A new compound (1) named as winchic acid and eight known ones were isolated from the stem barks of Winchia colophylla A. DC. (collected in Xishuangbanna, Yunnan Province of China). The new compound 1 was identified as...A new compound (1) named as winchic acid and eight known ones were isolated from the stem barks of Winchia colophylla A. DC. (collected in Xishuangbanna, Yunnan Province of China). The new compound 1 was identified as 3beta-hydroxy-27-(4-hydroxy-3-methoxy-E-cinnamoyloxy)-lup-20(29)-en-28-oic acid on the basis of 1D and 2D NMR experiments. The eight known compounds were determined to be lupenone, lupenyl acetate, betulinic acid, alpha-amyrin acetate, ursolic acid, ptiloepoxide, beta-amyrin and cycloeucalenol, respectively.展开更多
Abstract: The Dai medicinal plant Winchia calophylla A. DC. (Apocynaceae) has efficacy as an anti-cough and anti-asthmatic medication. In order to investigate its relative bioactive components, we studied the chemical...Abstract: The Dai medicinal plant Winchia calophylla A. DC. (Apocynaceae) has efficacy as an anti-cough and anti-asthmatic medication. In order to investigate its relative bioactive components, we studied the chemical constituents of this plant. Using repeated column chromatography, 28 compounds, including loganin, six phenolic compounds, 17 indole alkaloids, three pyridine alkaloids, and a quinoline alkaloid, were isolated from the stem barks of W. calophylla. Loganin, paeonol, N (4)-methyl akuammicine, and cantleyine exhibited a moderate relaxation effect on isolated smooth muscles of guinea-pig tracheal spirals and lung strips and may be the bioactive components responsible for the bronchodilation produced by W. calophylla.展开更多
Two new monoterpene diglycosides, wincaloside A (1) and wincaloside B (2), along with loganin (3) were isolated from the stem barks of Winchia calophylla A. DC. The structures of 1 and 2 were established by spectrosco...Two new monoterpene diglycosides, wincaloside A (1) and wincaloside B (2), along with loganin (3) were isolated from the stem barks of Winchia calophylla A. DC. The structures of 1 and 2 were established by spectroscopic and chemical methods.展开更多
To ensure the safety of medications,it is vital to accurately authenticate species of the Apocynaceae family,which is rich in poisonous medicinal plants.We identified Apocynaceae species by using nuclear internal tran...To ensure the safety of medications,it is vital to accurately authenticate species of the Apocynaceae family,which is rich in poisonous medicinal plants.We identified Apocynaceae species by using nuclear internal transcribed spacer 2(ITS2)and psb Atrn H based on experimental data.The identification ability of ITS2 and psb A-trn H was assessed using specific genetic divergence,BLAST1,and neighbor-joining trees.For DNA barcoding,ITS2 and psb A-trn H regions of 122 plant samples of 31 species from 19 genera in the Apocynaceae family were amplified.The PCR amplification for ITS2 and psb A-trn H sequences was 100%.The sequencing success rates for ITS2 and psb A-trn H sequences were 81%and 61%,respectively.Additional data involved 53 sequences of the ITS2 region and 38 sequences of the psb A-trn H region were downloaded from Gen Bank.Moreover,the analysis showed that the interspecific divergence of Apocynaceae species was greater than its intra-specific variations.The results indicated that,using the BLAST1 method,ITS2 showed a high identification efficiency of 97%and 100%of the samples at the species and genus levels,respectively,via BLAST1,and psb A-trn H successfully identified 95%and 100%of the samples at the species and genus levels,respectively.The barcode combination of ITS2/psb A-trn H successfully identified 98%and 100%of samples at the species and genus levels,respectively.Subsequently,the neighbor joining tree method also showed that barcode ITS2 and psb A-trn H could distinguish among the species within the Apocynaceae family.ITS2 is a core barcode and psb A-trn H is a supplementary barcode for identifying species in the Apocynaceae family.These results will help to improve DNA barcoding reference databases for herbal drugs and other herbal raw materials.展开更多
文摘A new compound (1) named as winchic acid and eight known ones were isolated from the stem barks of Winchia colophylla A. DC. (collected in Xishuangbanna, Yunnan Province of China). The new compound 1 was identified as 3beta-hydroxy-27-(4-hydroxy-3-methoxy-E-cinnamoyloxy)-lup-20(29)-en-28-oic acid on the basis of 1D and 2D NMR experiments. The eight known compounds were determined to be lupenone, lupenyl acetate, betulinic acid, alpha-amyrin acetate, ursolic acid, ptiloepoxide, beta-amyrin and cycloeucalenol, respectively.
文摘Abstract: The Dai medicinal plant Winchia calophylla A. DC. (Apocynaceae) has efficacy as an anti-cough and anti-asthmatic medication. In order to investigate its relative bioactive components, we studied the chemical constituents of this plant. Using repeated column chromatography, 28 compounds, including loganin, six phenolic compounds, 17 indole alkaloids, three pyridine alkaloids, and a quinoline alkaloid, were isolated from the stem barks of W. calophylla. Loganin, paeonol, N (4)-methyl akuammicine, and cantleyine exhibited a moderate relaxation effect on isolated smooth muscles of guinea-pig tracheal spirals and lung strips and may be the bioactive components responsible for the bronchodilation produced by W. calophylla.
基金supported by the National Natural Science Foundation for Outstanding Young Scientists to Prof.Xiao Jiang Hao(No.39525025).
文摘Two new monoterpene diglycosides, wincaloside A (1) and wincaloside B (2), along with loganin (3) were isolated from the stem barks of Winchia calophylla A. DC. The structures of 1 and 2 were established by spectroscopic and chemical methods.
基金supported by the CAMS Initiative for Innovative Medicine(No.2016-12M-2-003)the Special Subsidies for Public Health Services of TCM("The National Survey of TCM Resources",DSS,MOF,No.66/2017)。
文摘To ensure the safety of medications,it is vital to accurately authenticate species of the Apocynaceae family,which is rich in poisonous medicinal plants.We identified Apocynaceae species by using nuclear internal transcribed spacer 2(ITS2)and psb Atrn H based on experimental data.The identification ability of ITS2 and psb A-trn H was assessed using specific genetic divergence,BLAST1,and neighbor-joining trees.For DNA barcoding,ITS2 and psb A-trn H regions of 122 plant samples of 31 species from 19 genera in the Apocynaceae family were amplified.The PCR amplification for ITS2 and psb A-trn H sequences was 100%.The sequencing success rates for ITS2 and psb A-trn H sequences were 81%and 61%,respectively.Additional data involved 53 sequences of the ITS2 region and 38 sequences of the psb A-trn H region were downloaded from Gen Bank.Moreover,the analysis showed that the interspecific divergence of Apocynaceae species was greater than its intra-specific variations.The results indicated that,using the BLAST1 method,ITS2 showed a high identification efficiency of 97%and 100%of the samples at the species and genus levels,respectively,via BLAST1,and psb A-trn H successfully identified 95%and 100%of the samples at the species and genus levels,respectively.The barcode combination of ITS2/psb A-trn H successfully identified 98%and 100%of samples at the species and genus levels,respectively.Subsequently,the neighbor joining tree method also showed that barcode ITS2 and psb A-trn H could distinguish among the species within the Apocynaceae family.ITS2 is a core barcode and psb A-trn H is a supplementary barcode for identifying species in the Apocynaceae family.These results will help to improve DNA barcoding reference databases for herbal drugs and other herbal raw materials.