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Biomedical subjects

F Plata

Publications and source records attributed to F Plata.

At least 55 records · Page 3Linked to original sources

Murine sarcoma virus (MSV)-induced tumors in mice. I. Distribution of MSV-immune cytolytic T lymphocytes in vivo.

Quantitative studies using a 51Cr release assay were performed to analyse the time-course of appearance and specificity of cytolytic cells in C57Bl/6 mice inoculated with Moloney murine sarcoma virus (MSV). Various lymphoid organs were studied including spleen, mesenteric lymph nodes (MLN), lymph nodes regional to the MSV-induced tumor (RLN), and peripheral blood. Furthermore, the kinetics of appearance of cytolytic cells within the MSV-induced tumor was determined. In agreement with previous studied, it was found that cytolytic T lymphocytes (CTL) specific for MSV-associated antigens were present among the cells extracted from the tumor and from the lymphoid organs. However, differences in the kinetics of CTL activity could be documented: lymphoid cells from spleen, RLN and peripheral blood showed peak activity at the time of maximum tumor diameter, while intratumoral cells showed peak activity at the onset of tumor regression. MLN cells showed cytolytic activity only when tumor regression had begun. Naturally cytotoxic cell populations of thymus-independent origin, present in normal control mice, were also detected in MSV-infected mice.

Animals↗

Antigenic specificity of the cytolytic T lymphocyte (CTL) response to murine sarcoma virus-induced tumors. I. Preferential reactivity of in vitro generated secondary CTL with syngeneic tumor cells.

Incubation of spleen cells from mice having rejected a Moloney sarcoma virus (MSV)-induced tumor with syngeneic irradiated lymphoma or sarcoma cells bearing MSV-associated antigens in secondary mixed leukocyte-tumor cell cultures (MLTC) resulted in the generation of highly active cytolytic T lymphocytes (CTL) specifically directed against syngeneic target cells bearing MSV-associated antigens. When MSV-immune spleen cells from C57BL/6 (H-2b) and BALB/c(H-2d) mice were compared with respect to their ability to generate CTL in syngeneic secondary MLTC, it was found that both lymphoid cell populations were equally able to mount an anamnestic CTL response to MSV-associated antigens as assessed by a short-term 21Cr release assay. However, quantitative analysis of the activity of both CTL populations on either H-2b or H-2d tumor cells indicated that target cells sharing the same major histocompatibility complex (MHC) as the effector cells were lysed 10- to 100-fold more efficiently than allogeneic target cells. As suggested by the results of inhibition experiments using mixtures of 51Cr-labeled and unlabeled target cells, preferential lysis of syngeneic versus allogeneic tumor cells might be related to the establishment of effective adhesions between the former and CTL. Direct evidence for the role of MHC in determining the antigenic specificity of CTL directed against MSV-associated antigens was provided by results obtained using MSV-immune spleen cells from congenic resistant mice. Furthermore, studies of the response of F1 (H-2b/d) hybrid mice showed that stimulation of immune spleen cells with tumor cells from one parental strain or the other in secondary MLTC resulted in the generation of CTL capable of lysing tumor target cells of the same perental strain as the stimulating cells, but not of the other. The results thus suggested the presence of two sets of CTL precursor cells in F1 MSV-immune spleens, each set responding exclusively to tumor antigens associated with only one of the two parental phenotypes.

Animals↗

Primary and secondary in vitro generation of cytolytic T lymphocytes in the murine sarcoma virus system.

Cell-mediated cytotoxic responses in vitro to surface antigens associated with murine sarcoma virus (MSV)-induced tumors were investigated using mixed leukocyte-tumor cell cultures (MLTC). The source of responding cells was either spleens from normal C57BL/6 mice (primary MLTC) or spleens of C57BL/6 mice carrying or having rejected a MSV-induced tumor (secondary MLTC). Graffi virus-induced GiL-4 leukemia cells, Rauscher virus-induced RB1-5 leukemia cells, and MSV-induced MSV-B16 sarcoma cells were used as stimulating syngeneic tumor cells and/or target cells. Under appropriate culture conditions, cytolytic T lymphocytes (CTL) were generated in both primary and secondary MLTC. As assessed by a quantitative short-term 51Cr release assay system, CTL activity in secondary MLTC populations was at least 10-fold higher than that in primary MLTC populations, and 100-fold higher than that in spleen cells taken at the peak of the in vivo response of MSV-infected mice. The ability of spleen cells to mount a secondary CTL response in vitro could be observed as early as 5 days after virus injection, increased up to the time of maximum tumor size and persisted long after tumor regression. This suggests the development of increased numbers of CTL progenitors and/or the formation of "memory" CTL in spleens of MSV-injected mice.

Animals↗

HIV-specific cytotoxic T lymphocytes directed against alveolar macrophages in HIV-infected patients.

A CD8+ lymphocytic infiltration of the lungs is frequently observed in HIV-infected patients, even prior to the onset of opportunistic infections. In such patients, we could demonstrate that most of these CD8+ alveolar T lymphocytes displayed the D44 marker and were functional cytolytic T lymphocytes directed against autologous HIV-infected alveolar macrophages. This primary cytolytic activity was HLA-restricted and, at least partially, specific for the HIV envelope protein, since HLA-A2 alveolar T lymphocytes could specifically lyse cell lines expressing both the HLA-A2 and Env antigens. In contrast to data obtained in peripheral blood, no ADCC activity was observed against the Env antigen. HIV-specific alveolar T-lymphocyte cytolytic activity decreased with progression towards AIDS as shown by studies of a series of 40 patients. Functional abnormalities of the lung epithelium could be associated with the specific lysis of alveolar macrophages, suggesting that local tissue injury could result from the in vivo immune conflict between alveolar HIV-specific CTL and HIV-infected macrophages.

Acquired Immunodeficiency Syndrome↗

HIV-specific cytotoxic T lymphocytes against alveolar macrophages: specificities and downregulation.

To analyse the evolution of alveolar-lymphocyte-mediated cytotoxic activity directed against autologous alveolar macrophages (AM), cytotoxic assays against various HIV+ target cells were performed in a cohort of 75 patients with HIV-associated lymphoid interstitial pneumonitis (LIP) studied at distinct stages of HIV infection. Our data confirm that alveolar HIV-specific cytotoxic T lymphocytes (CTL) against AM were detectable before AIDS in patients with CD8+ LIP. Mild CD8+ lymphocytic alveolitis occurs silently in 62% of stage II and III patients with no respiratory symptoms. In these cases, the lack of spontaneous alveolar-lymphocyte-mediated cytotoxic activity against autologous AM may contrast with the detection of primary alveolar CTL specific for HIV proteins such as nef. In AIDS patients, the alveolar CTL lytic efficiency against both AM- and HIV-antigen-expressing cells can be inhibited by a suppressor factor produced by alveolar CD8+ CD57+ cells. Therefore, spontaneous CTL lysis of AM may be (1) limited to a subgroup of patients with active LIP and (2) controlled by distinct mechanisms, including suppressor phenomenons, and HIV replication levels in AM.

Cohort Studies↗