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Identification of Enantiomeric Byproducts During Microalgae-Mediated Transformation of Metoprolol by MS/MS Spectrum Based Networking

机译:基于MS / MS光谱的网络鉴定微藻介导的美托洛尔转化过程中的对映体副产物

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摘要

Metoprolol (MPL) is a chiral β-blocker ubiquitously detected in various environments due to its low to moderate removal in wastewater treatment plants. This study was conducted to test the potential of using microalgae to degrade emerging contaminant MPL and to characterize the enantiomeric enrichment during MPL degradation by microalgae. The results showed that PO43−- P, NO3- N and MPL could be simultaneously removed in the synthetic effluent by the targeted microalgae species, indicating microalgae were promising in wastewater treatment. Stereoselectivity was observed during MPL degradation by microalgae, with R-form enrichment. A marginal linear relationship between MPL degradation and enantiomeric enrichment was observed, implying that the enantiomeric tool, used as a quantitative indicator of biodegradation, could possibly be applied in MPL degradation by microalgae. An efficient liquid chromatograph tandem high resolution mass spectrometry (LC-HRMS/MS) chiral analytical method was developed to identify transformation products (TPs). The results showed that MS/MS spectral similarity networking could be used as a powerful tool to quickly identify unknown TPs. A total of 6 pairs of chiral TPs were identified, among which two new TPs of MPL including hydroxy{4-[2-hydroxy-3-(isopropylamino)propoxy]phenyl}acetic acid (α-HMPLA) and 4-[2-Hydroxy-3-(isopropylamino)propoxy]benzaldehyde (DMPLD) were firstly reported, and proposed transformation pathways of MPL by microalgae were given. Considering the paired TPs detected and that the degradation of the two enantiomers followed first order kinetics, the two enantiomers likely had the same degradation mechanism.
机译:美托洛尔(MPL)是一种手性β受体阻滞剂,由于其在废水处理厂中的去除率较低至中等,因此在各种环境中普遍存在。进行这项研究以测试使用微藻降解新兴污染物MPL的潜力,并表征微藻降解MPL期间对映体富集的特征。结果表明,目标微藻可以同时去除合成废水中的PO4 3-Ps,NO3 - -N和MPL,这表明微藻在废水处理中很有前景治疗。在微藻降解MPL期间,观察到了立体选择性,并具有R型富集。观察到MPL降解与对映体富集之间的边际线性关系,这意味着用作生物降解定量指标的对映体工具可能会被微藻用于MPL降解。开发了一种高效液相色谱串联高分辨率质谱(LC-HRMS / MS)手性分析方法,以鉴定转化产物(TP)。结果表明,MS / MS光谱相似性网络可以用作快速识别未知TP的强大工具。总共鉴定出6对手性TP,其中两个新的MPL TPs包括羟基{4- [2-羟基-3-(异丙基氨基)丙氧基]苯基}乙酸(α-HMPLA)和4- [2-首次报道了羟基-3-(异丙基氨基)丙氧基]苯甲醛(DMPLD),并提出了微藻对MPL的转化途径。考虑到检测到的成对的TP,并且两种对映异构体的降解遵循一级动力学,这两种对映异构体可能具有相同的降解机理。

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