Reynoso Eugenia, Spesia Mariana B, García Norman A, Biasutti María A, Criado Susana
Departamento de Química, Universidad Nacional de Río Cuarto, 5800 Río Cuarto, Argentina.
Departamento de Química, Universidad Nacional de Río Cuarto, 5800 Río Cuarto, Argentina.
J Photochem Photobiol B. 2015 Jan;142:35-42. doi: 10.1016/j.jphotobiol.2014.11.004. Epub 2014 Nov 26.
Trace amounts of the widely used β-lactam antibiotics (Atbs) in waste water may cause adverse effects on the ecosystems and contribute to the proliferation of antibiotic-resistant bacteria. On these grounds, kinetic and mechanistic aspects of photosensitized degradation of Ceftriaxone (Cft) and Cefotaxime (Ctx), have been studied in pure water by stationary and time-resolved techniques. Additionally, possible implications of these photoprocesses on the antimicrobial activity of the Atbs have also been investigated. Photoirradiation of aqueous solutions of Cft and Ctx produces the degradation of both Atbs in the presence of Riboflavin (vitamin B2), a well known pigment dissolved in natural aquatic systems. The process occurs through Type I and Type II mechanisms, with effective prevalence of the former. The participation of O2(-), OH and O2((1)Δg) is supported by experiments of oxygen consumption carried out in the presence of specific scavengers for such reactive oxygen species. Microbiological assays exhibit a parallelism between the rate of Cft and Ctx photodegradation and the loss of their bactericidal capacity on Staphylococcus aureus strains. Results contribute to both understanding kinetic and mechanism aspects of the degradation and predicting on natural decay of Atbs waste water-contaminants.
废水中痕量广泛使用的β-内酰胺类抗生素(Atbs)可能会对生态系统产生不利影响,并促使抗生素抗性细菌的增殖。基于这些原因,已通过稳态和时间分辨技术在纯水中研究了头孢曲松(Cft)和头孢噻肟(Ctx)光敏降解的动力学和机理方面。此外,还研究了这些光过程对Atbs抗菌活性的可能影响。在天然水生系统中溶解的一种著名色素核黄素(维生素B2)存在下,对Cft和Ctx水溶液进行光辐照会导致两种Atbs的降解。该过程通过I型和II型机制发生,前者占主导。在存在针对此类活性氧的特定清除剂的情况下进行的耗氧实验支持了O2(-)、OH和O2((1)Δg)的参与。微生物学测定表明,Cft和Ctx的光降解速率与它们对金黄色葡萄球菌菌株杀菌能力的丧失之间存在平行关系。这些结果有助于理解降解的动力学和机理方面,并预测Atbs废水污染物的自然衰减。