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The pyrrolizidine alkaloids of Senecio chrysocoma and Senecio paniculatus

机译:千里光(senecio chrysocoma)和千里光(senecio paniculatus)的吡咯里西啶生物碱

摘要

In order to compare the pyrrolizidine alkaloid content of two closely related species, Senecio chrysocoma and S. paniculatus, nine populations of plants distributed between the two species, were examined. Three novel pyrrolizidine alkaloids, 7ß-angelyl-l-methylene-8∝-pyrrolizidine, 7ß-angelyl-l-methylene-8∝-pyrrolizidine and 7ß-angelyl-l-methyleneSO!-pyrrolizidine-4-oxide, as well as eight known pyrrolizidine alkaloids, 7-angelylhastanecine, 9-angelylhastanecine, 7-angelylplatynecine, 9-angelylplatynecine, 9-angelylplatynecine-4-oxide, sarracine, neosarracine and retrorsine, were isolated and identified by NMR and GC-MS techniques. Traces of five tiglyl isomers, 9-tiglylplatynecine, 9-tigl ylplatynecine-4-oxide, 7ß-tiglyl-l-methylene-8∝-pyrrolizidine, sarranicine and neosarranicine, were also isolated and tentatively identified; however, these compounds could have been artefacts of the extraction and analytical procedures. While both species of plant investigated, S. chrysocoma and S. paniculatus, were found to be morphologically different, their pyrrolizidine alkaloid content was, in fact, very similar. The presence of retrorsine in S. paniculatus plant extracts, but not in those from S. chrysocoma plants, was the only major chemical difference observed. It is perhaps significant that retrorsine was the only macrocyclic pyrrolizidine to be identified. A comprehensive, computerised database of physical data for pyrrolizidine alkaloids has been compiled, which has facilitated the identification of new pyrrolizidines and the examination of trends in proton and carbon-13 NMR data for pyrrolizidine alkaloids. A stereospecific synthesis of 7ß-angelyl-l-methylene-8∝-pyrrolizidine was undertaken toconfirm the absolute stereochemistry of the product isolated from S. chrysocoma and S. paniculatus. An inseparable 5:2 mixture of 7ß-angelyl-l-methylene-8∝-pyrrolizidine and 7ß-angelyl-l,2-didehydro-l-methyl-8∝-pyrrolizidine, together with a small amount of tiglyl isomer, was finally synthesised. The application of various chiral differentiating chromatographic and spectroscopic techniques confirmed that both the natural and synthetic products had the same stereochemistry, permitting the natural alkaloid to be identified as 7ß-angelyl-methylene-8∝-pyrrol izidine
机译:为了比较两个紧密相关的物种,即千里光乳癌和S. paniculatus,的吡咯烷核生物碱含量,检查了两个物种之间分布的九种植物。三种新颖的吡咯烷核生物碱,7ß-天使-1-亚甲基-8∝-吡咯烷核苷,7ß-天使-1-亚甲基-8∝-吡咯烷核苷和7ß-angelyl-1-亚甲基SO!-吡咯并核苷-4-氧化物分离并通过NMR和GC-MS技术鉴定了已知的吡咯烷核生物碱,7-芳基芥子碱,9-芳基芥子碱,7-芳基铂炔,7-芳基铂炔,9-芳基铂炔--4-氧化物,sarracine,新sarracine和retrorsine。还分离出了痕量的五种tiglyl异构体,即9-tiglylplatynecine,9-tigl ylplatynecine-4-oxide,7ß-tiglyl-1-亚甲基-8∝-吡咯烷核苷,sarranicine和新sarranicine。但是,这些化合物可能是提取和分析程序的伪影。虽然研究的两种植物,如金黄色葡萄球菌和沙门氏菌在形态上都不同,但它们的吡咯烷核生物碱含量实际上非常相似。观察到的唯一主要化学差异是在潘氏链球菌植物提取物中存在逆转录酶,而在金黄色葡萄球菌植物中没有。可能重要的是,逆转录酶是唯一被鉴定的大环吡咯烷。已汇编了一个全面的计算机化的吡咯烷核生物碱物理数据数据库,这有助于鉴定新的吡咯烷核苷以及检查吡咯烷核生物碱的质子和碳13 NMR数据趋势。进行立体定向合成的7β-烯丙基-1-亚甲基-8′-吡咯烷核苷,以确认分离自嗜热链球菌和沙门氏菌的产物的绝对立体化学。最终分离出7:-天使-1-亚甲基-8∝-吡咯烷核苷和7ß-天使-1,2-二氢-1-甲基-8∝-吡咯烷核的不可分的5:2混合物,以及少量的tiglyl异构体。综合的。各种手性鉴别色谱和光谱技术的应用证实了天然产物和合成产物具有相同的立体化学,从而可以将天然生物碱鉴定为7ß-天使基-亚甲基-8∝-吡咯并咪唑

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    Logie Catherine Gwynedd;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 English
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