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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >A simple and rapid method for the differentiation of C-13 manoyl oxide epimers in biologically important samples using GC-MS analysis supported with NMR spectroscopy and computational chemistry results.
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A simple and rapid method for the differentiation of C-13 manoyl oxide epimers in biologically important samples using GC-MS analysis supported with NMR spectroscopy and computational chemistry results.

机译:使用NMR光谱和计算化学结果支持的GC-MS分析,一种简单且快速的C-13 manoyl氧化物基础分化在生物学上重要的样品中的分化。

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摘要

There is confusion in the literature related to the characterization of biologically important C13 manoyl oxide epimers by using their mass spectrometric data. Furthermore a method for calculating the epimeric purity has not been established. In this work mixtures of manoyl oxide C13 epimers and pure ent-13-epi-manoyl oxide have been isolated from plant extracts. The GC-MS analysis allows the characterization of each stereoisomer in a sample of natural origin: the ratio of intensities of peaks m/z 275 : 257 is lower in ent-13-epi-manoyl oxide than in manoyl oxide. NMR spectroscopy is used to give experimental evidence and simple calculations were performed to support the MS data. On the basis of these results the characterization of the two stereoisomers and the calculation of their ratio in plant extracts and essential oils can be done in a routine basis. The biological activity evaluation of mixtures with different epimeric composition of manoyl oxide showed that the ratio of the two epimers is important for their antibacterial activity. Ent-13-epi-manoyl oxide seems to be more active than its epimeric congener against Gram-positive bacteria.
机译:文献中有困惑与使用它们的质谱数据表征生物学上重要的C13摩洛氧化物基础。此外,尚未建立用于计算甲型纯度的方法。在该工作中,氧化摩洛C13映射器和纯Ent-13-Epi-manoyoyl氧化物的混合物已经从植物提取物中分离出来。 GC-MS分析允许在天然原点样品中表征每个立体异构体:峰值M / Z 275:257的强度比在ent-13-Epi-manoynl氧化物中低于Manoyl氧化物。 NMR光谱用于提供实验证据,并进行简单的计算以支持MS数据。在这些结果的基础上,两种立体异构体的表征和植物提取物中的比例和精油的计算可以是常规的。用氧化摩尼氧化物不同夹覆组合物的混合物的生物活性评价显示,两种基础的比例对于它们的抗菌活性是重要的。 Ent-13-Epi-Manoyl氧化物似乎比其对革兰氏阳性细菌的凝聚性同意剂更活跃。

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