首页> 外文OA文献 >Echinacea sanguinea and Echinacea pallida Extracts Stimulate Glucuronidation and Basolateral Transfer of Bauer Alkamides 8 and 10 and Ketone 24 and Inhibit P-glycoprotein Transporter in Caco-2 Cells
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Echinacea sanguinea and Echinacea pallida Extracts Stimulate Glucuronidation and Basolateral Transfer of Bauer Alkamides 8 and 10 and Ketone 24 and Inhibit P-glycoprotein Transporter in Caco-2 Cells

机译:紫锥菊和紫锥菊提取物刺激Bauer Alkamides 8和10和Ketone 24的葡萄糖醛酸化和基底外侧转移,并抑制Caco-2细胞中的P-糖蛋白转运蛋白。

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摘要

The use of Echinacea as a medicinal herb is prominent in the United States, and many studies have assessed the effectiveness of Echinacea as an immunomodulator. We hypothesized that Bauer alkamides 8, 10, and 11 and ketone 24 were absorbed similarly either as pure compounds or from Echinacea sanguinea and Echinacea pallida ethanol extracts, and that these Echinacea extracts could inhibit the P-glycoprotein transporter in Caco-2 human intestinal epithelial cells. Using HPLC analysis, the permeation rate of Bauer alkamides by passive diffusion across Caco-2 cells corresponded with compound hydrophilicity (alkamide 8 u3e 10 u3e 11), independent of the plant extract matrix. Both Echinacea ethanol extracts stimulated apparent glucuronidation and basolateral efflux of glucuronides of alkamides 8 and 10 but not alkamide 11. Bauer ketone 24 was totally metabolized to more hydrophilic metabolites when administered as a single compound, but was also glucuronidated when present in Echinacea extracts. Bauer alkamides 8, 10, and 11 (175– 230 μM) and ethanol extracts of E. sanguinea (1 mg/mL, containing ~ 90 μM total alkamides) and E. pallida (5 mg/mL, containing 285 μM total alkamides) decreased the efflux of the P-glycoprotein transporter probe calcein-AM from Caco- 2 cells. These results suggest that other constituents in these Echinacea extracts facilitated the metabolism and efflux of alkamides and ketones, which might improve therapeutic benefits. Alkamides and Echinacea extracts might be useful in potentiating some chemotherapeutics, which are substrates for the P-glycoprotein transporter.
机译:紫锥菊作为药用植物在美国很重要,许多研究已经评估了紫锥菊作为免疫调节剂的有效性。我们假设鲍尔烷酰胺8、10和11和酮24作为纯化合物或从紫锥菊(Echinacea sanguinea)和紫锥菊(Echinacea pallida)乙醇提取物中被相似地吸收,并且这些紫锥菊提取物可以抑制Caco-2人肠上皮细胞中的P-糖蛋白转运蛋白。细胞。使用HPLC分析,鲍威尔烷酰胺通过被动扩散穿过Caco-2细胞的渗透率与化合物亲水性相对应(烷酰胺8 u10 u11 e11),与植物提取物基质无关。两种松果菊乙醇提取物均刺激表观的葡糖醛酸化和链烷酰胺8和10的葡糖醛酸苷的基底外侧流出,但不刺激链烷酰胺11的Bauer酮排泄。鲍尔酮24当作为单一化合物给药时被完全代谢为亲水性更高的代谢物,但是当存在于松果菊提取物中时也被葡萄糖醛酸化。鲍尔(Bauer)酰胺8、10和11(175-230μM)以及桑地尼大肠埃希菌(1 mg / mL,含〜90μM总烷酰胺)和p。大肠杆菌(5 mg / mL,含285μM总乙酰胺)的乙醇提取物降低了P-糖蛋白转运蛋白探针钙黄绿素-AM从Caco-2细胞的流出。这些结果表明,这些紫锥菊提取物中的其他成分促进了烷酰胺和酮的代谢和外排,这可能会改善治疗效果。烷基酰胺和紫锥菊提取物可能用于增强某些化学治疗药物,这是P-糖蛋白转运蛋白的底物。

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