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Identification of Penicillin G Metabolites under Various Environmental Conditions Using UHPLC-MS/MS

机译:使用UHPLC-MS / MS在各种环境条件下鉴定青霉素G代谢物

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In this work, we investigate the stability of penicillin G in various conditions including acidic, alkaline, natural acidic matrices and after treatment of citrus trees that are infected with citrus greening disease. The identification, confirmation, and quantitation of penicillin G and its various metabolites were evaluated using two UHPLC-MS/MS systems with variable capabilities (i.e., Thermo QExactive Orbitrap and Sciex 6500 QTrap). Our data show that under acidic and alkaline conditions, penicillin G at 100 ng/mL degrades quickly, with a determined half-life time of approximately 2 h. Penillic acid, penicilloic acid, and penilloic acid are found to be the most abundant metabolites of penicillin G. These major metabolites, along with isopenillic acid, are found when penicillin G is used for treatment of citrus greening infected trees. The findings of this study will provide insight regarding penicillin G residues in agricultural and biological applications.
机译:在这项工作中,我们研究了青霉素G在各种条件下的稳定性,包括酸性,碱性,天然酸性基质以及处理受柑橘类绿化病感染的柑橘树后的稳定性。使用两个具有可变功能的UHPLC-MS / MS系统(即Thermo QExactive Orbitrap和Sciex 6500 QTrap)对青霉素G及其各种代谢产物的鉴定,确认和定量进行评估。我们的数据表明,在酸性和碱性条件下,100 ng / mL的青霉素G会迅速降解,确定的半衰期约为2 h。发现青霉酸,青霉酸和青霉酸是青霉素G的最丰富的代谢产物。当青霉素G用于柑桔绿化感染树木的治疗时,会发现这些主要代谢产物以及异戊酸。这项研究的发现将提供有关农业和生物应用中青霉素G残留的见解。

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