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Biomedical subjects

J J Fox

Publications and source records attributed to J J Fox.

At least 73 records · Page 4Linked to original sources

2'-fluoro-5-iodo-aracytosine, a potent and selective anti-herpesvirus agent.

A newly synthesized pyrimidine analog, 2'-fluoro-5-iodo-aracytosine (FIAC), suppressed by 90% the replication of various strains of herpes simplex virus types 1 and 2 at concentrations of 0.0025 to 0.0126 microM. Cytotoxicity was minimal, as determined by trypan blue dye exclusion with norman Vero, WI-38, and NC-37 cell proliferation; the 50% inhibitory dose was 4 to 10 microM in a 4-day assay. When compared with other antiviral drugs, FIAC was active at much lower concentrations than arabinosylcytosine, iododeoxyuridine, and arabinosyladenine. It was slightly more active against herpes simplex virus type 1 than acycloquanosine and slightly more toxic to normal cells. FIAC was about 8,000 times more active against the replication of wild-type herpes simplex virus type 1 than against a mutant strain lacking the expression of virus-specified thymidine kinase. Since FIAC appears to be preferentially phosphorylated by the viral enzyme, this is probably responsible, at least in part, for the selectivity of its antiviral actions. Although FIAC appears to be an arabinosylcytosine analog, its antiviral activity was not reversed by deoxycytidine. The minimal cytotoxicity exhibited by FIAC for normal cells, however, was reversed by equimolar concentrations of deoxycytidine. Thymidine, which reversed the antiviral activity, was effective only when used in great excess.

Antiviral Agents↗

Solitary toy play and time out: a family treatment package for children with aggressive and oppositional behavior.

The behavior of four boys, 5 to 8 years of age, who were referred for a number of oppositional, rule violating, and aggressive behaviors, was assessed by direct observation and parent reports. Following baseline measurement, several interventions were successively applied to each child's behavior. Use of a social play contract to reduce problem behaviors by teaching appropriate social behaviors resulted either in no improvement or in worsening of the problem behaviors in observations made when the contract was not in effect. Changing the contract behavior to solitary toy play resulted in reduced oppositional behavior during the observation sessions, fewer reports from the parents of low-rate problem behaviors, and improvements in the parents' attitudes toward the children. However, these changes during the observation sessions were short-lived, because the data on these measures began to show a reversal during later sessions. Inclusion of a time-out contingency with the solitary play contract recovered the earlier improvements in the children's behavior during observation sessions and the parents' reports. These results gave support to the view that for children whose behavior is severely oppositional and aggressive, a treatment approach emphasizing productive, solitary behaviors may be superior to one stressing appropriate social interaction. However, a combined strategy of reinforcement for solitary play and punishment for problem behaviors appears necessary to ensure more durable treatment effects.

Aggression↗

Nucleosides. 110. Synthesis and antiherpes virus activity of some 2'-fluoro-2'-deoxyarabinofuranosylpyrimidine nucleosides.

A series of 5-substituted 1-(2-deoxy-2-fluoro-beta-D-arabinofuranosyl)cytosines 7a-d and their corresponding uracils 9a-d,f were prepared by condensation of 3-O-acetyl-5-O-benzoyl-2-deoxy-2-fluoro-D-arabinosyl bromide (5) with appropriately trimethylsilylated pyrimidines followed by saponification of the protected nucleosides 6 or 8. 1-(2-Deoxy-2-fluoro-beta-D-arabinofuranosyl)-5-iodocytosine (7e) was obtained by iodination of 7a. Iodination of 8a followed by removal of the protecting acyl-protecting groups afforded the 5-iodo nucleoside 9e. Several of these 2'-fluoro-substituted nucleosides completely obviated replication of herpes simplex virus type 1 (HSV-1) in monolayers of Vero cells at concentrations of 10-100 microgram/mL. The 5-iodocytosine analogue 7e was the most effective, showing 99.5% suppression of viral replication even at concentrations of 0.1 microgram/mL. The cytotoxicity of 7e to L5178Y or P815 cells in culture was minimal. A comparison of the efficacy of 7e against HSV-1 with other known nucleoside antiviral agents indicates that further in vitro and in vivo evaluation of 7e is warranted.

Antiviral Agents↗

Metabolism and effects of 5-(beta-D-ribofuranosyl)isocytosine in P815 cells.

5-(beta-D-Ribofuranosyl)isocytosine (psi l Cyd), a C-nucleoside, has been shown to be active against P815 leukemia in mice. In P815 cells treated with [2-14C]psi l Cyd, we have detected radioactivity in nucleotide fractions and in RNA and DNA. Degradation to nucleosides of the labeled triphosphate nucleotide fraction and of RNA showed that the radioactivity present was chromatographically identical to psi l Cyd. Half-saturation concentrations for the incorporation of [2-14C]psi l Cyd into the triphosphate nucleotide fraction and into RNA and DNA were 370, 280, and 94 microgram/ml, respectively, which were greater than 100-fold higher than those for tritiated cytidine. The incorporation of psi l Cyd was competitively inhibited by cytidine. Phosphorylation and incorporation of psi l Cyd into nucleic acids of P815 cells and of a P815 subline resistant to 1-beta-D-arabinofuranosylcytosine are about 2- to 20-fold higher than in P815 sublines resistant to psi l Cyd or to both 5-azacytidine and 1-beta-D-arabinofuranosylcytosine. These data suggest that the phosphorylation of psi l Cyd and possibly its incorporation into nucleic acids are essential for therapeutic activity in P815 leukemias. In vitro metabolic studies also suggest that psi l Cyd and 5-azacytidine are cross-resistant and that P815 cells resistant to psi l Cyd are collaterally sensitive to 1-beta-D-arabinofuranosylcytosine. These predictions were confirmed by therapeutic experiments carried out in mice bearing P815 leukemias.

Animals↗

Nucleosides. 102. Synthesis of some 3'-deoxy-3'-substituted arabinofuranosylpyrimidine nucleosides.

The synthesis of some 3'-deoxy-3'-substituted arabinofuranosylcytosine (4a-d) and uracil (7a-d, 8a-d, X =Br, I, N3, SCN) nucleosides was accomplished by treatment of the requisite 2',3'-anhydrolyxofuranosylpyrimidine nucleoside (5,6a,b) with the appropriate ammonium salt in refluxing ethanol. Cleavage of the oxirane ring provided the desired 3'-deoxy-3'-substituted pyrimidine nucleosides (4a-d, 7a-d, and 8a-d). In vitro screening of compounds 4a-d, and 7a-d, with L5178Y cells in culture showed no significant inhibitory properties.

Cells, Cultured↗

Nucleosides. CVI. Syntheses of 1-N-methyl-5-(beta-D-ribofuranosyl)uracil (1-N-methyl-phi-uridine) and its identity with a metabolite elaborated by Streptomyces platensis var. clarensis.

Very recently, 1-N-methyl-psi-uridine was isolated from the culture filtrate of Streptomyces platensis var. clarensis along with an antibacterial and antiviral antibiotic, U-44590. We achieved chemical syntheses of 1-N-methyl-psi-uridine by selective methylation of psi-uridine in two different routes and established the identity of the synthetic nucleoside with the natural product.

Chemical Phenomena↗

Antileukemic effects of pseudoisocytidine, a new synthetic pyrimidine C-nucleoside.

Pseudoisocytidine, a new synthetic pyrimidine C-nucleoside, which might be considered a more stable analog of 5-azacytidine, is active in vitro and in vivo, i.p. and p.o., against various 1-beta-D-arabinofuranosylcytosine-resistant lines of mouse leukemia. This antileukemic activity is blocked by cytidine but not by deoxycytidine or thymidine.

Animals↗