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1.
An aliphatic alcohol glycoside, lunaroside 1-octen-3-yl [O-beta-apiofuranosyl-(1-->6)-O-[beta-glucopyranosyl-(1-->2)]-beta-glucopyranoside, a phenylethanoid glycoside, lunariifolioside 2-(3,4-dihydroxyphenyl)ethylO-beta-apiofuranosyl-(1-->6)-O-[O-beta-apiofuranosyl-(1-->4)-alpha-rhamnopyranosyl-(1-->3)]-4-O-(E)-caffeoyl-beta-glucopyranoside and a flavone glycoside, luteolin 7-O-[4-O-acetyl-alpha-rhamnopyranosyl-(1-->2)]-beta-glucuronopyranoside, were isolated from the aerial parts of Phlomis lunariifolia, in addition to 15 known glycosides. Their structures were elucidated on the basis of extensive 1D and 2D NMR spectroscopic interpretation and chemical degradation.  相似文献   

2.
From the methanolic extract of the underground parts of Globularia cordifolia, a new iridoid glycoside, 5-hydroxydavisioside (1) and a new bisiridoid glycoside, globuloside C (2) were isolated along with six known iridoid glycosides, aucubin, melampyroside, monomelittoside, globularifolin, alpinoside and asperuloside. The structures of the isolates were established by 1D and 2D NMR spectroscopy in combination with IR, UV and MS analyses.  相似文献   

3.
From the ethanolic extract of stem bark of D. angustifolia three new compounds, a coumaroyl triterpene lactone, diospyrosooleanolide (1), a phenolic glycoside, diospyrososide (2) and a naphthalene glycoside, diospyrosonaphthoside (3) were isolated along with five known compounds (4-8). The structures of these compounds were established on the basis of spectroscopic and chemical evidences.  相似文献   

4.
The rhizomes of Zingiber spectabile yielded a new dimeric flavonol glycoside for which the name kaempferol-3-O-(4″-O-acetyl)-α-L-rhamnopyranoside-(I-6,II-8)-kaempferol-3-O-(4″-O-acetyl)-α-L-rhamnopyranoside; spectaflavoside A (1) was proposed, along with kaempferol and its four acetylrhamnosides (2-6), demethoxycurcumin (7) and curcumin (8). The structure of spectaflavoside A was elucidated by spectroscopic methods including, 1D and 2D NMR techniques. This is the first report on the occurrence of a dimeric flavonol glycoside in the Zingiberaceae and the second in nature. Spectaflavoside A was found to be a potent iron chelating agent.  相似文献   

5.
From the whole plant of Astragalus halicacabus (Sect. Halicacabus), a new cycloartane‐type glycoside, (20R,24S)‐3‐O‐[α‐L ‐arabinopyranosyl‐(1→2)‐β‐D ‐xylopyranosyl]‐20,24‐epoxy‐16‐Oβ‐D ‐glucopyranosyl‐3β,6α,16β,25‐tetrahydroxycycloartane, and a new glycoside, 3‐O‐[β‐D ‐apiofuranosyl‐(1→2)‐β‐D ‐glucopyranosyl]maltol were isolated together with seven known cycloartane‐type glycosides, i.e., cyclocanthoside D, askendosides D, F, and G, cyclosieversioside G, cyclostipuloside A, elongatoside, and a known maltol glucoside, 3‐Oβ‐D ‐glucopyranosylmaltol. The structures were elucidated by means of high‐resolution mass spectrometry, and extensive 1D‐ and 2D‐NMR spectroscopic analysis. This is the first phytochemical work on A. halicacabus, and a maltol glycoside was encountered for the first time in the Leguminosae family.  相似文献   

6.
A glycolipid was isolated from a lipid extract of the cellular slime mold Dictyostelium discoideum and characterized. From the results of analyses by thin-layer chromatography and infrared spectrometry, it was identified as a steryl glycoside. The steryl glycoside was further analyzed by gas-liquid chromatography/mass spectrometry as a trimethylsilyl ether derivative, and its quantitative and qualitative changes during the development of D. discoideum were examined. Δ22-Stigmastenyl-d-glucoside was the major constituent of the steryl glycoside and comprised more than 90% of the total steryl glycoside fraction in cells at all stages of development. The content of the steryl glycoside was higher in vegetative-stage cells, late aggregation-stage cells, and 1-day sorocarps than in cells of other stages. The glycolipid fraction was often contaminated by a lipid which was also isolated and identified as a ceramide containing 2-hydroxy fatty acids and 4D-hydroxysphinganine.  相似文献   

7.
One new megastigmane glycoside 1 and two new terpenic glycosides 2 and 3, along with three known compounds, roseoside, pumilaside A, and terminolic acid were isolated from Sarcopyramis nepalensis Wall. The structures of these new compounds were elucidated on the basis of 1D, 2D NMR, MS spectroscopic analysis, and chemical methods.  相似文献   

8.
Abstract

ß-C-Vinyl glycoside of D-arabinofuranose was converted to the β-C-hydroxymethyl glycoside 12 which was condensed with N-3-benzoyl thymine under Mitsunobu conditions to furnish homo-C-analog 14 of the 2′,3′-dideoxy-2′,3′-didehydrothymidine (D4T). Synthesis of the homo-C-thymidine 18 was accomplished by the same procedure from compound 15.  相似文献   

9.
The present phytochemical investigation on Damnacanthus officinarum Huang led to the isolation of a new anthraquinone glycoside named digiferruginol-11-O-β-gentiobioside, along with six known compounds, including anthraquinone glycosides, iridoid glycoside and etc. In the study, compounds (2–7) were isolated for the first time from D. officinarum Huang and Damnacanthus genus. The found of compounds (1–4, 6 and 7) indicate a close relationship between D. officinarum Huang and Morinda officinalis, which may be as chemotaxonomic markers for the tribe Morindeae  相似文献   

10.
Neolignan glycosides from Symplocos caudata   总被引:1,自引:0,他引:1  
Huo C  Liang H  Zhao Y  Wang B  Zhang Q 《Phytochemistry》2008,69(3):788-795
A phytochemical investigation of the roots of Symplocos caudata Wall (Symplocaceae) resulted in isolation and characterization of four optical isomers of a neolignan glycoside (1-4), a lignan lactone glycoside (5), a phenylpropanoid glycoside (6), as well as two known compounds (7, 8). Their structures were elucidated as (7S,8S)-threo-7,9,9'-trihydroxy-3,3'-dimethoxy-8-O-4'-neolignan-4-O-beta-d-glucopyranoside (1), (7R,8R)-threo-7,9,9'-trihydroxy-3,3'-dimethoxy-8-O-4'-neolignan-4-O-beta-d-glucopyranoside (2), (7R,8S)-erythro-7,9,9'-trihydroxy-3,3'-dimethoxy-8-O-4'-neolignan-4-O-beta-d-glucopyranoside (3), (7S,8R)-erythro-7,9,9'-trihydroxy-3,3'-dimethoxy-8-O-4'-neolignan-4-O-beta-d-glucopyranoside (4), 8R,8'R-matairesinol-4-O-beta-d-xylopyranosyl-(1-->2)-O-beta-d-glucopyranoside (5), 1-O-[beta-d-xylopyranosyl-(1-->6)-O-beta-d-glucopyranosyl]-2,6-dimethoxy-4-propenyl-phenol (6), matairesinoside (7), and (R)-1-O-(beta-d-glucopyranosyl)-2-[2-methoxy-4-(omega-hydroxypropyl)-phenoxyl]-propan-3-ol (8) on the basis of spectroscopic data (1D and 2D NMR, MS and CD) and chemical evidence.  相似文献   

11.
The infusion of the aerial parts of Turnera diffusa was phytochemically examined. Chromatographic procedures led to the isolation of a new flavone glycoside, five known flavonoids and p-arbutin. Structures were determined by 1D- and 2D NMR experiments, as well as ES-MS and UV spectra.  相似文献   

12.
从苦竹笋Pleioblastus amarus(Keng)Keng f.中首次分得一个氰苷化合物,通过光谱分析及其物理化学性质鉴定为taxiphyllin(1)。该化合物在体外能显著抑制酪氨酸酶活性,是一个强有效的酪氨酸酶抑制剂。  相似文献   

13.
A chromanone glycoside, 5-β-d-glucopyranosyloxy-7-hydroxy-2-isopropylchromanone, and two acylphloroglucinol glycosides, 2-(3-methylbutyryl)phloroglucinol-4,6-di-C-β-d-glucopyranoside and 2-isobutyrylphloroglucinol-1,5-di-O-β-d-glucopyranoside, along with 15 known compounds were isolated from the bracts of hops (Humulus lupulus L.). Their structures were elucidated based on spectroscopic data, including TOFMS and 1D/2D NMR.  相似文献   

14.
酶标白桂木凝集素糖蛋白结合特性的分析   总被引:3,自引:0,他引:3  
采用辣根过氧化物酶 ( HRP)标记白桂木凝集素 ( AHL) ,应用酶联夹心法及糖竞争抑制实验 ,研究 AHL的糖蛋白结合特性 .研究表明 ,AHL能与两种不同类型的糖蛋白结合 ,一类以胃蛋白酶为代表 ,AHL能以高亲和力与胃蛋白酶结合 .其次能与β-乳球蛋白、牛血清清蛋白结合 ,但结合力依次递减 .AHL也能与透明质酸以较高亲和力相结合 .AHL与胃蛋白酶、β-乳球蛋白、牛血清清蛋白、透明质酸的结合受 Me- Gal的强烈竞争抑制 ,亦受 Me- Man\D- Gal\Raf的抑制 .另一类为Con A,AHL与 Con A的结合受 Me- Man的强烈竞争抑制 ,并受 Me- Glc\D- Man\D- Fru\D- Glc的较强抑制 .各种糖的封闭性抑制实验结果与竞争性抑制实验相似 .提示 AHL上存在 O-糖苷键结合位点 .  相似文献   

15.
Ten compounds isolated from the extract of the central Asian lichens comprised new glycosides and glycoside esters having 18R-hydroxy-dihydroalloprotolichesterinic, 18S-hydroxy-dihydroprotolichesterinic and 18S-hydroxy-neodihydroprotolichesterinic acids, as the aglycones and a saccharide moiety linked at C-18 and also at C-21 made by glucose, xylose or rhamnose. The structures were elucidated using extensive spectroscopic analysis (1D and 2D NMR, MS, IR, UV and ORD) and by biochemical methods.  相似文献   

16.
Two iridoid glucosides namely; 6-acetylantirrinoside (1), 6'-O-p-hydroxybenzoylantirrinoside (2) were isolated from the aerial parts of Kickxia abhaica. Beside that, three known iridoid glucosides, antirrinoside (3), antirride (4) and mussaenosidic acid (5), one flavone glycoside (6) and a hexitol, d-mannitol (7) were isolated. The structures of the iridoid glucosides 1-2 were established by 1D and 2D NMR spectral data, including COSY, HMQC and HMBC experiments, as well as HRMS.  相似文献   

17.
Six new steroidal saponins (1-6) were isolated from the roots of A. acutifolius L., together with a known spirostanol glycoside (7). Their structures were elucidated mainly by extensive spectroscopic analysis (1D and 2D NMR, FABMS and HRESIMS). Compounds 4-7 demonstrated antifungal activity against the human pathogenic yeasts C. albicans, C. glabrata and C. tropicalis with MICs values between 12.5 and 100 microg/ml.  相似文献   

18.
Four steroidal glycosides, named abutilosides L, M and N, these being 22S,25S-epoxy-furost-5-ene type glycosides, and abutiloside O, a 20-22 seco-type steroidal glycoside, were isolated from the fresh fruits of Solanum abutiloides. Their structures were determined by 2D NMR spectroscopic analysis and chemical evidence.  相似文献   

19.
小叶臭黄皮的黄酮苷甙成分   总被引:3,自引:0,他引:3  
从云南西双版纳的小叶臭黄皮(Clausena excavata Burm.f.)中分离到一个新黄酮甙,5,7,5′-三羟基-3′,4′-二甲氧基黄酮3-0-α-L-吡喃鼠李糖甙(1)和4个已知黄酮甙,分别为5,7,3′,5′-四羟基-4′-甲氧基黄酮3-O-α-L-吡喃鼠李糖甙(2),5,7,3′-三羟基-4′-甲氧基黄酮3-O-α-L-吡喃鼠李糖甙(3),5,7,4′-三羟基-3′,5′-二甲氧基黄酮3-O-α-L-吡喃鼠李糖甙(4),5,7,4′-三羟基黄桐3-O-α-L-吡喃鼠李糖甙(5)。根据HMQC、HMBC实验修正了化合物2-5C6和C8的位碳化学位移的归属。  相似文献   

20.
G Bader  V Wray  K Hiller 《Phytochemistry》1992,31(2):621-623
A new 3,28-bisdesmosidic triterpenoid glycoside was isolated from the mixture of deacylated saponins from the aerial parts of Solidago virgaurea. The structure of virgaureasaponin 3 was determined as 3-O-beta-D-glucopyranosyl-(1----3)-beta-D-glucopyranosylpolygalacic++ + acid 28-O-beta-D-fucopyranosyl-(1----2)-alpha-L-rhamnopyranosyl-(1----3)-beta -D- xylopyranosyl-(1----4)-alpha-L-rhamnopyranosyl-(1----2)-beta-D-fucopyran oside mainly by various 2D NMR techniques.  相似文献   

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