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Evaluation of the bioavailability of major withanolides of Withania somnifera using an in vitro absorption model system

机译:使用体外吸收模型系统评估Withania的主要Withanolides的生物利用度

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Withania somnifera (L.) Dunal, shows several pharmacological properties which are attributed mainly to the withanolides present in the root. The efficacy of medicinally active withanolides constituents depends on the absorption and transportation through the intestinal epithelium. We examined these characteristics by employing the Sino-Veda Madin-Darby canine kidney cells culture system, which under in vitro condition shows the absorption characteristics similar to the human intestinal epithelium. Thus, the aim of the present investigation was to assess the bioavailability of individual withanolides. Withanolides were diluted in Hank's buffered saline at a concentration of 2 μg/ml were tested for permeability studies carried out for 1 h duration. Permeability was measured in terms of efflux pump (Peff) in cm/s. Peff values of withanolide A (WN A), withanone (WNN), 1,2-deoxywithastramonolide (1,2 DWM), withanolide B (WN B), withanoside IV-V (WS IV-V), and withaferin A were 4.05 × 10?5, 2.06 × 10?5, 1.97 × 10?5, 1.80 × 10?5, 3.19 × 10?6, 3.03 × 10?6 and 3.30 × 10?7 respectively. In conclusion, the nonpolar and low molecular weight compounds (WN A, WNN, 1,2 DWM, and WN B) were highly permeable. As against this, the glycosylated and polar WS IV and WS V showed low permeability. Surprisingly and paradoxically, the highly biologically active withaferin A was completely impermeable, suggesting that further studies possibly using human epithelial colorectal adenocarcinoma (Caco-2) cells may be needed to delineate the absorption characteristics of withanolides, especially withaferin A.Keywords: Absorption model, ashwagandha, bioavailability, Caco-2 cells, Madin-Darby canine kidney cells, withanolides
机译:Withania somnifera(L.)Dunal具有几种药理特性,主要归因于根中存在的withanolides。具有药用活性的山梨醇成分的功效取决于通过肠上皮的吸收和运输。我们通过使用Sino-Veda Madin-Darby犬肾细胞培养系统检查了这些特性,该系统在体外条件下显示出与人肠上皮相似的吸收特性。因此,本研究的目的是评估单独的醇化物的生物利用度。在Hank的缓冲盐水中以2μg/ ml的浓度稀释Withanolides,并进行1小时的渗透性研究。渗透率以流出泵(Peff)为单位,以cm / s为单位。 anol醇A(WNA),with酮(WNN),1,2-脱氧with草内酯(1,2 DWM),with醇B(WN B),with糖苷IV-V(WS IV-V)和,草素A的Peff值为4.05 ×10×5、2.06×10×5、1.97×10×5、1.80×10×5、3.19×10×6、3.03×10×6和3.30×10×7。总之,非极性和低分子量化合物(WNA,WNN,1,2 DWM和WNB)具有高渗透性。与此相反,糖基化和极性的WS IV和WS V显示出低渗透性。令人惊讶和矛盾的是,具有高生物活性的阿瑟福林A完全不能渗透,这表明可能需要进一步的研究,使用人上皮结肠直肠腺癌(Caco-2)细胞来描述阿托福内酯的吸收特性,尤其是阿瑟福林A。 ashwagandha,生物利用度,Caco-2细胞,Madin-Darby犬肾细胞,withanolides

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