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首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Intestinal transport of 3,6′-disinapoylsucrose, a major active component of polygala tenuifolia, using caco-2 cell monolayer and in situ rat intestinal perfusion models
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Intestinal transport of 3,6′-disinapoylsucrose, a major active component of polygala tenuifolia, using caco-2 cell monolayer and in situ rat intestinal perfusion models

机译:使用caco-2细胞单层和原位大鼠肠灌注模型肠运输3,6'-二inapoyl蔗糖(远志的主要活性成分)

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3,6′-Disinapoylsucrose is a major active component of the herb Polygala tenuifolia which has long been used for relieving tranquilization, uneasiness of the mind, and improving learning and memory. Our previous study found that 3,6′-disinapoylsucrose had a very low oral bioavailability. Its mechanisms of absorption in the small intestine have so far been unclear. In the present study, the absorption mechanisms of 3,6′-disinapoylsucrose were investigated by using the Caco-2 cell monolayer and in situ rat intestinal perfusion models. The 3,6′-disinapoylsucrose concentration was determined by an LC/MS/MS method. In a Caco-2 cell transport study, the results showed that 3,6′-disinapoylsucrose had very limited intestinal permeability with average apparent permeability coefficient values around (1.11-1.34) × 10-7 cm/s from the apical (A) to the basolateral (B) side and (1.37-1.42) × 10-7 cm/s from B to A, at concentrations of 5, 20, and 33 M. No concentration dependence in the 3,6′-disinapoylsucrose transport was observed. The apparent permeability coefficient value of 3,6′-disinapoylsucrose (5 M) from A to B greatly increased to 4.49 × 10-7 and 1.81 × 10-7 cm/s, respectively, when the cells were preincubated with EDTA (17 mM) and sodium caprate (5.14 mM). No significant effect on the 3,6′-disinapoylsucrose transport by the inhibitors including verapamil, cyclosporine A, and sodium azide was observed. Similar results were found in the small intestinal perfusion study. The apparent permeability coefficient value of 3,6′-disinapoylsucrose greatly increased from 3.97 × 10-6 to 23.4 × 10-6 and 20.0 × 10-6 cm/s in the presence of EDTA (17 mM) and sodium caprate (5.14 mM), respectively, in perfusion buffer. An in vitro stability evaluation of 3,6′-disinapoylsucrose in the gastrointestinal tract showed that it was relatively stable both in the stomach and small intestine contents, while it was found to be more instable in the colon contents. All of the above results indicate that 3,6′-disinapoylsucrose might be transported across the intestinal mucosa by paracellular passive penetration and paracellular enhancers could increase the intestinal permeability of this compound and thus slightly improve its oral bioavailability.
机译:3,6'-二豆基蔗糖是远志(Polygala tenuifolia)的主要活性成分,长期以来被用于缓解镇静,头脑的不安和改善学习和记忆。我们先前的研究发现3,6'-二豆基蔗糖的口服生物利用度非常低。迄今为止,其在小肠中的吸收机理尚不清楚。在本研究中,通过使用Caco-2细胞单层和原位大鼠肠灌注模型研究了3,6'​​-二萘并蔗糖的吸收机制。通过LC / MS / MS方法确定3,6'-二芥基蔗糖浓度。在一项Caco-2细胞转运研究中,结果表明3,6'-二豆基蔗糖的肠道通透性非常有限,从顶端(A)到顶端的平均表观渗透系数值约为(1.11-1.34)×10-7 cm / s。从B到A的基底外侧(B)侧和(1.37-1.42)×10-7 cm / s,在5、20和33 M的浓度下。未观察到3,6'-二芥子酰基蔗糖转运的浓度依赖性。当将细胞与EDTA(17 mM)预孵育时,3,6'-二叠基蔗糖(5 M)从A到B的表观渗透系数值分别大大增加至4.49×10-7和1.81×10-7 cm / s )和癸酸钠(5.14 mM)。没有观察到抑制剂对维拉帕米,环孢素A和叠氮化钠的3,6'-二叠基蔗糖转运没有显着影响。在小肠灌注研究中发现了相似的结果。在EDTA(17 mM)和碳酸氢钠(5.14 mM)存在的情况下,3,6'-二叠基蔗糖的表观渗透系数值从3.97×10-6显着增加到23.4×10-6和20.0×10-6 cm / s )分别放在灌注缓冲液中。胃肠道中3,6'-二萘并蔗糖的体外稳定性评估表明,它在胃和小肠中均相对稳定,而在结肠中则更不稳定。以上所有结果表明,3,6'-二叠基蔗糖可能通过细胞旁被动渗透而跨肠粘膜转运,细胞旁增强剂可以增加该化合物的肠道通透性,从而略微提高其口服生物利用度。

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