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1.
Eight new metabolites, including five new sesquiterpenoids, 10,11‐epoxyguaian‐10‐ol ( 1 ), 10,11‐epoxyguaian‐13‐ol ( 2 ), a new backbone sesquiterpene rearranged from guaiane ( 3 ), two 1,5 : 1,10‐disecoguaianes, 4 and 5 , two new dihydroisocoumarins, 7‐chloromellein‐4‐ol ( 6 ) and 7‐chloromellein‐5‐ol ( 7 ), and one new tetralone, 7‐chloroscytalone ( 8 ), were isolated from the mutant strain G‐444 of Tubercularia sp. TF5, an endophytic fungus of Taxus mairei, along with ten known compounds, 3,4‐dihydro‐4,8‐dihydroxy‐2H‐naphthalen‐1‐one ( 9 ), (3R,4S)‐4‐hydroxymellein ( 10 ), 5‐formylmellein ( 11 ), 5‐carboxymellein ( 12 ), sporogen‐AO1 ( 13 ), tuberculariols A ( 14 ) and B ( 15 ), hymatoxin E ( 16 ), 4‐oxo‐4H‐pyran‐3‐acetic acid ( 17 ), and penicillic acid ( 18 ). Their structures were elucidated by spectroscopic analyses including HR‐ESI‐MS, 1D‐ and 2D‐NMR (HMQC, HMBC, 1H,1H‐COSY and NOESY). The antimicrobial activities of 1 – 8 were evaluated, but none showed any substantial effect.  相似文献   

2.
Two new ergostane derivatives, 12β,15α,25,26‐tetrahydroxyergosta‐4,6,8(14),22‐tetraen‐3‐one ( 1 ) and 12β,15α,25,28‐tetrahydroxyergosta‐4,6,8(14),22‐tetraen‐3‐one ( 2 ), and a new aranotin‐type diketopiperazine, bisdethiobis(methylsulfanyl)apoaranotin ( 3 ), were isolated from the fungus Aspergillus terreus BCC 4651. The structures of the new compounds were elucidated by means of NMR spectroscopic and MS analyses.  相似文献   

3.
Investigation of the 95% EtOH extract of red yeast rice fermented with the fungus Monascus purpureus BCRC 31615 has led to the isolation and structure elucidation of four new compounds, including one new azaphilone analog, monascuspurpurone ( 1 ), a new isocoumarin, monaschromone ( 2 ), a new furan‐3‐one derivative, 2‐dodecyl‐5‐(2‐methoxyethyl)‐2‐methylfuran‐3(2H)‐one ( 3 ), and a new alkaloid, methyl 4‐[(E)‐2‐acetyl‐4‐oxoundec‐1‐enyl]‐6‐propylnicotinate ( 4 ), together with seven known compounds. The structures of all isolates were elucidated on the basis of extensive spectroscopic analyses and comparison with literature data. Compounds 1 – 4 were tested for their cytotoxicity against the MCF‐7, NCI‐H460, and SF‐268 cell lines using the MTT (=3‐(4,5‐dimethylthiazol‐2‐yl)‐2,5‐diphenyl‐2H‐tetrazolium bromide) assay. Among them, compounds 1 and 4 were found to have moderate cytotoxic effects against these three cell lines in vitro.  相似文献   

4.
A new and rare type of iridoid glycoside, agnusoside ( 1 ), a new caffeoylquinic acid derivative, castusic acid ( 2 ), and a new sugar ester, 1,2‐di‐(4‐hydroxybenzoyl)‐β‐glucopyranose ( 3 ), along with ten known compounds belonging to iridoid glycosides (agnuside, trans‐eurostoside), caffeoylquinic acid derivatives (chlorogenic acid and isochlorogenic acid A), flavonoids (isoorientin, isovitexin, kaempferol 3‐O‐sophoroside, luteolin 6‐C‐(2′′‐Otrans‐caffeoyl)glucopyranoside, and simple phenolic acids (4‐hydroxybenzoic acid, 3,4‐dihydroxybenzoic acid), chemical classes were isolated from the flowers of Vitex agnus‐castus. The structures of the isolates were established by extensive 1D‐ and 2D‐NMR spectroscopic analysis as well as HR‐ESI‐MS. Agnusoside ( 1 ) represents an unusual type of iridoid glycoside with its 6‐keto C(4) nonsubstituted aglycone.  相似文献   

5.
Investigation of the wood of Cunninghamia konishii resulted in the isolation and characterization of one new abietane diterpenoid, (6α,7β)‐7,8‐epoxy‐6‐hydroxyabieta‐9(11),13‐dien‐12‐one ( 1 ), and two new labdane diterpenoids, (12R)‐12‐hydroxylabda‐8(17),13(16),14‐trien‐19‐oic acid ( 2 ) and (12R)‐12‐hydroxylabda‐8(17),13(16),14‐trien‐18‐oic acid ( 3 ). The structures of these new compounds were elucidated by analysis of their spectroscopic data.  相似文献   

6.
A new triterpene, conrauidienol ( 1 ), and a new dihydroflavonol, conrauiflavonol ( 2 ), along with β‐amyrin acetate ( 3 ), betulinic acid ( 4 ), ursolic acid ( 5 ), 6β‐hydroxystigmasta‐4,22‐dien‐3‐one ( 6 ), 8‐prenylapigenin ( 7 ), β‐sitosterol glucoside ( 8 ), and 3,4′,5‐trihydroxy‐6″,6″‐dimethylpyrano[2,3‐g]flavone ( 9 ) were isolated from the stem barks of Ficus conraui Warburg (Moraceae). Their structures were elucidated by spectroscopic analysis. The hexane, AcOEt, and MeOH extracts, as well as the new isolated compounds exhibited selective antimicrobial activities varying from weak to moderate.  相似文献   

7.
The five new lignans designated 3′,4′‐de‐O‐methylenehinokinin ( 1 ), taiwaninolide ( 2 ), 8′‐hydroxysavinin ( 3 ), isoguamarol ( 4 ), and 4′‐O‐methylsalicifolin ( 5 ), as well as the new 4‐(3,4‐dimethoxybenzyl)dihydro‐3‐(4‐hydroxybenzyl)furan‐2(3H)‐one ( 6 ) were isolated from the roots of Taiwania cryptomerioides, besides the three known compounds hinokinin ( 8 ), savinin ( 9 ), and 3,4‐de‐O‐methylenehinokinin ( 7 ). The structures of the new constituents were elucidated through chemical and spectral studies. A compound previously isolated from the heartwood of Chamaecyparis obtusa var. formosana was assigned structure 1 ; however, this structure has now been revised to be 3,4‐de‐O‐methylenehinokinin ( 7 ).  相似文献   

8.
A new pyridone alkaloid, 5,6‐dihydro‐5‐hydroxy‐1H‐pyridin‐2‐one ( 1 ), and a new ester, sintenin (=3‐(3,4‐dimethoxyphenyl)propyl 3‐(3,4‐dimethoxyphenyl)propanoate 2 ), together with three known compounds, 5,6‐dihydro‐1H‐pyridin‐2‐one ( 3 ), d‐sesamin (=5,5′‐(3a,4,6,6a‐tetrahydro‐1H,3H‐furo[3,4‐c]furan‐1,4‐diyl)bis[1,3‐benzodioxole]; 4 ), and (E)‐phytol (=3,7,11,15‐tetramethylhexadec‐2‐en‐1‐ol; 5 ) have been isolated from the whole plant of Piper sintenense. The structures of the two new compounds were determined through spectral analyses. Among twenty isolates obtained so far, four compounds exhibited effective cytotoxicities against P‐388, HT‐29, or A549 cell lines in vitro.  相似文献   

9.
The new diterpenoid 6α‐hydroxy‐ent‐kaur‐16‐en‐15‐one ( 1 ) and a diterpenoid with a new skeleton, i.e., amentotaxin BB ( 5 ), as well as three new lanostanoids, i.e., (3β,23R)‐3‐methoxy‐24‐methylenelanost‐8‐en‐23‐ol ( 6 ), (23S)‐23‐methoxy‐24‐methylenelanost‐8‐en‐3‐one ( 7 ), and (3β,24ξ)‐3‐methoxy‐24‐methyl‐9,19‐cyclolanostan‐25‐ol ( 8 ), were isolated from the bark and leaves of Amentotaxus formosana. Their structures, including the relative configurations, were elucidated from spectroscopic data. Compound 1 and a known compound, ent‐kaur‐16‐en‐15‐one ( 2 ), showed potent cytotoxic effects against a number of cancer cells in vitro.  相似文献   

10.
Twenty components (including a new flavanone) were isolated and identified from the whole plant of Anaphalis sinica Hance. Their structures were determined on the basis of spectral analysis and chemical transformation. These components are 6‐[(5‐methyl‐6‐ethyl‐4‐hydroxy‐pyrone‐3‐yl)‐methylene]glabranine ( 1 ), kaempferol ( 2 ), tiliroside ( 3 ), quercetin ( 4 ), quercetin‐3‐O‐β‐D‐glucoside ( 5 ), scutellarin ( 6 ), 5,7‐dihydroxy‐8‐methoxyflavone ( 7 ), 5,7‐dihydroxy‐4′‐methoxy‐flavone‐7‐O‐α‐L‐rhamnopyranosyl(1→6)‐β‐D‐glucopyranoside ( 8 ), helipyrone ( 9 ), 4′‐hydroxydehydrokawain ( 10 ), panamin ( 11 ), ursolic acid ( 12 ), pomolic acid ( 13 ), 3‐acetyloleanolic acid ( 14 ), a mixture of N‐(2‐hydroxy‐acyl)‐4‐hydroxy‐8(E)‐ene‐sphingenine ( 15 ), O‐methyl‐D‐inositol ( 16 ), a mixture of β‐sitosterol ( 17 ) and stigmasterol ( 18 ) and a mixture of daucosterol ( 19 ) and stigmasterol‐β‐D‐glucoside ( 20 ). Among them, 6‐[(5‐methyl‐6‐ethyl‐4‐hydroxy‐pyrone‐3‐yl)‐methylene]glabranine ( 1 ) is a new compound, and 13C NMR data of panamin ( 11 ) is reported for the first time.  相似文献   

11.
Three new phenyl glycosides, scrophenoside A ( 1 ), B ( 2 ), and C ( 3 ), and two new phenylethyl glycosides, scroside D ( 4 ) and scroside E ( 5 ), were isolated from the stem of Picrorhiza scrophulariiflora Pennell (Scrophularlaceae), besides five known compounds. On the basis of spectroscopic evidence, the structures of the new compounds were elucidated as 4‐acetyl‐2‐methoxyphenyl 6‐O‐[4‐(β‐D ‐glucopyranosyloxy)vanilloyl]‐β‐D ‐glucopyranoside ( 1 ), 4‐acetylphenyl 6‐O‐[(E)‐p‐coumaroyl]‐β‐D ‐glucopyranoside ( 2 ), 4‐[(1R)‐ and (1S)‐1‐hydroxyethyl]‐2‐methoxyphenyl β‐D ‐glucopyranoside ( 3a and 3b , resp.), 2‐(3,4‐dihydroxyphenyl)ethyl Oβ‐D ‐glucopyranosyl‐(1→3)‐4‐O‐[(E)‐feruloyl]‐β‐D ‐glucopyranoside ( 4 ), and 2‐(3,4‐dihydroxyphenyl)ethyl Oβ‐D ‐glucopyranosyl‐(1→3)‐6‐O‐[(E)‐feruloyl]‐β‐D ‐glucopyranoside ( 5 ).  相似文献   

12.
Three new eremophilane‐type sesquiterpenes, (6β,8α)‐6‐(acetyloxy)‐8‐hydroxyeremophil‐7(11)‐en‐12,8‐olide ( 1 ), (6α,8α)‐6‐hydroxyeremophil‐7(11)‐en‐12,8‐olide ( 2 ), and (6α,8α)‐6‐(acetyloxy)eremophil‐7(11)‐en‐12,8‐olide ( 3 ) ((8α)‐eremophil‐7(11)‐en‐12,8‐olide = (4aR,5S,8aR,9aS)‐4a,5,6,7,8,8a,9,9a‐octahydro‐3,4a,5‐trimethylnaphtho[2,3‐b]furan‐2(4H)‐one), besides the recently elucidated eremoligularin ( 4 ) and bieremoligularolide ( 5 ), as well as a new highly oxygenated monoterpene, rel‐(1R,2R,3R,4S,5S)‐p‐menthane‐1,2,3,5‐tetrol ( 12 ), together with six known constituents, i.e., the sesquiterpenes 6 and 7 , the norsesquiterpenes 8 – 10 , and the monoterpene 13 , were isolated from the roots of Ligularia muliensis. In addition, an attempt to dimerize 1 to a bieremophilenolide (Scheme) resulted in the generation of the new derivative (6β,8β)‐6‐(acetyloxy)‐8‐chloroeremophil‐7(11)‐en‐12,8‐olide ( 11 ). The new structures were established by means of detailed spectroscopic analysis (IR, FAB‐, EI‐, or HR‐ESI‐MS as well as 1D‐ and 2D‐NMR experiments). Compounds 4 and 5 were evaluated for their antitumor effects in vitro (Table 3).  相似文献   

13.
Two new tetracyclic triterpenoids shiona‐19(E),21‐dien‐3β‐ol ( 1 ), and shiona‐22(29)‐en‐3β,21‐diol ( 2 ), together with four known compounds shiona‐21‐en‐3β‐ol ( 3 ), friedelinol ( 4 ), β‐sitosterol ( 5 ), and (24R)‐stigmast‐7,22(E)‐dien‐3a‐ol ( 6 ) were isolated from Aster ageratoides var. oophyllus. The structures of two new compounds were established on the basis of IR, MS, 1H, 13C and 2D NMR spectroscopic methods.  相似文献   

14.
Pyrocallianthasides A ( 1 ) and B ( 2 ), a new dimer and a new mono‐deglucosyl trimer of homoarbutin (=4‐hydroxy‐3‐methylphenyl β‐glucopyranoside), and callianthaside A ( 3 ), a new ursane‐type triterpene glycoside, together with three known phenolic glycosides and three known ursane‐type triterpenoids, were isolated from the whole plants of Pyrola calliantha. The structures of 1 – 3 were elucidated by chemical and spectroscopic methods.  相似文献   

15.
In present literature search, some cyano-containing compounds, which are very rare in plants, from the traditional anticancer herb Tiankuizi were reported. To find more cyano-containing compounds in the important plant Semiaquilegia adoxoides (DC) Makino (Chinese name Tiankuizi), the isolation of the chemical constituents was investigated for advancing the research. Two new compounds, a new alkaloid, 1,2,3,4-tetrahydro-6-hydroxy-1[(3,4-dihydroxyphenyl)methyl]-7-methoxy-2,2-dimethyl-isoquinolinium, named Semiaquilegine A (1), and a new ester, 3-(4'-hydroxyphenyl)-2-propenoic acid (4"-carboxyl)-phenyl ester (2), and four cyano-containing compounds, (Z)-6a-(β-D-glucosyloxy)-4a,5a-dihydroxy-2-cyclohexene-△^1,a-acetonitrile (3), (L0-6α-(β-D-glucosyloxy)-4α-hydroxy-2-cyclohexene-△^1,α-acetonitrile (4), lithospermoside (5), ehretioside B (6), as well as eleven known compounds, were isolated from the roots of Semiaquilegia adoxoides. The structures of new compounds 1 and 2 were elucidated mainly by 1D/2D-NMR techniques. Very unusual cyano-containing compounds 3 and 4 were first isolated from Ranunculaceae family. Hitherto, there were six cyano-containing compounds found in the herb.  相似文献   

16.
Five new eremophilane‐type sesquiterpenes, 3β‐(acetyloxy)‐7‐hydroxynoreremophila‐6,9‐dien‐8‐one ( 1 ), 8β‐hydroxy‐2‐dehydroxyliguhodgsonal ( 2 ), 3β‐(acetyloxy)‐11‐methoxy‐8‐oxoeremophila‐6,9‐dien‐12‐oic acid ( 3 ), 3β‐(acetyloxy)‐11‐(2′‐methylbutanoyloxy)‐8‐oxoeremophila‐6,9‐dien‐12‐oic acid ( 4 ), and 3β‐(acetyloxy)‐6α‐hydroxyligularenolide ( 5 ), along with the three known compounds 6 – 8 , were isolated from the roots of Ligularia przewalskii. The structures of the new compounds were elucidated through spectral studies including HR‐EI‐MS, IR, and NMR data.  相似文献   

17.
Two new halogenated sesquiterpenes, (8β)‐10‐bromo‐3‐chloro‐2,7‐epoxychamigr‐9‐en‐8‐ol ( 1 ) and 2‐bromo‐3‐chlorobisabola‐7(14),11‐diene‐6,10‐diol ( 3 ), and one new phytol‐derived diterpene, 2,3‐epoxyphytyl acetate ( 4 ), along with cis‐ and trans‐1‐methylcyclohexane‐1,4‐diol ( 5 and 6 ) which were isolated from a natural source for the first time but have been previously synthesized, were isolated from the marine red alga Laurencia composita and characterized. In addition, a known sesquiterpene, pacifenediol ( 2 ), and the known furanone derivative 7 were also identified. Their structures were established by NMR and mass spectroscopic methods.  相似文献   

18.
Seven new and three known bisresorcinols, grevirobstol A (=5,5′‐((6Z,9Z)‐hexadeca‐6,9‐diene‐1,16‐diyl)bisresorcinol; 8 ), 5,5′‐[(8Z)‐hexadec‐8‐ene‐1,16‐diyl]bisresorcinol ( 9 ), and 2‐methyl‐5,5′‐[8Z)‐hexadec‐8‐ene‐1,16‐diyl]bisresorcinol ( 10 ) were isolated from the stems of Grevillea glauca. The new compounds were identified on the basis of spectroscopic data as (Z)‐6,7‐didehydroglaucone A ( 1 ), glaucones A and B ( 2 and 3 , resp.), 2‐(3‐hydroxyisopentyl)bisnorstriatol ( 4 ), 2‐(3‐methylbut‐2‐en‐1‐yl)bisnorstriatol ( 5 ), 2′‐methylgrebustol A ( 6 ), and glaucane ( 7 ).  相似文献   

19.
Two new iridoids, 6‐O‐[(E)‐feruloyl]jioglutin D ( 1 ) and 6‐O‐(4‐hydroxybenzoyl)jioglutin D ( 2 ), and six known compounds, minecoside ( 3 ), specioside ( 4 ), picroside II ( 5 ), picroside III ( 6 ), 4‐hydroxybenzoic acid ( 7 ), and martynoside ( 8 ), were isolated from the stem of Catalpa ovata. The structures of the new compounds were established on the basis of spectroscopic techniques, including 1D‐ and 2D‐NMR.  相似文献   

20.
The three new lignanoids 1 – 3 and the five new phyllocladane diterpenoids 7 – 11 were isolated from the leaves of Callicarpa furfuraceae, together with two known lignanoids, lariciresinol ( 4 ) and (+)‐sesamin ( 5 ), and five known diterpenoids, 17‐norphyllocladane‐3,16‐dion ( 6 ), calliterpenone ( 12 ), calliterpenone 17‐acetate ( 13 ), (3β,16α)‐phyllocladane‐3,16,17‐triol ( 14 ), and (3β,16α)‐phyllocladane‐3,16,17‐triol 17‐acetate ( 15 ). Their structures were established by spectral‐data interpretation.  相似文献   

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