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Ligational behavior of two biologically active N-S donors toward oxovanadium(IV) ion and potentiation of their antibacterial activities by chelation to metal ions. Part III.

Chelating behavior of two biologically active ligands, pyridine-2-carboxaldehyde thiosemicarbazone (PT) and pyridine-2-carboxaldehyde-(4-phenyl)thiosemicarbazone (PPT), toward oxovanadium(IV) ion has been studied. The ligands are found to react in the thioketo form (pH 2-4), yielding the complexes [VO(PT)X2](X = Cl-, Br-, ClO4-), [VO(PT)(SO4)H2O], [VO(PPT)2X]X (X = Cl-, Br-, ClO4-) and [VO(PPT)2SO4]. Reactions of [VO(PT)(SO4)H2O] and [VO(PPT)2X]X (X = Cl-, Br-, ClO4-) with a monodenate Lewis base (B) like pyridine lead to the formation of [VO(PT)(SO4)Py]H2O and [VO(PPT)2py]X2 respectively. Bonding sites of the donor molecules around the oxometal cation have been located. Nature of the EPR spectra and magnetic moment values point to the monomeric character of the complexes and suggest a distorted octahedral donor environment for the oxovanadium(IV) ion. Status of the metal-oxygen multiple bond in all the complexes has been computed in terms of the V-O(1) stretching force constant. The ligands themselves and most of their oxovanadium(IV) complexes are found to exert powerful in vitro antibacterial activities towards E. coli.

Anions↗

Quenching of tyrosine radicals of M2 subunit from ribonucleotide reductase in tumor cells by different antitumor agents: an EPR study.

The inhibition of ribonucleotide reductase (RR) of intact Ehrlich ascites tumor cells by different antitumor agents was compared using EPR spectroscopy. The inactivation of M2 subunit was measured via quenching of the functionally essential tyrosine radical. Inhibitors of different classes, for example, hydroxyurea, pyrogallol, and thiosemicarbazones, differ in their efficiency by three orders of magnitude. Most effective inhibition was found for isoquinoline-1-aldehyde-thiosemicarbazone (IQ-1) with an IC50 value of 0.18 microM. Inhibition of RR inside tumor cells is comparable with that reported for isolated enzymes.

Animals↗

Syntheses and evaluation of antioxidant activity of sydnonyl substituted thiazolidinone and thiazoline derivatives.

3-Aryl-4-formylsydnone 4'-phenylthiosemicarbazones (3a-d) and 3-aryl-4-formylsydnone thiosemicarbazones (3e-h), which are precursors of 3-aryl-4-heterocyclic sydnones, are prepared by the condensation of 3-aryl-4-formylsydnones (1a-d) with 4'-phenylthiosemicarbazide (2a) and thiosemicarbazide (2b), respectively. The thiosemicarbazones 3 reacted with cyclic reagents such as ethyl chloroacetate (4a), ethyl 2-chloroacetoacetate (4b) and 2-bromoacetophenone (4c) to produce heterocyclic substituted sydnone derivatives 5-7 that possess 4-oxo-thiazolidine and thiazoline groups. The antioxidant activity of synthesized compounds 5a-7h was evaluated. Among these compounds, 4-methyl-2-[(3-arylsydnon-4-yl-methylene)hydrazono]-2,3-dihydro-thiazole-5-carboxylic acid ethyl ester (6e-h) and 4-phenyl-2-[(3-arylsydnon-4-yl-methylene)hydrazono]-2,3-dihydro-thiazoles (7e-h) exhibit the potent DPPH (1,1-diphenyl-2-picrylhydrazyl) radical scavenging activity, comparable to that of vitamin E.

Animals↗

Overexpression of the multidrug resistance genes mdr1, mdr3, and mrp in L1210 leukemia cells resistant to inhibitors of ribonucleotide reductase.

L1210 MQ-580 is a murine leukemia cell line resistant to the cytotoxic activity of the alpha-(N)-heterocyclic carboxaldehyde thiosemicarbazone class of inhibitors of ribonucleotide reductase. The line is cross-resistant to etoposide, daunomycin, and vinblastine. L1210 MQ-580 cells expressed 8-fold resistance to 3-aminopyridine-2-carboxaldehyde thiosemicarbazone (3-AP), a relatively newly developed inhibitor of ribonucleotide reductase. The accumulation of [14C]3-AP by L1210 MQ-580 cells was 5- to 6-fold less than by parental L1210 cells. An increased rate of efflux of 3-AP was responsible for the lower steady-state concentration of 3-AP in resistant cells. In reverse transcription-polymerase chain reaction assays, L1210 MQ-580 cells were found to overexpress the multidrug resistance genes mdr1, mdr3, and mrp, but not the mdr2 gene, compared with parental L1210 cells. Measurement of the steady-state concentration of doxorubicin, a potential substrate for both the mdr and mrp gene products, demonstrated that L1210 MQ-580 cells accumulated 4-fold less anthracycline than parental cells. These findings indicate that drug efflux is a major determinant of the pattern of cross-resistance of L1210 MQ-580 cells. To extrapolate these observations to the human homologues of the mdr1, mdr3, and mrp murine genes, the effects of 3-AP were measured in L1210/VMDRC0.06 and NIH3T3 36-8-32 cells transfected with human MDR1 and MRP cDNAs, respectively. The transfectants were 2- to 3-fold resistant to the cytotoxic effects of 3-AP and accumulated less [14C]3-AP than their parental mock-transfected counterparts. Moreover, the cytotoxic activity of 3-AP was significantly greater in two double mrp gene knockout cell lines than in parental W 9.5 embryonic stem cells. Thus, the results suggest that 3-AP is a substrate for both the P-glycoprotein and MRP and that baseline MRP expression has the capacity to exert a protective role against the toxicity of this agent.

ATP Binding Cassette Transporter, Subfamily B↗

A review of compounds exhibiting anti-orthopoxvirus activity in animal models.

Several animal models using mice (most frequently), rabbits, or monkeys have been used to identify compounds active against orthopoxvirus infections. The treatment of vaccinia virus infections has been well studied in models involving infection of scarified skin or eyes, or resulting from intravenous, intraperitoneal, intracerebral, or intranasal virus inoculation. Cowpox virus has been used in intranasal or aerosol infection studies to evaluate the treatment of lethal respiratory infections. Rabbitpox, monkeypox, and variola viruses have been employed to a lesser extent than the other viruses in chemotherapy experiments. A review of the literature over the past 50 years has identified a number of compounds effective in treating one or more of these infections, which include thiosemicarbazones, nucleoside and nucleotide analogs, interferon, interferon inducers, and other unrelated compounds. Substances that appear to have the greatest potential as anti-orthopoxvirus agents are the acyclic nucleotides, (S)-1-(3-hydroxy-2-phosphonylmethoxypropyl)cytosine (cidofovir, HPMPC) and 1-[((S)-2-hydroxy-2-oxo-1,4,2-dioxaphosphorinan-5-yl)methyl]cytosine (cyclic HPMPC), and the acyclic nucleoside analog, 2-amino-7-[(1,3-dihydroxy-2-propoxy)methyl]purine (S2242). Other classes of compounds that have not been sufficiently studied in lethal infection models and deserve further consideration are thiosemicarbazones related to methisazone, and analogs of adenosine-N(1)-oxide and 1-(benzyloxy)adenosine.

Animals↗

Novel antitrypanosomal agents based on palladium nitrofurylthiosemicarbazone complexes: DNA and redox metabolism as potential therapeutic targets.

In the search for new therapeutic tools against American Trypanosomiasis palladium complexes with bioactive nitrofuran-containing thiosemicarbazones as ligands were obtained. Sixteen novel palladium (II) complexes with the formulas [PdCl2(HL)] and [Pd(L)2] were synthesized, and the crystal structure of [Pd(5-nitrofuryl-3-acroleine thiosemicarbazone)2] x 3DMSO was solved by X-ray diffraction methods. Most complexes showed higher in vitro growth inhibition activity against Trypanosoma cruzi than the standard drug Nifurtimox. In most cases, the activity of the ligand was maintained or even increased as a result of palladium complexation. In addition, the complexes' mode of antitrypanosomal action was investigated. Although the complexes showed strong DNA binding, all data strongly suggest that the main trypanocidal mechanism of action is the production of oxidative stress as a result of their bioreduction and extensive redox cycling. Moreover, the complexes were found to be irreversible inhibitors of trypanothione reductase.

Animals↗

Benzoin 4-ethylthiosemicarbazone.

In the title compound, 2-hydroxy-1,2-diphenylethanone 4-ethylthiosemicarbazone, C17H19N3OS, the thiosemicarbazone moiety is planar and has an E configuration. The planar phenyl rings make dihedral angles of 82.34 (8) and 8.07 (17) degrees with the plane of the thiosemicarbazone moiety. The crystal structure contains two intramolecular (N-H...O and N-H...N) and one intermolecular interaction (O-H...S), as well as two C-H...pi(benzene) interactions. Molecules are stacked in columns running along the a axis. Molecules in each column are connected to each other by means of linear O-H...S hydrogen bonds and C-H...pi interactions. In addition, there are also C-H...pi(benzene) interactions between the columns.

Anti-Infective Agents↗

Strategic design and three-dimensional analysis of antiviral drug combinations.

The development of new drugs effective against human viral diseases has proven to be both difficult and time-consuming. Indeed, there are but 10 drugs licensed for such applications in the United States today. An attractive solution to this problem may be to optimize the efficacy and selectivity of existing antiviral drugs by combining them with agents that strategically block carefully selected metabolic pathways. This approach was used in the rational design of a three-drug combination to increase the apparent potency of acyclovir against herpes simplex virus. Recent advances in analytical techniques have made the evaluation of this complex drug strategy both possible and practical. A modified version of a previously described analytical method was used to identify optimal drug concentrations and to quantitate statistically significant synergy. Concentrations of 0.25 microM 5-fluorodeoxyuridine, 3.6 microM 2-acetylpyridine thiosemicarbazone, and 0.3 microM acyclovir were determined to be optimal in terms of antiviral activity. The volume of synergy produced was nearly 2,000 microM3% at a 95% level of confidence (corresponding to a 186-fold decrease in the apparent 50% inhibitory concentration of acyclovir with the addition of 0.25 microM 5-fluorodeoxyuridine and 3.6 microM 2-acetylpyridine thiosemicarbazone). We anticipate that this strategic approach and the supporting three-dimensional analytical method will prove valuable in designing and understanding multidrug therapies.

Acyclovir↗

Novel di-2-pyridyl-derived iron chelators with marked and selective antitumor activity: in vitro and in vivo assessment.

Aroylhydrazone and thiosemicarbazone iron (Fe) chelators have potent antitumor activity. The aim of the current study was to examine the antitumor effects and mechanisms of action of a novel series of Fe chelators, the di-2-pyridyl thiosemicarbazones. Of 7 new chelators synthesized, 4 showed pronounced antiproliferative effects. The most active chelator was Dp44mT, which had marked and selective antitumor activity-for example, an IC(50) of 0.03 microM in neuroepithelioma cells compared with more than 25 microM in mortal fibroblasts. Indeed, this antiproliferative activity was the greatest yet observed for an Fe chelator. Efficacy was greater than it was for the cytotoxic ligand 311 and comparable to that of the antitumor agent doxorubicin. Strikingly, Dp44mT significantly (P <.01) decreased tumor weight in mice to 47% of the weight in the control after only 5 days, whereas there was no marked change in animal weight or hematologic indices. Terminal deoxyribonucleotidyl transferase (TdT)-mediated dUTP nick end-labeling (TUNEL) staining demonstrated apoptosis in tumors taken from mice treated with Dp44mT. This chelator caused a marked increase of caspase-3 activity in murine Madison-109 (M109) cells. Caspase activation was at least partially mediated by the release of mitochondrial holo-cytochrome c (h-cytc) after incubation with Dp44mT. In conclusion, Dp44mT is a novel, highly effective antitumor agent in vitro and in vivo that induces apoptosis.

Animals↗

Synthesis and antibacterial activity of pyridyl thioureas and arylthiosemicarbazones.

[N-(2-pyridyl)-N'-(4-(un) substituted] thioureas and (substitutedaryl)thiosemicarbazones were synthesised and evaluated for their antibacterial activity. All aryl thiosemicarbazones showed good activity against Aeromonas hydrophilia and Salmonella typhimurium. But none of the pyridyl thioureas showed any prominent activity against tested bacteria.

Anti-Bacterial Agents↗

[Research on substances with antiviral activity. II. Derivatives of N-substituted 2-chloro-3-formylindoles].

Thiosemicarbazones and amidinohydrazones of N-substituted 2-chloroindole-3-aldehydes were synthesized and investigated for antiviral activity against RNA virus (parainfluenza type 3, HA-I/CR-8 stock) and DNA virus (vaccinia virus, HID stock). The thiosemicarbazones of 1-(o,m,p,-chlorobenzoyl)-2-chloroindole-3-aldehydes were more active than methisazone against vaccinia virus.

Amidines↗

Studies on antipeptic ulcer agents: the quantitative structure-activity relationship analysis of heterocyclic aldehyde N4-substituted phenyl (thio) semicarbazones.

Forty-five condensation products of furan-, pyrrole- and N-methyl pyrrole-alpha-carboaldehyde with N4-3- or N4-4-substituted phenyl semicarbazones and thiosemicarbazones were designed to optimize the antiulcer activity of a previously derived lead structure, formula II. Quantitative structure-activity relationships revealed that among the series of semicarbazones, increasing hydrophobicity and the introduction of electron-donating groups into the phenyl ring raise the antiulcer activity. Generally, semicarbazones are more active than the corresponding thiosemicarbazones. The wide gulf between the activity and toxicity of two derivatives (Compounds III and IV) necessitates further investigation of their pharmacological effects.

Anti-Ulcer Agents↗

Specific inhibitors directed at the individual components of ribonucleotide reductase as an approach to combination chemotherapy.

It had been shown previously that the ribonucleotide reductase from mouse tumor consisted of two nonidentical components (Tris and dye fractions, each prepared from the 20 to 40% (NH/)2SO4 protein fraction containing the ribonucleotide reductase activity by blue dextran-Sepharose chromatography). The individual components either separated or present in the intact enzyme can be specifically and independently inhibited by different compounds. The Tris fraction component was inhibited by 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone while the dye fraction component was inactivated by pyridoxal phosphate:BH4- and the dialdehyde derivative of inosine (Inox) and 5'-deoxyinosine prepared by the periodate oxidation of inosine and 5'-deoxyinosine. The intact enzyme could be completely inhibited by any of these compounds. Reductase activity was restored by reconstitution with the exogenous components. The individual components of the reductase in the intact Ehrlich tumor cell could also be specifically inhibited. Activity in the crude cell-free extracts prepared from 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone- or Inox-treated cells was restored by the addition of the appropriate exogenous component. These data suggest that combinations of inhibitors of ribonucleotide reductase which specifically inhibit the components may be useful in the treatment of cancer.

Aldehydes↗

2,2'-Bipyridyl-6-carbothioamide and its ferrous complex: their in vitro antitumoral activity related to the inhibition of ribonucleotide reductase R2 subunit.

2,2'-Bipyridyl-6-carbothioamide (BPYTA), a synthetic compound with antitumoral activity, is characterized by chelating properties because of the N*-N*-S* tridentate ligand system and is therefore comparable to alpha-(N)-heterocyclic carboxaldehyde thiosemicarbazones which are potent inhibitors of ribonucleotide reductase (RR). Electron paramagnetic resonance studies on the small subunit of mouse recombinant RR (R2) demonstrated that BPYTA can destroy the R2 tyrosyl radical only if Fe(II) is present (73% destruction at 50 microM, after 20 min of contact). The R2 inhibition was reversible and time dependent. Studies on tumoral lines confirmed that the main cell target of BPYTA is RR and demonstrated that the iron-complexed form compared to the nonchelated form has some difficulty in crossing the cell membrane. Spectrophotometric and electron paramagnetic resonance studies clearly indicated that BPYTA chelates iron only when this is reduced and that the BPYTA-Fe(II) complex is stable in the presence of oxygen. From reported results we conclude that BPYTA is a powerful RR inhibitor (R2 subunit) which has a different mechanism of action from that of Desferal. It has some properties in common with alpha-(N)-heterocyclic carboxaldehyde thiosemicarbazones, but they are not identical. It would be interesting to do further studies on the BPYTA mechanism of action and evaluate the in vivo antitumoral activity of the preformed complex.

2,2'-Dipyridyl↗

Synthesis of new 2-thiouracil-5-sulfonamide derivatives with biological activity.

2-Thiouracil-5-sulfonylchloride 1 reacted with a series of aromatic and heterocyclic amines to give 2a-j. The same compound 1 was reacted with a series of sulphonamides giving different sulphonamides of type 3a-e. On the other hand compound 1 was allowed to react with p-aminoacetophenone givining compound 4 which in turn was allowed to react with derivatives of alkyl thiosemicarbazides to give thiosemicarbazones of type 5a-e, also compound 4 was monobrominated to give compound 6 which in turn was reacted thiosemicarbazones of some aldehydes to give the corresponding thiazole derivatives 7a-f. In the same time compound 4 was reacted with a series of aromatic and heterocyclic aldehydes givining chalcones 8a-g (Claisen-Schemidt reaction). Also compound 4 was allowed to react with a series of aromatic and heterocyclic aldehydes, ethyl cyano acetate and/or malononitrile, and ammonium acetate giving pyridine derivatives 9a-d and 10a-e respectively. The biological effects of some of the new synthesized compounds was also investigated.

Anti-Bacterial Agents↗

Transition series metals and sulfhydryl reagents induce the synthesis of four proteins in eukaryotic cells.

Several transition series metals (copper, cadmium, zinc and mercury) and the sulfhydryl reagent, sodium arsenite, enhance the synthesis of specific proteins in chick embryo cells and in human foreskin cells in culture. The proteins are visible 1--3 h after exposure to concentrations ranging from 10 microM to 100 microM depending upon which reagent is used. These proteins comigrate on acrylamide gel electropherograms with the proteins induced by two copper-chelating drugs, kethoxal bis(thiosemicarbazone) and disulfiram, and by heat shock. However, these proteins migrate in a significantly different manner than do the canavanine-enhanced proteins. The four proteins induced in chick embryo cells are distinct from one another as determined by partial proteolytic mapping. Simlarly, the three proteins induced in human cells are distinct. However, the 100-kilodalton and the 70-kilodalton proteins from chick and from human cells appear to be related as judged by this mapping procedure. The 70 kilodalton protein enhanced by kethoxal bis(thiosemicarbazone), disulfiram, arsenite and heat shock have a high degree of similarity according to this technique. The arsenite and canavanine-enhanced 100-kilodalton proteins are related as are the arsenite-enhanced 70-kilodalton and the canavanine-enhanced 75-kilodalton proteins. The canavanine-enhanced 30 kilodalton protein resembles the arsenite-enhanced 25-kilodalton protein rather than the 35-kilodalton species. In view of these findings, it appears that a variety of treatments, namely, chelating drugs, transition series metals, sulfhydryl reagents, heat shock, and amino acid analogous can induced similar, if not identical, proteins in eukaryotic cells.

Animals↗

Intracellular glutathione as a determinant of responsiveness to antitumor drugs.

The effect of glutathione depletion on cytotoxicity of the anthracycline daunorubicin, and of a copper:bis-thiosemicarbazone chelate, was examined in the P388 murine leukemia and its anthracycline-resistant subline, P388/ADR. Depletion of intracellular glutathione was accomplished through exposure to buthionine sulfoximine, a specific inhibitor of glutathione synthesis. Cytotoxicity of daunorubicin was not altered by glutathione depletion, while responsiveness to the bis-thiosemicarbazone chelate was thereby enhanced.

Antibiotics, Antineoplastic↗

Synthesis and evaluation for uterotrophic and antiimplantation activities of 2-substituted estradiol derivatives.

Two novel series of 2-substituted estradiol derivatives have been synthesized and evaluated for uterotrophic and antiimplantation activities. Among the compounds tested in the rat, 2-acetylestradiol 17 beta-acetate (1), 2-(3'-dimethylamino-1'-propionyl)estradiol 3,17 beta-diacetate (7), 2-(3'-diethylamino-1'-propionyl)estradiol 3,17 beta-diacetate (8), 2-(3'-piperidino-1'-propionyl)estradiol 3,17 beta-diacetate (9), 1'-(2-estradiol 3,17 beta-diacetate-3'-diethylaminopropionyl thiosemicarbazone (12), and 1'-(2-estradiol 3,17 beta-diacetate)-3'-morpholinopropionyl thiosemicarbazone (14) displayed estrogenic activity. At dosages of 4 microliters/rat/day, none of the tested compounds elicited antiimplantation activity. All compounds shared a similar characteristic: nuclear substitution at the C-2 position of the steroid nucleus, a property previously thought to be markedly inhibitory for estrogenic activity.

Animals↗