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Fructose in wild-caught Phlebotomus ariasi and the possible relevance of sugars taken by sandflies to the transmission of leishmaniasis.

Cold, acidified anthrone was used to test 200 wild-caught sandflies (Phlebotomus ariasi females) for the presence of fructose. This sugar, or others with a fructose moiety, were demonstrable in 157 (79%) of the flies; proportions of flies positive in different tests ranged from 44 to 91%. Higher proportions of flies gave positive results when tested less than one hour after capture than when kept in the laboratory for more than 12 hours before testing. Similarly high percentages of flies were positive in samples collected coming to engorge on dogs and in those caught in CDC miniature light traps. These results, together with published reports of the demonstration of sugars in 25 individually tested sandflies of other species confirm that, like other biting flies, sugar is an important part of the diet of sandflies. Natural sugars may influence the development of leishmaniae in sandflies and their subsequent transmission. The anthrone test was found to be simple, rapid and suitable for field use; it is a valuable addition to indirect techniques for the study of the behaviour of sandflies.

Animals↗

Effects of Cassia obtusifolia (sicklepod) extracts and anthraquinones on muscle mitochondrial function.

Naturally occurring quinones and quinone-containing extracts of seeds of the toxic plant Cassia obtusifolia (sicklepod) affected muscle mitochondrial function. Aqueous suspensions and organic extracts of C. obtusifolia seeds slightly elevated plasma creatine kinase levels of Sprague-Dawley rats. These extracts were analyzed by fused silica capillary gas chromatography and found to contain nine anthraquinones and three anthrones. Urinary metabolites primarily consisted of beta-glucuronide conjugates of the anthraquinones. The three anthrones or conjugate analogues were not present in the urine in detectable amounts. Emodin, doxorubicin and organic extracts of C. obtusifolia inhibited NADH:cytochrome c oxidoreductase activity of bovine heart mitochondrial particles and NADH:CoQ oxidoreductase activity of porcine heart mitochondrial NADH dehydrogenase, whereas juglone was stimulatory. Relative quinone metabolism correlated with semiquinone formation rate and with redox potential. A protective effect of coenzyme Q against enzyme inhibition by anthraquinones was also observed.

Animals↗

In vitro virucidal activity of selected anthraquinones and anthraquinone derivatives.

Anthraquinones and anthraquinone derivatives were characterized for their antiviral and virucidal activities against viruses representing several taxonomic groups. One of these compounds, hypericin, had activity against vesicular stomatitis virus, herpes simplex virus types 1 and 2, parainfluenza virus, and vaccinia virus (from 0.5 to 3.8 log10 reductions in infectivity) at concentrations of less than 1 microgram/ml as determined by a direct pre-infection incubation assay. Human rhinovirus was not sensitive to hypericin at concentrations up to 10 micrograms/ml. Addition of small amounts of Tween-80 to solutions containing hypericin enhanced, by up to 2.6 log10, hypericin's virucidal activity. Anthraquinones and anthraquinone derivatives with the hydroxyl and alkyl substitution pattern of emodin (i.e. emodin, emodin anthrone, emodin bianthrone and hypericin) were active against the enveloped viruses tested. The following general pattern of activity was found: hypericin greater than emodin bianthrone greater than emodin anthrone greater than emodin. Chrysophanic acid, aloe-emodin, and sennosides A and B did not possess activity against any of the viruses tested.

Animals↗

Antipsoriatic drug action of anthralin: oxidation reactions with peroxidizing lipids.

Reactions of anthralin with peroxidizing lipids were investigated. Using ESR spectroscopy and quantitative HPLC analysis radical species and decomposition products respectively were analysed in the reaction mixture as a function of time. Directly after mixing anthralin with peroxidized lipids, the 1,8-dihydroxy-9-anthron-10-yl radicals (primary radical) and small amounts of 1,8-dihydroxy-anthraquinone (AQ) were formed. After a few days of reaction, two secondary radicals were observed in addition to the primary radical. At the same time, 1,8,1'8'-tetrahydroxy-10,10'-bis-9(10H)-anthrone (DI) and an increasing amount of AQ and other nonidentified decomposition products were found. As the reaction proceeded further on the amount of AQ and the nonidentified decomposition products increased, the primary radical disappeared (within about 40 d) and the concentration of DI decreased to zero (within 1 yr). Nonidentified decomposition products are tentatively assigned to polymeric degradation products (anthralin brown) formed from DI via the observed secondary radical species. These radical reactions of anthralin with peroxidized lipids help to elucidate speculations on radical type reactions of anthralin in psoriasis indications, e.g., the role of peroxidized skin lipids as radical reaction initiators.

Animals↗

Stimulatory effect of enprostil, an anti-ulcer prostaglandin, on gastric mucus secretion.

Enprostil, a synthetic analogue of prostaglandin E2, is known to be a potent inhibitor of gastric acid secretion, and has marked anti-ulcer activity in rodents. Enprostil was administered in doses ranging from 15 to 250 micrograms/kg to rats prepared using the Shay procedure. Three hours later, the rats' stomachs were removed and processed either for the chemical determination of mucus, or for scanning electron microscopy. For the chemical determination, the secreted gastric juice was removed and the adherent gastric mucus was eluted with 2 M sodium chloride. The anthrone method was used to determine the mucus present. Enprostil was found to significantly increase gastric mucus at a dose of 60 micrograms/kg when measured by the anthrone test. Enprostil administered by the oral route was most effective in stimulating mucus secretion, suggesting a local or topical action of enprostil on mucus-secreting cells. Scanning electron microscopy of rat fundic mucosa after enprostil administration (50 to 100 micrograms/kg) revealed the presence of thin veil-like layers covering the epithelial surface, which was interpreted as an increase in mucus secretion. Higher magnifications (X 2,000) clearly showed the layers of mucus covering the surface epithelial cells. Enprostil's apparent increase of gastric mucus secretion may contribute to its anti-ulcer activity and may promote gastric healing.

Administration, Oral↗

Anthracenone ABA analogue as a potential photoaffinity reagent for ABA-binding proteins.

An anthracenone analogue of abscisic acid (ABA) was synthesized as a potential photoaffinity reagent and tested for biological activity. Reaction between 10,10'-dimethoxy-9-anthrone with two equivalents of the lithiated dianion of cis-3-methylpent-2-en-4-yn-1-ol afforded an acetylenic alcohol key intermediate. Subsequent reduction of the triple bond, functional group manipulation of the side chain alcohol and deprotection of the dimethoxy protected anthrone provided anthracenone ABA analogue 7 as a potential photoaffinity reagent for ABA-binding proteins. The effect of natural ABA and the potential photoaffinity anthracenone ABA 7 on corn cell growth was determined at various concentrations. The results show that anthracenone ABA 7 is perceived as ABA-like, although producing less inhibition than ABA itself. For example, 7 at 33 microM produces approximately the same inhibition as ABA at 10 microM.

Abscisic Acid↗

Inhibition of the mutagenicity of 2-nitrofluorene, 3-nitrofluoranthene and 1-nitropyrene by flavonoids, coumarins, quinones and other phenolic compounds.

When 56 flavonoids, 32 coumarins, five naphthoquinones, 12 anthraquinones and five structurally-related compounds were tested for their antimutagenic potencies with respect to mutagenicities induced by 2-nitrofluorene (2-NF), 3-nitrofluoranthene (3-NFA) and 1-nitropyrene (1-NP) in Salmonella typhimurium TA98 distinct structure-activity relationships were detected. First, the tetracyclic nitroarenes 3-NFA and 1-NP were in general more effectively antagonized by potent antimutagenic flavonoids and coumarins than the tricyclic 2-NF, while there were only minor differences with quinones. Secondly, antimutagenicity of natural compounds of plant origin correlated with the aglyconic nature 10 of a total of 15 glycosides were inactive, four flavonoid glycosides exerted antimutagenicity but to a distinctly lower degree than the corresponding aglycones. Thirdly, within flavonoids, coumarins and anthraquinones positive correlations were found between antimutagenic potency and the polarity of a molecule with the existence of an optimum of activity within flavonols and anthraquinones. However, polarity seemed to be unimportant within the chalcone and naphthoquinone series. Among flavonoids, the parent compounds flavone and flavanone were inactive, but all flavones and many flavonoids with phenolic hydroxyl groups exerted antimutagenicity. Antimutagenic potency reached a maximum with the presence of four hydroxyl functions-luteolin, kaempferol-though the position of hydroxyls was also a determinant of antimutagenic potency. Methylation of phenolic hydroxyl groups, however, always reduced antimutagenicity. A carbonyl group at carbon 4 was essential for antimutagenicity: two catechins and anthocyanidins each were inactive. On the other hand, ring C of the flavane nucleus was not essential for antimutagenicity: chalcones and dihydrochalcones were potent antimutagens. Among coumarins, the parent compound showed antimutagenicity against 1-NP and 3-NFA, although dihydrocoumarin, methylcoumarins and compounds with bulky substituents were inactive. Otherwise, antimutagenic activity depended on the presence of polar hydroxyl, amino or carboxyl groups at carbons 3, 4 or 7 but was diminished by interactions of hydroxyl groups vicinal to carbon 7. Again, antimutagenic potencies were reduced by alkylation or acetylation. Among furanocoumarins xanthotoxin exerted strong and bergapten moderate antimutagenicity, while psoralen (except against 3-NFA), isopimpinellin and the furanochromanones visnagin and khellin were inactive. Among anthraquinones, the principles delineated here were valid again, resulting in potent antimutagenicity of most phenolic compounds and inactivity of anthraquinone itself. Among compounds structurally related to anthraquinones, anthrone, acridone and xanthone exerted antimutagenicity, anthrone being the most potent one, while thioxanthone and 9-fluorenone were inactive. All naphthoquinones were potent antimutagens irrespective of the presence of methyl or hydroxyl functions. Plumbagin, 2-methyl-5-hydroxynaphthoquinone, however, showed exceptional antimutagenicity.

Animals↗

Hypericin and pseudohypericin in some Hypericum species.

Hypericin and pseudohypericin were found in 27 of the 36 evaluated species from Hypericum L., belonging to 17 sections of the genus. Pseudohypericin is reported by us in 15 taxa for the first time. Most of the species contained both components and the amount of pseudohypericin usually exceeded that of hypericin. In H. hirsutum and H. empetrifolium only hypericin was found, whereas H. formosissimum yielded pseudohypericin only. The total content of hypericins varied widely from 0.009% in H. empetrifolium to 0.512% in H. boissieri and the largest amounts were established in taxa of sections Drosocarpium, Hypericum and Thasia. The distribution of hypericin and pseudohypericin in Hypericum species has an important taxonomic value for infrageneric classification of the genus. These components were not found in the primitive sections Ascyreia, Androsaemum, Inodora, Roscyna, Bupleuroides and Spachium but occur widely in Hypericum, Adenosepalum and the sections from Olympia group. Although the genera of subfamily Hypericoideae are characterized by the presence of anthrone derivatives, condensed anthrones such as hypericin and pseudohypericin have not been found in these genera and the remaining subfamilies of the Guttiferae.

Journal Article↗

Epidermal ornithine decarboxylase induction and mouse skin tumor promotion by quinones.

The generation of reactive oxygen species and the subsequent development of a pro-oxidant state, such as occurs during the redox cycling of quinones, has been suggested to play a role in the tumor promotion. Moreover, we have recently shown that the relative tumor promoting activity of a series of structurally related anthrones correlated with their ability to undergo base-catalyzed oxidation. We therefore analyzed dose-response relationships for skin tumor promoting activity and the ability to induce epidermal ornithine decarboxylase (ODC) with a series of structurally related quinones. Single topical applications of 1,4-naphthoquinone and its 5-hydroxy analog (juglone) produced dose-dependent increases in epidermal ODC activity in the dose range 880-3520 nmol/mouse. These two quinones also promoted papilloma formation in female SENCAR mice initiated with 25 nmol 7,12-dimethylbenz[a]anthracene at doses capable of inducing epidermal ODC. The tumor promoting response with juglone (1760 nmol) was dependent upon the frequency of application, with the highest tumor response obtained with a three times per week application regimen. In contrast, neither 1,8-dihydroxy-9,10-anthraquinone nor 1,4-benzoquinone, at doses up to 1760 nmol/mouse, had any effect on epidermal ODC, nor did they possess tumor promoting activity after 31 weeks of promotion. Interestingly, 3-methyl-1,4-naphthoquinone (meadione), a relatively good redox cycling quinone, at a dose of 3520 nmol had only very weak ODC inducing activity and after 31 weeks of promotion (1760 nmol) did not produce a significant papilloma response in SENCAR mice. Thus, there was a good correlation between the ability of structurally related quinones to induce epidermal ODC and their ability to behave as tumor promoters. In contrast, a relationship between quinone redox cycling and tumor promotion was not readily apparent. Finally, under optimal promoting conditions, juglone was very effective at supporting the conversion of papillomas to carcinomas (carcinoma/papilloma ratio of 0.35). In addition, histological examination of all tumors produced during promotion with juglone revealed the presence of both kerathoacanthomas and sebaceous squamous cell carcinomas. These latter tumors, not found in the anthrone group, may be indicative of a potentially unique site and/or mechanism of action for this class of compounds.

9,10-Dimethyl-1,2-benzanthracene↗

Modulation of chrysarobin skin tumor promotion.

The present study examined the effect of several prototypic inhibitors of phorbol ester skin tumor promotion on skin tumor promotion by chrysarobin, an anthrone tumor promoter. Retinoic acid (RA) inhibited skin tumor promotion by chrysarobin; however, the degree of inhibition was dependent on the treatment protocol. When RA (10 micrograms/mouse) was given 1 h after each twice-weekly application of chrysarobin (220 nmol/mouse), a marked inhibition of papilloma formation was observed (78%). In additional experiments, using a once-weekly application of chrysarobin, RA also inhibited skin tumor promotion but the magnitude of inhibition was less. Interestingly, RA (10 micrograms/mouse), given 1 or 6 h after the promoter, did not inhibit the induction of epidermal ornithine decarboxylase (ODC) activity induced by a single topical application of chrysarobin (220 nmol). Fluocinolone acetonide (1 microgram/mouse), given 5 min before each twice-weekly application of chrysarobin (220 nmol/mouse) effectively inhibited skin tumor promotion (88%). A 0.5 or 0.25% supplement of alpha-difluoromethylornithine (alpha-DFMO) in the drinking water inhibited the induction of epidermal ODC following chrysarobin (220 nmol/mouse) treatment by 85 or 70%, respectively. Supplements of both 0.25 and 0.5% of alpha-DFMO also led to a 50 and 61% inhibition, respectively, in the number of papillomas per mouse after 25 weeks of promotion with chrysarobin. Interestingly, 0.25% alpha-DFMO in the drinking water did not reduce the number of papillomas per mouse after 20 weeks of promotion with 1.7 nmol 12-O-tetradecanoylphorbol-13-acetate (TPA). However, the number of papillomas per mouse that were greater than or equal to 4 mm in diameter was significantly reduced in both chrysarobin- and TPA-treated mice. The data indicate that RA, FA and alpha-DFMO may be general inhibitors of tumor promoter regardless of the chemical class of tumor promoter. The ability of these inhibitors of phorbol ester promotion to inhibit anthrone promotion indicates that some common biochemical pathways may exist for both classes of skin tumor promoters.

Animals↗

Isolation of a plant glycoprotein involved with control of intercellular recognition.

A recognition molecule was isolated from stigmas of S-allele genotype S(2)S(2) of Brassica oleracea var. capitata L. After Sephadex chromatography, it eluted as a single symmetrical peak during diethylaminoethane-cellulose chromatography. A high degree of purity was affirmed by: sedimentation as a single peak during ultracentrifugation through 5 to 20% sucrose gradients; elution as a single peak from Sephadex G-100; visualization as a single band which stains with Coomassie blue and periodic acid Schiff reagent after electrophoresis on polyacrylamide gels. Other criteria supporting the conclusion that it is a glycoprotein are: (a) the highly purified preparation is anthrone-positive and has a Lowry protein to anthrone-positive carbohydrate ratio of 1.3; (b) the preparation contains arabinose, galactose, glucose, and mannose, although it is not precipitated by concanavalin A; (c) the immunological properties of the molecule are lost following protease treatment, and it has a molecular weight of 90,000 by Sephadex gel-filtration analysis and 54,500 by velocity sedimentation analysis.In vitro pretreatment of S(2)S(2) pollen with the post-diethylaminoethane-purified S(2) glycoprotein prevented the S(2)S(2) pollen from germinating on three classes of compatible stigmas: (a) mature stigmas of genotypes S(3)S(3) and S(8)S(8), which are non-self genotypes; (b) immature stigmas of genotype S(2)S(2), where incompatibility is not expressed; and (c) mature stigmas with a recessive S(2) allele. Pretreatment of S(3)S(3) and S(8)S(8) pollen with the S(2) glycoprotein did not interfere with their germination.

Journal Article↗

The influence of dihydroxyanthracene derivatives on water and electrolyte movement in rat colon.

The purgative activities of 18 different dihydroxyanthracene derivatives, including free anthraquinones and anthrones, were investigated by determining their influence on the water, sodium and potassium absorption in the gastrointestinal tract by direct injection of the solutions in Tyrode to the rat colon in situ. The extent of the solubility of the compounds has also been assessed. The 1,8-dihydroxyanthracene structure seemed to be the best for hydragogue effect. Rhein-anthraquinone and -anthrone were the most active compounds tested.

Animals↗

Intravascular persistence of hydroxyethyl starch in man.

In two groups, each consisting of five healthy volunteers, 7 ml blood/kg body weight were exchanged with equal amount of hydroxyethyl starch (HES) and dextran 60 solutions, respectively. Dextran 60 plasma levels, determined by the anthrone method, were undetectable after 4 weeks. The elimination of HES from the blood, determined by an immunological technique and by the anthrone method, had a very protracted course. Two weeks after infusion the HES plasma concentrations were 9% of the initial value and after 17 weeks they were still above the 1% level. The prolonged intravascular persistence of HES in its commercially available preparation, and the possibility of tissue accumulation after repeated HES infusions were considered undesirable. The hypothesis that HES infusion causes and augmentation of serum alpha-amylase concentrations in man was confirmed. This effect should be borne in mind when HES solutions are given to patients in whom the diagnosis of acute pancreatitis might be considered.

Amylases↗

Metabolism of sennosides by human intestinal bacteria.

During the course of studies on the metabolism of sennosides by human intestinal bacteria, an enzyme which takes part in the reduction of sennosides and sennidins was originally isolated from Peptostreptococcus intermedius. This enzyme catalyzed the electron transfer from NADH to FAD, FMN or benzyl viologen, which reduced nonenzymatically sennosides and sennidins to 8-glucosyl-rhein anthrone and rhein anthrone, respectively.

Anthraquinones↗

Mucin degradation in human colon ecosystems. Isolation and properties of fecal strains that degrade ABH blood group antigens and oligosaccharides from mucin glycoproteins.

We previously reported that the oligosaccharide chains of hog gastric mucin were degraded by unidentified subpopulations numbering approximately 1% of normal human fecal bacteria. Here we report on the enzyme-producing properties of five strains of mucin oligosaccharide chain-degrading bacteria isolated from feces of four healthy subjects. Four were isolated from the greatest fecal dilutions yielding mucin side chain-degrading activity in culture, and thus were the numerically dominant side chain-degrading bacteria in their respective hosts. Three were Ruminococcus strains and two were Bifidobacterium strains. Two Ruminococcus torques strains, IX-70 and VIII-239, produced blood group A- and H-degrading alpha-glycosidase activities, sialidase, and the requisite beta-glycosidases; these strains released greater than 90% of the anthrone-reacting hexoses from hog gastric mucin during growth in culture. The Bifidobacterium strains lacked A-degrading activity but were otherwise similar; these released 60-80% of the anthrone-reacting hexoses but not the A antigenic structures from hog gastric mucin. Only Ruminococcus AB strain VI-268 produced blood group B-degrading alpha-galactosidase activity, but this strain lacked beta-N-acetylhexosaminidases to complete degradation of B antigenic chains. When this strain was co-cultured with a strain that produced beta-N-acetylhexosaminidases, release of hexoses from blood group B salivary glycoprotein increased from 50 to greater than 90%, and bacterial growth was enhanced. The glycosidases required for side chain degradation were produced by these strains in the absence of mucin substrate, and a substantial fraction of each activity in stationary phase cultures was extracellular. In contrast, none of 16 other fecal Bacteroides, Escherichia coli, Streptococcus faecalis, and Bifidobacterium strains produced ABH blood group-degrading enzymes; other glycosidases produced by these strains were predominantly cell bound except for extracellular beta-N-acetylhexosaminidases produced by the five S. faecalis strains. We conclude that certain Bifidobacterium and Ruminococcus strains are numerically dominant populations degrading mucin oligosaccharides in the human colon due to their constitutive production of the requisite extracellular glycosidases including blood group antigen-specific alpha-glycosidases. These properties characterize them as a functionally distinct subpopulation of normal human enteric microflora comprised of specialized subsets that produce blood group H antigen-degrading glycosidases alone or together with either blood group A- or B-degrading glycosidases.

ABO Blood-Group System↗

Urinary excretion characteristics of a polymeric prodrug of mitomycin C, mitomycin C-dextran conjugate.

Urinary excretion characteristics of a polymeric prodrug of mitomycin C (MMC), mitomycin C-dextran conjugate (MMC-D), following intravenous administration was studied in rats. Three types of MMC-D, conjugates with dextrans of molecular weights of 10000, 70000 and 500000, were tested and urine concentration of MMC, dextran and spacer were determined by three analytical methods, i.e., bioassay, anthrone method and radioactivity counting. MMC was assayed separately as a free form and conjugated form based on antimicrobiological activity. MMC administered as a free form was excreted rapidly into urine but only a small amount of MMC was excreted following the administration of MMC-D. The excreted amount of MMC in a conjugated form varied with the size of carrier dextran while similar sustained excretion was observed regardless of the carrier size. The excretion of carrier dextran determined by anthrone method was confined as the molecular weight was increased. The effect of molecular weight was also observed in the case of spacer-introduced dextran (dextran-C6 spacer) and original dextran. Compared with neutral dextran, cationic MMC-D and anionic dextran-C6 spacer exhibited diminished excretion, indicating the effect of charge on urinary excretion. The urinary recovery of radioactivity was almost in accordance with that of carrier dextran. However, the urinary recovery of MMC based on biological activity was considerably lower than that of carrier dextran. It was suggested that MMC-D underwent inactivation to a great extent before releasing active MMC in the body. The effect of physicochemical properties such as molecular weight and electric charge on the urinary excretion of the polymeric prodrug was thus elucidated.

Animals↗

Barbaloin stimulates growth of Eubacterium sp. strain BAR, a barbaloin-metabolizing bacterium from human feces.

Eubacterium sp. strain BAR, isolated from human feces, transformed barbaloin to aloe-emodin anthrone in a basal medium lacking carbohydrate. Barbaloin remarkably stimulated the growth of strain BAR in the basal medium, the stimulative extent of the growth depending on the amount of barbaloin added. The addition of D-glucose, D-galactose, maltose, cellobiose, sucrose or D-amygdalin to the basal medium containing barbaloin caused a decrease of the growth stimulated by barbaloin to the growth level with each sugar, resulting in a complete inhibition of the barbaloin transformation. On the other hand, the addition of D-fructose, which itself stimulated the growth of strain BAR, further increased the growth in the presence of barbaloin and little inhibited barbaloin transformation. Nojirimycin bisulfite, a specific inhibitor of glucosidases, potently inhibited the growth with barbaloin, but did not affect the growth with glucose or cellobiose. Also, nojirimycin bisulfite completely inhibited the transformation of barbaloin to aloe-emodin anthrone. These results indicate that a unique enzyme capable of cleaving the C-glycosyl bond is induced in strain BAR by barbaloin and, consequently, strain BAR grows by utilizing as a nutrient the carbohydrate liberated from barbaloin. It is further suggested that the barbaloin-cleaving enzyme is inhibited by nojirimycin bisulfite and that the induction of the enzyme is repressed with D-glucose and D-galactose.

Anthracenes↗

In vitro deterioration of rhein anthraquinone in cecal content of rats.

The influence of the intestinal microbial reduction of rhein anthraquinone on the formation of deterioration products was studied. Therefore [14C]rhein and [14C]rhein anthrone were mixed with sterilized or non-sterilized cecal mass of rats and incubated for 20 hours at 37 degrees C. Extractions with a methanol-water (50:50) mixture or 4-nitroso-N,N-dimethylaniline (0.1%) in pyridine revealed several radioactive derivatives after TLC and autoradiography, except in the case where the anthraquinone was mixed with sterilized cecal content. Gel permeation on a styrene-divinylbenzene copolymer column of an methanol/water extract of non-sterilized cecal content incubated with [14C]rhein, showed radioactive deterioration products with a molecular weight higher than rhein anthraquinone. The high molecular weight of some deterioration products was confirmed by an ultrafiltration study where the methanol/water extract was centrifuged on a Centricon-3 microconcentrator (nominal cutoff: 3000 MW). Aqueous extracts of non-sterilized cecal content incubated with rhein were extracted with chloroform to remove rhein anthraquinone, rhein anthrone and sennidins before being intracecally injected in rats. No laxative activity was found. Furthermore it was shown that the deterioration products which are probably formed through radical reactions, no longer develop a color with a solution of KOH. Therefore it is concluded that the reduction process of dihydroxy-anthraquinones in the gut microflora followed by an extraction, accounts for the loss of anthranoid equivalents in in vivo circumstances, as several times reported in the past.

Animals↗