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At least 19 recordsLinked to original sources

New synthesis of benzo-delta-carbolines, cryptolepines, and their salts: in vitro cytotoxic, antiplasmodial, and antitrypanosomal activities of delta-carbolines, benzo-delta-carbolines, and cryptolepines.

The paper describes, in its first part, a new synthesis of benzo-delta-carbolines, cryptolepines, and their salts. The strategy is based on the association between halogen-dance and hetero-ring cross-coupling. It is fully convergent and regioselective with interesting overall yields from 27% to 70%. A halogen-dance mechanism in quinoline series is also proposed. The formal synthesis of potential antimalarial compounds and the first total synthesis of 11-isopropylcryptolepine are also described. In the second part, cytotoxic activity against mammalian cells and activities against Plasmodium falciparum and Trypanosoma cruzi of benzo-delta-carbolines and delta-carbolines were evaluated in vitro to study the structure-activity relationships. For benzo-delta-carbolines, methylation at N-5 increases the cytotoxic and antiparasitic activities. A further alkylation on C-11 generally increases the cytotoxic activity but not the antiparasitic activity, cryptolepine and 11-methylcryptolepine being the most active on both parasites. Taking advantage of the fluorescence of the indoloquinoline chromophore, cryptolepine was localized by fluorescence microscopy in parasite DNA-containing structures suggesting that these compounds act through interaction with parasite DNA as proposed for cryptolepine on melanoma cells. For delta-carbolines, methylation at N-1 is essential for the antimalarial activity. 1-Methyl-delta-carboline specifically accumulates in the intracellular parasite. It has weak cytotoxic activity and can be considered as a potential antimalarial compound.

Alkaloids↗

Interaction of beta-carbolines with the benzodiazepine receptor. Structure-activity relationships of amide derivatives of beta-carboline and tetrahydro-beta-carboline.

1. The inhibition of specific 3H-flunitrazepam binding to rat cortical membrane preparations (benzodiazepine receptors) by a series of amide derivatives of beta-carboline and tetrahydro-beta-carboline related to the ethyl ester of beta-carboline 3-carboxylate (beta-CCE) was measured. 2. beta-Carboline amides which are unsaturated in the C ring of the beta-carboline nucleus were the most potent inhibitors of benzodiazepine receptor binding. 3. Increasing the length of the hydrocarbon moiety in the aliphatic amide side chain beyond two carbon atoms decreased potency.

Animals↗

Nitrite converts 2-amino-alpha-carboline, an indirect mutagen, into 2-hydroxy-alpha-carboline, a non-mutagen, and 2-hydroxy-3-nitroso-alpha-carboline, a direct mutagen.

2-Amino-alpha-carboline [26148-68-5] which was isolated from a pyrolysate of soybean globulin and which was mutagenic to Salmonella typhimurium in the presence of a rat-liver microsomal fraction (S9 mix), was converted into non-mutagenic 2-hydroxy-alpha-carboline by treatment with nitrite in acidic conditions. However, on prolonged treatment with nitrite and acid, 2-hydroxy-alpha-carboline was further converted into a new mutagen which did not require S9 mix for exhibition of the mutagenicity. This direct-acting mutagen was found to be 2-hydroxy-3-nitroso-alpha-carboline by mass and proton magnetic resonance spectroscopies.

Carbolines↗

Norharman, an indoleamine-derived beta-carboline, but not Trp-P-2, a gamma-carboline, induces apoptotic cell death in human neuroblastoma SH-SY5Y cells.

Carbolines, azaheterocyclic amines derived from indoleamines, have various biological activities, such as neurotoxicity of beta-carbolines and potent mutagenicity of gamma-carbolines. In this study, structural significance among these carbolines was investigated in relation to the types of cell death, apoptosis and necrosis, using human neuroblastoma SH-SY5Y cells. DNA damage was quantitatively analyzed by a single-cell gel electrophoresis assay. DNA damage was induced by both beta-carbolines, harman and norharman, and gamma-carbolines, 3-amino-1,4-dimethyl-5H-pyrido[4,3-b]indole (Trp-P-1) and 3-amino-4-methyl-5H-pyrido[4,3-b]indole (Trp-P-2), in a dose dependent manner. Gamma-carbolines were more potent to damage DNA than beta-carbolines. Alkaline lysis of the cells prevented DNA damage induced by beta-carboline, and pre-treatment of the cells with cycloheximide, an inhibitor of protein synthesis, reduced DNA damage caused by norharman. Morphological observation showed condensed and fragmented nuclei typical for apoptosis, in the cells treated with norharman. Thus, DNA damage induced by norharman was proved to be apoptotic. However, harman, which had a methyl substitution at the position 1, might induce necrosis in the cells. On the other hand, gamma-carbolines, Trp-P-1 and Trp-P-2, directly damaged DNA. Thus, the nitrogen atom at the gamma-position and/or an amino group in carboline structure would be required to induce the direct DNA cleavage.

Apoptosis↗

Tetrahydro-beta-carboline-3-carboxylic acid compounds in fish and meat: possible precursors of co-mutagenic beta-carbolines norharman and harman in cooked foods.

The presence of tetrahydro-beta-carbolines and beta-carbolines was studied in raw, cooked and smoked fish and meat. 1,2,3,4-Tetrahydro-beta-carboline-3-carboxylic acid (THCA) usually was the major beta-carboline found, whereas 1-methyl-1,2,3,4-tetrahydro-beta-carboline-3-carboxylic acid (MTCA) appeared in smoked and 'well done' cooked samples. THCA was detected in raw fish (nd-2.52 micrograms/g), cooked fish (nd-6.43 micrograms/g), cooked meats (nd-0.036 microgram/g), smoked fish (0.19-0.67 microgram/g) and smoked meats (0.02-1.1 micrograms/g). Smoked and cooked samples contained higher amounts of THCA and MTCA than raw products. Deep cooking of fish and meat increased both THCA and MTCA, and this was accompanied by the formation of more beta-carbolines, norharman and harman. The tetrahydro-beta-carbolines THCA and MTCA were chemical precursors of the co-mutagens norharman and harman during cooking. These and previous results confirm that foods are an important source of beta-carbolines in humans.

Animals↗

Microbial transformation of azacarbazoles. III. Conversion of methoxy- and phenyl- substituted alpha-carbolines to corresponding alpha-iso-carbolines by Kitasatosporia setae strain.

Microbial N-1 methylation of alpha-carboline derivatives substituted at position C-2, C-6 and C-8 with methoxy- and at position C-2 and C-6 with phenyl groups conducted with Kitasatosporia setae resulted in corresponding alpha-iso-carboline formation. The yield of obtained products is significantly dependent on the position of substituent in alpha-carboline molecule. Compounds, as 2- and 6-methoxy-alpha-carboline undergo N-1 microbial methylation with strikingly low yields of 5%, whereas products of biotransformation of 8-methoxy-alpha-carboline was formed in markedly higher amount, about 50%. Similar correlations were observed for subjected to bioconversion C-2 and C-6 phenyl-alpha-carbolines. The yields of formed products were estimated as 3% and 5%, respectively. All obtained alpha-iso-carbolines were found to be toxic to the transforming strain of Kitasatosporia setae at the range of 1.2-2.5 microM/ml as well as against KB tumor culture cells (ID50 0.04-0.6 microM/ml).

Actinomycetales↗

Simultaneous determination of amino-alpha-carbolines and amino-gamma-carbolines in cigarette smoke condensate by high-performance liquid chromatography.

A method for the simultaneous detection of amino-alpha-carbolines (2-amino-alpha-carboline and 2-amino-3-methyl-alpha-carboline) and amino-gamma-carbolines (3-amino-1,4-dimethyl-5H-pyrido [4,3-b]indole and 3-amino-1-methyl-5H-pyrido [4,3-b]indole) by high-performance liquid chromatography has been developed. It consists of a three-step purification using three different columns with fluorometric detection. With this method, we have demonstrated that both amino-alpha-carbolines and amino-gamma-carbolines are present in cigarette smoke condensate. The method may be useful for detecting these carcinogens in various materials.

Carbolines↗

Synthesis of beta-carboline-benzodiazepine hybrid molecules: use of the known structural requirements for benzodiazepine and beta-carboline binding in designing a novel, high-affinity ligand for the benzodiazepine receptor.

Hybrid molecules incorporating pharmacologically important structural features of both 3-carboxy-beta-carbolines and 1,4-benzodiazepines were synthesized, and their affinities for the benzodiazepine receptor were determined in vitro. One of these hybrids, 8,14-dioxo-13,14-dihydro-8H-indolo[3',2':4,5]pyrido[2,1-c] [1,4]benzodiazepine (13), demonstrated high affinity for the receptor, displacing both benzodiazepines (IC50 = 23 nM) and beta-carbolines (IC50 = 47 nM) from their binding sites. Of the compounds synthesized, 13 also most closely satisfied the structural requirements that generally ensure a high affinity of both beta-carbolines and benzodiazepines for the receptor (e.g., aromaticity of the beta-carboline, presence of a carbonyl at C-3 of the beta-carboline and of a pi 2-region on the benzodiazepine). The hybrids not fulfilling these requirements had no affinity for the receptor. In vivo pharmacological properties of 13 could not be demonstrated because of its metabolic instability and/or its poor transport into the brain. The results are discussed in terms of a possible overlapping of beta-carboline binding sites with those of benzodiazepines on the receptor.

Animals↗

Microbial transformation of azacarbazoles. VII. Antitumor properties of benzo-alpha-iso-carbolines formed by Kitasatosporia setae strain from corresponding benzo-alpha-carbolines.

2,3-Benzo-alpha-carboline, 7,8-benzo-alpha-carboline and their 4-methyl derivatives were subjected to microbial conversion yielding corresponding benzo-alpha-iso-carbolines. All obtained products showed significant antimicrobial and cytotoxic properties. ID50 values were found to be at range 0.01-0.001 microM/ml, regarding in vitro KB tumor cells system data. It has been found that introduction of methyl group at para-position to the nitrogen of pyridine nucleus strongly increases cytotoxic and microbial activity of benzo-alpha-iso-carbolines. Apparently it has been indicated that antitumor activity of benzo-alpha-iso-carbolines is strongly dependent on shape and size of the molecule. Of all the compounds tested only 2,3-benzo-1,4-dimethyl-alpha-iso-carboline increases life span of leukemia P388 bearing mice up to 160%.

Actinomycetales↗

Microbial transformation of azacarbazoles. II. Conversion of methyl-substituted alpha-carbolines to corresponding alpha-iso-carbolines by Kitasatosporia setae strain.

alpha-Carboline derivatives substituted with methyl groups at C-2, C-4, C-2,4, C-6 and C-8 position were subjected to N-1 methylation performed by Kitasatosporia setae. The yield of formed corresponding alpha-iso-carbolines varied, depending on the position of methyl substituent. It has been observed that the methyl group introduced in position C-2 and C-6 of alpha-carboline molecule markedly diminishes the susceptibility of nitrogen for enzymic attack in comparison with methylation reaction performed with methyl iodide. On the contrary, derivatives possessing methyl groups in positions C-4 and C-8 are methylated by chemical and microbial means with approximately the same yield. The obtained alpha-iso-carbolines appeared to be toxic to the transforming Kitasatosporia setae strain at the concentration range of 0.2-2.5 microM/ml. Taking into account that the MIC values of parent alpha-carbolines estimated for Kitasatosporia setae were much higher than 2.5 microM/ml, this finding seems to be out of the accordance with the general belief that the microbial conversion of xenobiotics is only a detoxification process. Apparently, 4-methyl and 2 -dimethyl substituted alpha-iso-carbolines besides of their antimicrobial properties, displayed strong cytotoxic activity against KB cells line at the concentration range 0.03-0.05 microM/ml.

Actinomycetales↗

Relationship between occurrence of tremor/convulsion and level of beta-carbolines in the brain after administration of beta-carbolines into mice.

Fifteen beta-carboline derivatives, including those found in the South American hallucinogenic plant Banisteriopsis caapi, were injected IP and IVC into mice. Subsequent behavioral changes were observed and the levels of the compounds in brain tissue were determined. It was found that following IP administration, tremors and/or convulsions were induced by beta-carbolines having aliphatic alkyl groups, but not by those with carbonyl and oxo groups substituted at carbon-1 of the C ring. These effects were potentiated by the presence of a methoxy group at carbon-7 of the A ring, and their duration of actions were prolonged by 3,4-dihydro derivatives. When induced, tremors/convulsions correlated with levels of beta-carbolines in the brain. The smaller ED50 values of beta-carbolines that cause tremors/convulsions showed lower levels of beta-carbolines in brain tissue.

Animals↗

Synthetic routes to 4-amino-3-carboxy-beta-carboline derivatives: incidental formation of novel furo[3,4-c]-beta-carbolin-2-ones displaying high affinities for the benzodiazepine receptor.

The synthesis of the first 4-amino-3-carboxy-beta-carboline derivative (35) is described. This synthesis is based on ozonolysis of the 4-vinyl-beta-carboline-3-carboxamide 17 to give the 4-aldehyde 20 and potassium permanganate oxidation of the latter to the 4-carboxylic acid 34 followed by a DPPA-promoted Curtius rearrangement. During the course of these transformations, a number of furo[3,4-c]-beta-carbolin-2-ones, differing in substituents at the C-10 position, were formed. While these beta-carboline lactones (15,25,26,33) generally displayed good affinities for the central type benzodiazepine receptor in vitro (IC50's in the 10-50 nM range), one compound, 29, demonstrated an exceptionally high binding affinity (IC50 = 0.2 nM). Compound 29 was shown in electrophysiological and behavioral studies to act as a benzodiazepine receptor antagonist. The unusually high binding affinity of compound 29 corroborates the hypothesis that the benzodiazepine receptor preferentially recognizes the C-3 carbonyl function of 3-carboxy-beta-carbolines in an s-cis conformation (i.e., the carbonyl oxygen on the same side as the pyridinyl nitrogen).

Animals↗

Dopamine uptake inhibitory capacities of beta-carboline and 3,4-dihydro-beta-carboline analogs of N-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) oxidation products.

Potentially endogenous beta-carboline and 3,4-dihydro-beta-carboline alkaloidal compounds were compared, generally as 2-methylated (quaternary) and normethylated pairs, to the neurotoxin, 1-methyl-4-phenyl-dihydropyridinium ion (MPP+), with respect to inhibition of [3H]dopamine uptake into rat striatal synaptosomal preparations. Although less potent than MPP+, several compounds displayed IC50 values for inhibition in the moderate range (12-24 microM). Notably, quaternization generally did not improve inhibitory potency, and the 3,4-dihydro-compounds often were more effective inhibitors than their heteroaromatic analogs. The partially competitive nature of inhibition by one of the more effective pairs, 2-methyl-harmine and harmine, was consistent with uptake of the beta-carbolines by the synaptosomal dopamine uptake system, as was the fact that the accumulation of 2-[14C]methyl-harmine was significantly reduced by low Na+ media and by nomifensine, a potent inhibitor of the dopamine transporter. When viewed with reports that certain 2-methyl-beta-carbolines show MPP+-like toxicity in vitro and in vivo, these studies support the proposal that a mammalian beta-carbolinium compound may be taken up by nigrostriatal neurons and provoke the neuronal degeneration underlying Parkinson's disease.

1-Methyl-4-phenylpyridinium↗

Methyl-beta-carboline-induced convulsions are antagonized by Ro 15-1788 and by propyl-beta-carboline.

Injected i.v. into baboons, Ro 15-1788 (a benzodiazepine antagonist) and propyl-beta-carboline-3-carboxylate did not modify either the behavior or the electroencephalogram at doses up to 2 mg/kg. Methyl-beta-carboline-3-carboxylate is a potent convulsant at doses of 20 micrograms/kg in photosensitive baboons and 100 micrograms/kg in non-photosensitive baboons. These convulsive doses of methyl-beta-carboline-3-carboxylate are effectively antagonized by 0.5 mg/kg of Ro 15-1788 and also by 2 mg/kg of propyl-beta-carboline-3-carboxylate.

Animals↗

Detection of carcinogenic amino-alpha-carbolines and amino-gamma-carbolines in diesel-exhaust particles.

Diesel-exhaust particles are known to contain mutagenic and carcinogenic chemicals. The aim of this study was to determine whether carcinogenic amino-alpha-carbolines and amino-gamma-carbolines are present in diesel-exhaust particles. These carcinogens which were originally isolated from pyrolysates of proteins and amino acids have been detected in diesel-exhaust particles obtained from two test vehicles as well as in standard materials of automobile-exhaust particles obtained from National Institute for Environmental studies. The levels of these carcinogens were far less than those of polycyclic aromatic hydrocarbons such as benzo[a]pyrene. However, the presence of these amino-alpha-carbolines and amino-gamma-carbolines in diesel-exhaust particles suggests that these compounds are environmental pollutants and also that diesel-exhaust is one of the sources of these carcinogens in the outdoor environment.

Journal Article↗

Beta-carbolines as benzodiazepine receptor ligands II: Synthesis and benzodiazepine receptor affinity of beta-carboline-3-carboxylic acid amides.

Numerous beta-carboline-3-carboxamides were synthesized by amidation of beta-carboline-3-carboxylic acid, with various amino acids and amino acid esters serving as amine components, and tested in respect to their affinity for the benzodiazepine receptor in mouse brain membranes. The title compounds have affinities in the low micromolar range. The results are discussed with respect to their relevance for a possible beta-carboline structure containing the endogenous ligand of the benzodiazepine receptor.

Animals↗

Quantitation of urinary 1,2,3,4-tetrahydro-beta-carboline and 1-methyl-1,2,3,4-tetrahydro-beta-carboline by high-performance liquid chromatography.

A high-performance liquid chromatographic method was developed to quantify 1,2,3,4-tetrahydro-beta-carboline (TBC) and 1-methyl-1,2,3,4-tetrahydro-beta-carboline (MTBC) in human urine. Urine samples with added internal standard were subjected to a reaction with fluorescamine and solvent extractions to remove the precursor tryptamine, which readily condenses with aldehydes in samples and reagents. Such a pretreatment completely suppressed the artifactual formation of TBC and MTBC during analytical procedures. The purified original tetrahydro-beta-carbolines and the internal standard were separated by reversed-phase ion-pair chromatography with fluorescent detection. Their simultaneous separation was automatically completed in a short time (< 12 min). Both TBC and MTBC were quantified at ng/mL concentrations. The quantitative results revealed a wide variation in urinary levels of TBC and MTBC, possibly indicating that their considerable amounts excreted in the urine originate from dietary sources.

Adolescent↗