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Orange juice and hesperidin increase flavanone exposure without detectable short-term vascular benefits: a randomized crossover trial.

Orange juice is a major dietary source of hesperidin, a citrus flavanone with vascular protective effects in experimental models. However, whether nutritionally realistic intake levels induce measurable benefits in humans remains unclear. We investigated the effects of orange juice and hesperidin supplementation, at realistic dietary doses, on vascular function, flavanone bioavailability, and molecular responses. Thirty-seven centrally overweight men completed a randomized, double-blind, controlled, three-period crossover trial with three 6-week interventions separated by washout periods. Participants consumed daily 330 mL of 100% orange juice (OJ), an isoenergetic control beverage (CON), or a hesperidin-enriched control beverage (HESP, 210 mg day-1). Fasting vascular, metabolic and anthropometric parameters were assessed before and after each intervention, with flow-mediated dilation (FMD) as the primary endpoint. Postprandial FMD, circulating flavanone metabolites and oxylipin profiles were evaluated following a standardized high-fat meal challenge, and flavanone bioavailability was assessed by 24 h urinary excretion. Whole-blood transcriptomics were performed in a subset (n = 9). Plasma exposure to phase II hesperetin metabolites (AUC0-6 h) and 24 h urinary excretion were comparable after OJ and HESP, indicating effective hesperidin delivery and limited matrix effects on bioavailability. Neither intervention significantly affected fasting or postprandial FMD, vascular, metabolic or anthropometric parameters, or oxylipin profiles versus CON. Marked interindividual variability was observed in vascular responses and flavanone bioavailability, although treatment effects were unrelated to baseline endothelial function or flavanone exposure. Exploratory transcriptomic analyses suggested modulation of pathways involved in vascular biology following OJ and HESP. Under nutritionally realistic conditions, orange juice and hesperidin induced measurable biological engagement without detectable short-term vascular benefits, highlighting the complexity of linking flavanone exposure to functional vascular outcomes in humans.

Humans

[Antiviral activity of plant components. 1st communication: Flavonoids (author's transl)].

Some drugs effective against influenza contain flavonoids. We therefore examined the antiviral effect of hesperidin, hesperidinmethylchalcon, trihydroxyethylrutin, catechol, quercitrin, rutin and aurantiin against vesicular stromatitis virus (VSV) action on mouse fibroblasts and that of hesperidin against influenza virus in HeLa cells system by means of dye uptake measurements (Finter) and by plaque reduction test, respectively. Preincubation of the cells with the flavonoids 6--8 h before virus addition was inevitable. Protection of cells against virus action persisted for about 24 h and it abruptly disappeared after an addition of hyaluronidase. Maximal inhibition of virus action was achieved with a concentration of 200 microgram/ml flavonoid.

Adsorption

Contraceptive effects of intravaginal application of acrosin and hyaluronidase inhibitors in rabbit.

Eight single-drug and combinations of two-drug treatments were used to study the contraceptive efficacy of the intravaginal application of acrosin inhibitors (TLCK; NPGB) and hyaluronidase inhibitors (Compound 53D/k; Phosphorylated hesperidin) in the rabbit. Drug concentrations were selected so that they did not inhibit rabbit sperm motility upon incubation at 37 degrees C for 30 minutes. In the first series, the drugs were added to semen before artificial insemination; in the second series, the drugs were administered intravaginally before artificial insemination with untreated rabbit semen. The data show that these drugs are highly effective intravaginal contraceptives in the rabbit. The data suggest that this is a specific inhibitory effect on fertilization since the drug concentrations used did not affect sperm motility.

Amino Acid Chloromethyl Ketones

Targeting the "bitterness gene" by genome editing abolishes synthesis of bitter flavanones in citrus; prospects for new varieties and extended climates for cultivation.

Bitterness in citrus fruit is conferred by flavanone-neohesperidosides, whose accumulation is catalyzed by a single enzyme flavanone-7-O-glucosides-1,2-rhamnosyltransferase (1,2RhaT), expressed in both leaves and fruit. To eliminate citrus bitterness, we used CRISPR/Cas9 genome editing to inactivate the 1,2RhaT gene in grapefruit (Citrus paradisi) and "Carrizo" citrange (Citrus sinensis × Citrus trifoliata). Edited lines displayed frameshift mutations that introduced premature stop codons, effectively abolishing the synthesis of the bitter neohesperidosides naringin, neohesperidin, and poncirin. Metabolomic analyses in leaves from 1,2RhaT-mutant lines confirmed the absence of bitter flavanone-neohesperidosides and a compensatory increase in the tasteless flavanone-rutinosides hesperidin, didymin, and narirutin. Since 1,2RhaT is encoded by a single gene, our findings in leaves are expected to be identical for fruit and thus demonstrate a strategy for developing non-bitter citrus cultivars while retaining health-benefitting flavonoid levels. Furthermore, cold-hardy citrus species that are currently unacceptably bitter due to high flavanone-neohesperidoside levels may become useful sources for introduction of cold-hardiness following inactivation of the 1,2RhaT gene. This approach thus paves the way for expanding grapefruit markets and breeding cold-hardy, palatable citrus varieties that are better suited to a wider range of climates.

Flavanones

Comparative mutagenesis of plant flavonoids in microbial systems.

The plant flavonoids quercetin (3,5,7,3',4'-pentahydroxyflavone), morin (3,5,7,2',4'-pentahydroxyflavone), kaempferol (3,5,7,4'-tetrahydroxyflavone), chrysin (5,7-dihydroxyflavone), fisetin (3,7,3',4'-tetrahydroxyflavone), myricetin (3,5,7,3',4',5'-hexahydroxyflavone), myricitrin (myricetin-3-rhamnoside), hesperetin (3',5,7-trihydroxy-4'-methoxyflavanone), quercitrin (quercetin-3-L-rhamnoside), rutin (quercetin-3-rhamnosylglucoside or quercetin-3-rutinoside), and hesperidin (hesperetin-7-rutinoside) have been assayed for mutagenicity in the Salmonella/microsomal activation system. Quercetin, morin, kaempferol, fisetin, myricetin, quercitrin and rutin were mutagenic in the histidine reversion system with the frameshift strain TA98. The flavonols quercetin and myricetin are mutagenic without metabolic activation, although more effective when a rat liver microsomal preparation (S-9) is included; all others require metabolic activation. Flavonoids are common constituents of higher plants, with extensive medical uses. In addition to pure compounds, we have examined crude extracts of tobacco (snuff) and extracts from commonly available nutritional supplements containing rutin. Mutagenic activity can be detected and is correlated with the flavonoid content.

Animals

Effect of the root extract of Fagara zanthoxyloides on blood coagulation.

The clot-promoting activity of the aqueous extract of Fagara-zanthoxyloides Lam plant is described for the first time. It significantly shortened the PTT (K) of normal and factor VIII deficient plasma while it manifested no such action on factor IX-deficient plasma. This activity could be demonstrated in the residue of the lyophilized aqueous extract after its successive extraction with ether, chloroform and methanol. It could not be attributed to the purified fractions: Zanthoxylol or its modified form 3, 4-dihydro-2,2-dimethyl-2H-1 benzopyran-6-butyric acid (DBA), hesperidin, Fagaramide or the ether soluble fraction of the aqueous extract.

Blood Coagulation

Advantages of a combination of proteolytic enzymes, flavonoids and ascorbic acid in comparison with non-steroid anti-inflammatory agents.

The action of a combination of chymotrypsin-trypsin + flavonoids + ascorbic acid (zymolean) has been compared with that of 7 non-steroid anti-inflammatory substances in 4 tests: a histamine induced wheal, dextran and carrageenin induced edemas, and permeability to Evans blue in the peritoneal cavity. 1. The non-steroid anti-inflammatory substances, which reduce markedly the carrageenin induced edema, are active against peritoneal permeability, but bring about almost no decrease in the effects of histamine and dextran. 2. The combination studied is effective in all of the techniques. 3. The reduction of capillary permeability induced by histamine is due to the action of flavonoids and ascorbic acid. 4. The action of the proteolytic enzymes, administered by duodenal route, on the one hand, and that of hesperidin-methylchalcone + methyl-4-esculetol + ascorbic acid on the other, accumulate to reduce the two types of edema. 5. The effect against permeability in the peritoneum seems to exerted by the combination of the flavonoids + ascorbic acid. 6. The combination studied, therefore, shows a more complete spectrum of action than the non-steroid anti-inflammatory substances against initial symptoms of inflammation.

Animals

[Analysis of flavonoid glycosides by high pressure liquid chromatography (author's transl)].

The development of a qualitative and quantitative method of determination for glycosides of flavones, flavonols and flavanones and their aglycones by means of high pressure liquid chromatography is described. Silicagel LiChrosorb Si 60 is used as stationary phase, as well as various eluents at different temperatures. The compounds are acetylated. An extract of plum leaves serves as example of application.

Chromatography, High Pressure Liquid

Treatment of experimental brain oedema following sudden decompression, surgical wound, and cold lesion with vasoprotective drugs and the proteinase inhibitor "Trasylol".

The study was performed on 81 cats with three models of experimental brain oedema: sudden decompression, surgical wound, and cold injury. During the experiments blood pressure, central venous pressure, and intracranial pressure were recorded. The blood-brain-barrier was tested with Evans blue solution. The gray and white matter tissue was sampled at the end of the experiment, and the water content and sodium and potassium concentrations were determined. The animals with the same experimental model were divided into three groups: untreated, treated with the vasoprotective agents, and treated with the protease inhibitor Trasylol. In the sudden decompression model after balloon deflation, white matter haemorrhages and oedema development were found in gray matter and basal nuclei. In animals treated with the vasoprotective drugs, haemorrhages were not observed, and oedematous changes were less pronounced. The Trasylol effect on oedema development was not significant in this model. In the surgical wound model, oedematous changes were observed after 24 hours following the lesion. Oedema occurred in the white matter, as in the animals with cold lesions. In both models--surgical wound and cold lesion--the beneficial effect of Trasylol was shown, while the effect of Aescorin was less evident. The results obtained seemed to testify to the usefulness of both Trasylol and vasoprotective drugs in the prevention and treatment of brain oedema in neurosurgical patients.

Animals

Liquid chromatography of neohesperidin dihydrochalcone.

The determination of a number of impurities in neohesperidin dihydrochalcone is described, as well as the determination of neohesperidin dihydrochalcone in food products. A reversed-phase chromatographic system is used, with octadecyltrichloro-silane-treated silica gel as chemically bonded stationary phase and methanol-water as mobile phase; a detailed procedure for preparing the packing material is given, and the dependence of the amount of bonded stationary phase on the humidity of the silica gel before the bonding reaction is shown. The glass column was packed at 350 atm in a steel pressure vessel, with use of a slurry-packing technique; details are given of the pressure vessel and of the packing method. Chromatograms are reproduced to show the performance of such columns in this type of analysis.

Chalcone

Saccharin and other sweeteners: mutagenic properties.

Saccharin preparations commonly distributed as artificial sweeteners exhibited mutagenic activity in bacterial tests. When administered orally to mice, mutagenic activity was demonstrable in the urines of these animals as well as in a host-mediated assay. Highly purified saccharin was not mutagenic in the direct assay, but the urines of mice to which this material had been administered exhibited mutagenic effects on one tester strain (Salmonella typhimurium TA100). Two other sweeteners, neohesperidin dihydrochalcone and xylitol, had no detectable mutagenic activity in any of these assays using his- Salmonella typhimurium strains TA100 or TA98.

Animals