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Biomedical subjects

M R Nejamkis

Publications and source records attributed to M R Nejamkis.

At least 37 records · Page 2Linked to original sources

Immunosuppression in experimental Junin virus infection of mice.

The effects of cyclophosphamide (CY), anti-mouse thymocyte sera, oxisuran, and cytosine arabinoside were evaluated in adult and newborn mice infected with Junin virus. Treatment with CY was the most effective, Adult mice, which are not normally susceptible to intracerebral infection with 10(3) LD50 of Junin virus, were rendered susceptible by treatment with an adequate dose and schedule of CY. However, CY-treated newborn mice were protected from death. This animal model may be suitable for use in pathogenesis and protection studies.

Age Factors↗

Studies of cell-mediated immunity to Junín virus.

Junín virus is uniformly lethal in newborn mice, but fails to kill adult animals. But there is direct evidence that in older mice the immunological mechanism occurs when certain conditions are fulfilled. The present results showed that in Junín virus infection of mice, the development of the immunological mechanism occurs irrespectively of age. The induction of a regular cell-mediated immunity appears to be intimately related to multiple injections of the virus. These results were confirmed by the 51Cr release assay and by the effect of the transplanted sensitized cells. The extent of infection in the brain is another variable to be considered. Only when the virus has reached high titres and has been concentrated in the brain, the damage done by the immune attack is lethal. On the other hand the data obtained suggest that Junín virus-sensitized spleen cells do not possess the ability to transfer significant antiviral effects to recipient preinfected newborn mice.

Animals↗

Further experiments on the action of antithymocyte serum in experimental Junín virus infection.

Rabbit anti-mouse thymocyte serum (ATS) administrated as late as 7 days after infection suppressed host cell-mediated responsiveness to intracerebrally injected Junín virus, thereby diminishing the morbility and mortality of this infection. It did not affect either the humoral antibody response or the virus titer in brain. This findings suggest that: a) in mouse brain cells, Junín virus infection is basically non-cytopathic: b) cell-mediated immunity is responsible for morbility and mortality and does not clear up virus from brain as in other viral encephalitides; and c) ATS may be of therapeutic interest by suppressing or diminishing the cell-mediated response to Junín virus.

Animals↗

Passive immunity against Junín virus in mice.

Passive immunity, naturally acquired from immune mothers or artificially induced by the administration of homologous hyperimmune serum, conferred on suckling mice a high degree of resistance against infection with Junín virus. Maternal antibodies in the circulating blood of the young were not detectable in the first days after birth, but rised rapidly from the 8th to the 20th day of lactation. By cross-foster nursing experiments it was shown that the greater part of the transmission of passive immunity occurred after birth, although there was transmission of a significant, though small part, before birth. The virus passage from mothers to offspring was excluded, since Junín virus was not recovered from brains, livers, spleens and kidneys of uninfected young, born from infected mothers.

Animals↗

Cyclophosphamide effect on coccidioidomycosis in the rat.

Cocidioidomycosis is a systemic mycosis, endemic in arid areas of the American continent. The rat was employed as an experimental host, since it had been shown to reproduce human lesions and present a chronic course of disease with granulomas mainly restricted to lungs. Given the influence of immunosuppressive therapy on the clinical course of human coccidioidomycosis, we studied the effect of cyclophosphamide (CY) in the experimental rat model. Accordingly, animals were inoculated with 400 Coccidioides immitis arthroconidia of the Acosta strain, by intracardiacal route. As single CY doses failed to alter the course of disease, three schedules were used: A) 4 daily doses of 20 mg/kg each, prior to C. immitis inoculation; B) 4 similar daily doses after infection; and C); 6 doses of 20 mg/kg each, given from day +1 to +4 then on days +8 and +9, post infection (pi), taking day 0 as the time of fungal inoculation. The first two schedules inhibited antibody formation up to day 28 pi, without modifying cellular response to coccidioidin as measured by foodpad swelling. Initially, there was greater fungal spread than in controls receiving C. immitis alone, which proved self-limiting in the latter. In contrast, schedule C led to 55% mortality with both humoral and cellular response abrogation, accompanied by extensive C. immitis dissemination. Histology disclosed significant alterations, such as the persistence of primary infection sporangia, corresponding to the acute stage of coccidioidomycosis in the absence of granuloma development. Therefore, the observed depression in cellular immunity seems responsible for the lack of inflammatory reaction capable of restricting sporangia proliferation in tissues which, in turn, enhances pathogen spread and mortality rate.

Animals↗

Experimental coccidioidomycosis in the immunosuppressed rat.

C. immitis inoculated rats are known to develop infection restricted to lung whereas cyclophosphamide (CY) treatment leads to widespread dissemination with considerable mortality. In this study, an attempt was made to elucidate the mechanisms involved in such behaviour. With this aim, spleen cells were transferred from infected CY-treated to infected untreated rats, achieving significant specific inhibition in footpad swelling to coccidioidin in recipients, attributable to a suppressor T cell subpopulation induced by greater fungal antigen concentration arising from widespread C. immitis dissemination in immunosuppressed animals. NK activity proved similar regardless of CY treatment. Lastly, chronically infected rats presented increased colony forming units count after several weekly doses of CY, as happens in immunosuppressed patients harbouring a previous infection.

Animals↗

Cyclophosphamide effect on paracoccidioidomycosis in the rat.

Paracoccidioidomycosis is an endemic fungal disease widely distributed throughout Latin America. The potent immunosuppressor cyclophosphamide (CY) has been used to modulate host immune response to Paracoccidioides brasiliensis in an experimental model. Inbred male Buffalo/Sim rats weighing 250-300 g were inoculated with 5 x 10(6) P. brasiliensis cells of the yeast phase form by intracardiac route. One group of animals was treated with 20 mg/kg body weight at days +4, +5, +6, +7, +11 and +12 post-infection (pi.), while a control group was infected alone. No mortality was recorded in either group. Treated rats presented: a) a decrease in granuloma size, which contained less fungal cells; b) a lack of specific antibodies up to 35 days pi., and c) a significant increase in the footpad swelling test (DTH) against paracoccidioidin. Splenic cell transfer from CY-treated P. brasiliensis-infected donors to recipients infected alone led to a significant increase in DTH response in the latter versus untreated infected controls. Likewise, in treated infected recipients transferred with untreated infected donor spleen cells, footpad swelling proved greater than in controls. Thus, it would seem that each successive suppressor T lymphocyte subset belonging to the respective cascade may be sensitive to repeated CY doses administered up to 12 days pi.. Alternatively, such CY schedule may induce the appearance of a T cell population capable of amplifying DTH response.

Animals↗