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High-performance liquid chromatographic method for the quantification of anthranilic and 3-hydroxyanthranilic acid in rat brain dialysate.

Anthranilic acid (ANA) and 3-hydroxyanthranilic acid (3-HANA) have attracted considerable attention as two of the L-tryptophan kynurenine pathway metabolites in the central nervous system. In this study, a highly sensitive and accurate method for the quantification of ANA and 3-HANA has been developed using reversed-phase high performance liquid chromatography (HPLC) with fluorimetric detection. The HPLC assay was carried out using a C(18) column (5 microm, 250 x 4.6 mm i.d.). The mobile phase consisted of a mixture of 25 mM sodium/acetic acid buffer (pH 5.5) and methanol (90:10 v/v). Fluorimetric detection at lambda(ex)=316 nm and lambda(em)=420 nm was used. The assay was applied to the measurement of ANA and 3-HANA acid in rat brain dialysate following administration of L-tryptophan or L-kynurenine. 3-HANA and ANA levels were progressively increased during 90 min following administration of L-tryptophan, then decreased progressively to basal levels. 3-HANA levels were significantly higher than ANA levels after L-kynurenine administration. These findings suggest that the assay developed should provide an improved means for investigation of neurobiology of kynurenine pathway.

3-Hydroxyanthranilic Acid↗

Antiinflammatory drugs: protection of a bacterial virus as an in vitro biological measure of free radical activity.

The effects of the hydroxyl free radical (OH), the superoxide free radical (O2-) and the trichloromethyl peroxy free radical (CC13O2) on the survival of bacteriophage T2 have been studied in the absence and presence of several non-steroidal anti-inflammatory drugs (NSAID). The trichloromethylperoxy radical derived from carbon tetrachloride is considerably more effective than the hydroxyl radical in inactivating the virus: the superoxide radical has only a minor inactivating effect. All the NSAID investigated (flurbiprofen, ibuprofen, sulindac, piroxicam, benoxaprofen, mefenamic acid, diflunisal, aspirin, D-penicillamine, indomethacin and metiazinic acid) inhibit inactivation by OH. This is in agreement with the high rate constants of reaction with this radical determined using the fast reaction technique of pulse radiolysis, i.e. (k greater than 10(9) M-1 S-1). The sulphur-containing drugs, metiazinic acid, piroxicam, penicillamine and sulindac as well as the indole derivative indomethacin, protect the virus from inactivation by the model peroxy radical CC13O2 (the dose modifying factor, DMF greater than 20). In contrast, acetylsalicylic acid related drugs, such as diflunisal, the anthranilic acid derivative, mefenamic acid, and some phenylpropionic acid derivatives, such as flurbiprofen, exhibit only a very small or no protective effect (DMF less than 2). As with OH, the ability of the drugs to protect the virus from inactivation by the peroxy radical is in agreement with their corresponding rate constants of reaction determined by pulse radiolysis.

Anti-Inflammatory Agents↗

The historical aspects of sunscreens.

While there is little literature on the way in which people protected themselves against the sun, evidence from paintings suggest that clothing covering the body, veils and large brim hats were used by ancient Greeks, and that umbrellas existed in ancient Egypt, Mesopotamia, China and India. Veiel in 1887 (Vierteljahresschr. Derm. Syph. 14, 113-116) was able to protect a patient with eczema solare by the use of a tightly woven red veil. In 1889, Widmark (Uber den Einfluss des Lichtes auf die Haut. Hygiea, Festband #3, Samson and Wallin, Stockholm) used acidified quinine sulfate to absorb UVB, apparently because, since quinine fluoresces when irradiated with UVR, he rightly assumed that it would absorb the short wavelengths. In 1891, Hammer (Uber den Enfluss des Lichtes auf die Haut, Ferdinand Enke, Stuttgart) repeated Widmark's experiments and used quinine prepared in lotion or ointment as the first human sunscreen. Various plant extracts had been used at the turn of the century in folk medicine. One of the most effective was a chestnut extract from which aesculin was derived. Unna (Med. Klinik. 1911;7:454-456) developed several glycosides of aesculin,which were introduced as Zeozon and Ultrazeozon. In 1922, Eder and Freund (Wiener. Klin. Wchnschr. 35, 681-684) introduced 2-naphthol-6,8-disulfonic acid salts (Antilux) which were quite effective in both the UVB and UVA region. Over the next 40 years a number of different chemicals were introduced for sunscreen purposes: tannic acid (1925), benzyl salicylate (1931), para-aminobenzoic acid derivatives and 2-phenylimidazole derivatives (1942), anthranilic acid (1950), various cinnamates (1954), chloroquine (1962), benzophenones (1965) and many more since then. The list of chemical useful for sunscreen formulation is now extensive, the US Food and Drug Administration and the European Community have published compendia of approved chemicals and inorganic filters.

Drug Design↗

Promotional effect of lithocholic acid and 3-hydroxyanthranilic acid on transformation of X-ray-initiated BALB/3T3 cells.

X-ray-irradiated BALB/3T3 A31-1-1 cloned cells were post-treated with lithocholic acid (LCA), one of the bile acids, and 3-hydroxyanthranilic acid (3HOA), a tryptophan metabolite, in order to examine their potential to promote cell transformation. Insulin was added to the medium so as to increase the sensitivity of the cells to transformation. A dose-dependent increase in the number of transformed foci was observed with LCA. 3HOA had a very weak, though significant, activity. Transformation frequency was increased only a little, if any, by the treatment with cholic acid, which is structurally related to LCA. Anthranilic acid, an analogue of 3HOA, had no such effect. The results are discussed in view of the importance of endogenous promoters.

3-Hydroxyanthranilic Acid↗

Oral antipyretic therapy. Evaluation of mefenamic acid (short communication).

The capacity of N-(2,3-xylyl)anthranilic acid (mefenamic acid) to reduce fever in children was compared with that of acetylsalicylic acid, paracetamol and amino-phenazone. The series of cases consisted of 71 patients in the age range from 3 months to 15 years and with rectal temperatures above 38.5 degrees C. Temperatures were recorded at 15 and 30 min, and 1, 2, 4 and 6 h after challenge with the drug. The antipyretic effect of mefenamic acid in a dose of 4 mg/kg was optimal: it was 2.5 times that of acetyl-salicylic acid or paracetamol and nearly similar to that of aminophenazone. It seems possible that the antipyretic effect of mefenamic acid is stronger than its anti-inflammatory and analgetic properties.

Acetaminophen↗

Regulation of early reactions in the biosynthesis of tryptophan in Neurospora crassa.

Lester, Gabriel (Reed College, Portland, Ore.). Regulation of early reactions in the biosynthesis of tryptophan in Neurospora crassa. J. Bacteriol. 85:468-475. 1963.-The regulation of the biosynthesis of tryptophan was examined in Neurospora crassa, strain ylo-tryp-la, which accumulates anthranil compounds. The block in this strain appeared to be in the conversion of 1-(o-carboxyphenylamino)-1-deoxyribulose-5-phosphate to indole-3-glycerol phosphate, since the dephosphorylated form of the former compound, the anthranilic ribonucleoside, and the anthranilic acid were found. Cells cultured on levels of l-tryptophan greater than 0.1 mumole per ml were almost devoid of anthranilate-synthesizing activity, whereas cells cultured on low levels of tryptophan (e.g., 0.025 mumole/ml) could produce anthranilate at a rate of 125 mmumoles per mg (dry wt) per hr. A repressive effect was also caused by d-, 5-methyl-dl-, and 6-methyl-dl-tryptophan, but none of these compounds was as effective a repressor as l-tryptophan. Neither 4-methyl-dl-tryptophan, tryptamine, nor indole-3-acetic acid repressed the formation of anthranilate-synthesizing activity. Preformed activity was strongly inhibited by l-tryptophan, and to a lesser extent by 4-, 5-, and 6-methyl-dl-tryptophan; d-tryptophan, tryptamine, or indole-3-acetic acid did not inhibit preformed anthranilate-synthesizing activity. These results are indicative of the operation of repression and feedback-inhibition mechanisms early in the biosynthetic sequence leading to tryptophan. The relation of these results to those concerned with other aspects of tryptophan biosynthesis is discussed.

Glycerophosphates↗

Research on tryptophan metabolites "via kynurenine" in epidermis of man and mouse.

The pattern of tryptophan metabolites "via kynurenine" was determined in the epidermis of man and mouse using semiquantitative method of one- and two-dimensional thin-layer-chromatography. In the epidermis of healthy man the following metabolites were present: tryptophan, kynurenine, anthranilic acid, 3-hydroxyanthranilic acid, 3-hydroxykynurenine, kynurenic acid, nicotinic acid; the same metabolites, with the exception of kynurenine, were present in the epidermis of healthy mouse. In the epidermis of patients with porphyria cutanea tarda and of those with pellagra, the above pattern was modified and resulted similar to that found in the urine. In the epidermis of patients with pellagroid erythema an alteration of "via kynurenine" metabolites was present. In epithelioma tissues all the above mentioned metabolites were increased while in keratoacanthoma were normal. In burnt epidermis xanthurenic acid was present. In the epidermis of mouse with DDC-porphyria the pattern was characterised by absence of tryptophan, anthranilic and nicotinic acids. These data and those obtained by determination of tryptophan-pyrrolase and kynureninase activities are presented and discussed.

Animals↗

3-Hydroxykynurenine and 3-hydroxyanthranilic acid generate hydrogen peroxide and promote alpha-crystallin cross-linking by metal ion reduction.

The kynurenine pathway catabolite 3-hydroxykynurenine (3HK) and redox-active metals such as copper and iron are implicated in cataractogenesis. Here we investigate the reaction of kynurenine pathway catabolites with copper and iron, as well as interactions with the major lenticular structural proteins, the alpha-crystallins. The o-aminophenol kynurenine catabolites 3HK and 3-hydroxyanthranilic acid (3HAA) reduced Cu(II)>Fe(III) to Cu(I) and Fe(II), respectively, whereas quinolinic acid and the nonphenolic kynurenine catabolites kynurenine and anthranilic acid did not reduce either metal. Both 3HK and 3HAA generated superoxide and hydrogen peroxide in a copper-dependent manner. In addition, 3HK and 3HAA fostered copper-dependent alpha-crystallin cross-linking. 3HK- or 3HAA-modifed alpha-crystallin showed enhanced redox activity in comparison to unmodified alpha-crystallin or ascorbate-modified alpha-crystallin. These data support the possibility that 3HK and 3HAA may be cofactors in the oxidative damage of proteins, such as alpha-crystallin, through interactions with redox-active metals and especially copper. These findings may have relevance for understanding cataractogenesis and other degenerative conditions in which the kynurenine pathway is activated.

3-Hydroxyanthranilic Acid↗

Selective blockade of the vasodepressor response to prostaglandin F 2 in the anaesthetized rabbit.

1. The prostaglandin-blocking activity of meclofenamic acid, N-(2,6-dichloro-m-tolyl)anthranilic acid (CI-583), was analysed in the anaesthetized rabbit. PGF(2alpha), PGE(1) and isoprenaline were injected before and after meclofenamic acid infusion.2. Isoprenaline produced a fall in blood pressure, a reduction in oviduct motility and a reduction in uterine motility if the uterus showed marked spontaneous motility. PGF(2alpha) uniformly produced a fall in blood pressure and an increase in both uterine and oviduct contractility. PGE(1) produced a fall in blood pressure, a reduction in oviduct motility and no consistent effect on uterine motility.3. Meclofenamic acid selectively blocked the vasodepressor response to PGF(2alpha). The vasodepressor responses to PGE(1) and isoprenaline as well as the effects of all three agonists on uterine and oviduct contractility were not reduced by treatment with meclofenamic acid.4. Polyphloretin phosphate (PPP) administered to two rabbits in a cumulative dose of 94 mg/kg showed no significant blocking action on the vasodepressor or uterine and oviduct contractor responses to PGE(1) or PGF(2alpha) though this compound, like meclofenamic acid, has been reported to antagonize the actions of PGE(1) and PGF(2alpha) on isolated smooth muscle preparations.

Animals↗

Enhancement of Ca2+-regulated exocytosis by indomethacin in guinea-pig antral mucous cells: arachidonic acid accumulation.

Ca2+-regulated exocytosis is enhanced by an autocrine mechanism via the PGE2-cAMP pathway in antral mucous cells of guinea-pigs. The inhibition of the PGE2-cAMP pathway by H-89 (an inhibitor of protein kinase A, PKA) or aspirin (ASA, an inhibitor of cyclo-oxygenase, COX) decreased the frequency of ACh-stimulated exocytotic events by 60%. Indomethacin (IDM, an inhibitor of COX), however, decreased the frequency of ACh-stimulated exocytotic events only by 30%. Moreover, IDM increased the frequency of ACh-stimulated exocytotic events by 50% in H-89-treated or ASA-treated cells. IDM inhibits the synthesis of Prostaglandin (PGG/H) and (15R)-15-hydroxy-5,8,11 cis-13-trans-eicosatetraenoic acid (15R-HPETE), while ASA inhibits only the synthesis of PGG/H. Thus, IDM may accumulate arachidonic acid (AA). AACOCF3 or N-(p-amylcinnamoyl) anthranilic acid (ACA; both inhibitors of phospholipase A2, PLA2), which inhibits AA synthesis, decreased the frequency of ACh-stimulated exocytotic events by 60%. IDM, however, did not increase the frequency in AACOCF3-treated cells. AA increased the frequency of ACh-stimulated exocytotic events in AACOCF3- or ASA-treated cells, similar to IDM in ASA- and H-89-treated cells. Moreover, in the presence of AA, IDM did not increase the frequency of ACh-stimulated exocytotic events in ASA-treated cells. The PGE2 release from antral mucosa indicates that inhibition of PLA2 by ACA inhibits the AA accumulation in unstimulated and ACh-stimulated antral mucosa. The dose-response study of AA and IDM demonstrated that the concentration of intracellular AA accumulated by IDM is less than 100 nm. In conclusion, IDM modulates the ACh-stimulated exocytosis via AA accumulation in antral mucous cells.

Acetylcholine↗

Bromoacetamido analogs of indomethacin and mefenamic acid as affinity-labeling agents and mechanistic probes for prostaglandin H2 synthase.

Affinity-labeling agents, 1-[4-(bromoacetamido)benzyl]-5-methoxy-2-methylindole-3-acetic acid (I) and 4-(bromoacetamido)-N-(2,3-dimethylphenyl)anthranilic acid (II), were synthesized on the basis of their respective nonsteroidal anti-inflammatory drugs (NSAIDs), indomethacin and mefenamic acid [Askonas & Penning (1991) Biochemistry 30, 11553-11560]. Compounds I and II are now shown to inhibit homogeneous ram seminal vesicle prostaglandin H2 (PGH2) synthase by two kinetically distinct complexes. They are competitive inhibitors versus arachidonic acid via the formation of high-affinity E.I complexes, and they cause time-dependent inactivation of the holoenzyme via low-affinity E.I complexes. Compounds I and II, unlike classical NSAIDs, were found to inactivate both the cyclooxygenase and peroxidase reactions of the synthase in a parallel manner. Inactivation was accompanied by the incorporation of 2 mol of either radiolabeled I or II per synthase monomer. The covalent bonds that result were stable to boiling in SDS, indicating that I and II offer alternatives to aspirin in locating NSAID binding sites. Incubation of aspirin-treated PGH2 synthase with radiolabeled I reduced the stoichiometry of incorporation to 1.0, suggesting that one of the sites modified corresponds to the cyclooxygenase site. By saturating the cyclooxygenase site with mefenamic acid, I and II only abolished the peroxidase activity of the enzyme, suggesting that the second site of modification corresponds to the peroxidase site. When PGH2 synthase was incubated with mefenamic acid and I or II, only the peroxidase activity was inactivated. Subsequent removal of all drugs by dialysis gave a preparation of PGH2 synthase that could perform the cyclooxygenase reaction, but lacked the ability to cleave ethyl hydroperoxide to ethanol and water.(ABSTRACT TRUNCATED AT 250 WORDS)

Affinity Labels↗

Free-standing nanogold membranes as supports for the growth of calcium phosphate crystals.

Current strategies for bone tissue regeneration focus on the development of implantable matrices that mimic biological tissues. Inorganic composites are of special interest for bone substitute applications. It is necessary to create an artificial three-dimensional scaffold-like porous material with certain geometrical structure to induce bone growth. We report here the growth of calcium phosphate crystals on free-standing carboxylic acid functionalized gold nanoparticle membranes. The gold nanoparticle membrane is synthesized by the spontaneous reduction of aqueous chloroaurate ions by a diamine molecule at a liquid-liquid interface. This membrane is robust and malleable, and most importantly, the gold nanoparticles in the membrane may be functionalized with suitable ligands. In this study, the amino acids aspartic acid and cysteine together with an aromatic bifunctional molecule, anthranilic acid, were used to modify the surface of the gold nanoparticles in the membrane. The free carboxylic acid groups on the gold nanoparticles further to functionalization with these molecules were then used to bind Ca(2+) ions and reacted with phosphate ions to yield calcium phosphate. The nature of the nanogold surface modifier directed the formation of either crystalline hydroxyapatite or amorphous calcium phosphate. The nanogold membrane thus suggests potential biomedical application as biocompatible implants and grafts.

Aspartic Acid↗

Radical scavenging and catalytic activity of metal-phenolic complexes.

A series of metal-ligand complexes were prepared by the reaction of various metal ions, namely, Cu(II), Mn(II), or Fe(II) with phenolic derivatives of [catechol, chlorogenic acid (CGA), n-propyl gallate (nPG), 3-hydroxy anthranilic acid, resveratrol, and rutin] and characterized by UV-vis spectroscopy. The metal/ligand complexing ratio and complexation constants have been determined. The complexes were probed for their reactivity toward various free radicals (e aq-, CO2*-, and O2*-). Pulse radiolysis studies showed that the one-electron reduction of metal/phenol complexes by CO2*- radicals was metal-centered, and this was confirmed by the formation of an initial adduct with CO2*- radicals. Rate constants for the scavenging of superoxide anions with metal complexes ranged between 10(7)-10(9) dm3 mol(-1) s(-1) and those for the reaction of e aq- with the metal complexes were in the range of (1-5) x 10(9) dm3 mol(-1) s(-1), depending on the pH of the solution. Cyclic and differential pulse voltammetric studies showed that the reduction potential of the complexes are found to range between -0.022 to 0.45 V vs normal hydrogen electrode.

Catalysis↗

An antimalarial tetrapeptide from the entomopathogenic fungus Hirsutella sp. BCC 1528.

Hirsutellic acid A (1), a new linear tetrapeptide possessing an anthranilic acid residue at the C-terminus, was isolated from a fermentation broth of the entomopathogenic fungus Hirsutella sp. BCC 1528. The structure of this compound was elucidated by NMR and MS analyses, and its absolute configuration was deduced by HPLC analysis of the acid hydrolysate using a chiral column. Hirsutellic acid A exhibits activity against the malarial parasite Plasmodium falciparum K1 with an IC(50) value of 8.0 microM, while it was noncytotoxic to Vero cells at a concentration of 95 microM.

Animals↗

Anthranilate hydroxylase from Aspergillus niger: new type of NADPH-linked nonheme iron monooxygenase.

Anthranilate hydroxylase from Aspergillus niger catalyzes the oxidative deamination and dihydroxylation of anthranilic acid to 2,3-dihydroxybenzoic acid. This enzyme has been purified to homogeneity and has a molecular weight of 89,000. The enzyme is composed of two subunits of 42,000 with 2 gram-atoms of nonheme iron per mol. Fe2+-chelators like alpha,alpha'-dipyridyl and o-phenanthroline are potent inhibitors of the enzyme activity. Absorption and fluorescence spectra of the enzyme offer no evidence for the presence of other cofactors like flavin. Flavins and flavin-specific inhibitors like atebrin have no effect on the activity of the enzyme. The enzyme incorporates one atom of oxygen each from 18O2 and H218O into the product 2,3-dihydroxybenzoic acid. Based on these studies, it is concluded that anthranilate hydroxylase from A. niger is a new type of NADPH-linked nonheme iron monooxygenase.

Aspergillus niger↗

Quinolone antimicrobial agents. 1. Versatile new synthesis of 1-alkyl-1,4-dihydro-4-oxo-3-quinolinecarboxylic acids.

A flexible reaction sequence has been developed which starts with readily available anthranilic acids or isatoic anhydrides and leads regiospecifically to 1-alkyl-1,4-dihydro-4-oxo-3-quinolinecarboxylic acids after reaction with 1,3-dicarbonyl compounds. The sequence is superior to earlier published methods by allowing electron-releasing and -withdrawing groups in any position on the aro;atic ring, by allowing convenient substitution at C2, and better overall yield. A number of new and known antimicrobial agents were prepared and tested in vitro, demonstrating, inter alia, that substitution of the H at C2 abolished antibacterial activity.

Anti-Infective Agents↗

Sulfonate ester hydroxamic acids as potent and selective inhibitors of TACE enzyme.

Sulfonamide hydroxamate derivatives of anthranilic acids are known to be potent inhibitors of cell-free TACE enzyme. However, compounds of this structural class with both high potency and high selectivity for TACE over matrix metalloproteinases (MMPs) are uncommon. Replacement of the sulfonamide functionality with an isosteric sulfonate ester has resulted in a series of sulfonate ester hydroxamates, 2a-e, with excellent activity against TACE and excellent selectivity over MMP-1 and MMP-13. Although compounds 2a-e possess good permeability in a PAMPA assay, they are only weakly active as inhibitors of lipopolysaccharide (LPS)-stimulated tumor necrosis factor (TNF) production in human monocytic THP-1 cells. Protein binding affinity also does not predict the lack of cellular activity for these analogs.

ADAM Proteins↗

Kynurenine pathway enzymes in brain: responses to ischemic brain injury versus systemic immune activation.

Accumulation of L-kynurenine and quinolinic acid (QUIN) in the brain occurs after either ischemic brain injury or after systemic administration of pokeweed mitogen. Although conversion of L-[13C6]tryptophan to [13C6]-QUIN has not been demonstrated in brain either from normal gerbils or from gerbils given pokeweed mitogen, direct conversion in brain tissue does occur 4 days after transient cerebral ischemia. Increased activities of enzymes distal to indoleamine-2,3-dioxygenase may determine whether L-kynurenine is converted to QUIN. One day after 10 min of cerebral ischemia, the activities of kynureninase and 3-hydroxy-3,4-dioxygenase were increased in the hippocampus, but local QUIN levels and the activities of the indoleamine-2,3-dioxygenase and kynurenine-3-hydroxylase were unchanged. By days 2 and 4 after ischemia, however, the activities of all these enzymes in the hippocampus as well as QUIN levels were significantly increased. Kynurenine aminotransferase activity in the hippocampus was unchanged on days 1 and 2 after ischemia but was decreased on day 4, at a time when local kynurenic acid levels were unchanged. A putative precursor of QUIN, [13C6]anthranilic acid, was not converted to [13C6]QUIN in the hippocampus of either normal or 4-day post-ischemic gerbils. Gerbil macrophages stimulated by endotoxin in vitro converted L-[13C6]tryptophan to [13C6]QUIN. Kinetic analysis of kynurenine-3-hydroxylase activity in the cerebral cortex of postischemic gerbils showed that Vmax increased, without changes in Km. Systemic administration of pokeweed mitogen increased indoleamine-2,3-dioxygenase and kynureninase activities in the brain without significant changes in kynurenine-3-hydroxylase or 3-hydroxyanthranilate-3,4-dioxygenase activities. Increases in kynurenine-3-hydroxylase activity, in conjunction with induction of indoleamine-2,3-dioxygenase, kynureninase, and 3-hydroxyanthranilate-3,4-dioxygenase in macrophage infiltrates at the site of brain injury, may explain the ability of postischemic hippocampus to convert L-[13C6]tryptophan to [13C6]QUIN.

3-Hydroxyanthranilate 3,4-Dioxygenase↗