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首页> 外文期刊>Clinical Pharmacology and Therapeutics >Bergamottin contribution to the grapefruit juice-felodipine interaction and disposition in humans.
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Bergamottin contribution to the grapefruit juice-felodipine interaction and disposition in humans.

机译:佛手柑对人类葡萄柚汁-非洛地平的相互作用和性状的贡献。

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OBJECTIVES: Our objectives were to evaluate the contribution of bergamottin to the grapefruit juice-felodipine interaction and to characterize bergamottin disposition. METHODS: In this study 250 mL grapefruit juice; 2-, 6-, or 12-mg capsules of bergamottin plus water; or water was administered with 5 mg extended-release felodipine to 11 volunteers in a partially randomized, 5-way crossover study. Plasma concentrations of felodipine, its primary metabolite (dehydrofelodipine), bergamottin, and 6',7'-dihydroxybergamottin were determined. RESULTS: Grapefruit juice (containing 1.7 mg bergamottin) increased peak plasma concentration (C max ) and area under the plasma concentration-time curve (AUC) of felodipine by 89% (P < .025) and 54% (P < .025), respectively, compared with water. With 2 mg bergamottin, felodipine C max increased by 33% (P < .05). The increase by bergamottin was markedly variable among individuals (range, -33% to 125%). With 6 mg bergamottin, felodipine C max was enhanced by 35% (P < .025), and with 12 mg bergamottin, felodipine C max increased by 40% (P < .05) and AUC increased by 37% (P < .05) compared with water. Bergamottin measured in plasma after administration of 6 and 12 mg produced C max values of 2.1 and 5.9 ng/mL, respectively, and times to reach C max of 0.8 and 1.1 hours, respectively. The bergamottin metabolite 6',7'-dihydroxybergamottin was detected in plasma of some subjects after bergamottin administration. CONCLUSIONS: Bergamottin enhanced the oral bioavailability of felodipine and may cause a clinically relevant drug interaction in susceptible individuals. Grapefruit juice-drug interactions likely also involve other furanocoumarins, possibly acting in combination by additive or synergistic mechanisms. Bergamottin has systemic availability and is metabolized in vivo to 6',7'-dihydroxybergamottin.
机译:目的:我们的目的是评估佛手柑对葡萄柚汁-非洛地平相互作用的贡献,并表征佛手柑的特性。方法:本研究中使用250毫升西柚汁。 2毫克,6毫克或12毫克佛手柑胶囊加水;在部分随机的5分法交叉研究中,将11 mg的水或5 mg缓释非洛地平给予水。测定了非洛地平,其主要代谢产物(脱氢非洛地平),佛手柑和6',7'-二羟基佛手柑的血浆浓度。结果:西柚汁(含1.7 mg佛手柑)使非洛地平的血浆峰值浓度(C max)和血浆浓度-时间曲线下面积(AUC)分别增加89%(P <.025)和54%(P <.025)分别与水相比。使用2 mg佛手素,非洛地平C max增加33%(P <.05)。佛手柑的增加在个体之间显着变化(范围-33%至125%)。使用6 mg佛手素时,非洛地平C max增加35%(P <.025),而使用12 mg佛手素时,非洛地平C max增加40%(P <.05),AUC增加37%(P <.05) )与水相比。施用6和12 mg血浆后测得的佛手柑的C max值分别为2.1和5.9 ng / mL,达到C max的时间分别为0.8和1.1小时。服用佛手柑后,在某些受试者的血浆中检出了佛手柑代谢物6',7'-二羟基佛手柑。结论:Bergamottin增强了非洛地平的口服生物利用度,并可能在易感人群中引起临床相关的药物相互作用。葡萄柚汁与药物的相互作用也可能涉及其他呋喃香豆素,可能通过加成或协同机制共同发挥作用。佛手柑具有全身可用性,并且在体内代谢为6',7'-二羟基佛手柑。

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