Hu Chenlin, Wang Weiqun, Jo Jinhee, Garey Kevin W
University of Houston College of Pharmacy, Houston, TX, USA.
University of Houston College of Pharmacy, Houston, TX, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2024 Apr 1;1236:124057. doi: 10.1016/j.jchromb.2024.124057. Epub 2024 Feb 28.
This study developed and validated a new liquid chromatography-tandem mass spectrometry (LC-MS/MS) method to quantify omadacycline and its epimerization in stool to facilitate microbiome studies. Omadacycline was extracted in a methanol-water-ethylenediaminetetraacetic acid (ETDA) solvent containing deuterated omadacycline as internal standard, followed by dilution. In an optimal gradient elution mode, omadacycline and its C4 epimer were separated within 5 min on reversed-phase C18 column. The method showed a broad working range of 0.1-200 ng/ml with a limitation of detection (LOD) of 0.03 ng/ml, little fecal matrix effect, good intra-day and inter-day accuracy (90-101 %), precision (2-15 %), and recovery rate (99-105 %). The method was sufficiently sensitive to quantify omadacycline in human fecal samples (n = 82) collected during a 10-day therapy course and at follow-up (day 13 and day 30) that ranged from 1 to 4785 µg/g. Further analysis revealed that ∼9 % of omadacycline was epimerized in fecal matrix control while, on average, 37.4 % was epimerized in human fecal samples. This study developed and validated a novel, simple, sensitive, and accurate method utilizing LC-MS/MS to quantify omadacycline its epimerization in the human gut. This has important implications for future studies of omadacycline and other tetracycline-class antibiotics as part of gut microbiome studies.
本研究开发并验证了一种新的液相色谱 - 串联质谱(LC-MS/MS)方法,用于定量粪便中的奥马环素及其差向异构化,以促进微生物组研究。奥马环素在含有氘代奥马环素作为内标的甲醇 - 水 - 乙二胺四乙酸(ETDA)溶剂中提取,然后进行稀释。在最佳梯度洗脱模式下,奥马环素及其C4差向异构体在反相C18柱上5分钟内分离。该方法的工作范围为0.1 - 200 ng/ml,检测限(LOD)为0.03 ng/ml,粪便基质效应小,日内和日间准确度良好(90 - 101%),精密度(2 - 15%)和回收率(99 - 105%)。该方法对在10天治疗过程中及随访(第13天和第30天)收集的人粪便样本(n = 82)中的奥马环素进行定量足够灵敏,其含量范围为1至4785 μg/g。进一步分析表明,在粪便基质对照中约9%的奥马环素发生了差向异构化,而在人粪便样本中平均有37.4%发生了差向异构化。本研究开发并验证了一种利用LC-MS/MS定量人肠道中奥马环素及其差向异构化的新颖、简单、灵敏且准确的方法。这对未来将奥马环素和其他四环素类抗生素作为肠道微生物组研究一部分的研究具有重要意义。