Department of Inorganic, Analytical Chemistry and Electrochemistry, Faculty of Chemistry, Silesian University of Technology, B. Krzywoustego 6 Str., 44-100, Gliwice, Poland.
Department of Engineering of Water Protection and Environmental Microbiology, Faculty of Geoengineering, University of Warmia and Mazury in Olsztyn, Prawocheńskiego 1 Str., 10-720, Olsztyn, Poland.
Sci Rep. 2022 Oct 20;12(1):17529. doi: 10.1038/s41598-022-22440-5.
Manure fertilization is the primary source of veterinary antimicrobials in the water-soil system. The research gap is the fate of antimicrobials after their release into the environment. This study aimed to provide a detailed and multi-faceted examination of fertilized cultivated fields using two types of manure (poultry and bovine) enriched with selected antimicrobials. The research focused on assessing the mobility and stability of antimicrobials in the water-soil system. Additionally, transformation products of antimicrobials in the environment were identified. The extraction (solid-phase extraction and/or solid-liquid extraction) and LC-MS/MS analysis procedures were developed to determine 14 antimicrobials in the soil and pore water samples. Ten out of fourteen antimicrobials were detected in manure-amended soil and pore water samples. The highest concentration in the soil was 109.1 ng g (doxycycline), while in pore water, it was 186.6 ng L (ciprofloxacin). Sixteen transformation products of antimicrobials were identified in the soil and soil-related pore water. The same transformation products were detected in both soil and soil pore water extracts, with significantly higher signal intensities observed in soil extracts than in water. Transformation products were formed in oxidation, carbonylation, and ring-opening reactions.
粪肥施肥是水土系统中兽医抗菌药物的主要来源。研究的空白是抗菌药物释放到环境中后的去向。本研究旨在使用两种类型(家禽和牛)的富含选定抗菌药物的粪肥,对施肥耕地进行详细和多方面的检查。该研究侧重于评估水土系统中抗菌药物的迁移性和稳定性。此外,还确定了环境中抗菌药物的转化产物。开发了提取(固相萃取和/或固液萃取)和 LC-MS/MS 分析程序,以确定土壤和孔隙水中的 14 种抗菌药物。在施肥土壤和孔隙水样品中检测到 14 种抗菌药物中的 10 种。土壤中浓度最高的是 109.1ng/g(强力霉素),而在孔隙水中,浓度最高的是 186.6ng/L(环丙沙星)。在土壤和土壤相关孔隙水中鉴定出 16 种抗菌药物的转化产物。在土壤和土壤孔隙水提取物中均检测到相同的转化产物,土壤提取物中的信号强度明显高于水。转化产物是通过氧化、羰基化和开环反应形成的。