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首页> 外文期刊>Phytochemical Analysis >Semi-automated Separation of the Epimeric Dehydropyrrolizidine Alkaloids Lycopsamine and Intermedine: Preparation of their N-oxides and NMR Comparison with Diastereoisomeric Rinderine and Echinatine
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Semi-automated Separation of the Epimeric Dehydropyrrolizidine Alkaloids Lycopsamine and Intermedine: Preparation of their N-oxides and NMR Comparison with Diastereoisomeric Rinderine and Echinatine

机译:半自动分离差向异构体脱氢吡咯烷啶生物碱吗啡胺和中间药物:其N-氧化物的制备以及与非对映异构体松节油和紫锥花的核磁共振比较

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Introduction - The diversity of structure and, particularly, stereochemical variation of the dehydropyrrolizidine alkaloids can present challenges for analysis and the isolation of pure compounds for the preparation of analytical standards and for toxicology studies. Objective - To investigate methods for the separation of gram-scale quantities of the epimeric dehydropyrrolizidine alkaloids lycopsamine and intermedine and to compare their NMR spectroscopic data with those of their heliotridine-based analogues echinatine and rinderine. Methods - Lycopsamine and intermedine were extracted, predominantly as their N-oxides and along with their acetylated derivatives, from commercial samples of comfrey (Symphytum officinale) root. Alkaloid enrichment involved liquid-liquid partitioning of the crude methanol extract between dilute aqueous acid and n-butanol, reduction of N-oxides and subsequent continuous liquid-liquid extraction of free base alkaloids into CHCl3. The alkaloid-rich fraction was further subjected to semi-automated flash chromatography using boronated soda glass beads or boronated quartz sand. Results - Boronated soda glass beads (or quartz sand) chromatography adapted to a Biotage Isolera Flash Chromatography System enabled large-scale separation (at least up to 1-2 g quantities) of lycopsamine and intermedine. The structures were confirmed using one- and two-dimensional H-1- and C-13-NMR spectroscopy. Examination of the NMR data for lycopsamine, intermedine and their heliotridine-based analogues echinatine and rinderine allowed for some amendments of literature data and provided useful comparisons for determining relative configurations in monoester dehydropyrrolizidine alkaloids. A similar NMR comparison of lycopsamine and intermedine with their N-oxides showed the effects of N-oxidation on some key chemical shifts. A levorotatory shift in specific rotation from +3.29 degrees to -1.5 degrees was observed for lycopsamine when dissolved in ethanol or methanol respectively. Conclusion - A semi-automated flash chromatographic process using boronated soda glass beads was standardised and confirmed as a useful, larger scale preparative approach for separating the epimers lycopsamine and intermedine. The useful NMR correlations to stereochemical arrangements within this specific class of dehydropyrrolizidine alkaloid cannot be confidently extrapolated to other similar dehydropyrrolizidine alkaloids. Published 2014. This article is a U. S. Government work and is in the public domain in the USA.
机译:简介-脱氢吡咯烷啶生物碱的结构多样性,尤其是立体化学变化,可能对分析和纯化合物的制备,分析标准品制备和毒理学研究提出挑战。目的-研究分离示差的脱氢吡咯烷啶生物碱lycopsamine和intermedine的克级量的方法,并将其NMR光谱数据与基于巯基吡啶的类似物紫锥花和松节油进行比较。方法-从商品红豆(Symphytum officinale)根的商业样品中提取番茄红素和间质素,主要以其N-氧化物和乙酰化衍生物的形式提取。生物碱富集涉及将粗甲醇提取物在稀酸和正丁醇之间进行液-液分配,还原N-氧化物,随后将游离碱生物碱连续液-液萃取到CHCl3中。使用硼酸钠玻璃珠或硼石英砂进一步对富含生物碱的馏分进行半自动快速色谱分析。结果-适用于Biotage Isolera快速色谱系统的硼碳酸钠玻璃微珠(或石英砂)色谱法能够大规模分离(至少1-2 g量)番茄红素和中间药物。使用一维和二维H-1-NMR和C-13-NMR光谱确认了结构。核查番茄红素,中间药物和其基于胆碱的类似物紫锥花和松节油的NMR数据,可以对文献数据进行一些修改,并为确定单酯脱氢吡咯并立烷生物碱的相对构型提供有用的比较。番茄红素和间质素及其N氧化物的NMR比较表明N氧化对某些关键化学位移的影响。当番茄红素分别溶于乙醇或甲醇时,观察到其比旋度从+3.29度到-1.5度的左旋转。结论-使用硼化钠玻璃微珠的半自动快速色谱方法已标准化,并被确认为分离差向异构体番茄红素和中间药物的有用的大规模制备方法。在该特定类别的脱氢吡咯烷核生物碱中,与立体化学排列有关的有用NMR相关性不能可靠地推算到其他类似的脱氢吡咯烷核生物碱中。 2014年出版。本文是美国政府的工作,在美国属于公共领域。

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