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1.
贵州冬凌草的对映-贝壳杉烷二萜化合物   总被引:3,自引:0,他引:3  
从贵州产冬凌草[Isodon rubescens (Hemsl.) Hera]中分离得到12个6,7-断 裂-7,20-内酯-对映-贝壳杉烷二萜化合物,经波谱分析鉴定了它们的结构, 其中有7个新化合物,分别命名为贵州冬凌草乙素~辛素(guidongnins B~H, 1~ 7),以及卢氏冬凌草甲素(8)、卢氏冬凌草乙素(9)、贵州冬凌草素(10)、狭 叶香茶菜素(angustifolin, 11)和6-表香茶菜素(6-epiangustifolin, 12)等5个 已知化合物。另外,将作者原命名的贵州冬凌草素(guidongnin, 10)更名为贵州 冬凌草甲素(guidongnin A, 10),并利用二维核磁区振波谱技术修订了卢氏冬凌草 乙素的结构。  相似文献   

2.
从贵州产冬凌草[Isodon rubescens (Hemsl.) Hera]中分离得到12个6,7-断 裂-7,20-内酯-对映-贝壳杉烷二萜化合物,经波谱分析鉴定了它们的结构, 其中有7个新化合物,分别命名为贵州冬凌草乙素~辛素(guidongnins B~H, 1~ 7),以及卢氏冬凌草甲素(8)、卢氏冬凌草乙素(9)、贵州冬凌草素(10)、狭 叶香茶菜素(angustifolin, 11)和6-表香茶菜素(6-epiangustifolin, 12)等5个 已知化合物。另外,将作者原命名的贵州冬凌草素(guidongnin, 10)更名为贵州 冬凌草甲素(guidongnin A, 10),并利用二维核磁区振波谱技术修订了卢氏冬凌草 乙素的结构。  相似文献   

3.
信阳冬凌草甲素和乙素的结构研究   总被引:1,自引:0,他引:1  
从河南省信阳地区产冬凌草叶中分得两种新的对映一贝壳杉烯型二萜化合物,命名为信阳冬凌草甲素和乙素,经光谱和化学方法证明,它们的结构分别为1和2。  相似文献   

4.
冬凌草甲素为对映贝壳杉烷类二萜化合物,主要分布在中草药冬凌草及相关植物中,具有多种生物活性如抗肿瘤、抗菌、抗炎等.主要综述了2000年以来冬凌草甲素的多功能结构修饰,表明冬凌草甲素结构修饰是提高冬凌草甲素药理活性的一种有效途径.  相似文献   

5.
自菊科蒿属植物万年蒿(Artemisia Sacrorum Ledeb)地上部分首次分得三个贝壳杉烷型(Kauranetape)二萜类化合物,经理化常数测定及光谱分析(IR,’H-NMR,~(13)C-NMR,MS,二维核磁共振光谱)鉴定其结构分别为:3α,16α,17-三羟基贝壳杉烷[I],3α,16α-二羟基贝壳杉烷-17-0-β-D-葡萄糖甙[Ⅱ]和16α-羟基贝壳杉-3-酮-17-0-β-D-葡萄糖甙[Ⅲ]。其中[Ⅰ]为一新天然产物,[Ⅱ]为一未见报道的新化合物。通过对该三个化合物的~(13)C-NMR光谱分析,讨论了不同位置取代基对其~(13)C-NMR光谱化学位移的影响。  相似文献   

6.
程云行  周维善 《有机化学》1994,14(5):511-515
本文合成了7和8两种作为环化前体的16α-溴-17-羟基对映贝壳杉烷类化合物. SeO~2氧化烯丙基化合物10不能得到烯基醛化合物11, 但可得到一个13-乙酰基重排反应产物12.  相似文献   

7.
济源冬凌草甲素(JOA)是从河南省济源市收集的冬凌草中纯化得到的二萜类成分,表现出多种抗肿瘤活性.为了进一步研究JOA的药用效果,设计合成了一系列其14-OH苯甲酸衍生物,随后评估了它们的体外抗增殖活性.结果证明,该系列衍生物的抗肿瘤活性优于先导化合物JOA及冬凌草甲素.其中,7α,20-内酯-对映-贝壳杉-16-烯-11,15二酮-14β-(2-硝基-5-氯苯甲酸)酯(OJW8-9)的活性最好[对SW1990细胞的IC50=(0.478±0.109)μmol/L].进一步的作用机制研究表明,化合物OJW8-9通过阻断处于G2/M期的SW-1990来抑制细胞增殖,且具有浓度依赖性,其可能通过活性氧(ROS)途径诱导细胞凋亡.  相似文献   

8.
采用紫外光谱动力学方法测定了抗肿瘤对映贝壳杉烯二萜冬凌草甲素和冬凌草乙素与谷胱苷肽迈克尔加成反应的级数、速率常数和平衡常数.结果表明,冬凌草甲素和冬凌草乙素与与谷胱苷肽迈克尔加成反应符合二级动力学方程,25℃下的速率常数分别为16.196 0L·(mol·s)-1和7.480 5L·(mol·s)-1,平衡常数分别为177.98L/mol和85.60L/mol.冬凌草甲素与谷胱苷肽迈克尔加成反应速率和反应程度均比冬凌草乙素的大得多,反应活性更好.对映贝壳杉烯二萜通过与机体发生迈克尔加成反应而产生抗肿瘤作用;因此,冬凌草甲素可能比冬凌草乙素具有更好的抗肿瘤活性.  相似文献   

9.
一个新的对映-贝壳杉烷型二萜化合物,白叶甲素陈绍农1林中文2陈耀祖1,3*孙汉董2*(1兰州大学国家应用有机重点实验室7300002中国科学院昆明植物研究所植物化学开放实验室6502043浙江大学化学系310027)关键词白叶香茶菜唇形科对映-贝壳杉...  相似文献   

10.
唇形科香茶菜属植物溪黄草(Rabdosia serra(Maxim·)Hara)具有清热祛湿、凉血散瘀、抗肿瘤、抗菌、消炎及对肝脏的保护作用[1,2]。据文献报道,溪黄草中的对映-贝壳杉烷型二萜化合物,是其具有抗癌作用的主要功效成分[3-5]。其结构与冬凌草甲素极为相似,在同一波长处具有相似的紫  相似文献   

11.
Two new ent-kaurane-type diterpenoids,6β,7β,13α-trihydroxy-1α-acetoxy-7α,20-epoxy-ent-kaur-16-en-15-one(1)and 15β- hydroxy-6,7-seco-6,11β:6,20-diepoxy-1α,7-olide-ent-kaur-16-ene(2)were isolated from the Isodon nervosus,and the structures were elucidated by spectroscopic analysis.  相似文献   

12.
Six new ent-kaurane-type diterpenoids were isolated from the leaves of the endemic Vietnamese medicinal plant Croton tonkinensis GAGNEP. (Euphorbiaceae) together with three known ent-11alpha-acetoxy-7beta,14alpha-dihydroxykaur-16-en-15-one (1), ent-kaur-16-en-15-one 18-oic acid (5) and ent-18-hydroxykaur-16-ene (7). Their structures were determined by spectroscopic analyses to be ent-7beta-acetoxy-11alpha-hydroxykaur-16-en-15-one (2), ent-18-acetoxy-11alpha-hydroxykaur-16-en-15-one (3), ent-11alpha-acetoxykaur-16-en-18-oic acid (4), ent-15alpha,18-dihydroxykaur-16-ene (6), ent-11alpha,18-diacetoxy-7beta-hydroxykaur-16-en-15-one (8), and ent-(16S)-1alpha,14alpha-diacetoxy-7beta-hydroxy-17-methoxykauran-15-one (14). ent-Kaurane-type diterpenoids from Croton tonkinensis 2-4, 6, and 9-13, were tested for toxicity in the brine shrimp lethality assay. Compounds 9, 10, and 12 demonstrated significant activity, compounds 2, 3, 6, and 11 showed weak activity, and compounds 4 and 13 were inactive.  相似文献   

13.
Condensation of 2-hydroxy-1-naphthalenecarboxylic acid with phloroglucinol afforded 9,11-dihydroxy-12H-benzo[a]xanthen-12-one (6). Construction of an additional dimethylpyran ring onto this skeleton, by alkylation with 3-chloro-3-methyl-1-butyne followed by Claisen rearrangement, gave access to 6-hydroxy-3,3-dimethyl-3H,7H-benzo[a]pyrano[3,2-h]xanthen-7-one (12) and 5-hydroxy-2,2-dimethyl-2H,6H-benzo[a]pyrano[2,3-i]xanthen-6-one (13), which were methylated into 6-methoxy-3,3-dimethyl-3H,7H-benzo[a]pyrano[3,2-h]xanthen-7-one (14) and 5-methoxy-2,2-dimethyl-2H,6H-benzo[a]pyrano[2,3-i]xanthen-6-one (15), respectively. Osmium tetroxide oxidation of 14 and 15 gave the corresponding (+/-)-cis-diols 16 and 17, which afforded the corresponding esters 18-21 upon acylation. Similarly, condensation of 2-hydroxy-1-naphthalenecarboxylic acid with 3,5-dimethoxyaniline gave 11-amino-9-methoxy-12H-benzo[a]xanthen-12-one (23) which was converted into 11-amino-9-hydroxy-12H-benzo[a]xanthen-12-one (24) upon treatment with hydrogen bromide in acetic acid. Alkylation with 3-chloro-3-methyl-1-butyne followed by Claisen rearrangement afforded 6-amino-3,3-dimethyl-3H,7H-benzo[a]pyrano[3,2-h]xanthen-7-one (25) and 5-amino-2,2-dimethyl-2H,6H-benzo[a]pyrano[2,3-i]xanthen-6-one (26). The new benzopyranoxanthone derivatives only displayed marginal antiproliferative activity when tested against L1210 and KB-3-1 cell lines. The only compounds found significantly active against L1210 cell line, 16 and 20, belong to the benzo[a]pyrano[3,2-h]xanthen-7-one series, which possess a pyran ring fused angularly onto the xanthone basic core.  相似文献   

14.
A new arylbenzofuran, 3',5'-dihydroxy-6-methoxy-7-prenyl-2-arylbenzofuran (1), and 25 known compounds, including moracin R (2), moracin C (3), moracin O (4), moracin P (5), artoindonesianin O (6), moracin D (7), alabafuran A (8), mulberrofuran L (9), mulberrofuran Y (10), kuwanon A (11), kuwanon C (12), kuwanon T (13), morusin (14), kuwanon E (15), sanggenon F (16), betulinic acid (17), uvaol (18), ursolic acid (19), β-sitosterol (20), oxyresveratrol 2-O-β-D-glucopyranoside (21), mulberroside A (22), mulberroside B (23), 5,7-dihydroxycoumarin 7-O-β-D-glucopyranoside (24), 5,7-dihydroxycoumarin 7-O-β-D-apiofuranosyl-(1→6)-O-β-D-glucopyranoside (25) and adenosine (26), were isolated from Morus alba var. multicaulis Perro. (Moraceae). Their structures were determined by spectroscopic methods. The prenyl-flavonoids 11-14, 16, triterpenoids 17,18 and 20 showed significant inhibitory activity towards the differentiation of 3T3-L1 adipocytes. The arylbenzofurans 1-10 and prenyl-flavonoids 11-16 also showed significant nitric oxide (NO) production inhibitory effects in RAW264.7 cells.  相似文献   

15.
2-Alkoxy-4-heteroarylaminomethylene-5(4H)-thiazolones 4 were converted with various nucleophiles into β-heteroarylamino-α,β-dehydro-α-amino acid derivatives 11, 14, 15, 16, 17, 18 , and 19 . Reduction of 4 with sodium borohydride in ethanol saturated with gaseous ammonia afforded the corresponding β-heteroaryl-amino substituted alanyl amides 20 . Thiazoledione derivative 7a was transformed with sodium methoxide in methanol into 1-(4,6-dimethylpyrimidinyl-2)-4-mercaptocarbonylimidazol-2(3H)-one ( 8a ).  相似文献   

16.
Two novel pregnatrienolones isolated in very small amounts from the North-East-Atlantic demosponge Axinella agnata (Tetractinomorpha, Axinellida) are unique in having C(2)?C(3) (or C(3)?C(4)), C(7)?C(8), and C(16)?C(17) bonds and a 12β-OH group which, being strongly H-bonded to a 20-keto group, resists acylation. 1H- and 13C-NMR spectroscopy of the steroids and of products of their selective epoxidation or reduction allow us to propose the structures (+)-12β-hydroxy-5α-pregna-2,7,16-trien-20-one ( = agnatasterone A, (+)- 1 ), and (+)-12β-hydroxy-5α-pregna-3,7,16-trien-20-one ( = agnatasterone B. (+)- 5 ), for the two steroids with minimal recourse to model compounds.  相似文献   

17.
Two new alkaloids, Septonine (C35H44N2O9) and Septontrionine (C25H39NO6) were isolated from the roots of Aconitum septentrionale K. According to the 1H and 13C NMR, IR, and mass spectra, Septonin and Septontrionin were assigned the structures of 20-ethyl-7-hydroxy-1α,14α,16β-trimethoxy-6-oxo-17(7→8)abeoaconitan-4-ylmethyl 2-(2,5-dioxopyrrolidin-l-yl)benzoate and 20-ethyl-7-hydroxy-1α,14α,16β-trimethoxy-4-methoxymethyl-17(7→8)abeoaconitan-6-one, respectively.  相似文献   

18.
Several 3-alkoxysubstituted pyrazolo[3,4-d]pyrimidine ribonucleosides structurally related to adenosine, inosine and guanosine have been prepared by the direct glycosylation of preformed aglycon precursor containing a 3-alkoxy substituent. Ring closure of 5(3)-amino-3(5)-ethoxypyrazole-4-carboxamide ( 6b ) with either formamide or potassium ethyl xanthate gave 3-ethoxyallopurinol ( 7b ) and 3-ethoxy-6-thioxopyrazolo[3,4-d]-pyrimidin-4(5H,7H)-one ( 10 ), respectively. Methylation of 10 gave the corresponding 6-methylthio derivative 15 . Similar ring annulation of 5(3)-methoxypyrazole-4-carboxamide ( 6a ) with formamide afforded 3-methoxyallopurinol ( 7a ). Treatment of 5(3)-amino-3(5)-methoxypyrazole-4-carbonitrile ( 5a ) with formamidine acetate furnished 4-amino-3-methoxypyrazolo[3,4-d]pyrimidine ( 4 ). High-temperature glycosylation of 7b with 1-O-acetyl-2,3,5-tri-O-benzoyl-D-ribofuranose in the presence of boron trifluoride etherate gave a 2:1 mixture of N-1 and N-2 glycosyl blocked nucleosides 11b and 13b . Deprotection of 11b and 13b with sodium methoxide gave 3-ethoxy-1-β-D-ribofuranosylpyrazolo[3,4-d]pyrimidin-4(5H)-one ( 12b ) and the corresponding N-2 glycosyl isomer 14b , respectively. Similar glycosylation of either 4 or 7a , and subsequent debenzoylation gave exclusively 4-amino-3-methoxy-1-β-D-ribofuranosylpyrazolo[3,4-d]pyrimidine ( 9 ) and 3-methoxy-1-β-D-ribofuranosylpyrazolo[3,4-d]pyrimidin-4-(5H)-one ( 12a ), respectively. The structural assignment of 12a was made on the basis of single-crystal X-ray analysis. Application of this general glycosylation procedure to 15 gave the corresponding N-1 glycosyl derivative 16 as the sole product, which on debenzoylation afforded 3-ethoxy-6-(methylthio)-1-(3-D-ribofuranosylpyrazolo[3,4-d]pyrimidin-4(5H)-one ( 17 ). Oxidation of 16 and subsequent ammonolysis furnished the guanosine analog 6-arnino-3-ethoxy-1-β-D-ribofuranosylpyrazolo[3,4-d]-pyrimidin-4(5H)-one ( 19 ). Similarly, starting from 3-methoxy-4,6-bis(methylthio)pyrazolo[3,4-d]pyrimidine ( 20 ), 6-amino-3-methoxy-1-β-D-ribofuranosylpyrazolo[3,4-d]pyrimidin-4(5H)-one ( 23 ) was prepared.  相似文献   

19.
Phytochemical investigation of dichloromethane (DCM) extract from the stems of Paragonia pyramidata var. pyramidata L. Rich. (Bur.) resulted in the isolation and characterization of two new triterpenoids 3β,19β-dihydroxylup-12, 20(29)-diene-28-oic acid (1) and 3β,19β-dihydroxylup-12-en-28-oic acid (2), three known triterpenoids lupeol (3), spinosic acid A (4) and oleanolic acid (5), together with four known steroids (20R)-22E-24-ethylcholesta-4,22-dien-3-one (6), (20R)-24-ethylcholest-4-en-3-one (7), stigmasterol (8) and β-sitosterol (9). HREIMS, GC-MS and NMR experiments including HSQC, HMBC, COSY and NOESY were used for the determination of the structures and NMR spectral assignments. This is the first report about the chemical constituents for this plant.  相似文献   

20.
Thirty-five compounds including twenty-one alkaloids, lysicamine ( 1 ), liriodenine ( 2 ), atherospermidine ( 3 ), oxoxylopine ( 4 ), oxoanolobine ( 5 ), oxoglaucine ( 6 ), (-)-anonaine ( 7 ), (-)-asimilobine ( 8 ), (-)-xylopine ( 9 ), (-)-anolobine ( 10 ), (-)-norisocorydine ( 11 ), (+)-laurotetanine ( 12 ), (+)-isocorydine ( 13 ), (-)-N-methylasimilobine ( 14 ), (+)-N-methyllaurotetanine ( 15 ), (-)-norushinsunine ( 16 ), (-)-ushinsunine ( 17 ), (-)-N-formylanonaine ( 18 ), (+)-stepharine ( 19 ), (+)-orentaline ( 20 ), and (-)-kikemanine ( 21 ); four kauranes, ent-kaur-16-en-19-oic acid ( 22 ), 16β-hydroxy-17-acetoxy-ent-kauran-19-al ( 23 ), 17-acetoxy-16β-ent-kauran-19-oic acid ( 24 ), and 16β-hydroxy-17-acetoxy-ent-kauran-19-oic acid ( 25 ); two amides, N-trans-femloyltyramine ( 26 ), and N-trans-caffeoyltyramine ( 27 ); one purine, adenosine ( 28 ); one lactam amide, squamolone ( 29 ); and six steroids, β-sitosterol ( 30 ), stigmasterol ( 31 ), β-sitostenone ( 32 ), stigmasta-4,22-dien-3-one ( 33 ), 6β-hydroxy-β-sitosterone ( 34 ), and 6β-hydroxystigmasterone ( 35 ) are isolated from the stems of Annona cherimola. These compounds were characterized and identified by physical and spectral evidence. Among them, (-)-norisocorydine (11) was elucidated as a new enantiomer with a levorotary configuration, which is isolated for the first time.  相似文献   

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