮萍测试对于评估 CTC 的毒性是有效的,离子交换色谱法对于评估这种抗生素对环境的污染是有用的。

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