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Kinetic and mechanistic aspects of sensitized photodegradation of β-lactam antibiotics: Microbiological implications

机译:β-内酰胺类抗生素光敏降解的动力学和机理:微生物学意义

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摘要

Amoxicillin (Amx) and cephalexin (Cfx) are β-lactam antibiotics widely used in human and veterinary medicine. Two points of interest surrounding these molecules are the photodegradation of the molecules and their microbiological implications, as well as the persistence and bioaccumulation in the environment which may cause resistance to bacterial strains. The kinetic and mechanistic aspects of the photosensitized degradation of Amx and Cfx have been studied in water at pH 7.4 and 10 by stationary and time-resolved methods. Kinetic evidence indicates that the Rose Bengal-sensitized photooxidation of Amx at pH 7.4 proceeds via O ( Δ ) and mechanisms while at pH 10 the degradation path occurs, principally, via O ( Δ ). For Cfx, this process is attributed to O ( Δ ) and . Photoproducts, which arise from the addition of oxygen atoms and subsequent oxidation of the groups –CH to –COOH, were detected. For both antibiotics the bacteriostatic activity decreases in parallel to their photodegradation. The results of this study could potentially help scientists to better understand and predict the photodegradability of these antibiotics on living organisms and in different environmental compartments.
机译:阿莫西林(Amx)和头孢氨苄(Cfx)是广泛用于人类和兽医学的β-内酰胺抗生素。这些分子周围的两个兴趣点是分子的光降解及其微生物学意义,以及在环境中的持久性和生物蓄积性,这些环境可能引起对细菌菌株的抗性。已通过固定和时间分辨方法研究了pH 7.4和10的水中Amx和Cfx光敏降解的动力学和机理。动力学证据表明,在pH 7.4时,玫瑰红对Amx的光敏氧化作用通过O(Δ)及其机理进行,而在pH 10时,降解途径主要通过O(Δ)发生。对于Cfx,此过程归因于O(Δ)和。检测到光产物,这些光产物是由添加氧原子并随后将–CH氧化为–COOH而产生的。对于这两种抗生素,抑菌活性与它们的光降解平行地降低。这项研究的结果可能会帮助科学家更好地了解和预测这些抗生素在生物体和不同环境区域中的光降解能力。

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