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通过应用深紫外共振拉曼显微镜对热带藤本植物盾籽穗叶藤中的生物碱盾籽穗叶藤碱A进行超灵敏原位追踪。

Ultrasensitive in situ tracing of the alkaloid dioncophylline A in the tropical liana Triphyophyllum peltatum by applying deep-UV resonance Raman microscopy.

作者信息

Frosch Torsten, Schmitt Michael, Noll Torsten, Bringmann Gerhard, Schenzel Karla, Popp Jürgen

机构信息

Institut für Physikalische Chemie, Friedrich-Schiller-Universität Jena, Helmholtzweg 4, D-07743 Jena, Germany.

出版信息

Anal Chem. 2007 Feb 1;79(3):986-93. doi: 10.1021/ac061526q.

Abstract

UV resonance Raman microspectroscopy was applied for a localization of the antiplasmodial naphthylisoquinoline alkaloid dioncophylline A in very low concentrations in different parts of the samples (e.g., in the roots) of the tropical liana Triphyophyllum peltatum. The application of resonance Raman microspectroscopy was characterized by a very high sensitivity and selectivity. It was possible to assign the resonance Raman spectra of dioncophylline A, dioncophylline C, and dioncopeltine A by means of a combination of NIR Raman spectroscopy and DFT calculations. The UV resonance Raman spectra of T. peltatum are very well resembled by the spectra of dioncophylline A, while they can be clearly distinguished from the spectra of dioncophylline C and dioncopeltine A. This distinction between the various naphthylisoquinolines was possible by the two modes at 1356 and 1613 cm-1. These two modes were assigned to C=C stretching and CH bending vibrations. The presented results of a highly sensitive and selective in situ localization of the active agent dioncophylline A in different parts of the plant material of T. peltatum are of high importance for the acquisition of new antimalarials and for plant science in general.

摘要

紫外共振拉曼显微光谱法被用于在热带藤本植物盾籽穗叶藤(Triphyophyllum peltatum)样本的不同部位(如根部)中定位极低浓度的抗疟萘基异喹啉生物碱——二氧可菲林A。共振拉曼显微光谱法的应用具有非常高的灵敏度和选择性。通过近红外拉曼光谱和密度泛函理论计算相结合的方法,可以对二氧可菲林A、二氧可菲林C和盾籽穗叶藤碱A的共振拉曼光谱进行归属。盾籽穗叶藤的紫外共振拉曼光谱与二氧可菲林A的光谱非常相似,而它们可以与二氧可菲林C和盾籽穗叶藤碱A的光谱明显区分开来。通过1356和1613 cm-1处的两种模式可以区分各种萘基异喹啉。这两种模式被归属为C=C伸缩振动和CH弯曲振动。所呈现的在盾籽穗叶藤植物材料不同部位对活性剂二氧可菲林A进行高灵敏度和选择性原位定位的结果,对于获取新型抗疟药物以及整个植物科学来说都具有高度重要性。

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