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Bis-basic-substituted polycyclic aromatic compounds. A new class of antiviral agents. 7. Bisalkamine esters of 9-oxoxanthene-2,7-dicarboxylic acid, 3,6-bis-basic ethers of xanthen-9-one, and 2,7-bis(aminoacyl)xanthen-9-ones-xanthenes, and -thioxanthenes.

3,6-Bis[2-(dimethylamino)ethoxy]-9H-xanthen-9-one dihydrochloride (4, RMI 10874DA) and 1,1'-(9H-xanthene 2,7-diyl)bis[2-(dimethylamino)ethanone] dihydrochloride (16, RMI 11513DA) were found to prolong survival of mice infected with lethal challenges of encephalomyocarditis (EMC) virus. They were effective by oral as well as subcutaneous administration and showed broad-spectrum antiviral activity. They were selected for preclinical evaluation from the five series of compounds named in the title that were synthesized in analogy to tilorone and related fluorenone derivatives, described earlier. In addition to 4 and 16, compounds 11, 12, 17, and 18 showed high antiviral activity on oral as well as subcutaneous administration. High antiviral activity on subcutaneous admistration was found in the bisalkamine esters 1,2, and 14, the bis(aminoacyl)xanthenes 23 and 26, the bis(aminoalkylene)xanthene 31, the bis(aminoacyl)thioxanthenes 34-40, and the bis-basic ethers of 9-benzylide-nexanthenes 41 and 42. Structure-activity relationships showed a decrease of oral activity with increased length of side chains and increased molecular weight of dialkylamino substituents of 3,6-bis-basic ethers of xanthen-9-one and of 2,7-bis(aminoacyl)xanthenes and-xanthen-9-ones. At least one carbonyl or alkenyl function in conjugation to the xanthene nucleus either at the 9 position of the nucleus or in the side chains is required for high antiviral activity.

Administration, Oral

Mutagenicity testing of certified food colors and related azo, xanthene and triphenylmethane dyes with the Salmonella/microsome system.

Thirty-seven azo, xanthene and triphenylmethane dyes including FD and C colors currently approved for use in the U.S.A. and a number of delisted food colors, were tested in the Salmonella/microsome system. In addition to direct plate tests with five tester strains (TA1535, TA100, TA1537, TA1538, TA98), the azo dyes were also assayed after chemical reduction to their component amines. Also, a selected group of azo dyes was subjected to liquid tests (both aerobic with microsomes and anaerobic) and to plate tests involving initial 16 h anaerobic incubations to facilitate microbial reduction of the azo bond. None of the presently listed FD and C colors was mutagenic in any of the test modifications. Among formerly listed colors only Butter Yellow (p-dimethylaminoazobenzene), a recognized animal carcinogen, was mutagenic in the aerobic liquid test. Several other azo dyes were either directly mutagenic, viz. Acid Alizarin Yellow R and Alizarin Yellow GG; required microsomal activation, viz. Acid Alizarin Red B and Methyl Red; or required chemical reduction and microsomal activation, viz. Acid Alizarin Violet N and Sudan IV. Of the non-azo dyes tested only two xanthene dyes appeared to be mutagenic, viz. 9-(2-sulfophenyl)-6-hydroxy-3-isoxanthenone and its 2,4,5,7-tetrabromo derivative.

Azo Compounds

Stereoselective antimuscarinic effects of 3-quinuclidinyl atrolactate and 3-quinuclidinyl xanthene-9-carboxylate.

The relative affinity and selectivity of the stereoisomers of 3-quinuclidinyl atrolactate (QNA) and the enantiomers of 3-quinuclidinyl xanthene-9-carboxylate (QNX) for the pharmacologically defined muscarinic receptor subtypes was determined using functional responses of rabbit vas deferens (M1), guinea pig atria (M2) and bladder detrusor muscle (M3). All the stereoisomers behaved as competitive antagonists yielding the same rank order of potency at each receptor subtype: (RR)-QNA greater than (RS)-QNA greater than (SR)-QNA greater than (SS)-QNA and (R)-QNX greater than (S)-QNX. Moreover, the eudismic ratios relative to (RR)-QNA for (RS)-, (SR)- and (SS)-QNA, respectively, ranged from 4 to 308 at all three subtypes. Stereoselective effects were also observed for QNX; (S)-QNX/(R)-QNX ratios ranged from 76 to 248. In contrast, there was a distinct lack of receptor selectivity among the isomers of QNA and QNX for either the M1, M2 or M3 muscarinic receptor subtypes. Stereoselective effects were also evident in vivo in the guinea pig cystometrogram, where the rank order of potency of the isomers of QNA and QNX was similar to that observed in vitro. (RR)-QNA and (R)-QNX equipotently depressed intravesical bladder pressure (PvesP) (ID50 = 0.06 mg/kg i.v.). Other parameters (bladder capacity, threshold pressure) were unaltered by the stereoisomers. The data demonstrate that despite the high affinity of the eutomers of QNA and QNX for muscarinic receptors, they discriminate poorly among muscarinic subpopulations, thus limiting their utility to subclassify muscarinic receptors.

Animals

Antiallergic activity of some 9H-xanthen-9-one-2-carboxylic acids.

The synthesis and antiallergic activity of a new series of 9H-xanthen-9-one-2-carboxylic acids are described. Antiallergic activity was evaluated in the rat passive cutaneous anaphylaxis (PCA) screen. Biological results were analyzed using regression analysis techniques, and the antiallergic activity of the compounds in the series was found to be highly correlated with substituent size.

Animals

Studies on the toxicity of coal-tar dyes. I. Photodecomposed products of four xanthene dyes and their acute toxicity to fish.

The acute toxicity of photodecomposed products of Erythrosine, Eosine, Phloxine and Rose Bengale were studied, since it was found that toxicity of these dyes to fish increased after the dyes had been photoirradiated. Photodecomposed products of the dyes were isolated and identified with UV, IR, NMR spectra and the acute toxicity of those compounds were determined by TLm test. As results of these studies, it became clear that the toxicity of photodecomposed organic products (dehalogenated compounds of dyes) were lower than the mother compounds. The increases in toxicity of the xanthene dyes by photo-irradiation were attributed to the liberated halogens by irradiation.

Animals

Minor metabolism a xanthene dye by African giant rat (Cricetomys gambianus, Waterhouse).

In a continuation of our previous report (Adekunle, 1978), we have carried out a comparative study on the metabolism of eosin (2, 4, 5, 7-tetrabromofluorescein), a xanthene, in 2 mammalian species, the Albino rat (Rattus norvegicus) and the African giant rat (Cricetomys gambianus, Waterhouse). The latter shows a minor metabolism of this dye compared with the former. The findings are discussed in relation to the disposition of Erythrosine BS (tetraiodofluorescein) reported by other workers.

Animals

In vivo cumulation and discharge of azine, thiazine and xanthene dyes and their effects on the chloragogen cells of Lumbricidae (Oligochaeta).

The in vivo cumulation of neutral red, methylene blue and acriflavine in the body wall, midgut epithelium and chloragosomes of Lumbricus terrestris L. and Octolasium transpadanum Rosa, and the discharge of these dyes by chloragosomes was investigated by spectrophotometry. The chloragosomes cumulated the largest amount of the ingested dyes. Electron microscopy displayed the activation of the chloragogen cells and an increased chloragosome formation on the first days of dye intake. In dye-free environment, the dye content of the chloragosomes decreased rapidly. The above properties of the chloragogen cells indicate the role of these cells in the defence mechanism against the toxic effect of certain cationic xenobiotics ingested via the intestinal tract.

Animals

Comparison of spectrum-shifting intracellular pH probes 5'(and 6')-carboxy-10-dimethylamino-3-hydroxyspiro[7H-benzo[c]xanthene-7, 1'(3'H)-isobenzofuran]-3'-one and 2',7'-biscarboxyethyl-5(and 6)-carboxyfluorescein.

The dyes carboxy-SNARF-1 and BCECF are fluorescent probes of intracellular pH that exhibit changes in spectral shape upon proton binding which allow one to use measurements of fluorescence at two or more wavelengths in order to measure pH without artifacts associated with variability in dye loading, etc. In evaluating these dyes for this study, whole spectra, rather than measurements at two wavelengths, were analyzed. For BCECF, the effects of the intracellular milieu were minimal: both the pH-sensitive excitation spectrum and the pKa agreed closely with values found in extracellular solution. In contrast, both the spectra and the pKa for the emission spectrum-shifting carboxy-SNARF-1 showed significant differences between intracellular and extracellular dye. As a result, extremely misleading values for intracellular pH will be obtained if one attempts to use extracellular dye to calibrate intracellular carboxy-SNARF-1 measurements. Multiple origins were found for the discrepancy: (i) the intracellular dye was found to be significantly quenched, with the deprotonated form being more strongly quenched than the protonated form; and (ii) the pKa for the equilibrium with intracellular hydrogen ions was shifted by +0.2 pH units. These effects were readily reversed by disruption of the cell, but were not due to sequestering of dye in an acidic cell compartment.

Animals

Studies on the toxicity of coal-tar dyes II. Examination of the biological reaction of coal-tar dyes to vital body.

The toxicity of xanthene dyes were studied by various interaction between the dyes and the components in vital body. (1) An increase in the amount of Rose Bengale adsorbed on the gill of fish was followed by the increase in red corpuscle number, and it was assumed that the death of fish in xanthene dye solution was due to anoxemia. (2) Binding capacity of xanthene dyes with bovine serum albumin decreased in the following; Rose Bengale, Phloxine, Erythrosine, Eosine and Uranine. This order was quite coincident with the toxicity compared by TLm values. (3) From the results of rec-assay test by use of Bacillus subtilis, it was confirmed that Phloxine and Rose Bengale had DNA-damaging capacity related to the mutagenecity.

Animals

Inhibition of wheat embryo calcium-dependent protein kinase and other kinases by mangostin and gamma-mangostin.

The hull of the fruit of the mangosteen tree (Garcinia mangostana) contains four inhibitors of plant Ca(2+)-dependent protein kinase. Two of these inhibitors have been purified and identified as the xanthones 1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methyl-2-butenyl)-9H- xanthen-9-one (mangostin) and 1,3,6,7-tetrahydroxy-2,8-bis(3-methyl-2-butenyl)- 9H-xanthen-9-one (gamma-mangostin). Both xanthones also inhibit avian myosin light chain kinase and rat liver cyclic AMP-dependent protein kinase. This is the first report of inhibition of plant and animal second messenger-regulated protein kinases by plant-derived xanthones.

Amino Acid Sequence

Mechanism of chlorpromazine binding by gram-positive and gram-negative bacteria.

Chlorpromazine forms charge-transfer complexes with xanthene dyes in bacteria. These complexes permit the differentiation of Gram-positive and Gram-negative bacteria in both light and polarization microscopy. The birefringence induced by the charge-transfer complex might explain the molecular basis of bacterial staining. The charge-transfer complexes formed between chlorpromazine and xanthene dyes accumulate in the bacterial cell, mainly inside the bacterial cell wall. The complexes give the cells a color, which depends on the chemical composition of the staining structure, and in particular the polysaccharides of the cell wall in bacteria. Metachromatic granules were seen inside Gram-positive bacteria after chlorpromazine and rose bengal staining. Although the nature of these granules remains unclear, this type of binding may have a role in the inhibition of biochemical processes in the bacterial cells.

Binding Sites

The phototoxic effect of erythrosin B on third-stage larvae of gastrointestinal nematodes in sheep.

The phototoxic effect of erythrosin B on the infective third-stage larvae (L3) of naturally acquired mixed populations of ovine gastrointestinal nematodes was investigated. This xanthene dye was phototoxic when administered orally to parasitized lambs or applied directly to feces containing nematode ova. Phototoxicity was assessed by the lack of motility (non-swimming) exhibited by the L3 following their collection by Baermannization from cultured feces and exposure to fluorescent light for 360 min. When lambs were administered erythrosin B orally at dosages of O (control), 40, 60 and 80 mg dye kg-1 body weight daily for 10 consecutive days, the percentages of non-swimming L3 were 16%, 46%, 55% and 62%, respectively. However, erythrosin B phototoxicity did not persist after administration of the dye was discontinued and the percentage of non-swimming L3 declined to a level similar to that of the untreated controls within 2 days. The highest percentage of non-swimming L3 was observed when erythrosin B was added directly to feces containing nematode ova. A dose-response curve was evident from the successively higher percentages of non-swimming L3 with increasing concentrations of erythrosin B. Xanthene dyes have the potential to control parasites acquired by livestock on pasture by inducing a phototoxic reaction in the infective L3.

Administration, Oral

Luminescent/paramagnetic probes for detecting order in biological assemblies: transformation of luminescent probes into pi-radicals by photochemical reduction.

The spectroscopic methods of fluorescence polarization and electron paramagnetic resonance (EPR) are used to study order and orientation of extrinsically labeled protein elements of ordered biological systems. These methods generate complementary information about the order of the system, but a consistent quantitative interpretation of the related data is complicated because the signals arise from different donors. We introduce a new method that allows us to detect both signals from the same donor. Unsubstituted xanthene dyes (eosin, erythrosin, and fluorescein) were irradiated by laser light at their absorption maximum in the presence of different reducing agents. Due to photochemical reduction, the quinoidal structure of the xanthene ring is transformed into a semiquinone, and a pi-radical is formed having a characteristic EPR signal of an unpaired electron spin with proton hyperfine interactions. A strong EPR signal is observed from the dye in solution or when specifically attached to a protein following irradiation in the presence of dithiothreitol or cysteine. We applied this technique to the study of skeletal muscle fibers. The fluorescent dye (iodoacetamido)fluorescein was covalently attached to the reactive thiol of the myosin molecule in muscle fibers. Fluorescence polarization and EPR spectroscopy were performed on the labeled fibers in rigor. Both signals indicate a highly ordered system characteristic of cross-bridges bound to actin. Our use of the same signal donor for fluorescence and EPR studies of probe order is a promising new technique for the study of order in protein elements of biological assemblies.

Actomyosin