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Biomedical subjects

C J Pfau

Publications and source records attributed to C J Pfau.

At least 37 records · Page 2Linked to original sources

Interferon induction by lymphocytic choriomeningitis viruses correlates with maximum virulence.

Lymphocytic choriomeningitis (LCM) viruses isolated from the blood of persistently infected mice, could be clearly divided into two categories by observing the disease patterns they produced after intracerebral (i.c.) injection in a number of adult inbred and outbred mice. One type (aggressive) caused the classic pattern of convulsive death in 100% of the mice 7 to 9 days after infection, while the other (docile) caused a protracted disease with deaths occurring, if at all, 2 to 4 weeks after infection. Interferon could be detected in the serum of adult mice on the 3rd and 4th day after infection with several independently cloned aggressive, but not docile, viruses. The inability of docile virus to induce interferon was not due to poor or delayed virus replication in the brain. The aggressive pattern of disease could be provoked easily in docile virus-infected mice with the interferon inducers poly(rI) . poly(rC), tilorone hydrochloride or Newcastle disease virus. The amount of interferon produced had little effect on the mean day of death. Mice that differed over 10-fold in their serum interferon levels after LCM infection, either by genetic predisposition or by stimulation with increasing amounts of poly(rI) . poly(rC), presented almost identical patterns of mortality.

Animals↗

Determinants of spontaneous recovery and persistance in MDCK cells infected with lymphocytic choriomeningitis virus.

MDCK cells that normally would have been killed by standard lymphocytic choriomeningitis (LCM) virus were saved either by pre- or co-infection with defective interfering (DI) virus. The ability of these spared cells to produce virus-specific antigen (as well as infectious virus) and resist being killed by standard virus challenge was followed for at least 35 days. During this period both types of cultures displayed unique cycling patterns for the above characteristics. The most striking difference was the longevity of the infections. Cultures exposed to DI particles prior to standard virus became persistently infected, while co-infection with both virus types led to spontaneous curing with no trace of the previous infection. The basis for these dissimilar outcomes was traced to a hitherto undetected non-defective LCM virus (called SP) in the DI virus stocks used to preinfect MDCK cells. SP virus was not present in standard virus stocks but arose in long-term persistently infected L cells that had been initially infected with standard virus. Cloned SP virus shared species-specific antigens with standard virus, was resistant to inhibition by DI virus and was capable of turning self-curing cultures into cultures persistently synthesizing both DI and SP virus.

Animals↗

Arenavirus defective interfering particles mask the cell-killing potential of standard virus.

Lymphocytic choriomeningitis virus (LCM) and Pichinde virus grew readily and produced cytopathology in MDCK and PK-15 cells. It is known that in these cell lines, the synthesis or function of defective interfering (DI) virus particles is restricted. Survival curves of single MDCK cells infected with low multiplicities of LCM showed one-particle-to-kill kinetics. At high multiplicities of infection, there was a maximum degree of cell-killing, or even a reduction in the amount of cell-killing, depending on how much DI virus was present in a particular standard virus stock. DI LCM virus could completely prevent standard virus from producing c.p.e. in MDCK monolayers with one-particle-to-protect kinetics. It could still prevent killing of the cells when added within a short time after infection with standard virus, but was able to interfere with synthesis of standard virus when added even later, On passage of LCM or Pichinde virus without dilution in MDCK cells, there was no homologous auto-interference. Furthermore, there was only slight interference with the synthesis of standard virus when these cells were pre-treated with DI virus.

Arenaviridae↗

The RNAs of the defective interfering Pichinide virus.

A Pichinde persitently infected BHK21/13S culture was established in which defective interfering (DI) virus continued to be synthesized after cessation of plaque-forming virus replication. This DI virus, concentrated from NaCl-polyethylene glycol treated tissue culture fluids, was shown to band over a much broader range than standard virus, in either discontinuous or continuous sucrose gradients. The polyacrylamide gel profile of the RNAs extracted from standard virus contained six components with sedimentation coefficients corresponding to 31, 28, 22, 18, 15 and 4-6S. All RNAs extracted from DI virus preparations, however, did not contain the 22 and 15S species. Furthermore, a new 20S fraction was observed in DI virus taken from cultures which had been maintained for more than 175 generations after the initial infection, whereas it was absent in DI virus synthesized prior to that time.

Arboviruses↗

Arenavirus inactivation on contact with N-substituted isatin beta-thiosemicarbazones and certain cations.

N-methyl and N-ethyl isatin beta-thiosemicarbazones inactivate cell-free Parana and Pichinde viruses as well as three strains of lymphocytic choriomeningitis virus. This antiviral activity is abolished in the presence of the chelating agent EDTA. The rate of virus inactivation by N-methyl isatin beta-thiosemicarbazone is greatly enhanced and controlled by the addition of cupric sulphate. Divalent cations of other first transition series metals are less effective. A difference exists in the copper requirement for fast inactivation of the prototype arenavirus (lymphocytic choriomeningitis) and the Tacaribe Complex of viruses (Parana and Pichinde). In the presence of 20 muM-N-methyl isatin beta-thiosemicarbazone, LCM and Pichinde viruses can be inactivated at about the same rate if 20 muM-CuSO4 is added to the former and 160 muM-CuSO4 is added to the latter. Using 20 muM-N-methyl isatin beta-semicarbazone and CuSO4 the inactivation of LCM is reduced, but not eliminated, in the presence of an equal amount of infectious Pichinde virus. Crude and highly purified Pichinde virus are inactivated at the same rate when exposed to identical concentrations of N-methyl isatin beta-thiosemicarbazone and cupric sulphate. There is little detectable change in the inactivation rates when Pichinde or LCM viruses are grown in a variety of different cell lines.

Cell Line↗

Arenavirus chemotherapy--retrospect and prospect.

Two groups of compounds, identifiable by structural similarity, have been found to interfere with the in vitro replication of arenaviruses. All 4 members of the benzimidazole group contain dipolar fused benzene and 5-membered nitrogen-containing rings and share potential chelating ability through the different bidentate structures formed with their side-chains. The biological activity of one of these compounds, metisazone, has been shown to depend on the presence of divalent metals of the first transition series, Cu(++) being the most effective. Furthermore, whereas metisazone inactivates cell-free virus, two other members of the group, HBB and 1,2-bis(5-methoxy-1H-benzimidazol-2-yl)-1,2-ethanediol, act intracellularly. The site of action of the fourth member, SKF 30097, is not known. Using murine lymphocytic choriomeningitis infections as an in vivo model, the bisbenzimidazole derivative has been found to increase life-span without interfering with virus replication. Medication with SKF 30097 or metisazone and copper (2(+)) sulfate did not significantly or reproducibly change the expected day of death of the animals. The amantadine compounds of the second group have unusual symmetric structures with a 10-carbon cage. The parent compound acts intracellularly, while the site of action of an octachloro derivative is not known. Medication with the parent compound, but not the derivative, shortened the interval between LCM infection and death of the mouse. Tissue culture and animal screening of the many available derivatives in these two groups may uncover compounds more efficacious than those already examined.

Amantadine↗

Characteristics of the in vitro inhibition of arenavirus synthesis by bis-benzimidazoles.

The dihydrochloride salt of (S,S)-1,2-bis(5-methoxy-2-benzimidazolyl)-1,2-ethandiol (A37536) inhibits the synthesis of lymphocytic choriomeningitis (LCM), Parana, and Pichinde viruses in L-929 cells. The compound has no direct inactivating effect on LCM virus nor does it affect the adsorption of LCM virus to L cells. The drug-cell interaction is slow. Maximal activity is observed only by exposing cells to the drug at least 8 h prior to LCM virus infection, or by concomitant drug treatment and infection at a low multiplicity. Addition of serum-free media to L cells after LCM virus infection diminishes the activity of A37536. Whereas A37536 exhibits its antiviral activity at concentrations that have little or no effect on L cell division rate, a marked change can be noted in the cell's sensitivity to lysis by standard trypsin dispersal procedures. A37536 has no specific antiviral activity in LCM virus-infected BHK, HeLa, or Vero cells. All of the four tested derivatives of A37536 showed antiviral activity against LCM virus but only at concentrations that reduced the growth rate or were toxic to L cells.

Antiviral Agents↗

Evaluation of bis-benzimidazoles in the treatment of murine lymphocytic choriomeningitis virus infections.

Seventy percent of the mice receiving (S,S)-1,2-bis(5-methoxy-2-benzimidazolyl)-1,2-ethandiol (A36683) in their drinking water lived at least four times longer than control mice when infected with 10 or 100 mean lethal doses of lymphocytic choriomeningitis virus strain UBC. In the next 4 months, most of the survivors died with lymphocytic choriomeningitis-like symptoms. Drug treatment during the first 7 days after infection was found to have no significant effect on virus titers in various organs. The sparing effect of the drug is discussed in terms of immunosuppression.

Animals↗

Arenaviruses.

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Antigens, Viral↗

Arenaviruses: cellular response to long-term in vitro infection with parana and lymphocytic choriomeningitis viruses.

Persistent infections were established in suspension cultures of BHK21/13S cells with both Parana and lymphocytic choriomeningitis viruses. Four generations after infection with either virus, more than 90% of the cells scored as infective centers, with concomitant peaks in extracellular virus yields. In both cultures the synthesis of detectable plaque-forming units (PFU) ceased about the 50th generation postinfection, and this condition was maintained until the 350th cell generation when the cultures were discontinued. The generation time of each culture was identical to that of uninfected parent controls, and at no time were cytopathic effects evident. In spite of the absence of infectivity, over 90% of the cells sampled at various times contained viral antigen demonstrable by immunofluorescence. When either of these persistently infected cell lines was substituted for normal cells in the standard plaque assay, very low efficiencies of plating were observed for homotypic and heterotypic viruses. Plaque formation by several heterologous viruses was virtually unaffected. The mechanism of homotypic plaque exclusion in both cell lines was shown to occur beyond the virion adsorption stage. The original infecting virus genome persisted in both cell lines after standard virus was no longer detectable. This was shown with the lymphocytic choriomeningitis virus-infected cells after storage in liquid nitrogen. After thawing, such cells were found to synthesize standard virus for a brief period. Although the Parana virus-infected cells did not behave this way, the growth medium from these cells would initiate PFU synthesis in normal cells within 36 hr after infection.

Adsorption↗

Plaque size heterogeneity: a genetic trait of lymphocytic choriomeningitis virus.

All of the ten strains of lymphocytic choriomeningitis virus assayed on BHK 21/13S cells showed various degrees of plaque size heterogeneity. The amount of virus released from these plaques was usually very small because of rapid photodynamic inactivation by neutral red. When virus from large and small plaques of a specific strain was plated, the same distribution of plaque size was obtained from each clone. Although it was shown that surface virus could possibly be randomly distributed at the time of addition of neutral red overlays, no virus could be isolated from nonplaque areas. Two different strains of virus (CA1371 and WE) with markedly different plaque size ranges were separated by plaque excision from plates infected with a mixture of both viruses.

Animals↗