Mahamoud Reem, Bowman David T, Ward Wendy E, Mangal Vaughn
Brock University, Department of Chemistry, Canada.
Brock-Niagara Validation, Prototyping and Manufacturing Institute, Canada.
Food Chem. 2024 Aug 1;448:139068. doi: 10.1016/j.foodchem.2024.139068. Epub 2024 Mar 20.
Preclinical rodent models are used to examine the relationship between tea consumption and bone health, where tea is available for rodents and typically replaced weekly. However, the extent to which the tea polyphenols change over time remains uncertain, despite its importance in preparing tea during preclinical rodent trials. Using an untargeted molecular approach, we applied a liquid chromatography quadrupole-time-of-flight mass spectrometry (LC-QTOFMS) system to assess the molecular profile of red rooibos teas throughout a 6-day aging period. We found a significant, 3-fold decrease of polyphenols involved in bone metabolism, including m-coumaric acid, catechin derivatives and courmaroyl tartaric acid over 6 days, likely due to photochemical decomposition and autooxidation within tea extracts. Using a novel untargeted workflow for polyphenol characterization, our findings revealed the complexity of polyphenols in red rooibos teas that can inform the evidence-based decisions of how often to change teas during in vivo rodent trials.
临床前啮齿动物模型用于研究饮茶与骨骼健康之间的关系,在该模型中,啮齿动物可以获取茶叶,且通常每周更换一次。然而,尽管茶多酚在临床前啮齿动物试验的茶叶制备过程中很重要,但其随时间变化的程度仍不确定。我们采用非靶向分子方法,应用液相色谱四极杆飞行时间质谱(LC-QTOFMS)系统评估了6天陈化期内的南非红叶茶分子概况。我们发现,参与骨骼代谢的多酚,包括间香豆酸、儿茶素衍生物和香豆酰酒石酸,在6天内显著减少了3倍,这可能是由于茶叶提取物中的光化学分解和自动氧化所致。通过一种用于多酚表征的新型非靶向工作流程,我们的研究结果揭示了南非红叶茶中多酚的复杂性,这可为体内啮齿动物试验中茶叶更换频率的循证决策提供参考。