Approaching strategy to increase the oral bioavailability of berberine, a quaternary ammonium isoquinoline alkaloid: part 2. development of oral dosage formulations.

IF 3.9 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Teruo Murakami, Erik Bodor, Nicholas Bodor
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引用次数: 2

Abstract

Introduction: Berberine (BBR) possesses a wide variety of pharmacological activities. However, the oral bioavailability of BBR is low due to extensive intestinal first-pass metabolism by cytochrome P450s (CYPs), insufficient absorption due to low solubility and P-glycoprotein (P-gp)-mediated efflux transport, and hepatic first-pass metabolism in rats.

Areas covered: Various dosage formulations were developed to increase the oral bioavailability of BBR by overcoming the reducing factors. This article provides the developing strategy of oral dosage formulations of BBR based on the physicochemical (low solubility, formation of salts/ion-pair complex) and pharmacokinetic properties (substrate of P-gp/CYPs, extensive intestinal first-pass metabolism). Literature was searched using PubMed.

Expert opinion: Here, formulations increasing the dissolution rates/solubility; formulations containing a P-gp inhibitor; formulations containing solubilizer exhibiting P-gp and/or CYPs inhibitors; formulations containing absorption enhancers; gastro/duodenal retentive formulations; lipid-based formulations; formulations targeting lymphatic transport; and physicochemical modifications increasing lipophilicity were reviewed. Among these formulations, formulations that can reduce intestinal first-pass metabolisms such as formulations containing CYPs inhibitor(s) and formulations containing absorption enhancer(s) significantly increased the oral bioavailability of BBR. Further studies on other dosing routes that can avoid first-pass metabolism such as the rectal route would also be important to increase the bioavailability of BBR.

提高季铵盐异喹啉生物碱小檗碱口服生物利用度的探讨策略:第二部分。开发口服剂型。
小檗碱(Berberine, BBR)具有多种药理活性。然而,由于细胞色素p450 (CYPs)广泛的肠道首过代谢、低溶解度和p -糖蛋白(P-gp)介导的外排转运以及大鼠肝脏首过代谢,BBR的口服生物利用度较低。涉及领域:开发了各种剂量配方,通过克服减少因素来提高BBR的口服生物利用度。本文根据BBR的理化特性(低溶解度,形成盐/离子对复合物)和药代动力学特性(P-gp/CYPs底物,广泛的肠道首过代谢),提出了口服剂型的开发策略。文献检索使用PubMed。专家意见:这里,配方增加了溶解速率/溶解度;含有P-gp抑制剂的配方;含有P-gp和/或CYPs抑制剂的增溶剂的配方;含有吸收增强剂的配方;胃/十二指肠保留配方;lipid-based配方;针对淋巴运输的制剂;并对提高亲脂性的理化修饰进行了综述。在这些制剂中,能够降低肠道首过代谢的制剂,如含有CYPs抑制剂的制剂和含有吸收促进剂的制剂,显著提高了BBR的口服生物利用度。进一步研究其他可以避免首过代谢的给药途径,如直肠给药途径,对提高BBR的生物利用度也很重要。
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来源期刊
Expert Opinion on Drug Metabolism & Toxicology
Expert Opinion on Drug Metabolism & Toxicology 医学-生化与分子生物学
CiteScore
7.90
自引率
2.30%
发文量
62
审稿时长
4-8 weeks
期刊介绍: Expert Opinion on Drug Metabolism & Toxicology (ISSN 1742-5255 [print], 1744-7607 [electronic]) is a MEDLINE-indexed, peer-reviewed, international journal publishing review articles on all aspects of ADME-Tox. Each article is structured to incorporate the author’s own expert opinion on the scope for future development. The Editors welcome: Reviews covering metabolic, pharmacokinetic and toxicological issues relating to specific drugs, drug-drug interactions, drug classes or their use in specific populations; issues relating to enzymes involved in the metabolism, disposition and excretion of drugs; techniques involved in the study of drug metabolism and toxicology; novel technologies for obtaining ADME-Tox data. Drug Evaluations reviewing the clinical, toxicological and pharmacokinetic data on a particular drug. The audience consists of scientists and managers in the pharmaceutical industry, pharmacologists, clinical toxicologists and related professionals.
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