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首页> 外文期刊>Molecules >Bioavailability of Echinacea Constituents: Caco-2 Monolayers and Pharmacokinetics of the Alkylamides and Caffeic Acid Conjugates
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Bioavailability of Echinacea Constituents: Caco-2 Monolayers and Pharmacokinetics of the Alkylamides and Caffeic Acid Conjugates

机译:紫锥菊成分的生物利用度:Caco-2单分子层和烷基酰胺和咖啡酸结合物的药代动力学。

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摘要

Many studies have been done over the years to assess the effectiveness of Echinacea as an immunomodulator. We have assessed the potential bioavailability of alkylamides and caffeic acid conjugates using Caco-2 monolayers and compared it to their actual bioavailability in a Phase I clinical trial. The caffeic acid conjugates permeated poorly through the Caco-2 monolayers. Alkylamides were found to diffuse rapidly through Caco-2 monolayers. Differences in diffusion rates for each alkylamide correlated to structural variations, with saturation and N-terminal methylation contributing to decreases in diffusion rates. Alkylamide diffusion is not affected by the presence of other constituents and the results for a synthetic alkylamide were in line with those for alkylamides found in an ethanolic Echinacea preparation. We examined plasma from healthy volunteers for 12 hours after ingestion of Echinacea tablets manufactured from an ethanolic liquid extract. Caffeic acid conjugates could not be identified in any plasma sample at any time after tablet ingestion. Alkylamides were detected in plasma 20 minutes after tablet ingestion and for each alkylamide, pharmacokinetic profiles were devised. The data are consistent with the dosing regimen of one tablet three times daily and supports their  usage as the primary markers for quality Echinacea preparations.
机译:多年来,已经进行了许多研究来评估紫锥菊作为免疫调节剂的有效性。我们已经评估了使用Caco-2单层的烷基酰胺和咖啡酸缀合物的潜在生物利用度,并将其与I期临床试验中的实际生物利用度进行了比较。咖啡酸共轭物很难透过Caco-2单层。发现烷基酰胺迅速扩散通过Caco-2单层。每种烷基酰胺的扩散速率差异与结构变化相关,饱和和N端甲基化可导致扩散速率降低。烷基酰胺的扩散不受其他成分的存在的影响,合成烷基酰胺的结果与乙醇紫锥菊属制剂中发现的烷基酰胺的结果一致。摄入由乙醇提取液制成的紫锥菊片后,我们检查了健康志愿者的血浆12小时。片剂摄入后任何时间都无法在任何血浆样品中鉴定出咖啡酸结合物。片剂摄取后20分钟,血浆中检测到烷基酰胺,并针对每种烷基酰胺设计了药代动力学曲线。数据与每天3次1片的给药方案一致,并支持将其用作优质紫锥菊制剂的主要标志物。

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