首页> 外文OA文献 >Acetylcholinesterase-Inhibitory Activity of Linarin from Buddleja davidii, Structure-Activity Relationships of Related Flavonoids, and Chemical Investigation of Buddleja nitida
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Acetylcholinesterase-Inhibitory Activity of Linarin from Buddleja davidii, Structure-Activity Relationships of Related Flavonoids, and Chemical Investigation of Buddleja nitida

机译:蟾蜍亚麻碱中乙酰胆碱酯酶的抑制活性,相关类黄酮的结构-活性关系以及刺参化学研究

摘要

In order to find some medicinal value for invasive neophytes, inhibition of acetylcholinesterase of Reynoutria sachalinensis F. Schmidt ex Maxim. (Polygonaceae), Polygonum cuspidatum Siebold. Zucc. (Polygonaceae), Heracleum mantegazzianum Sommier Levier (Apiaceae), Buddleja davidii Franch. (Buddlejaceae), and Ambrosia artemisiifolia L. (Asteraceae) was prescreened by a bioautographic TLC assay. Activity was found in the methanol extract of the leaves of the common ornamental bush B. davidii. Its fractionation by centrifugal partition chromatography led to the isolation of linarin as the most active compound. While extracts of Buddleja nitida Benth. (Buddlejaceae) from Panama were inactive, some constituents were identified on the basis of a comparison with B. davidii by HPLC-MS/MS. Structure-activity relationships of linarin and related flavonoids were investigated. For this purpose, fortunellin and tilianin were prepared by methylation reactions. It appears that the structural elements important for acetylcholinesterase inhibition are not only the 4' -OMe group, but also the 7-substituted sugar and the pattern of substitution on the B-ring.
机译:为了发现具有侵入性的新植物的某些医学价值,抑制萨氏雷氏梭菌(Reynoutria sachalinensis F. Schmidt ex Maxim)的乙酰胆碱酯酶。 (Po科),虎杖Siebold。祖克(ly科),Meragranum mantegazzianum Sommier Levier(A科),Buddleja davidii Franch。通过生物自传TLC测定法预先筛选了(Buddlejaceae)和Ambrosia artemisiifolia L.(Asteraceae)。在常见观赏灌木B. davidii的甲醇提取物中发现了活性。通过离心分配色谱法对其进行分级分离,从而分离出柠檬苦素作为最具活性的化合物。而提取物Buddleja nitida Benth。来自巴拿马的杜鹃花科(Buddlejaceae)处于非活性状态,在通过HPLC-MS / MS与大卫氏双歧杆菌比较的基础上鉴定了一些成分。研究了藤黄素与相关类黄酮的构效关系。为了这个目的,通过甲基化反应来制备福尔林林和tilianin。似乎对于抑制乙酰胆碱酯酶重要的结构元件不仅是4'-OMe基团,而且是7-取代的糖和B环上的取代模式。

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