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The potential of sutherlandia frutescens for herb-drug interaction

机译:南方鹅掌for药草相互作用的潜力

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In Africa, Sutherlandia frutescens is a popular medicinal herb widely consumed by people living with human immunodeficiency virus/ AIDS. Concomitant use with antiretroviral drugs has generated concerns of herb-drug interaction (HDI). This study investigated the inhibitory effects of the crude extracts of S. frutescens on the major cytochrome P450 isozymes with the use of pooled human liver microsomes. Its effect on the metabolic clearance of midazolam using cryopreserved hepatocytes was also monitored. The potential of S. frutescens to inhibit human ATP-binding cassette transporters (P-gp and BCRP) and the human organic anion transporting polypeptide (OATP1B1 and OATP1B3) activity was assessed using cell lines overexpressing the transporter proteins. S. frutescens showed inhibitory potency for CYP1A2 (IC50 = 41.0 μg/ml), CYP2A6 (IC50 = 160 μg/ml), CYP2B6 (IC50 = 20.0 μg/ml), CYP2C8 (IC50 = 22.4 μg/ml), CYP2C9 (IC50 = 23.0 μg/ml), CYP2C19 (IC50 = 35.9 μg/ml), and CYP3A4/5 (IC 50 = 17.5 μg/ml [with midazolam19-hydroxylation]; IC50 = 28.3 μg/ml [with testosterone 6b-hydroxylation]). Timedependent (irreversible) inhibition by S. frutescens was observed for CYP3A4/5 (KI = 296 μg/ml, kinact = 0.063 min21) under the conditions of this study. S. frutescens also delays the production of midazolam metabolites in the hepatocytes, decreasing its clearance by 40%. Furthermore, S. frutescens inhibited P-gp (IC50 = 324.8 μg/ml), OATP1B1 (IC50 = 10.4 μg/ml), and OATP1B3 (IC50 = 6.6 μg/ml). The result indicates the potential for HDI between S. frutescens and the substrates of the affected enzymes, if sufficient in vivo concentration of the extract is attained.
机译:在非洲,Sutherlandia frutescens是一种流行的草药,被患有人类免疫缺陷病毒/艾滋病的人广泛食用。与抗逆转录病毒药物同时使用引起了人们对草药相互作用的关注。这项研究使用合并的人肝微粒体研究了苦参的粗提物对主要细胞色素P450同工酶的抑制作用。还监测了其使用冷冻保存的肝细胞对咪达唑仑代谢清除的影响。使用过表达转运蛋白的细胞系评估了弗氏链球菌抑制人ATP结合盒转运蛋白(P-gp和BCRP)和人有机阴离子转运多肽(OATP1B1和OATP1B3)活性的潜力。弗氏链球菌对CYP1A2(IC50 = 41.0μg/ ml),CYP2A6(IC50 = 160μg/ ml),CYP2B6(IC50 = 20.0μg/ ml),CYP2C8(IC50 = 22.4μg/ ml),CYP2C9(IC50)有抑制作用= 23.0μg/ ml),CYP2C19(IC50 = 35.9μg/ ml)和CYP3A4 / 5(IC 50 = 17.5μg/ ml [含咪达唑仑19-羟基化]; IC50 = 28.3μg/ ml [含睾丸酮6b-羟基化]) 。在本研究的条件下,观察到弗氏链球菌对CYP3A4 / 5的时间依赖性(不可逆)抑制作用(KI = 296μg/ ml,运动系数= 0.063 min21)。弗氏链球菌还延迟了肝细胞中咪达唑仑代谢产物的产生,将其清除率降低了40%。此外,弗氏链球菌抑制P-gp(IC50 = 324.8μg/ ml),OATP1B1(IC50 = 10.4μg/ ml)和OATP1B3(IC50 = 6.6μg/ ml)。结果表明,如果在提取物中获得足够的体内浓度,则可能在弗氏链球菌和受影响的酶的底物之间产生HDI。

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