Suppr超能文献

定量分析无相同标准的植物阴性标志物:银杏叶中的银杏毒素。

Quantification of a botanical negative marker without an identical standard: ginkgotoxin in Ginkgo biloba.

机构信息

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago , Chicago, Illinois 60612, United States.

出版信息

J Nat Prod. 2014 Mar 28;77(3):611-7. doi: 10.1021/np400874z. Epub 2014 Jan 16.

Abstract

A new strategy for the analysis of natural products uses a combination of quantitative (1)H NMR (qHNMR) and adsorbent-free countercurrent separation (CS) methodology to establish a quantification method for ginkgotoxin (4'-O-methylpyridoxine) in Ginkgo biloba preparations. The target analyte was concentrated in a one-step CS process using the ChMWat +2 solvent system (CHCl3-MeOH-H2O, 10:5:5) and subsequently assayed by qHNMR. While commercial G. biloba seeds contained 59 μg of ginkgotoxin per seed, the compound was below the limit of detection (9 ppm) in a typical leaf extract. Due to the enrichment potential and loss-free operation of CS, the combination of CS and qHNMR is a generally suitable approach for threshold assays aimed at quantifying target compounds such as botanical negative markers at the low ppm level. As the proof of principle is demonstrated for relatively small CS capacities (20 mL, 1:40 loading) and modest NMR sensitivity (n = 16, 400 MHz, 5 mm RT probe), the approach can be adapted to quantification at the ppb level. The procedure enables the quantification of a botanical negative marker in the absence of identical reference material, which otherwise is a prerequisite for LC-based assays.

摘要

一种新的天然产物分析策略结合了定量(1)H NMR(qHNMR)和无吸附剂逆流分离(CS)方法学,以建立银杏叶制剂中银杏毒素(4'-O-甲基吡哆醇)的定量方法。目标分析物在使用 ChMWat +2 溶剂系统(CHCl3-MeOH-H2O,10:5:5)的一步 CS 过程中浓缩,然后通过 qHNMR 进行测定。虽然商业银杏种子每粒含有 59μg 的银杏毒素,但在典型的叶提取物中,该化合物的含量低于检测限(9ppm)。由于 CS 的富集潜力和无损失操作,CS 与 qHNMR 的结合是一种通用的方法,适用于阈值测定,旨在以 ppm 水平定量目标化合物,如植物阴性标志物。由于相对较小的 CS 容量(20mL,1:40 加载)和适度的 NMR 灵敏度(n=16,400MHz,5mm RT 探头)证明了这一原理,该方法可以适应 ppb 水平的定量。该方法可在没有相同参考物质的情况下定量植物阴性标志物,否则这是基于 LC 的测定的前提条件。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验