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光不稳定药物对氟西汀和氟伏沙明光降解和毒性的影响。

Influence of photolabile pharmaceuticals on the photodegradation and toxicity of fluoxetine and fluvoxamine.

机构信息

Department of Environmental Health Sciences, Faculty of Pharmacy, Medical University of Warsaw, 1 Banacha Street, 02-097, Warsaw, Poland.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(7):6890-6898. doi: 10.1007/s11356-017-0973-3. Epub 2017 Dec 21.

Abstract

Pharmaceuticals in the aquatic environment may be decomposed by abiotic and biotic factors. Photodegradation is the most investigated abiotic process, as it occurs in the natural environment and may be applied in wastewater treatment technology. Although pharmaceuticals are detected in effluents and surface water in a mixture, the photodegradation process is mainly evaluated with single compounds. The photodegradation of fluoxetine (FLU) and fluvoxamine (FLX) in the presence of diclofenac (DCF) and triclosan (TCS) was investigated with HPLC and bioassay. FLU did not degrade under UV-Vis irradiation in SunTest CPS+ either with or without the tested additives, although small amounts of desmethyl fluoxetine and 4-(trifluoromethyl)phenol were formed. In contrast, during irradiation, FLX isomerized to cis-FLX. This process was enhanced by DCF and TCS, but to a lesser degree than by humic acids. Thus, the presence and composition of the matrix should be considered in the environmental risk assessment of pharmaceuticals. As the toxicity of the tested solutions depended only on the concentration of the tested drugs, it was suggested that the biological activity of the photodegradation products was lower than that of the parent compounds.

摘要

水环境中的药物可能会被非生物和生物因素分解。光降解是研究最多的非生物过程,因为它发生在自然环境中,并且可以应用于废水处理技术。尽管药物在废水和地表水的混合物中被检测到,但光降解过程主要是用单一化合物进行评估的。在存在双氯芬酸 (DCF) 和三氯生 (TCS) 的情况下,用 HPLC 和生物测定法研究了氟西汀 (FLU) 和氟伏沙明 (FLX) 的光降解。在 SunTest CPS+中,无论是否存在测试添加剂,FLU 在紫外线照射下都不会降解,尽管形成了少量去甲氟西汀和 4-(三氟甲基)苯酚。相比之下,在照射过程中,FLX 异构化为顺式-FLX。该过程被 DCF 和 TCS 增强,但程度低于腐殖酸。因此,在药物的环境风险评估中应考虑基质的存在和组成。由于测试溶液的毒性仅取决于测试药物的浓度,因此有人提出,光降解产物的生物活性低于母体化合物。

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