Factors affecting the hydrolysis of the antibiotic amoxicillin in the aquatic environment.

Chemosphere

BAM Federal Institute for Materials Research and Testing, Department 1 Analytical Sciences; Reference Materials, 12205, Berlin, Germany; Technische Universität Berlin, Faculty III Process Sciences, 10623, Berlin, Germany. Electronic address:

Published: January 2023

The environmental fate of the frequently used broad-spectrum β-lactam antibiotic amoxicillin (AMX) is of high concern regarding the potential evolution of antimicrobial resistance (AMR). Moreover, it is known that AMX is prone to hydrolysis, yielding a variety of hydrolysis products (HPs) with yet unknown effects. Studies to identify those HPs and investigate their formation mechanisms have been reported but a long-term study on their stability in real water samples was missing. In this regard, we investigated the hydrolysis of AMX at two concentration levels in four distinct water types under three different storage conditions over two months. Concentrations of AMX and four relevant HPs were monitored by an LC-MS/MS method revealing pronounced differences in the hydrolysis rate of AMX in tap water and mineral water on the one hand (fast) and surface water on the other (slow). In this context, the occurrence, relative intensities, and stability of certain HPs are more dependent on the water type than on the storage condition. As clarified by ICP-MS, the main difference between the water types was the content of the metals copper and zinc which are supposed to catalyze AMX hydrolysis demonstrating an effective method to degrade AMX at ambient conditions.

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Source
http://dx.doi.org/10.1016/j.chemosphere.2022.136921DOI Listing

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