Shanghai University of Traditional Chinese Medicine, School of Pharmacy, Department of Pharmacology, Shanghai, China.
Expert Opin Drug Metab Toxicol. 2013 Jan;9(1):51-61. doi: 10.1517/17425255.2012.722995. Epub 2012 Sep 24.
Rhizoma coptidis shows various pharmacological activities attributed to its alkaloid constituents. To guide the pharmacological studies, the candidate drug research and development and the clinic applications of these compounds, a review on their pharmacokinetic behavior and toxicity should be beneficial.
This article looks at the pharmacokinetic properties and potential herb-drug interactions found with Rhizoma coptidis alkaloids. Furthermore, the article also reviews the acute toxicity of these alkaloids.
Generally, the systemic exposures of the alkaloids are extremely low after oral administration. The alkaloids may present their systemic activities via generated metabolites and/or the tissue distributed alkaloids themselves, or by modulating effectors in the gut. The drug transporters and drug-metabolizing enzymes involved in the in vivo process, the modulatory effects on both P-glycoprotein and cytochrome P450 isoenzymes and the acute toxicity of the alkaloids were all well documented. However, first, since very significant difference exists between the blood and tissue exposure, to find suitable pharmacokinetic markers of the alkaloids in blood may be challenging but necessary. Second, the dose-systemic exposure-response relationships of the alkaloids should also be determined. Third, in order to improve the oral bioavailability and efficacy, it is important to design derivatives or formulations of the alkaloids with better pharmacokinetic features.
黄连具有多种药理活性,这与其所含的生物碱成分有关。为了指导这些化合物的药理研究、候选药物研发和临床应用,有必要对其药代动力学行为和毒性进行综述。
本文着眼于黄连生物碱的药代动力学特性和潜在的药物-药物相互作用。此外,本文还回顾了这些生物碱的急性毒性。
一般来说,口服后这些生物碱在体内的全身暴露水平极低。这些生物碱可能通过生成的代谢物和/或组织分布的生物碱本身,或通过调节肠道中的效应物来发挥全身活性。参与体内过程的药物转运体和药物代谢酶、对 P 糖蛋白和细胞色素 P450 同工酶的调节作用以及生物碱的急性毒性都有很好的记录。然而,首先,由于血液和组织暴露之间存在显著差异,因此在血液中找到合适的生物碱药代动力学标志物可能具有挑战性,但却是必要的。其次,还应确定生物碱的剂量-全身暴露-反应关系。第三,为了提高口服生物利用度和疗效,设计具有更好药代动力学特征的生物碱衍生物或制剂非常重要。