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Biomedical subjects

N Stebbing

Publications and source records attributed to N Stebbing.

At least 55 records · Page 3Linked to original sources

Induction and augmentation of mitogen-induced immune interferon production in human peripheral blood lymphocytes by N alpha-desacetylthymosin alpha 1.

Treatment of human peripheral blood lymphocytes with cloned N alpha-desacetylthymosin alpha 1 induced interferon production. The kinetics is similar to that of mitogen-induced interferon induction. N alpha-desacetylthymosin alpha 1, in combination with mitogen, augments the amount of interferon produced. This interferon is immune interferon (IFN-gamma) as determined by sensitivity to pH 2, lack of neutralization by antibodies to IFN-alpha or IFN-beta and absence of activity of MDBK cells. Although the mechanism of induction of IFN-gamma by N alpha-desacetylthymosin alpha 1 is unclear, this compound is not mitogenic at concentrations causing IFN-gamma production. These results indicate that thymic factors may also participate in the regulation of IFN-gamma-production.

Cells, Cultured↗

Comparisons of dose-response data for various standard and recombinant DNA-derived human interferons.

Dose responses of the NIH standard IFN-alpha and IFN-beta preparations were compared with recombinant DNA-derived IFN-beta (IFN-beta 1) and various IFN-alpha subtypes, molecular hybrids and mixtures. Cytopathic effect assays were employed using vesicular stomatitis virus on human HeLa and bovine MDBK cells. A natural peripheral blood lymphocyte and recombinant DNA-derived IFN-gamma were also included in the comparisons. Two-tailed t-tests between slopes showed no significant differences in any pair-wise comparison using crude or highly purified preparations.

Animals↗

The inadequacy of rectal temperature measurements for assessing the effects of antiviral drugs on influenza virus infection of ferrets.

From 6 experiments in which 99 ferrets were infected with influenza virus A/Finland/74 and treated with various agents which suppress virus shedding and other parameters of infection, we assessed whether rectal temperature correlated with nasal virus shedding. A number of temperature and virus-shedding related parameters were determined for each experiment but statistical analysis showed little correlation between them, although an elevated temperature occurred at some time after infection. The pooled data also suggested that temperature and virus shedding parameters are not clearly related. The analysis indicates that intermittent rectal temperature measurements are unsatisfactory for determining the efficacy of anti-influenza agents in ferrets.

Animals↗

Antiviral and side effects of interferons produced by recombinant DNA techniques as tested in rhesus monkeys.

Human interferon type alpha 2 (HuIFN-alpha 2) produced by Escherichia coli was found to be as active as natural leukocyte interferon in protecting rhesus monkeys against intradermal vaccinia virus infection. HuIFN-beta 1 produced in E. coli had similar but less pronounced activity. HuIFN-alpha 2 induced fever but not leukopenia, while HuIFN-beta 1 had opposite effects. Concurrent treatment with acetosalicylic acid and prednisolone/azothioprine combinations did not interfere with the efficacy of the human interferons.

Animals↗

Antiviral activity of bacteria-derived human alpha interferons against encephalomyocarditis virus infection of mice.

Bacteria-derived human leukocyte interferon (IFN) subtypes, IFN-alpha A, -alpha B, and -alpha D, and two hybrid IFNs, IFN-alpha AD and -alpha DA, were examined for both in vitro and in vivo antiviral activity. Two of these materials in highly purified form (IFN-alpha D and -alpha D) protect mice against lethal doses of encephalomyocarditis virus infection. A single dose of 1 microgram of protein of IFN-alpha D 3 h before infection conferred protection in both BDF1 and CD-1 mice against encephalomyocarditis virus infection, and multiple treatments with IFN-alpha D or IFN-alpha AD extend the mean survival time of infected mice. On a weight basis, IFN-alpha AD was approximately 100-fold more effective than IFN-alpha D. There is a direct correlation between the antiviral activity of the various human IFN species in L-929 cells and in mice for both single and multiple treatments before infection, but none of the cloned human IFN subtypes were effective when administered 24 h after infection. Mixtures of the two parental materials, IFN-alpha A and -alpha D, were not as protective as the hybrid molecule IFN-alpha AD, suggesting that IFNs with unique and altered species specificity can be produced by recombinant DNA methods.

Animals↗

Stimulation of natural killer cell activity and inhibition of proliferation of various leukemic cells by purified human leukocyte interferon subtypes.

One of several human leukocyte interferon subtypes A (LeIF-A), obtained in purified form from a gene cloned in Escherichia coli, stimulated human peripheral blood natural killer cell activity, whereas another human leukocyte interferon subtype D (LeIF-D) had no effect with the use of K562 as target cells. With Daudi as target cells, both LeIF-A and LeIF-D stimulated natural killer cell activity. A hybrid human leukocyte interferon, NH2-terminal 61 amino acids and COOH-terminal 104 residues of LeIF-A and LeIF-D, respectively (LeIF-AD) showed greater stimulation than did LeIF-A, but the stimulation did not exceed that of natural buffy coat interferon. A mixture of equal antiviral units of LeIF-A and LeIF-D was no more effective than was LeIF-A alone. The cloned interferon subtypes showed differential effects on the proliferation of three human leukemic cell lines: Daudi (B-cell lymphoblastoid leukemia); BALL 1 (B-cell acute lymphoblastic leukemia); CCRF-HSB-2 (T-cell acute lymphoblastoid leukemia). Growth of Daudi cells was generally most sensitive to all the interferons tested, LeIF-A, -D, -AD, and a buffy coat preparation; no viable cells remained after 120-hr exposure to 1000-unit/ml doses of the interferons. BALL 1 was relatively resistant to the interferon subtypes tested including LeIF-AD, but this cell lines was very sensitive to a preparation of natural buffy coat interferon. CCRF-HSB-2 showed some sensitivity to all the interferons with greatest sensitivity to LeIF-A (10% of the viable cells were detected after 1000 units/ml exposure for 120 hr). In contrast to the leukemic cell lines tested, human amnion cells (WISH) and the human erythroid leukemia, K562, were resistant to the antiproliferative activity of the interferons.

Cell Division↗

Antiviral activities of hybrids of two major human leukocyte interferons.

Four hybrid human leukocyte interferon (LeIF or IFN-alpha) genes have been constructed by in vitro recombination of LeIF-A (IFN-alpha 2) and LeIF-D (IFN-alpha 1) genes at common restriction endonuclease sites located within their coding regions. These hybrid genes have been expressed in E. coli under trp promoter control. The interferons produced [LeIF-AD (BglII), -AD (PvuII), -DA (BglII), -DA (PvuII)] have antiviral properties distinct from the parental molecules LeIF-A and -D, varying considerably in their abilities to inhibit plaque formation by different viruses in a range of mammalian cells. All six of the cloned LeIFs exhibit the heat stability, pH 2 stability and antigenic specificity of natural leukocyte interferons.

Animals↗

Studies on the mode of action of single-stranded polynucleotides which are antiviral against encephalomyocarditis virus infection of mice.

Poly(dI) and poly(dC) administered separately or sequentially show no antiviral effects against EMC virus infection of mice, whereas poly(rI) and poly(rC) are antiviral in such treatment regimens without evidence of interferon induction. The antiviral effects of poly(rI) and poly(rC) appear to depend on single-strandedness because their antiviral effects are decreased by annealing to poly(dC) and poly(dI) respectively. This decrease in antiviral effect would not seem to be due to an adverse effect of polydeoxyribonucleotides on EMC virus infection because the polydeoxyribonucleotides have no effect on the antiviral activity of another single-stranded RNA, E. coli tRNA.

Animals↗

Antiviral effects of single-stranded polynucleotide inhibitors of the influenza virion-associated transcriptase against influenza virus infection of hamsters and ferrets.

Administration of a single-stranded polynucleotide copolymer containing 9% cytidine residues and 91% 4-thiouridine residues [poly(C,S4U10)], a known potent inhibitor of the virion transcriptase of influenza viruses, suppressed the amount of virus recoverable from the nasal washes of influenza virus-infected hamsters and ferrets. The incidence of sneezing and nasal discharge in infected ferrets was also reduced. In hamsters, poly(C,S4U10) was more effective than amantadine-HCl or Virazole. Polyinosinic acid in combination with poly-5-hydroxy cytidylic acid also had anti-influenza effects. Poly(C,S4U10) annealed to polyadenylic acid was not effective, nor was the double-stranded polymer (polyinosinic acid) . (polycytidylic acid) even when complexed with carboxymethylcellulose and polylysine. No toxic effects of poly(C,S4U10) were apparent in the treated hamsters and ferrets, and high doses (greater than or equal to 2.86 g/kg) administered intraperitoneally to mice produced no adverse effects.

Animals↗

A putative interferon induced in hamsters by poly(I) . poly(C).

Encephalomyocarditis (EMC) virus causes lethal infection of hamsters against which poly(I) . poly(C) causes dose-dependent protection. In contrast, no antiviral effects occur with poly(I) . poly(C) against influenza virus infection of hamsters. Serum from poly(I) . poly(C) treated hamsters protects other hamsters against EMC virus infection with maximum protection with serum removed 3h after poly(I) . poly(C) treatment of the donor hamsters. In such assays the factor was found to be inactivated by trypsin and pH 2 and 56 degrees C for 1 hr. The serum factor did not confer protection against EMC virus infection of L-929, BHK, Hak or primary hamster embryo cells. The amount of poly(I) . poly(C) carried over into serum samples of poly(I) . poly(C) treated hamsters was insufficient to account for the antiviral effects. The antiviral serum factor is presumed to be a form of interferon despite the fact that it does not titrate in cell cultures and has a novel set of properties from those which describe known interferons.

Animals↗

Comparison of the antiviral activities of various cloned human interferon-alpha subtypes in mammalian cell cultures.

Five human interferon-alpha (leukocyte) subtypes derived from genes cloned in Escherichia coli have been compared for their ability to induce antiviral activity against vesicular stomatitis virus infection of various mammalian cell cultures. These interferons, designated LeIF-A (IFN-alpha 2), -B, -C, -D (IFN-alpha 1) and LeIF-F, show different relative activities when assayed on human, bovine, hamster, mouse, rabbit and monkey cell lines. As with a natural human buffy-coat interferon-alpha preparation, three subtypes (LeIF-B, -C and -D) showed considerable activity on RK-13 rabbit cells, but two (LeIF-D and -F) also showed some activity on mouse L-929 cells. Of the five interferon subtypes examined, LeIF-F demonstrated the highest degree of species specificity.

Animals↗

Human leukocyte interferon produced by E. coli is biologically active.

A human leukocyte interferon cDNA was enzymatically synthesized, inserted into the vector pBR322, and cloned in Escherichia coli. The DNA sequence codes for a 23-amino acid signal peptide followed by an interferon polypeptide of 165 amino acids. An expression plasmid was constructed which permits the synthesis in E. coli of 2.5 x 10(8) units of interferon per litre of culture. This LeIF protected squirrel monkeys from lethal encephalomyocarditis virus infection.

Amino Acid Sequence↗

Anti-viral effects of single-stranded polynucleotides against avirulent Semliki Forest virus infection of mice and avirulent infection of rats with encephalomyocarditis virus.

Single-stranded polynucleotide preparations, which neither induce detectable interferon nor affect immune responses, suppress development of antiviral antibodies in mice infected with an avirulent strain of SFV. On a weight basis the antiviral activity of a mixture of poly(I) and poly(ho5C)-copolymer is greater than that of tRNA and similar antiviral effects are observed against a related virulent strain of SFV. EMC virus causes and avirulent infection of rats and development of EMC virus antibodies (routinely determined by assaying the protective effect of rat serum against EMC virus infection of mice) is suppressed when the rats are treated with tRNA or the mixture of poly(I) and poly(ho5C)-copolymer. This suppression of antibodies to EMC virus appears to reflect reduction of virus replication. Treatments of 6 mg/rat i.p. or i.v. 6 hours before infection confer essentially the same antiviral effect as 3 times these polynucleotide doses administered during 3 days immediately post infection. These results with avirulent infections indicate that the previously reported antiviral effects of the single-stranded polynucleotides are not simply due to modifications of the tissue pathology which leads to death in the case of virulent virus infections.

Animals↗

The antiviral activity of ribosomal polynucleotides against encephalomyocarditis virus infection of mice.

Intraperitoneal administration of ribosomal RNA (rRNA) was found to protect mice against subsequent lethal infection by encephalomyocarditis (EMC) virus without induction of detectable amounts of circulating interferon. The nature of this effect was examined in terms of the types of natural polyribonucleotides which could afford such protection. rRNA prepared from E. coli was slightly more effective than chicken liver rRNA which was, in turn, more effective than yeast rRNA. 5S ribosomal RNA was not effective, whereas the slightly smaller 4S transfer RNA was as good as E. coli rRNA, suggesting that molecular size is not the sole criterion for the protective effect. The separated 16S and 23S E. coli rRNAs where each as effective as the unfractionated RNA. Anti-viral activity was lost after complete hydrolysis with alkali and nucleoside monophosphates were also inactive. Digestion of rRNA with pancreatic ribonuclease greatly decreased its antiviral activity whereas digestion with T1 ribonuclease had no effect indicating that fairly short oligonucleotides, but not of random nucleotide sequence, are active components in the protection of mice against infection by EMC virus. In vitro, no antiviral effect against EMC virus infection was observed in treatment of L cells under various conditions.

Animals↗