首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >UV-visible degradation of boscalid – structural characterization of photoproducts and potential toxicity using in silico tests
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UV-visible degradation of boscalid – structural characterization of photoproducts and potential toxicity using in silico tests

机译:紫外可见降解的鳞片生物–使用计算机测试检测光产品的结构特征和潜在毒性

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RATIONALE: Boscalid is a carboximide fungicide mainly used for vineyard protection as well as for tomato, apple, blueberry and various ornamental cultivations. The structural elucidation of by-products arising from the UV-visible photodegradation of boscalid has been investigated by gas chromatography/multi-stage mass spectrometry (GC/MS~n) and liquid chromatography/tandem mass spectrometry (LC/MS/MS) couplings. The potential toxicities of transformation products were estimated by in silico calculations. METHODS: Aqueous solutions of boscalid were irradiated up to 150 min in a self-made reactor equipped with a mercury lamp. Analyses were carried out using a gas chromatograph coupled with an ion trap mass spectrometer operated in both electron ionization (EI) and chemical ionization (CI) modes and a liquid chromatograph coupled with a quadrupole time-of-flight (Q-TOF) mass spectrometer operated in electrospray ionization (ESI) mode. Multiple-stage collision-induced dissociation (CID) experiments were performed to establish dissociation pathways of ions. The QSAR (Quantitative Structure-Activity Relationship) T.E.S.T. program allowed the estimation of the toxicities of the by-products. RESULTS: Eight photoproducts were investigated. Chemical structures were proposed not only on the interpretation of multi-stage CID experiments, but also on kinetics data. These structures led us to suggest photodegradation pathways. Three photoproducts were finally detected in Lebanon in a real sample of grape leaves for which routine analysis had led to the detection of boscalid at 4 mg kg~(-1). CONCLUSIONS: With one exception, the structures proposed for the photoproducts on the basis of mass spectra interpretation have not been reported in previous studies. In silico toxicity predictions showed that two photoproducts are potentially more toxic than the parent compound considering oral rat LD50 while five photoproducts may induce mutagenic toxicity. With the exception of one compound, all photoproducts may potentially induce developmental toxicity.
机译:理由:Boscalid是一种羧酰亚胺杀菌剂,主要用于葡萄园保护以及番茄,苹果,蓝莓和各种观赏植物。通过气相色谱/多级质谱(GC / MS〜n)和液相色谱/串联质谱(LC / MS / MS)偶联剂研究了Boscalid的UV-可见光降解产生的副产物的结构解析。通过计算机计算估算了转化产物的潜在毒性。方法:在配有水银灯的自制反应器中,辐照硼硅酸盐水溶液长达150分钟。使用气相色谱仪结合以电子电离(EI)和化学电离(CI)模式运行的离子阱质谱仪,以及液相色谱仪结合四极杆飞行时间(Q-TOF)质谱仪进行分析在电喷雾电离(ESI)模式下运行。进行了多阶段碰撞诱导解离(CID)实验,以建立离子的解离途径。 QSAR(定量结构-活性关系)T.E.S.T.该程序可以估算副产物的毒性。结果:研究了八种光产品。化学结构不仅在多阶段CID实验的解释上被提出,而且在动力学数据上也被提出。这些结构使我们提出了光降解途径。最终在黎巴嫩的一个真实葡萄叶样品中检测到三种光产物,常规分析导致在4 mg kg〜(-1)处检测到了Boscalid。结论:除一个例外,在以前的研究中尚未报道过基于质谱解释为光产品提出的结构。在计算机毒性预测中,考虑到口服大鼠LD50,两种光敏产品的毒性可能比母体化合物高,而五种光敏产品可能诱发诱变毒性。除一种化合物外,所有光产物均可能诱发发育毒性。

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