苯妥英与草药的药理相互作用研究进展

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL
Pharmazie Pub Date : 2023-07-01 DOI:10.1691/ph.2023.3546
M H Taleb
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引用次数: 1

摘要

衰老、妊娠、营养状况、药物相互作用等引起的生理变化,可影响抗癫痫药物的药代动力学和药效学。在这篇综述文章中,根据Medline数据库(通过PubMed)对文献中记录的苯妥英与草药的相互作用进行了总结。我们的研究结果显示,苯妥英的生物利用度的变化报告了共同给药的草药或草药提取物。在体外和/或体内研究中,研究人员发现胡椒、薄荷糖和脂肪会增加苯妥英血液水平。相比之下,在其他情况下,草药苯妥英的相互作用导致苯妥英的亚治疗水平,如大麻,银杏叶,桑葚,黑葛,和三角耳。此外,其他药效学实验结果表明,包括酸枣、chebula、姜黄、积雪草在内的多种草药都能提高苯妥英的药理作用。为了减少患者的健康风险,参与治疗的卫生专业人员应接受有关苯妥英与药用植物之间相互作用的全面教育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phenytoin's Pharmacological Interactions with Medicinal Herbs: A Review.

Physiologic changes due to aging, pregnancy, nutritional status, drug interactions, and can affect pharmacokinetics and pharmacodynamics of antiepileptic drugs. In this review article, the interactions between phenytoin and herbs recorded in the literature were summarized according to the Medline database (via PubMed). Our results revealed that, changes in phenytoin's bioavailability were reported for co-administration of herbs or herbal extracts. An increase in phenytoin blood levels was established with Piper nigrum, Mentat, and Lipidum sativum in in vitro and/or in vivo studies. In contrast, herbphenytoin interactions led to sub-therapeutic levels of phenytoin in other cases with herbs such as Cannabis, Ginkgo biloba, Morinda citrifolia, Nigella sativa, and Trigonella foenum graceum. In addition, the findings of other pharmcodynamic experiments showed that various herbs, including Zizyphus jujube, Terminalia chebula, Curcuma longa L, and Centella asiatica, improved the pharmacological impact of phenytoin. To reduce the patients' health risks, health professionals involved in their treatment are expected to be thoroughly educated about the interactions between phenytoin and medicinal plants.

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来源期刊
Pharmazie
Pharmazie 医学-化学综合
CiteScore
3.10
自引率
0.00%
发文量
56
审稿时长
1.2 months
期刊介绍: The journal DiePharmazie publishs reviews, experimental studies, letters to the editor, as well as book reviews. The following fields of pharmacy are covered: Pharmaceutical and medicinal chemistry; Pharmaceutical analysis and drug control; Pharmaceutical technolgy; Biopharmacy (biopharmaceutics, pharmacokinetics, biotransformation); Experimental and clinical pharmacology; Pharmaceutical biology (pharmacognosy); Clinical pharmacy; History of pharmacy.
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