首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development and validation of a GC-MS method for rapid determination of galanthamine in Leucojum aestivum and Narcissus ssp.: A metabolomic approach
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Development and validation of a GC-MS method for rapid determination of galanthamine in Leucojum aestivum and Narcissus ssp.: A metabolomic approach

机译:快速测定GC-MS方法的建立和验证,该方法可用于一种快速的方法,用于测定小麦和水仙中的加兰他敏:一种代谢组学方法

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摘要

Galanthamine, an acetylcholinesterase inhibitor marketed as a hydrobromide salt for the treatment of Alzheimer's disease, is obtained from some Amaryllidaceae plants. A new method was developed and validated for its quantification by GC-MS in different plant sources: bulbs and leaves from Narcissus confusus; bulbs from N. pseudonarcissus cv. Carlton; and leaves and in vitro cultures from L. aestivum. Samples (50 mg) were extracted with methanol (1 mL) for 2 h, then aliquots of the extracts were silylated and analyzed by GC-MS. The calibration line was linear over a range of 15-800 μg galanthamine/sample, ensuring an analysis of samples with a content of 0.03-1.54% analyte referred to dry weight. The recovery was generally more than 95%. Good inter- and intra assay precision was observed (RSD < 3%). Principal component analysis of GC-MS chromatograms allowed discrimination of the plant raw material with respect to species, organs and geographical regions. The analytical method developed in this study proved to be simple, sensitive and far more informative than the routine analytical methods (GC, HPLC, CE and NMR), so it may be useful for quality control of plant raw materials in the pharmaceutical industry.
机译:加兰他敏是一种乙酰胆碱酯酶抑制剂,以氢溴酸盐的形式出售,用于治疗阿尔茨海默氏病,是从一些金眼科植物中获得的。开发了一种新方法,并通过GC-MS在不同植物来源中进行了定量验证,该方法来自水仙的鳞茎和叶片; N. pseudonarcissus cv。的鳞茎卡尔顿;和叶和来自欧亚大陆的体外培养物。样品(50 mg)用甲醇(1 mL)萃取2 h,然后将萃取液的等分部分进行甲硅烷基化并通过GC-MS分析。校准线在15-800μg加兰他敏/样品的范围内呈线性,确保分析的样品分析物含量为干重的0.03-1.54%。回收率通常超过95%。观察到良好的内部和内部测定精度(RSD <3%)。 GC-MS色谱图的主成分分析可以区分植物原料的种类,器官和地理区域。这项研究开发的分析方法被证明比常规分析方法(GC,HPLC,CE和NMR)简单,灵敏并且提供了更多信息,因此可用于制药行业中植物原料的质量控制。

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