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1.
Two previously undescribed steroidal alkaloids, compounds 1–2, were isolated from the ripe fruits of Solanum nigrum, along with seven known metabolites (3–9). Based on spectroscopic and chemical evidence, including IR, NMR, and HR-ESI-MS analyses, the structures of the isolated compounds were elucidated as 12β-hydroxy-(3β,22α,25R)-spirosol-5-en-27-acid-3-O-α-L-rhamnopyranosyl-(1→2)-β-D-glucopyranosyl-(1→3)]-β-D-galacopyranoside and 12β-hydroxy-(3β,22α,25R)-spirosol-5-en-27-acid-3-O-α-L-rhamnopyranosyl-(1→2)-[α-L-rhamnopyranosyl-(1→4)]-β-D-glucopyranoside. Four steroidal alkaloids (compounds 1–2 and 4–5) were tested for their anti-proliferative effects against the HT-29, A549, and Lewis cell lines. Both of the previously isolated compounds inhibited the proliferation of these three cell lines in a dose-dependent manner, with the most significant effect being in the A549 cells, but neither reached IC50 at 50 μM. These results revealed that S. nigrum had weak cytotoxicity, indicating its clinical safety as a traditional anti-tumor herbal medicine.  相似文献   

2.
Cholinesterase inhibitory and spasmolytic potential of steroidal alkaloids   总被引:3,自引:0,他引:3  
A new steroidal alkaloid, isosarcodine (1) along with four known bases, sarcorine (2), sarcodine (3), sarcocine (4) and alkaloid-C (5) were isolated from the MeOH extract of Sarcococca saligna. The structures of these alkaloids were identified by spectral data interpretation. These compounds were subjected to acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) inhibition studies, and were found to be noncompetitive inhibitors of AChE (Ki = 21.8, 90.3, 32.2, 16.0 and 50.0 μM, respectively) and uncompetitive or noncompetitive inhibitors of BChE (Ki = 8.3, 7.5, 15.6, 5.0 and 12.0 μM, respectively).

The compounds (2–5) also showed dose-dependent spasmolytic activity in the rabbit jejunum intestinal preparations and also relaxed the high K+ (80 mM)-induced contraction, indicative of a calcium channel-blocking mechanism.

Structure–activity relationship suggested that the nitrogen substituents at C-3 and/or C-20 of steroidal skeleton and the hydrophobic properties of the pregnane skeleton are the key structural features contributed to the inhibitory potency of these steroidal alkaloids against AChE and BChE.  相似文献   


3.
New steroidal alkaloids from the bulbs of Fritillaria puqiensis   总被引:3,自引:0,他引:3  
Jiang Y  Li P  Li HJ  Yu H 《Steroids》2006,71(9):843-848
Six new steroidal alkaloids, namely puqienines C-E (1-3), puqiedine (4), 3alpha-puqiedin-7-ol (5), and puqietinedione (6), along with two known steroidal alkaloids puqiedinone (7) and peimisine (8), were isolated from the bulbs of Fritillaria puqiensis G.D. Yu et G.Y. Chen (Liliaceae). Their structures were elucidated on the basis of spectroscopic analysis, including 1D and 2D NMR experiments. Among these alkaloids, 1-3 had a veratramine-type skeleton, 4, 5, 7 a cevanine-type skeleton, 6 a secosolanidine-type skeleton, and 8 a jervine-type skeleton. The existence of multiple types of steroidal skeletons, especially of relatively large amount of veratramine-type alkaloids in one species is rare in the genus Fritillaria, and the results might be of chemotaxonomic significance for this species.  相似文献   

4.
Steroidal alkaloids (SA) are nitrogen-containing specialized metabolites applied as chemophenetic markers in Solanum L. (Solanaceae). Over time, Solanum has been the focus of several molecular phylogenetic studies in an attempt to resolve its infrageneric classification and the relationship among species belonging to this genus. Here we aimed to study SA chemodiversity to identify chemical patterns and to perform a chemophenetic characterization of the Solanum genus and its major clades. Chemical literature data about Solanum steroidal alkaloids was assessed and structural variability of this biogenetic group was used in the chemometric analysis, by applying a Principal Component Analysis and Hierarchical Cluster Analysis. The results demonstrate that the SA chemodiversity in Solanum is represented by the occurrence of nine SA subtypes. The biosynthetic predominance of the spirosolane-type in Solanum clades was observed, except for the preference of the Potato clade in producing the solanidane-type. The Geminata clade displayed low SA glycosylation patterns, containing 3-oxy groups. In addition, low SA production in the Cyphomandra clade was observed. Chemical similarities between the Archaesolanum, Dulcamaroid and Morelloid clades were observed by chemometric analyses. In sum, chemophenetics was proven a reliable and additional tool to describe the array of specialized metabolites in Solanum clades, showing chemical information suitable to corroborate molecular phylogenetic studies.  相似文献   

5.
The first synthesis of 12-oxosoladulcidine (= (3beta,5alpha,22alpha,25R)-3-hydroxyspirosolan-12-one; 4) is reported, and its structure was confirmed by single-crystal X-ray diffraction analysis. Compound 4 was readily obtained in five steps in an overall yield of 31%, starting from hecogenin (5). By slightly modifying the synthetic protocol, eight analogues of 4 were also prepared. The title compound and its derivatives are expected to be potent antitumor alkaloids, since structurally closely related to the known antitumor agents soladulcidine (2) and hecogenin (5).  相似文献   

6.
An efficient synthesis of the steroidal alkaloids solasodine (1), O-acetylsolasodine (2), and soladulcidine (3) starting from easily available diosgenin and tigogenin in five or six steps (overall yield 25, 24, and 28%, resp.) is described. Moreover, our synthetic route provides a selective modification at C(3) of 1 and related compounds in order to carry out lead optimization on these natural antitumor steroidal alkaloids.  相似文献   

7.
Five new steroidal alkaloids, 5,14-dehydro-N(a)-demethylsaracodine [3beta-N(a)-methyl-20S-N(b)-acetyl-N(b)-methylamino-pregn-5,14-diene] (1), 14-dehydro-N(a)-demethylsaracodine [3beta-N(a)-methyl-20S-N(b)-acetyl-N(b)-methylamino-5alpha-pregn-14-ene] (2), 16-dehydrosarcorine [(20S)-20-(N,N-dimethylamino)-3beta-(N(a)-acetylamido)-5alpha-pregn-16-ene] (3), 2,3-dehydrosarsalignone [(20S)-20-(N,N-dimethylamino)-3beta-(tigloylamino)-pregn-2,5-diene-4-one] (4), and 14,15-dehydrosarcovagine-D [(20S)-20-(N,N-dimethylamino)-3beta-(tigloylamino)-5alpha-pregn-2,14-diene-4-one] (5), were isolated from the ethanolic extract of Sarcococca saligna, along with two known bases, sarcovagenine-C (6) and salignarine-C (7). Their structures were elucidated on the basis of spectroscopic methods. All seven compounds were found to possess cholinesterase inhibitory potential in a concentration-dependent manner with the IC50 values ranging from 12.5 to 200 microM against acetylcholinesterase and from 1.25 to 32.2 microM against butyrylcholinesterase.  相似文献   

8.
Two members of a new class of C-nor-D-homo steroidal alkaloids, impranine (1). and dihydroimpranine (2). along with a new pyridyl-pregnane-type steroidal alkaloid, fetisinine (3). and a known base, korsevine (4). were isolated from the bulbs of Fritillaria imperialis. The structures of the compounds were established on the basis of spectroscopic techniques and some chemical transformations. Compounds 1 and 2 form a new class of steroidal alkaloids, named as "impranane."  相似文献   

9.
Death camas (Zigadenus spp.) is a common poisonous plant in North America with plants occurring in a wide variety of habitats with species of toxic concern occurring primarily in meadows, grasslands, shrublands, and mountains. The toxicity of Zigadenus species has been attributed to a series of steroidal alkaloids. The objective of this study was to evaluate zygacine and total steroidal alkaloid concentrations in different plant tissues of Zigadenus paniculatus as a function of plant maturity. Death camas plants were collected at two locations at different developmental growth stages representing vegetative, flower, seed pod, and shattered seed pod stages. Zygacine represented greater than 50% of the total steroidal alkaloids at all developmental stages. In bulbs, total steroidal alkaloid and zygacine concentrations did not change significantly as a function of plant phenology, and concentrations were lower than what were observed in above ground plant parts. Total steroidal alkaloid and zygacine concentrations in above ground parts were highest at early vegetative growth stages and decreased over the growing season. In plant reproductive parts, total steroidal alkaloid and zygacine concentrations increased until maturity and then decreased as the plant senesced. The concentrations of steroidal alkaloids reported here suggest that the toxic risk associated with death camas is greatest in the early vegetative growth stages followed by the flower and pod stages. There is a toxic risk to livestock as long as the plant is present, and caution should be taken when grazing livestock in areas with death camas until the plant senesces.  相似文献   

10.
The bioassay-guided phytochemical investigation on Sarcococca hookeriana have resulted in the isolation of four new pregnane-type steriodal alkaloids: hookerianamide-D [(2'E,20S)-20-(N,N-formyl(methyl)amino)-3beta-(3',4'-dimethyl-2'-pentenamido)-5alpha-pregnane] (1), hookerianamide-E [(2'E,20S)-20-(N,N-dimethylamino)-3beta-(senecioylamino)-5alpha-pregn-14-en-2beta-O-acetate] (2), hookerianamide-F [(2'E,20S)-20-(N-methylamino)-3beta-(tigloylamino)-5alpha-pregn-2,14-dien-4-one] (3), and hookerianamide-G [(20S)-20-(N,N-dimethylamino)-3beta-(N-methylbenzamido)-5alpha-pregn-4beta-O-acetate] (4), along with five known alkaloids 5-9. Their structures were determined by spectroscopic analysis. These steroidal alkaloids and chemically derived derivatives of compound 5 have displayed varying degree of inhibitory activities against acetylcholinesterase and butyrylcholinesterase enzymes in a concentration-dependent fashion, with the IC(50) values ranging from 1.5 to 148.2 and 0.6 to 100.2 microM, respectively.  相似文献   

11.
Two new glycoalkaloids, erianosides A (1) and B (2) along with five known compounds (37) were isolated from the leaves of Solanum erianthum. Their structures were elucidated from analyses of spectroscopic data and all isolates were tested for in vitro cytotoxic activity against human breast cancer cell lines (BT-549, MDA-MB-231, T74D, and MCF-7). Solasonine (5) and solamargine (6) were active against the aforementioned four cancer cell lines with IC50 values of 27.26–35.89 and 5.84–10.13 μM, respectively. Erianoside A (1) (T74D: IC50, 56.39 µM) and solasodine (3) (BT-549 and MDA-MB-231: IC50, 59.15 and 75.63 µM, respectively) had moderate cytotoxic effects towards some cell lines in the panel.  相似文献   

12.
Two new steroidal saponins, 25(R)-3β [(O-β-d-glucopyranosyl-(1  3)-β-d-glucopyranosyl-(1  2)-O-[β-d-xylopyranosyl-(1  3)-O-β-d-glucopyranosyl-(1  4)-β-d-galactopyranosyl)oxy]-5α, 15β, 22R, 25R-spirostan-3,15-diol (1, named parquispiroside) and 25R-26-[(β-d-glucopyranosyl)Oxy]-(3β [(O-β-d-glucopyranosyl-(1  3)-β-d-glucopyranosyl-(1  2)-O-[β-d-xylopyranosyl-(1  3)-O-β-d-glucopyranosyl-(1  4)-β-d-galactopyranosyl)oxy], 5α, 15β, 22R, 25R)-furostane-3,15,22-triol (2, named parquifuroside), along with the known saponins, capsicoside D (3) and 22-OMe-capsicoside D (4) and the known glycoside, benzyl primeveroside (5), were isolated from the leaves of Cestrum parqui. The structures of these compounds were elucidated by careful analysis of 1D and 2D NMR spectra and ESIMS data. Parquispiroside (1) exhibited moderate inhibition of Hela, HepG2, U87, and MCF7 cell lines with IC50 values in the range of 3.3–14.1 μM.  相似文献   

13.
The antiproliferative activity of previously synthesized (Z)-cholest-4-en-6-one oxime (1), (E)-cholest-4-en-6-one oxime (2), 7-aza-B-homocholest-4-en-6-one (3) and 6-aza-B-homocholest-4-en-7-one (4) and newly synthesized 6-thioxo-7-aza-B-homocholest-4-ene (5) and 6-aza-7-thioxo-B-homocholest-4-ene (6) was tested for their possible effects against two human tumor cell lines, cervical carcinoma (HeLa) and chronic myelogenous leukemia (K-562). Compounds 1-6, exerted a dose-dependent antiproliferative effect toward cell lines used in experimental design, showing high selectivity in their action for tumor cells in comparison to normal immunocompetent cells (non-stimulated PBMC and PHA-stimulated PBMC). Compounds 2, 3 and 4 exhibited a very high but selective antitumor activity, by inducing apoptosis in sensitive, for that purpose targeted tumor cell line (HeLa cells). Low toxic effect upon both non-stimulated, and PHA stimulated PBMCs from control, healthy volunteers, has been detected for compounds 1, 2, 3 and 4. The possible reasons for profound differences in the effects of this spectrum of steroidal compounds between tumor cell lines and normal stimulated and non-stimulated PBMCs are discussed. The molecular mechanisms for apoptotic events in HeLa cell line are suggested. The guidelines for further research are underlined.  相似文献   

14.
Ying Ye  Yuan Qu  Ruiqi Tang  Shining Cao  Wei Yang  Lan Xiang  Jianhua Qi 《Steroids》2013,78(12-13):1171-1176
Three new steroidal saponins (13) and a known saponin (4) were isolated from Ophiopogon japonicus (Thunb.) Ker-Gawl. Their structures were determined by spectroscopic analyses and chemical derivatization. The isolated compounds (14) were potent inducers of neuritogenesis on PC12 cells. Compound 1 showed the highest neuritogenic activity of 46% at 1 μM. The study of structure–activity relationships suggests that aglycone is important for the neuritogenic activity of the compounds. Specific inhibitor experiments and Western blot analysis suggest that 1-induced neuritogenic activity depends on the activation of mitogen-activated protein kinase kinase (MEK)/extracellular signal regulated kinase (ERK) signaling pathway on PC12 cells.  相似文献   

15.
The alkaloids of Strychnos icaja (Loganiaceae) have been studied. An extract from Zaire leaf material yielded nine alkaloids, comprising novacine, the new base 21,22-α-epoxy-4,14-dihydroxy-3-methoxy-N-methyl-sec.-pseudostrychnine, and seven others of known structure previously obtained from the plant. Cameroun leaf material gave five alkaloids, of which one, 21,22-α-epoxy-3,4-dimethoxy-N-methyl-sec.-pseudostrychnine, is new. Fruits from Gabon afforded eight alkaloids; two of them are new and are formulated as 21,22-α-epoxy-4-methoxy-N-methyl-sec.-pseudostrychnine and the corresponding 14-hydroxy derivative.  相似文献   

16.
Babar ZU  Ata A  Meshkatalsadat MH 《Steroids》2006,71(13-14):1045-1051
Phytochemical studies on the crude methanolic extract of Buxus hyrcana, collected from Iran, resulted in the isolation of two new steroidal alkaloids, (+)-O6-buxafurandiene (1) and (+)-7-deoxy-O6-buxafurandiene (2) along with four known steroidal bases, (+)-benzoylbuxidienine (3), (+)-buxapapillinine (4), (+)-buxaquamarine (5) and (+)-irehine (6). The structures of these new and known compounds were established with the aid of extensive NMR spectroscopic studies. Compounds 1 and 2 belong to the rarely occurring class of Buxus alkaloids having a tetrahydrofuran ring incorporated in their structures. Compounds 1-6 exhibited acetylcholinesterase enzyme inhibitory activity.  相似文献   

17.
18.
Eight new steroidal saponins, trillikamtosides K–R (18), along with three known analogues, were isolated from the whole plants of Trillium kamtschaticum. Their structures were unambiguously established by interpretation of spectroscopic data (MS and NMR) and chemical methods. Compound 1 had a rare aglycone featuring a skeleton of 16-oxaandrost-5-en-3-ol-17-one, which was reported for the first time. The isolated saponins were tested for cytotoxicities against HCT116 cells, and trillikamtoside R (8) was found to show the most cytotoxic effect with an IC50 value of 4.92 μM.  相似文献   

19.
Phytochemical investigations of the rhizomes of Smilax scobinicaulis led to the isolation of seven steroidal saponins (17) of which four (1, 3, 4 and 6), nameed, Smilscobinosides C-F, respectively) are new. Five of these steroidal saponins with l-arabinose moiety are reported here for the first time in the genus Smilax. The structures were elucidated by spectroscopic analysis of the isolates and their hydrolysis products. The isolated compounds were evaluated for their cytotoxicity against four human tumor cell lines (SH-SY5Y, SGC-7901, HCT-116 and Lovo). Compounds 3 and 4 exhibited significant inhibition on HCT-116 (with IC50 values of 10.5 and 7.8 μM) together with inhibition on SGC-7901 (with IC50 values of 21.4 and 15.8 μM), respectively.  相似文献   

20.
We describe the synthesis of steroidal dendrimer conjugates of first and second generation with tetramethylene core and 5-hydroxy-isophtalic acid dimethyl ester as branching unit modified to incorporate ethynylestradiol or 17α-estradiol as terminal units. The steroidal dendrimer conjugates, the free drug (steroids) and dendrimer were tested against a panel of cancer cell lines (CEM, MCF7, HeLa) and normal human fibroblast (BJ). The steroidal dendrimer conjugates of first generation exhibited cytotoxic activity and induced apoptosis in chronic leukemia (CEM) as resultant activation of caspase cascade which is mainly provoked in G2/M arrested cells.  相似文献   

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