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南非醉茄()植物提取物影响原代人肝细胞的细胞色素P450系统和细胞毒性。

Ashwagandha () Plant Extracts Affect the Cytochrome P450 System and Cytotoxicity of Primary Human Hepatocytes.

作者信息

McDonald Kelli L, Raichura Zarna, Pondugula Satyanarayana R, Marney Luke, Yang Liping, Choi Jaewoo, Salamat Julia M, Brandes Mikah S, Neff Cody, Adams Keila, Farmer Gracie, Dennis Catherine, Maier Claudia S, Soumyanath Amala, Arnold Robert D, Calderón Angela I

机构信息

Department of Drug Discovery and Development, Harrison College of Pharmacy, Auburn University, Auburn, AL, USA.

Department of Anatomy, Physiology and Pharmacology, College of Veterinary Medicine, Auburn University, Auburn, AL, USA.

出版信息

J Diet Suppl. 2025;22(4):613-639. doi: 10.1080/19390211.2025.2514458. Epub 2025 Jun 24.

Abstract

Ashwagandha ( [L] Dunal) is emerging as one of the top 10 botanicals in the market due to its claimed health benefits as an adaptogen. Alongside its popularity, the lack of standardization in botanical dietary supplements and potential interactions with prescription drugs raise safety concerns. This study aimed to investigate the potential of ashwagandha extracts to induce cytochrome P450 (P450) enzymes, which are critical for drug metabolism and implicated in botanical-drug interactions. A sandwich-cultured in vitro assay using primary human hepatocytes was utilized to evaluate the induction potential of aqueous and 70% ethanolic extracts of ashwagandha roots and leaves on CYP3A4, CYP2B6, and CYP1A2-enzymes commonly involved in drug metabolism. Unlike prior studies that focused on root extracts or used HepG2 cell lines, this research included both root and leaf plant extracts, with the latter being assessed for the first time. Our approach using primary hepatocytes enhances clinical relevance compared to other in vitro models (such as HepG2 cell lines). Additionally, cytotoxicity was examined using CellTitre-Glo Luminescent Assay, measuring cell viability at three different incubation times (24, 48, and 72 hours) to assess the potential cytotoxic effect of the ashwagandha plant extracts. Our findings revealed that 70% ethanol ashwagandha root extracts (WSR-2) modulated CYP3A4 enzyme expression and activity. Preliminary studies on cytotoxicity indicated dose- and time-dependent impact on hepatocyte viability with a high concentration of 70% ethanol ashwagandha leaf extracts (WSL-2). The study highlights the importance of understanding ashwagandha's impact on P450-based drug metabolism and its safe co-administration with prescribed drugs.

摘要

南非醉茄([L] 杜纳尔)因其作为适应原所宣称的健康益处,正成为市场上十大植物药之一。随着其日益普及,植物性膳食补充剂缺乏标准化以及与处方药的潜在相互作用引发了安全担忧。本研究旨在调查南非醉茄提取物诱导细胞色素P450(P450)酶的潜力,这些酶对药物代谢至关重要且与植物药 - 药物相互作用有关。使用原代人肝细胞的三明治培养体外试验用于评估南非醉茄根和叶的水提取物和70%乙醇提取物对CYP3A4、CYP2B6和CYP1A2酶(通常参与药物代谢)的诱导潜力。与之前专注于根提取物或使用HepG2细胞系的研究不同,本研究包括根和叶的植物提取物,后者是首次评估。与其他体外模型(如HepG2细胞系)相比,我们使用原代肝细胞的方法增强了临床相关性。此外,使用CellTitre - Glo发光测定法检查细胞毒性,在三个不同的孵育时间(24、48和72小时)测量细胞活力,以评估南非醉茄植物提取物的潜在细胞毒性作用。我们的研究结果表明,70%乙醇南非醉茄根提取物(WSR - 2)调节了CYP3A4酶的表达和活性。细胞毒性的初步研究表明,高浓度的70%乙醇南非醉茄叶提取物(WSL - 2)对肝细胞活力有剂量和时间依赖性影响。该研究强调了了解南非醉茄对基于P450的药物代谢的影响及其与处方药安全联合使用的重要性。

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