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Evaluation of the intestinal permeability of rosemary (Rosmarinus officinalis L.) extract polyphenols and terpenoids in Caco-2 cell monolayers

机译:迷迭香(Rosmarinus officinalis L.)提取物多酚和萜类化合物在Caco-2细胞单层中的肠通透性评估

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摘要

Rosemary (Rosmarinus officinalis) is grown throughout the world and is widely used as a medicinal herb and to season and preserve food. Rosemary polyphenols and terpenoids have attracted great interest due to their potential health benefits. However, complete information regarding their absorption and bioavailability in Caco-2 cell model is scarce. The permeation properties of the bioactive compounds (flavonoids, diterpenes, triterpenes and phenylpropanoids) of a rosemary extract (RE), obtained by supercritical fluid extraction, was studied in Caco-2 cell monolayer model, both in a free form or liposomed. Compounds were identified and quantitated by liquid chromatography coupled to quadrupole time-of-flight with electrospray ionization mass spectrometry analysis (HPLC-ESI-QTOF-MS), and the apparent permeability values (Papp) were determined, for the first time in the extract, for 24 compounds in both directions across cell monolayer. For some compounds, such as triterpenoids and some flavonoids, Papp values found were reported for the first time in Caco-2 cells.Our results indicate that most compounds are scarcely absorbed, and passive diffusion is suggested to be the primary mechanism of absorption. The use of liposomes to vehiculize the extract resulted in reduced permeability for most compounds. Finally, the biopharmaceutical classification (BCS) of all the compounds was achieved according to their permeability and solubility data for bioequivalence purposes. BCS study reveal that most of the RE compounds could be classified as classes III and IV (low permeability); therefore, RE itself should also be classified into this category.
机译:迷迭香(Rosmarinus officinalis)在世界范围内种植,被广泛用作药草并调味和保存食物。迷迭香多酚和萜类化合物由于其潜在的健康益处而引起了人们的极大兴趣。但是,关于它们在Caco-2细胞模型中的吸收和生物利用度的完整信息很少。通过超临界流体萃取获得的迷迭香提取物(RE)的生物活性化合物(类黄酮,二萜,三萜和苯基丙烷)的渗透特性在Caco-2细胞单层模型中以游离形式或脂质体进行了研究。通过液相色谱与四极杆飞行时间结合电喷雾电离质谱分析(HPLC-ESI-QTOF-MS)鉴定和定量化合物,并首次确定提取物中的表观渗透率值(Papp)在整个细胞单层的两个方向上都有24种化合物。对于某些化合物,例如三萜类化合物和某些类黄酮类化合物,首次在Caco-2细胞中发现了Papp值。我们的结果表明大多数化合物几乎不被吸收,而被动扩散被认为是吸收的主要机制。使用脂质体对提取物进行机械化导致大多数化合物的通透性降低。最后,根据用于生物等效性的渗透性和溶解度数据,对所有化合物进行了生物药物分类(BCS)。 BCS研究表明,大多数可再生能源化合物可分为III级和IV级(低渗透性)。因此,可再生能源本身也应归入这一类别。

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