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番荔枝(Annona atemoya)的体外和体内食物-药物相互作用评估。

In Vitro and In Vivo Assessment of Atemoya Fruit (Annona atemoya) for Food-Drug Interactions.

机构信息

Faculty of Pharmaceutical Sciences, Sojo University, 4-22-1 Ikeda, Nishi-ku, Kumamoto, 862-0082, Japan.

DDS Research Institute, Sojo University, 4-22-1 Ikeda, Nishi-ku, Kumamoto, Japan.

出版信息

Eur J Drug Metab Pharmacokinet. 2022 Mar;47(2):177-185. doi: 10.1007/s13318-021-00739-4. Epub 2021 Dec 9.

Abstract

BACKGROUND AND OBJECTIVES

Atemoya (Annona atemoya) is increasingly being consumed worldwide because of its pleasant taste. However, only limited information is available concerning possible atemoya-drug interactions. In the present study, the issue of whether atemoya shows food-drug interactions with substrate drugs of the major drug-metabolizing cytochrome P450s (i.e., CYP1A2, CYP2C9, and CYP3A) is addressed.

METHODS

The ability of atemoya juice to inhibit the activities of phenacetin O-deethylase (CYP1A2), diclofenac 4'-hydroxylase (CYP2C9), and midazolam 1'-hydroxylase (CYP3A) was examined in vitro using human and rat liver microsomes. The in vivo pharmacokinetics of phenacetin and metabolites derived from it in rats when atemoya juice or fluvoxamine (a CYP1A2 inhibitor) was preadministered were also investigated.

RESULTS

Atemoya juice significantly inhibited CYP1A2 activity in human liver microsomes, but not the activities of CYP2C9 and CYP3A. In spite of this inhibition, preadministration of atemoya had no effect on the pharmacokinetics of phenacetin, a CYP1A2 substrate, in rats. Meanwhile, preadministration of fluvoxamine significantly extended the time needed for the elimination of phenacetin, possibly due to the inhibition of CYP1A2. This suggests that the intake of an excess amount of atemoya juice is necessary to cause a change in the pharmacokinetics of phenacetin when the IC values for CYP1A2 inhibition by atemoya and fluvoxamine are taken into account.

CONCLUSION

The results indicate that a daily intake of atemoya would not change the pharmacokinetics of CYP1A2 substrates such as phenacetin as well as CYP2C9- and CYP3A-substrate drugs.

摘要

背景与目的

由于口感宜人,波萝蜜(Annona atemoya)在全球范围内的消费量日益增加。然而,关于波萝蜜是否与主要药物代谢细胞色素 P450(即 CYP1A2、CYP2C9 和 CYP3A)的底物药物发生食物-药物相互作用,目前仅有有限的信息。本研究旨在探讨波萝蜜汁是否对细胞色素 P450 同工酶的活性有抑制作用。

方法

采用人及大鼠肝微粒体,考察波萝蜜汁对非那西丁 O-去乙基酶(CYP1A2)、双氯芬酸 4'-羟化酶(CYP2C9)和咪达唑仑 1'-羟化酶(CYP3A)的体外抑制作用。还研究了大鼠预先给予波萝蜜汁或氟伏沙明(CYP1A2 抑制剂)后,非那西丁及其代谢物的体内药代动力学。

结果

波萝蜜汁显著抑制人肝微粒体中的 CYP1A2 活性,但不抑制 CYP2C9 和 CYP3A 活性。尽管有这种抑制作用,但预先给予波萝蜜对大鼠 CYP1A2 底物非那西丁的药代动力学没有影响。同时,预先给予氟伏沙明可显著延长非那西丁的消除时间,这可能是由于 CYP1A2 的抑制作用。这表明,当考虑到波萝蜜和氟伏沙明对 CYP1A2 抑制的 IC 值时,摄入过量的波萝蜜汁可能会改变非那西丁的药代动力学。

结论

结果表明,每日摄入波萝蜜不会改变非那西丁等 CYP1A2 底物以及 CYP2C9 和 CYP3A 底物药物的药代动力学。

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