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[Antiviral activity of experimental combination of 5-iodo-2-deoxyuridine with 6-azauridine and its effectiveness in the treatment of herpetic infection with lesions of the skin and mucous membranes].

The use of the combination of 5-iodo-2-dioxyuridine (IUDR) and 6-azauridine drugs differing in their mechanisms of action in an experimental herpetic infection demonstrated its definite antiviral activity, not only not inferior to the effect of each of the drugs alone, but also remaining sufficiently high when the concentration of IUDR was decreased 2-fold. In clinical trials in relapsing genital herpes all the drugs under study showed statistically significant therapeutic activity. The combined use of the drugs exerted a certain synergistic effect.

Adult↗

Effects of D-glucosamine and 6-azauridine on nucleotide contents, 5-fluorouridine uptake, and cytotoxicity in TA3 mammary tumor cells.

In TA3 mammary carcinoma cells in suspension culture, D-glucosamine X HCl (GlcN) induced a diversion of uridylate from UTP into UDP-N-acetylhexosamines, reducing the intracellular pool of UTP and eliciting an increased rate of de novo uridylate synthesis. This rise in de novo synthesis was completely suppressed by addition of 6-azauridine (6-AzaUrd) to the cell suspension in vitro or in the solid TA3 mammary tumor in NMRI mice in vivo. A synergistic depletion of UTP pools to less than 6% of the UTP in controls was observed in TA3 cell suspensions exposed to GlcN and 6-AzaUrd. In solid TA3 tumors in vivo, UTP was reduced by this combination to 19% of the control value. A high sensitivity of the solid tumor to inhibition of pyrimidine synthesis de novo was indicated by the reduction of the UTP content after administration of 6-AzaUrd alone. UTP deficiency in TA3 tumor cells was accompanied by CTP deficiency. In addition, 6-AzaUrd caused a lowering of GTP in the neoplastic tissue. Host liver was resistant to 6-AzaUrd but responded to treatment with GlcN with a decrease in UTP to 67%. Uridine-cytidine kinase was less inhibited in the presence of lowered UTP and CTP, which are potent feedback inhibitors of the enzyme, and enabled an enhanced formation of phosphorylated derivatives of 5-fluorouridine (FUrd). Aside from the formation of 5-fluoro-UTP, we have identified 5-fluoro-UDP-N-acetylhexosamines (FUDPHexNAc), which accumulated when FUrd and GlcN were sequentially administered. Treatment of TA3 cells with FUrd after a pretreatment with 6-AzaUrd and GlcN resulted in a 2.5-fold increase in [14C]FUrd uptake and a duplication of 5-fluorouridylate incorporation into the RNA. The proportion of FUDPHexNAc increased to 58% of the phosphorylated FUrd metabolites, as compared to 6% in TA3 cells exposed exclusively to FUrd. In vivo chemotherapy of mice bearing TA3 ascites tumors was most effective with respect to tumor growth inhibition and animal survival when GlcN and FUrd were combined.

Adenosine Triphosphate↗

Changes in amino acid metabolism caused by 6-azauridine triacetate: relevance to cancer treatment.

6-Azauridine triacetate (6-AzUrd-TA) administration causes changes in amino acid metabolism both in experimental animals and in man. This effect is dose-related. Amino acid changes caused by 6-AzUrd-TA resemble those in inborn homocystinuria, beta-alaninemia, and hyperhistidinemia. Inhibition of certain enzymes using pyridoxal phosphate as a coenzyme appears to be the common denominator for these changes. There is supportive evidence suggesting that homocystinemia and thrombotic episodes, both caused by 6-AzUrd-TA, are related. These results also reveal that anticancer drugs other than amino acid analogs and amino acid-depleting enzymes may cause significant changes in amino acid metabolism. Their detection and correlation with the therapeutic or adverse effects can be used as an alternative method for studying the relevance of amino acid changes to the treatment of cancer.

Amino Acids↗

Inhibition of Newcastle disease virus replication by 6-azauridine. I. Inefficacy of purified uridine kinase, effect of adenosine-5'-triphosphate.

As distinct from cell-free extracts prepared from tumour cells, partially purified uridine kinase prepared from the same cells was not effective in 6-azauridine (AzUrd) inhibition of Newcastle disease virus (NDV) replication. This showed that uridine kinase was not the effective component of cell-free extracts. Adenosine-5'-triphosphate (ATP) was found to exert a synergic effect in combination with AzUrd in the inhibition of NDV replication.

Adenosine Triphosphate↗

Enhancement of animal viruses growth on RK13 cells pretreated with 6-azauridine.

In these experiments a technique for enhancing the virus replication in tissue culture (RK13 cells) has been used. The method consisted in growing the cells in presence of mug 0.4-0.8 of 6-Azauridine/ml of cellular suspension until the monolayers were formed. This pretreatment enhances the replication of several animal viruses with increased infectious titers (vesicular stomatitis, equine arteritis, equine rhinopneumonitis, Aujeszky disease and myxomatosis virus) and with increased yield of total virus in the culture (myxomatosis virus). In other experiment the 6-Azauridine pretreatment of the cells has shown to render the cells more susceptible to interferon preparation action with subsequent high rate of vesicular stomatitis virus plaques reduction.

Animals↗

Growth inhibition of tobacco tissue cultures with 6-azauracil, 6-azauridine and maleic hydrazide.

Tissue cultures of Nicotiana tabacum, Nicotiana suaveolens and Nicotiana suaveolens x Nicotiana langsdorffii were cultured in the presence of the growth inhibitors maleic hydrazide and 6-azauracil as well as 6-azauridine. Inhibition of growth was complete at 10(-4) molar concentrations in all 3 genotypes of cells. The inhibition due to 6-azauracil could be completely relieved with uridine and partially relieved with uracil. The effect with maleic hydrazide was irreversible, a fact which indicates a different mechanism or level of inhibition. This study supports the concept that derivatives of 6-azauracil inhibit the synthesis of uridine derivatives required for ribose nucleic acid synthesis and growth.

Journal Article↗

Morphogenetic effects of 6-azauracil and 6-azauridine.

When 6-azauracil and 6-azauridine are fed to larvae of the tu(w) rc strain of Drosophila melano-gaster which has the normal wing shape, adults hatch with shortened, obliquely truncated wings. This wing shape resembles that of the mutant dumpy. On the other hand, administration of these drugs to the mutant dumpy strain increases wing length, and flies with normal wings are obtained.

Animals↗