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Acetylcholinesterase Inhibitory Activity After invitro Gastrointestinal Digestion of Infusions ofMentha Species

机译:薄荷脑输注物体外胃肠道消化后对乙酰胆碱酯酶的抑制活性

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Aims: To study the acetylcholinesterase inhibitory activity of Mentha infusions before and after the gastrointestinal digestion and to correlate this activity with the chemical compounds present in these infusions.Place and Duration of Study: Fresh Mentha x piperita, M. spicata, M. pulegium were bought in a local supermarket. These plants were composed of leaves, stems and flowers for the identification, which was carried out in Plant Biotechnology Centre, Faculty of Sciences, University of Lisbon. The chemical identification of the infusions and the enzymatic tests were carried out in the Center of Chemistry & Biochemistry, Faculty of Science University of Lisbon from September 2010 till June 2011.Methodology: The compounds present in the infusions were identified by LC-MS. The enzyme activity assay was carried out using a spectrophotometric method. The digestive simulation was accomplished using enzymatic juices prepared in the laboratory and Caco-2 cells lines simulating the intestine barrier.Results: All the Mentha infusions contained rosmarinic acid. M. spicata infusion contained also eriocitrin and eriodictyol. The IC50 values for acetylcholinesterase inhibitory activity of the infusions, before digestion, stayed between 0.72 and 1.9 mg/mL. These activities are statistically different at p50 equal to 0.439 mg/mL (1.22 mM), eriocitrin and eriodictyol have IC50 equal to 0.439 mg/mL (0.29 mM) and 0.256 mg/mL (0.89 mM) respectively. The presence of these two flavonoids, eriocitrin and eriodictyol, can account for the higher activity detected for M. spicata. The gastric juice or the pancreatic juices used to simulate the gastrointestinal digestion did not originate any difference in the chemical composition of the infusions (analysed by HPLC-DAD). This was also corroborated by the enzymatic tests. The Caco-2 cells did not originate any modification in the enzymatic activity of the infusions. The analysis of the cell homogenate revealed the presence of rosmarinic acid and the phenolic compounds, although in minor amount.Conclusion: Mentha infusions have the capacity to inhibit acetylcholinesterase, due to the presence of rosmarinic acid, eriocitrin and eriodictyol The composition of the Mentha herbal teas was not modified by the gastro-intestinal juices, or by the intestinal cell line.
机译:目的:研究薄荷消化液在消化之前和之后对乙酰胆碱酯酶的抑制作用,并将其与这些消化液中存在的化合物相关联。研究的地点和持续时间:新鲜薄荷(Mentha x piperita),辣根霉(M. spicata),小豆腐霉(M. pulegium)在当地一家超市买的。这些植物由叶,茎和花组成,用于鉴定,该鉴定在里斯本大学理学院植物生物技术中心进行。于2010年9月至2011年6月在里斯本科学大学化学与生物化学中心进行了输液的化学鉴定和酶促测试。方法:通过LC-MS鉴定了输液中存在的化合物。使用分光光度法进行酶活性测定。使用实验室制备的酶液和模拟肠屏障的Caco-2细胞系完成了消化模拟。结果:所有的薄荷脑输注液均含有迷迭香酸。辣根分枝杆菌输注液中还含有eriocitrin和eriodictyol。消化前,输注液对乙酰胆碱酯酶抑制活性的IC50值保持在0.72至1.9 mg / mL之间。这些活性在p50等于0.439 mg / mL(1.22 mM)时在统计学上是不同的,eriocitrin和eriodictyol的IC50分别等于0.439 mg / mL(0.29 mM)和0.256 mg / mL(0.89 mM)。这两种类黄酮,eriocitrin和eriodictyol的存在,可以解释检测到的M. spicata较高的活性。用于模拟胃肠消化的胃液或胰液在输液的化学组成上没有任何差异(通过HPLC-DAD分析)。酶促测试也证实了这一点。 Caco-2细胞在输液酶活性方面未发生任何改变。细胞匀浆物的分析显示了迷迭香酸和酚类化合物的存在,尽管量很小。茶没有被肠胃液或肠细胞系修饰。

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