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Biomedical subjects

A Mathur

Publications and source records attributed to A Mathur.

At least 91 records · Page 5Linked to original sources

Memory suppressor T cells in latent Japanese encephalitis virus infection.

The generation of secondary suppressor T (Ts) cells has been studied during latent Japanese encephalitis virus (JEV) infection of mice. The mice infected with JEV 27 weeks earlier, on challenge with the homologous virus, showed accelerated generation of secondary Ts cells; these appeared on Day 6, with peak activity on Day 8, and lasted for 27 days. The secondary Ts cells were Thy1.2+, Ly1-2+, antigen-specific, and acted in a dose-dependent manner. The secondary Ts cells could also be generated by reactivation of the JEV in latently infected mice. The findings thus show the presence of memory suppressor T cells in mice latently infected with JEV that can be stimulated to produce secondary Ts cells by exogenous or endogenous virus challenge. This phenomenon could help to persistence of the virus.

Animals

Induction of secondary immune response by reactivated Japanese encephalitis virus in latently infected mice.

Development of secondary immune response has been studied following reactivation of latent Japanese encephalitis virus (JEV) infection in mice. The virus could be reactivated in 43% of the latently infected mice at 27 weeks p.i. by treatment with cyclophosphamide. The reactivated virus induced delayed-type hypersensitivity (DTH) and leucocyte migration inhibition (LMI) responses in mice, with peak activity on Day 5 post-reactivation (p.r.). The DTH persisted at low levels for long periods. Humoral immunity measured by haemagglutination-inhibiting antibody showed a four-fold rise in antibody titres. DTH was transferable by immune spleen cells for 5 days p.r. only. It is, therefore, concluded that JEV reactivation generates a quick and short-lived secondary immune response.

Animals

Variable effects of dengue virus-induced cytotoxic factors on different subpopulations of macrophages.

Dengue virus (DV) induces T lymphocytes of the spleen to produce a cytotoxic factor (CF) that induces a subpopulation of macrophages (M phi) to produce a soluble cytotoxin (CF2). Both these factors kill normal lymphoid cells and M phi. The present study was undertaken to investigate the effects of these factors on the I-A-positive and I-A-negative subpopulations of mouse peritoneal M phi. It was observed that CF kills I-A-negative M phi and induces I-A-positive M phi to produce the CF2 that kills both types of cells. However, even when combined together, CF and CF2 do not kill 100% of the M phi. The two-step mechanism involving co-operation between T cells and M phi appears to be biologically economical for maintaining the cytotoxic pathway.

Animals

Macrophage functions during dengue virus infection: antigenic stimulation of B cells.

This study was undertaken to investigate the function of dengue type 2 virus (DV)-infected mouse peritoneal macrophages (M phi) regarding the antigenic stimulation of B lymphocytes of the spleen. It was observed that a variable proportion of M luminal diameter show DV-specific immunofluorescent antigen, which depended upon the route of administration of the virus, being higher in i.p.-inoculated mice and in vitro-infected M luminal diameter monolayers. The DV-infected M luminal diameter presented the DV antigen to B cells in vitro and in vivo, leading to their clonal expansion as shown by counting the virus-specific IgM antibody plaque-forming cells (PFC). The PFC response depended upon the number of DV-infected M luminal diameter. The antigen was presented equally well both by I-A-negative and I-A-positive M luminal diameter. Superimposition of a heterologous antigen (Coxsackie B4 virus) in a Mackaness type of experiment depressed the capacity of M luminal diameter to present both the homologous as well as heterologous antigen.

Animals

Increased T epsilon cells in BALB/c mice with an IgE-secreting hybridoma.

Since it has been proposed that T cells with receptors for the Fc portion of IgE (T epsilon) in rats, mice and humans are IgE-specific regulatory cells, it was investigated whether mice with an IgE-secreting hybridoma might be a source of large numbers of T epsilon cells. BALB/c mice with ascitic tumors of the IgE hybridoma B53 (epsilon, kappa, anti-DNP) developed high serum concns of monoclonal IgE which was followed by the appearance of large numbers of Lyt1-2+ L3T4- T epsilon cells. In contrast, mice bearing a non-IgE producing variant of B53 failed to develop T epsilon cells. Mice infused with cell-free ascites fluid (containing high levels of monoclonal IgE) from the IgE-secreting B53 hybridoma developed high serum IgE levels and also developed high numbers of T epsilon cells. Mice infused with cell-free ascites obtained from the non-IgE-secreting variant ENP-1 (containing very low amounts of IgE) did not develop either high serum IgE levels or T epsilon cells. These findings suggest that high serum IgE concns induce large numbers of T cells that express phenotypic markers of suppressor cells and have surface IgE-Fc receptors. These studies extend to IgE the principle that hybridomas and plasmacytomas induce large numbers of immunoregulatory T cells that express Fc receptors specific for the heavy chain class of the secreted monoclonal immunoglobulin. Since T epsilon cells are normally present only in small numbers, their marked increase in mice with IgE-secreting hybridomas identifies a ready source of large numbers of T epsilon cells that can be used to investigate their regulatory properties.

Animals

The effect of clofazimine on the pharmacokinetics of rifampicin and dapsone in leprosy.

Fifteen untreated leprosy patients were given rifampicin and dapsone for seven days, and then rifampicin, dapsone and clofazimine for seven days. Concentrations of rifampicin and dapsone were estimated in timed plasma specimens and in 24 h urine specimens on days 7 and 14. No significant differences in the pharmacokinetics of rifampicin and dapsone were observed between the two occasions of sampling.

Clofazimine

Microcirculation in muscle.

The microvascular architecture in muscle is reviewed herein. The intrinsic vasculature is similar in different muscles. There are numerous arterioarterial (100 microns diameter) and venovenous (150 microns) anastomoses creating a large microscopical network. End-arterioles (30 microns), end-venules (50 microns), and capillaries (6 microns) form a smaller microscopical network. There are no arteriovenous shunts. Precapillary arterial vessels larger than 10 microns have one or several layers of smooth muscle cells. There are no precapillary sphincters. Postcapillary vessels larger than 15 microns have one continuous layer of smooth muscle cells. Calculations show that the cross-sectional area is the smallest and hence resistance the greatest in arterioles of 22 microns and venules of 40 microns. There is better physiological support for giving plasma expanders, such as dextran, rather than vasodilators in low flow situations.

Animals

Persistence, latency and reactivation of Japanese encephalitis virus infection in mice.

Persistent and latent Japanese encephalitis virus (JEV) infection was studied in pregnant and non-pregnant mice. Following intraperitoneal inoculation into pregnant mice JEV persisted for 16 weeks in contrast to 4 weeks in non-pregnant mice. This was followed by a higher frequency of latent infection in pregnant mice. The virus could be reactivated during pregnancy or by cyclophosphamide treatment, the latter being more effective.

Animals

Japanese encephalitis virus latency following congenital infection in mice.

Latent Japanese encephalitis virus (JEV) infection was shown in inapparently congenitally infected Swiss albino mice after their mothers had been given JEV intraperitoneally during pregnancy. Only one of 37 (2.7%) of the baby mice showed persistence of infectious virus at 5 weeks of age. Reactivation of JEV in Swiss albino mice was demonstrated by stimulation with allogeneic spleen cells from Parks strain mice at 21 weeks of age; reactivation was demonstrated in 41% of the inapparently infected mice. The spleen cells of congenitally infected mice had depressed [3H]thymidine uptake following stimulation with concanavalin A, and depressed ability to induce a graft-versus-host response.

Animals

Increased T gamma and T mu cells in BALB/c mice with IgG and IgM plasmacytomas and hybridomas.

The results of previous studies in our laboratory have shown that mice bearing plasmacytomas and hybridomas that secrete IgA or IgE are accompanied by increased frequencies of Lyt-1-2+ T lymphocytes bearing Fc receptors (FcR) for IgA (T alpha) or IgE (T epsilon), respectively. The present study was undertaken to examine whether IgG- or IgM-secreting tumors influenced the frequency of T lymphocytes that express FcR for IgG or IgM. We studied mice bearing IgG- and IgM-secreting plasmacytomas and hybridomas. BALB/c mice injected subcutaneously with the IgG-secreting hybridoma HDP1 (gamma 1 kappa, anti-TNP) were sequentially examined for the frequencies and Lyt phenotypes of splenic lymphocytes bearing FcR for IgG (T gamma), IgM (T mu), and IgA (T alpha). A threefold increase in the frequency of T gamma lymphocytes that were Lyt-1-2+, L3T4- was seen. The frequencies of T mu and T alpha lymphocytes in these mice were not significantly altered. Similarly, mice injected subcutaneously with the IgM-secreting plasmacytoma MOPC 104E (mu lambda, anti-dextran) or the IgM-secreting hybridoma C1D1 (mu kappa, anti-ox RBC) were examined sequentially for the frequencies of T gamma, T mu, and T alpha lymphocytes. Mice with established IgM subcutaneous tumors showed a twofold increase in splenic, nylon wool-nonadherent T mu lymphocytes. This was associated with a relative increase in Lyt-2+ splenic T lymphocytes and a relative decrease in Lyt-1+ splenic T lymphocytes. No changes were observed in the frequencies of either T gamma or T alpha lymphocytes. These studies extend to IgG and IgM the observation that plasmacytomas and hybridomas secreting immunoglobulins of a specific isotype cause an expansion of T lymphocytes bearing FcR specific for the corresponding isotype. The expansion of FcR+ Lyt-1-2+ T lymphocytes likely represents an exaggerated, but otherwise normal, immunoregulatory response of the host. These cells may be an important element in the regulation of isotype expression.

Animals

Characterization of Japanese éncephalitis virus-induced suppressor T cells and their products for delayed type hypersensitivity.

Intraperitoneal inoculation with Japanese encephalitis virus (JEV) induces the generation of T suppressor cells for delayed type hypersensitivity (Ts-DTH) in Swiss albino mice. The Ts-DTH are hydrocortisone resistant, partially sensitive to X-irradiation and the membrane phenotype of Ts cells is Ly I+. Ts-DTH suppression is mediated through the production of soluble suppressor factor (SF-DTH). SF-DTH is non-dialysable but passes through 450 nm filter and does not sediment after centrifugation at 100,000 g for 2 h; chromatography on Sephadex G-100 indicates an approximate molecular weight of 12,000.

Animals

Macrophage transmission of suppressor signal for suppression of delayed hypersensitivity and humoral response in JEV-infected mice.

Japanese encephalitis virus (JEV) infection induces suppressor T-cells (Ts1) which suppress both the humoral (Ts-PFC) and cell mediated (Ts-DTH) immune response by producing soluble suppressor factors. This study shows that in the JEV model, both TS-PFC and Ts-DTH mediate suppression by recruiting a second subpopulation of suppressor T-cells, the Ts2-PFC and Ts2-DTH. The signal between Ts1 and Ts2 is transmitted by macrophages (M phi). The suppressor factors are adsorbed by peritoneal or splenic M phi. Both heat-killed and live M phi are capable of adsorbing suppressor factors but only live M phi are capable of presenting the signal to T-cells. Thus these are at least two generations of suppressor T-cells in the JEV-specific suppressor pathway and the presence of M phi is obligatory for transmission of the signal.

Adsorption