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41.
A number of hydroxylated diterpenoids were obtained from the microbial transformation of isosteviol lactone (4α-carboxy-13α-hydroxy-13,16-seco-ent-19-norbeyeran-16-oic acid 13,16-lactone) (2) with Mucorrecurvatus MR 36, Aspergillusniger BCRC 31130, and Absidiapseudocylindrospora ATCC 24169. Incubation of 2 with M. recurvatus and Asp.niger led to isolation of seven known compounds (1 and 3-8). Incubation of 2 with Abs. pseudocylindrospora produced 5 and six previously unreported compounds (9-14). The structures of these isolated compounds were deduced by high-field NMR techniques (1H, 13C, DEPT, COSY, NOESY, HSQC, and HMBC), and those of 9 and 11 were further confirmed by X-ray crystallographic analyses. Subsequently, the inhibitory effects on activator protein-1 (AP-1) activation in lipopolysaccharide-stimulated RAW 264.7 macrophages of all of these compounds were evaluated. Compounds 2-5, 8, 9, 11, and 12 exhibited significant inhibitory activity, while 3 was more potent than the reference compound of dexamethasone.  相似文献   
42.
Two new macrocyclic diterpenoids, multifidanol (1) and multifidenol (2) along with several known compounds have been isolated from the stem of Jatropha multifida. The structures of the new compounds were established from the extensive studies of their 1D and 2D NMR spectra. The cytotoxic and antimicrobial activities of these two constituents were examined.  相似文献   
43.
Three new C19-diterpenoid alkaloids, tianshanisine (1), tianshanine (2) and tianshanidine (3), together with six known C19-diterpenoid alkaloids (4–9) were isolated from the whole herb of Delphinium tianshanicum W. T. Wang. Their structures were established on the basis of spectroscopic analyses, including HR-ESI-MS and 1D and 2D NMR.  相似文献   
44.
Ten diterpenoid alkaloids, including five new ones, sczukiniline A–E (1-5), were isolated from the root of Aconitum sczukinii. Their structures were elucidated based on the interpretation of spectroscopic data (HRESI-MS, IR, 1D- and 2D-NMR). Among the five new diterpenoid alkaloids, 1-3 are hetidine-type C20-diterpenoid alkaloids, while compounds 4 and 5 are lycoctonine-type C19-diterpenoid alkaloids. Noteworthily, sczukiniline A (1) features a novel ester group between C-12 and C-14, forming a D ring containing a lactone structure, resulting in a new skeleton of hetidine-type C20-diterpenoid alkaloid.  相似文献   
45.
46.
Microbial metabolism of steviol and steviol-16alpha,17-epoxide   总被引:1,自引:0,他引:1  
Yang LM  Hsu FL  Chang SF  Cheng JT  Hsu JY  Hsu CY  Liu PC  Lin SJ 《Phytochemistry》2007,68(4):562-570
Steviol (2) possesses a blood glucose-lowering property. In order to produce potentially more- or less-active, toxic, or inactive metabolites compared to steviol (2), its microbial metabolism was investigated. Incubation of 2 with the microorganisms Bacillus megaterium ATCC 14581, Mucor recurvatus MR 36, and Aspergillus niger BCRC 32720 yielded one new metabolite, ent-7alpha,11beta,13-trihydroxykaur-16-en-19-oic acid (7), together with four known related biotransformation products, ent-7alpha,13-dihydroxykaur-16-en-19-oic acid (3), ent-13-hydroxykaur-16-en-19-alpha-d-glucopyranosyl ester (4), ent-13,16beta,17-trihydroxykauran-19-oic acid (5), and ent-13-hydroxy-7-ketokaur-16-en-19-oic acid (6). The preliminary testing of antihyperglycemic effects showed that 5 was more potent than the parent compound (2). Thus, the microbial metabolism of steviol-16alpha,17-epoxide (8) with M. recurvatus MR 36 was continued to produce higher amounts of 5 for future study of its action mechanism. Preparative-scale fermentation of 8 yielded 5, ent-11alpha,13,16alpha,17-tetrahydroxykauran-19-oic acid (10), ent-1beta,17-dihydroxy-16-ketobeyeran-19-oic acid (11), and ent-7alpha,17-dihydroxy-16-ketobeyeran-19-oic acid (13), together with three new metabolites: ent-13,16beta-dihydroxykauran-17-acetoxy-19-oic acid (9), ent-11beta,13-dihydroxy-16beta,17-epoxykauran-19-oic acid (12), and ent-11beta,13,16beta,17-tetrahydroxykauran-19-oic acid (14). The structures of the compounds were fully elucidated using 1D and 2D NMR spectroscopic techniques, as well as HRFABMS. In addition, a GRE (glucocorticoid responsive element)-mediated luciferase reporter assay was used to initially screen the compounds 3-5, and 7 as glucocorticoid agonists. Compounds 4, 5 and 7 showed significant effects.  相似文献   
47.
The structure of four diterpenoid glucosides, designated as salvigresides A-D (1-4), isolated from the aerial parts of Salvia greggii, have been confirmed by spectroscopic and chemical investigation.  相似文献   
48.
Extraction of Tripterygium doianum (Celastraceae) afforded five new diterpenoids and 11 known diterpenoids belonging to the ent-kaurane and abietane families. Their structures were established based on spectroscopic studies. The isolated compounds showed moderate cytotoxicity against human tumor cell assays.  相似文献   
49.
As part of our ongoing search for anti-inflammatory compounds from higher plants, we isolated and elucidated two new diterpenoid glycosides, kansuingol A (1) and kansuingol B (2), from the roots of Euphorbia kansui. These structures were elucidated by extensive spectroscopic methods such as NMR and MS. Compounds were assessed for their IL-6 production inhibitory activity in PMA?+?A23187-stimulated HMC-1 cells. As a result, compounds 1 and 2 exerted inhibitory activities in the production of IL-6 with IC50 values of 2.96, and 1.94?μM, respectively. Further, kansuingol A (1) decreased mRNA expressions of TNF-α and IL-6.  相似文献   
50.
深裂黄草乌二萜生物碱研究   总被引:3,自引:0,他引:3  
深裂黄草乌(Aconitum vilmorinianum var.altifidum W. T.Wang)又名西南乌头、紫乌头、藤乌,主要分布于云南东北部、贵州西部和四川西部(泸定、天全)海拔2800m的山地。块根可祛风散寒、除湿止痛,民间也用于解乌头中毒。其化学成分未见报道。本文从深裂黄草乌全草中分离鉴定了3个二萜生物碱,一个为C-19骨架类型,两个为C-20骨架类型。其中一个为新化合物,是C-20骨架类型二萜生物碱,命名为深裂黄草乌碱vilmorinianine(Ⅰ),另两个化合物是denudatine(Ⅱ)和deoxyaconitine(Ⅲ),均首次从该植物中得到。  相似文献   
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