首页> 美国卫生研究院文献>Biomolecules >Human Saliva-Mediated Hydrolysis of Eugenyl-β-D-Glucoside and Fluorescein-di-β-D-Glucoside in In Vivo and In Vitro Models
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Human Saliva-Mediated Hydrolysis of Eugenyl-β-D-Glucoside and Fluorescein-di-β-D-Glucoside in In Vivo and In Vitro Models

机译:人类唾液介导的烯烯基-β-D-葡糖苷的水解和体内和体外模型中的荧光素-DI-β-D-葡萄糖苷的水解

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摘要

Eugenyl-β-D-glucopyranoside, also referred to as Citrusin C, is a natural glucoside found among others in cloves, basil and cinnamon plants. Eugenol in a form of free aglycone is used in perfumeries, flavourings, essential oils and in medicinal products. Synthetic Citrusin C was incubated with human saliva in several in vitro models together with substrate-specific enzyme and antibiotics (clindamycin, ciprofloxacin, amoxicillin trihydrate and potassium clavulanate). Citrusin C was detected using liquid chromatography with tandem mass spectrometry (LC-MS/MS). Citrusin C was completely degraded only when incubated with substrate-specific A. niger glucosidase E.C 3.2.1.21 (control sample) and when incubated with human saliva (tested sample). The addition of antibiotics to the above-described experimental setting, stopped Citrusin C degradation, indicating microbiologic origin of hydrolysis observed. Our results demonstrate that Citrusin C is subjected to complete degradation by salivary/oral cavity microorganisms. Extrapolation of our results allows to state that in the human oral cavity, virtually all β-D-glucosides would follow this type of hydrolysis. Additionally, a new method was developed for an in vivo rapid test of glucosidase activity in the human mouth on the tongue using fluorescein-di-β-D-glucoside as substrate. The results presented in this study serve as a proof of concept for the hypothesis that microbial hydrolysis path of β-D-glucosides begins immediately in the human mouth and releases the aglycone directly into the gastrointestinal tract.
机译:烯基-β-D-葡糖吡喃糖苷,也称为柑橘C,是丁香,罗勒和肉桂植物中的天然葡糖苷。以一种游离糖苷糖酮形式的丁醇用于香水,调味料,精油和药品。合成的柑橘蛋白C与人类唾液中的几种体外模型一起与底物特异性酶和抗生素(Clindamycin,Ciprofloxacin,Amoxicillin Trihydrate和酰氨硅酸钾)一起温育。使用具有串联质谱(LC-MS / MS)的液相色谱检测柑橘蛋白C.仅当与底物特异性A. niger葡萄糖苷酶E.C 3.2.1.21(对照样品)温育时,柑橘蛋白C仅完全降解,并且与人类唾液(测试样品)温育时。向上述实验设置添加抗生素,停止柑橘类氯蛋白C降解,表明观察到的微生物泌乳起源。我们的结果表明,柑橘类C受到唾液/口腔微生物的完全降解。我们的结果外推允许说明在人口腔中,几乎所有β-D-葡糖苷都会遵循这种类型的水解。另外,使用荧光素-iβ-D-葡糖苷作为衬底,开发了一种新方法,用于在舌头上的人口中的人口中的葡糖苷酶活性。本研究中提出的结果是假设β-D-葡糖苷的微生物水解路径在人口中开始的假设并将糖精直接释放到胃肠道中的概念证据。

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