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Oligomeric stilbenes from the root of Caragana stenophylla.

Caragaphenol A (1), a new trimeric stilbene, was isolated from the roots of Caragana stenophylla (Leguminosae) along with three known oligomeric stilbenes: (+)-alpha-viniferin (2), miyabenol C (3) and kobophenol A (4). The stereostructure of 1 was elucidated by one- and two-dimensional (1D- and 2D-)-NMR spectral studies.

Caragana↗

Stilbene derivatives from Pholidota chinensis and their anti-inflammatory activity.

Ethyl acetate extract of Pholidota chinensis L. showed strong NO production inhibitory activity in murine macrophage-like cell line, RAW 264.7, which was activated by a lipopolysaccharide (LPS) and interferon-gamma (IFN-gamma). Fractionation of the active extract led to the isolation of two new stilbene derivatives, 2,3'-dihydroxy-5-methoxy-3,4-methylenedioxydihydrostilbene (Pholidotol A) and 2-hydroxy-5-methoxy-3,4,3',4'-dimethylenedioxydihydrostilbene (Pholidotol B) together with six known stilbene derivatives. Pholidotols A both B and inhibited Nitric oxide (NO) production with an IC(50) value at 24.3 and 17.1 microM, respectively.

Animals↗

Quantitative determination of stilbene oligomers in Jin Que-gen collected from different regions by a HPLC method.

The objectives of this research were to determine simultaneously the contents of two stilbene tetramers, carasinol B (1) and kobophenol A (2), and one stilbene trimer, (+)-alpha-viniferin (3), in Jin Que-gen in different regions. A HPLC method has been developed for efficiently quantifying the three analytes in the plant. Using this method, different samples of Jin Que-gen were evaluated. The results showed that contents of the three analytes varied significantly among different samples, and the contents of the three analytes in commercial Jin Que-gen were markedly lower than those in the plants collected directly from growing regions. And for the three analytes, the longer the cultivation time, the higher the contents.

Benzofurans↗

Rapid [14C]heptachlor clearance from body stores of ovines: ingested mineral oil and parenteral trans-stilbene oxide lack effects.

Recently we reported elimination of radioactivity from [14C]heptachlor from body stores of lactating ovines, mainly into excreta rather than milk, contrasting sharply with bovines. To further assess heptachlor metabolism and clearance by ovines, 12 fine-wool wether lambs (41 +/- 3 kg) housed in metabolism stalls were fed pelleted alfalfa hay (96%) plus molasses (3%) ad libitum and were dosed i.p. once with [14C]heptachlor (1.643 mg/kg body wt; sp. act. = .89 microCi/mg). Feces and urine were collected separately and quantitatively. Light mineral oil was mixed with feed (5 g/100 g) of six lambs and trans-stilbene oxide, an inducer of biotransformational enzymes, was administered i.p. (4 g/hd initially; 2 g/hd daily thereafter) through 20 d to three lambs given each mineral oil treatment, in 2 x 2 factorial arrangement. Feces, urine, blood, bile and body tissues were assayed for total 14C activity. Radioactivity (heptachlor and [or] metabolites) eliminated into excreta during 21 d amounted to 34 to 36% of dose administered, of which 67% appeared in urine and 33% in feces. Biological half-time for elimination into excreta was 11.3 d [Kel = -.061/d], similar to 11.7 d we reported for lactating ewes. Clearance from blood had T1/2 = 14 d. Neither mineral oil nor trans-stilbene oxide altered rate or route of 14C activity excreted or concentrations of 14C activity in blood. Results confirmed that ovines eliminate heptachlor much more rapidly than bovines.

Animals↗

Epoxidation of the stilbene double bond, a major pathway in aminostilbene metabolism.

1. The vicinal diol 1-(4-acetylamino)-phenyl-2-phenyl-1,2-ethanediol is shown to be a major metabolite of cis- and trans-4-dimethylaminostilbene in the rat. 2. The threo-diastereomeric diols were identified in urine with both the cis- and trans-aminostilbene. This is consistent with enzymic trans-opening of an epoxide intermediate only for the cis-stilbene. For the hydrolysis of the trans-stilbene epoxide alternative mechanisms are discussed. 3. A mercapturic acid isolated from urine is identical with the reaction product of 4-acetylaminostilbene epoxide and N-acetylcysteine. This provides additional evidence for an epoxide intermediate. 4. Oxidation of the intercyclic linkage occurs also in 4-dimethylaminobibenzyl, leading to 1-phenyl-2-(4-acetylamino)-phenyl-1-ethanol as a major urinary metabolite. 5. The syntheses of several reference compounds, including the epoxides and dihydrodiols of cis- and trans-4-acetylaminostilbene are described.

Animals↗

Induction of cytosolic glutathione transferase and microsomal epoxide hydrolase activities in extrahepatic organs of the rat by phenobarbital, 3-methylcholanthrene and trans-stilbene oxide.

The effects of treating male Sprague-Dawley rats with phenobarbital, 3-methylcholanthrene or trans-stilbene oxide on cytosolic glutathione transferase and microsomal epoxide hydrolase activities in the liver, intestine, kidney, lung, testis, adrenal, spleen, heart and brain have been investigated. Studies on the time-courses of induction in liver demonstrate that these are complete after five days' treatment at the doses used. Phenobarbital induces both cytosolic glutathione transferase and microsomal epoxide hydrolase activities significantly only in liver and intestine. 3-Methylcholanthrene induces these activities in liver only. Trans-Stilbene oxide induces both of these activities in liver and kidney, and cytosolic glutathione transferase activity in adrenal as well.

Animals↗

Preparation and characterization of 4-acetamido-4'-isothiocyanostilbene-2,2'-disulfonic acid (SITS) and related stilbene disulfonates.

4-Acetamido-4'-isothiocyanostilbene-2,2'-disulfonic acid (SITS) and other 4,4'-stilbene-2,2'-disulfonate derivatives used as reagents in histochemistry and physiology have been prepared in their E isomeric form, and rearranged to the Z isomers by irradiation with visible light. Infrared, and 1H and 13C nuclear magnetic resonance spectra were recorded for these compounds, and used to establish the chemical structures. In particular, it was shown that the E-isomer of SITS decomposed in aqueous solution by hydrolysis of both the acetamido and isocyano groups yielding a diamine; disodium 4,4'-diisothiocyanatostilbene-2,2'-disulfonate (DIDS) also decomposed in solution, while disodium 4,4'-dinitrostilbene-2,2'-sulfonate (DNDS) rearranged from the E-isomer to the Z-isomer when solutions were kept unprotected from light. These results indicate that benchworkers should not be surprised when commercial samples of such stilbenes contain large amounts of various types of impurities.

4-Acetamido-4'-isothiocyanatostilbene-2,2'-disulfo↗

[Determination of stilbene derivative in shengfa powders by HPLC].

OBJECTIVE: To develop a new method for the determination of the idiosyncratic component, 2,3,5,4'-tetrahydroxy-stilbene-2-O-beta-D-glycoside in Shengfa Powders. METHOD: A HPLC method was set up, using Hypersil BDS C18 column (5 microns, 4.6 mm x 150 mm), acetonitrile-water(18:82) as mobile phase, with detection at 320 nm. RESULT: The calibration curve was linear in the range of 0.45-2.25 micrograms, r = 0.9998, the average recovery was 99.5%, RSD = 1.2%(n = 6). CONCLUSION: The active constituent 2,3,5,4'-tetrahydroxy-stilbene-2-O-beta-D-glycoside in Shengfa Powders can be separated effectively. This method is simple, specific and exact.

Drug Combinations↗

Tumor-specificity and apoptosis-inducing activity of stilbenes and flavonoids.

A total of eleven stilbenes [1-6] and flavonoids [7-11] were investigated for their tumor- specific cytotoxicity and apoptosis-inducing activity, using four human tumor cell lines (squamous cell carcinoma HSC-2, HSC-3, submandibular gland carcinoma HSG and promyelocytic leukemia HL-60) and three normal human oral cells (gingival fibroblast HGF, pulp cell HPC, periodontal ligament fibroblast HPLF). All of the compounds, especially sophorastilbene A [1], (+)-alpha-viniferin [2], piceatannol [5], quercetin [9] and isoliquiritigenin [10], showed higher cytotoxicity against the tumor cell lines than normal cells, yielding tumor-specific indices of 3.6, 4.7, >3.5, >3.3 and 4.0, respectively. Among the seven cell lines, HSC-2 and HL-60 cells were the most sensitive to the cytotoxic action of these compounds. Sophorastilbene A [1], piceatannol [5], quercetin [9] and isoliquiritigenin [10] induced internucleosomal DNA fragmentation and activation of caspases -3, -8 and -9 dose-dependently in HL-60 cells. (+)-alpha-Viniferin [2] showed similar activity, but only at higher concentrations. All the compounds failed to induce DNA fragmentation and activated caspases to much lesser extents in HSC-2 cells. Western blot analysis showed that sophorastilbene A [1], piceatannol [5] and quercetin [9] did not induce any consistent changes in the expression of pro-apoptotic proteins (Bax, Bad) and antiapoptotic protein (Bcl-2) in HL-60 and HSC-2 cells. An undetectable expression of Bcl-2 protein in control and drug-treated HSC-2 cells may explain the relatively higher sensitivity of this cell line to stilbenes and flavonoids.

Apoptosis↗

A new stilbene glycoside from Dryopteris sublaeta.

AIM: To study the chemical constituents of Dryopteris sublaeta Ching et Hsu. METHODS: Fresh plant of Dryopteris sublaeta ching et hsu was extracted twice with boiling water, concentrated to small volume under reduced pressure at 50 degrees C. The concentrated material was partitioned with ether, ethyl acetate, and n-butanol. The fraction of ethyl acetate extract was chromatographed over macroporous adsorption resin (Diaion HP-20) eluted with a mixture of H2O and MeOH in increasing MeOH content. Their fractions from resin were repeatedly chromatographed over Toyopearl HW-40, Sephadex LH-20 and silica gel column chromatography. The compounds were identified on the basis of their physiochemical and spectral data. RESULTS: Four compounds were obtained and identified as 3,5-dihydroxy-stilbene-3-O-neohesperidoside (1), 3,5-dihydroxy-stilbene-3-O-beta-D-glucoside (2), polydotin peceid (3) and 3,5,4'-trihydroxy-bibenzyl-3-O-beta-D-glucoside (4). CONCLUSION: Compound 1 is a new compound, the others were isolated from Dryopteris for the first time.

Dryopteris↗

Deoxygenation-induced cation fluxes in sickle cells: II. Inhibition by stilbene disulfonates.

Deoxygenation-induced cation movements in sickle cells were inhibited 80% to 85% by the anion transport inhibitor, 4,4'-diisothiocyano-2,2'disulfostilbene (DIDS). Morphologic sickling was not altered by DIDS treatment, demonstrating that morphologic sickling was not sufficient to produce cation leaks in sickle cells. DIDS inhibition of deoxygenation-induced cation flux was not affected when l- replaced Cl-, indicating that conductive anion movements did not limit cation flux in deoxygenated cells treated with DIDS. Inhibition was irreversible after preincubation with DIDS at 37 degrees C for 20 minutes, and was not affected by the oxygenation state of cells at the time of drug exposure. Sulfate self-exchange was inhibited at lower DIDS concentrations than was deoxygenation-induced flux. Incubation of cells with DIDS at 4 degrees C produced progressive blockade of sulfate exchange, but did not alter deoxygenation-induced cation fluxes. Other stilbene disulfonates, including compounds incapable of covalent reactions, also inhibited deoxygenation-induced cation movements, although several other inhibitors of anion exchange did not. Dissociation of the inhibition of anion exchange and deoxygenation-induced cation flux indicates that the DIDS effect on deoxygenation-induced cation movements does not involve the well-characterized stilbene binding site of the anion exchanger. These data provide evidence for a membrane constituent on the external surface of oxygenated sickle cells capable of interacting with DIDS to prevent the increase in cation permeability associated with sickling.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Metabolic activation of xenobiotic stilbene estrogens.

Certain stilbene estrogens, in particular diethylstilbestrol, are established carcinogens in animals and in humans. The question is raised whether the formation of reactive metabolites is part of the carcinogenic mechanism of these compounds. Some aspects of the oxidative metabolism are briefly reviewed, with special emphasis on peroxidase-mediated metabolic activation. The interaction of the reactive intermediates with nucleic acids and proteins is described and examples of the induction of genetic damage in several short-term assays are given. From the available data it is concluded that metabolic activation may play a role in the process of neoplastic cell transformation induced by stilbene estrogens.

Animals↗

Stereoselectivity and enantioselectivity of glutathione S-transferase toward stilbene oxide substrates.

Isozyme 4-4 of rat liver glutathione S-transferase catalyzes the stereoselective addition of glutathione to the oxirane carbon of R-absolute configuration of cis-stilbene oxide, 2, to give 98 +/- 2% of the (1S,2S)-1,2-diphenyl-1-(S-glutathionyl)-2-hydroxyethane product with a turnover number (kc) of 0.22 s-1. The two enantiomers of trans-stilbene oxide, 3, are somewhat poorer substrates for the enzyme. Enantioselective addition of glutathione to 3 proceeds with turnover numbers of 0.12 s-1 and 0.023 s-1 for the (R,R,)- and (S,S)-antipodes, respectively.

Animals↗

Stilbene synthases and stilbenecarboxylate synthases, I Enzymatic synthesis of 3,5,4-trihydroxystilbene from p-coumaroyl coenzyme A and malonyl coenzyme A.

1) Cell-free extracts prepared via acetone powder from rhizome of Rheum rhaponticum were found to be capable of converting p-coumaroyl-CoA and [2-14C]malonyl-CoA into a 3,5,4'-trihydroxystilbene, resveratrol. The product was characterized by repeated chromatography and by recrystallization to constant specific radioactivity. 2) The mode of condensation of the phenylpropanoid moiety with C2 units was determined by chemical degradation of the enzymatically formed product. 3) The enzyme system which catalyses the condensation of p-coumaroyl moiety with 3 malonyl units, the intramolecular aldol reaction and the subsequent decarboxylation was classified as stilbene synthase. It could be activated by dithiothreitol. 4) When the extraction of the rhizome was performed with aqueous grinding medium, a high percentage of this stilbene synthase activity was found to be membrane-bound.

Catalysis↗

Mechanism for large first hyperpolarizabilities of phosphonic acid stilbene derivatives.

This paper presents calculations of dipole moments (mu), static polarizabilities (alpha), and first hyperpolarizabilities (beta) of phosphonic acid stilbene derivatives calculated in the framework of density functional theory. These calculations were performed using a finite field approach implemented in the density functional program ALLCHEM and were of an all-electron type using local exchange-correlation functional and specially designed basis sets. The molecular structures have been fully optimized using the semiempirical program MSINDO. Some of the investigated stilbenes have been synthesized very recently while others are described for the first time. Donor and acceptor groups of these analogues have been modified and the influence of these changes on the first hyperpolarizabilities has been investigated. This work demonstrates that the nonlinear optical response beta of these compounds increases dramatically when the acceptor moiety is displaced by analogues containing alkali metal groups. A general mechanism for the design of novel nonlinear optical materials with large first hyperpolarizabilities is described.

Journal Article↗

Catalysis of the oxidation and reduction reactions of steroid and stilbene estrogens by nuclear enzymes.

We demonstrated for the first time that nuclei were able to convert a stilbene estrogen (diethylstilbestrol) to reactive metabolites, which covalently bind to nuclear proteins and DNA. Depending on the cofactor used, nuclear enzymes catalyzed oxidation and/or reduction of stilbene and steroid estrogens. 2-Hydroxyestradiol (a major metabolite of steroidal estrogen, 17 beta-estradiol) and diethylstilbestrol (DES) were oxidized to 2,3-estradiol quinone and DES quinone, respectively, by peroxide-supported nuclear cytochromes P450. A Lineweaver-Burk plot of rate of formation of DES quinone at various substrate concentrations yielded a Km = 15 microM and Vmax = 10 nmol/mg protein/min. The oxidation of DES to DES quinone by nuclei was drastically decreased by known inhibitors of cytochromes P450. DES quinone was reduced back to DES by nuclei in the presence of NADPH, presumably through cytochrome P450 reductase. The reduction of DES quinone to DES by nuclei was significantly inhibited by antibodies and inhibitors of cytochrome P450 reductase. Under reaction conditions similar to oxidation of DES to DES quinone by nuclei, it was observed that nuclear metabolic products of DES were able to covalently bind to nuclear proteins and DNA. The data reported here establish that DES and a catechol estrogen can be oxidized to quinones and that the quinones may be reduced back to the hydroquinones by nuclear preparations when fortified with an appropriate cofactor and that reactive intermediates are involved based on observed covalent binding to macromolecules. The significance of these events, and their possible role in toxicity/cancer/teratogenicity, however, is not at all clear.

Animals↗

Evidence that stilbene synthases have developed from chalcone synthases several times in the course of evolution.

Chalcone (CHS) and stilbene (STS) synthases are related plant-specific polyketide synthases that are key enzymes in the biosynthesis of flavonoids and of stilbene phytoalexins, respectively. A phylogenetic tree constructed from 34 CHS and four STS sequences revealed that the STS formed no separate cluster but grouped with CHS from the same or related plants. This suggested that STS evolved from CHS several times independently. We attempted to stimulate this by site-directed mutagenesis of an interfamily CHS/STS hybrid, which contained 107 amino acids of a CHS from Sinapis alba (N-terminal) and 287 amino acids of a STS from Arachis hypogaea. The hybrid had no enzyme activity. Three amino acid exchanges in the CHS part (Gln-100 to Glu, Val-103 to Met, Val-105 to Arg) were sufficient to obtain low STS activity, and one additional exchange (Gly-23 to Thr) resulted in 20-25% of the parent STS activity. A kinetic analysis indicated (1) that the hybrids had the same Km for the substrate 4-coumaroyl-CoA but a lower Vmax than the parent STS, and (2) that they had a different substrate preference than the parent STS and CHS. Most of the other mutations and their combinations led to enzymatically inactive protein aggregates, suggesting that the subunit folding and/or the dimerization was disturbed. We propose that STS evolved from CHS by a limited number of amino acid exchanges, and that the advantage gained by this enzyme function favored the selection of plants with improved STS activity.

Acyltransferases↗

Transformation of apple ( Malus domestica Borkh.) with the stilbene synthase gene from grapevine ( Vitis vinifera L.) and a PGIP gene from kiwi ( Actinidia deliciosa).

The objective of the present research was to introduce genes with antifungal potential into the commercially important apple cvs. Elstar and Holsteiner Cox in order to establish resistance against fungal diseases. The gene encoding the stilbene synthase (Vst1) from Vitis vinifera L., responsible for the synthesis of the phytoalexin resveratrol in grapevine, and the gene for a polygalacturonase-inhibiting protein (PGIP) from kiwi ( Actinidia deliciosa) were transferred into Holsteiner Cox and Elstar via Agrobacterium tumefaciens-mediated transformation. A total of nine transgenic Holsteiner Cox clones and one transgenic E clone carrying the stilbene-synthase gene as well as three transgenic Holsteiner Cox lines harbouring the polygalacturonase-inhibiting protein from Kiwi were identified via polymerase chain reaction and Southern blot analysis. High performance liquid chromatography analysis revealed the accumulation of a resveratrol-derivate, a glycoside, in transgenic Vst1 plants.

Acclimatization↗