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Biomedical subjects

D Collavo

Publications and source records attributed to D Collavo.

At least 55 records · Page 3Linked to original sources

Role of accessory cells in the induction of a secondary cytotoxic response to Moloney murine sarcoma virus-induced tumors.

The role of Ia-positive accessory cells in the generation of a secondary cytotoxic response to tumor-associated antigens induced by Moloney murine sarcoma virus (M-MSV) was evaluated. Spleen cells from M-MSV-immune A.TL mice, depleted of accessory cells by anti-Iak serum plus C treatment and stimulated in secondary mixed leukocyte tumor cell culture (MLTC) with syngeneic Ia-negative A6ATL Moloney leukemic cells, failed to generate virus-specific cytotoxic T lymphocytes (CTL). CTL generation in Ia-depleted MLTC may be reconstituted by the addition of nonimmune Ia-positive spleen or peritoneal cells obtained not only from syngeneic A.TL but also from I-incompatible A.TH mice. This lack of restriction observed in accessory cell function is explained in terms of a nonspecific mechanism of CTL triggering mediated by soluble factors. In fact, IL 2 as well as supernatants obtained from I region-incompatible cultures consisting of M-MSV-immune, Ia-depleted A.TL spleen cells and A.TH Ia-positive cells, reconstituted secondary virus-specific CTL generation.

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Selective failure of accessory cell function in Moloney murine leukemia virus-tolerant mice.

Accessory cell activity of spleen cells from M-MuLV neonatally injected (tolerant) mice was studied to evaluate their ability to take part in in vitro CTL generation against tumor-associated antigens induced by M-MSV. In contrast with accessory cell activity in normal spleen cells, spleen cells from M-MuLV-tolerant mice are unable to reconstitute the in vitro virus-specific CTL generation of M-MSV immune, Ia-depleted spleen cells. A selective defect seems to characterize M-MuLV-tolerant mice as their spleens constitute a good source of accessory cells for alloantigen CTL generation.

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Leukemia-cell rejection due to T-region encoded antigens.

The role of H-2- and T-region products in determining allogeneic cell rejection was evaluated in H-2 congenic and recombinant mice by transplanting A1ATH and A6ATL leukemia cell lines induced in A.TH and A.TL strains, respectively, by Moloney murine leukemia virus.--In K- or D-region incompatible hosts transplant failure was observed, while in I + T-region incompatible hosts either rejection or prolonged survival was seen. In mice preimmunized with spleen cells from I- and/or T-region incompatible donors, leukemia cells were rejected by mice immune only to T-region products, and accepted by mice immune only to I-region products.--Cell-mediated cytotoxicity studies confirmed in vivo results. Secondary CTLs specifically directed against I-region products did not lyse the A1ATH and A6ATL cells, and secondary CTLs from A.TH and A.TL mice sensitized against A6ATL and A1ATH cells respectively exerted a lytic action specific for T-region products, while no activity was observed against I determinants.--The data suggest that tumor-transplant rejection may also be governed by histocompatibility antigens encoded in the T region.

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T lymphocyte tolerance and early appearance of virus-induced cell surface antigens in Moloney-murine leukemia virus neonatally injected mice.

Regression of Moloney-murine sarcoma virus- (M-MSV) induced sarcomas in normal adult mice is accompanied by generation of virus-specific cytotoxic T lymphocytes (CTL). However, when neonatal mice that were injected with Moloney-murine leukemia virus (M-MuLV carrier) were subsequently challenged as adults with M-MSV, the sarcomas did not regress nor did they generate CTL. This failure to produce CTL cannot be ascribed to nonspecific immunodepressive effects or to suppressor cell generation since M-MuLV carrier mice exhibit normal reactivity after allogeneic cell stimulation. Moreover, addition of M-MuLV-infected cells as the third party to cultures does not reduce activity of CTL from M-MSV immune mice. Since M-MSV and M-MuLV possess common antigens, the observed unresponsiveness was considered in relationship to induction of a T lymphocyte tolerance, which may follow introduction of foreign antigens at an early stage of development. In fact, it was observed that as early as 10 days after injection, thymus, lymph node, and spleen from M-MuLV carrier mice express virus-induced cell-surface antigens that not only are targets for M-MSV-immune CTL, but also induce in vitro a strong specific cytotoxic response. In addition, a cold target inhibition assay disclosed that the same antigens are shared by both M-MuLV infected and leukemia cells, even though they are less expressed on the surface of the former. The finding that the cytotoxicity of alloreactive lymphocytes from M-MuLV carrier mice is reduced after preincubation with M-MSV immune CTL confirms that virus infection does not bring about functional inactivation of lymphocytes. Finally, it was observed that virus antigen presence on lymphocytes from M-MuLV neonatally injected mice is closely related to subsequent leukemia development.

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Characterization of cloned murine cytolytic T cell lines.

Murine cytolytic T lymphocytes can be kept in continuous culture apparently indefinitely by repeated passage in a concanavalin A-induced growth promoting medium. Some of these long-term cell lines maintain their cytolytic activity. Starting from three such populations, several cloned cytolytic T cell lines were derived and subsequently subcloned one or more times. Considerable variation in the levels of cytolytic activity was observed between different subclones; some initially active subclones lost activity with prolonged culture. In addition, one of the clones appeared to progressively lose the relative specificity demonstrated during the earlier passages of the parent cell line.

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Lack of T-cell mediated cytotoxicity in M-MSV system depending on H-2 haplotypes.

The H-2 restriction phenomenon was evaluated with regard to the immune response to Moloney sarcoma virus (M-MSV)-induced tumours in the mouse. Using an in vitro 51Cr release assay the lytic activity of lymphocytes from M-MSV immune strains of mice, including several H-2 recombinant strains, was determined on leukaemic cell lines originally induced in mice of different strains by neonatal infection with Moloney leukaemia virus. In analogy with other experimental models, it was observed that a compatibility between effector and target cells at the K and/or D regions is generally necessary and sufficient to obtain the cytotoxic effect. However, for the H-2d and H-2b haplotypes, identity at the K or D region respectively was not sufficient for lysis to occur. Attempts to demonstrate that this lack of activity might be associated with the absence of H-2 linked Ir responder genes, were not successful.

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Colony formation of cytolytic T cells in semisolid medium.

Addition of supernatant from concanavalin A-stimulated spleen cells to in vitro primed cytolytic T lymphocytes in semisolid medium stimulated the growth of colonies of cytolytic lymphocytes. Optimal results were obtained using a peritoneal adherent cell underlayer where a 10% plating efficiency (greater than or equal to 4 cells per colony) was achieved when between 5000 and 100 000 cells were plated per dish. Individual colonies were harvested and tested in a short term (5h) 51Cr release microassay, employing 200 target cells. The frequency of lytic colonies varied from 46--67%. The observed lytic activities were specific for the relevant allogeneic target cells.

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Proliferative response of H-2 incompatible leukocytes to an Abelson virus-induced lymphoma cell line apparently not expressing Ia-antigens.

The proliferative response of normal lymph node cells from different mouse strains to an Abelson virus-induced leukemic cell line (MLVA) in mixed leukocyte culture (MLC) has been investigated. MLVA leukemic cells do stimulate a specific response and the stimulating determinants are controlled, most likely, by genes in the K-end of the H--2 complex. However, using two different anti-Ia sera and different assay systems, we were unable to detect the expression of Ia-antigens on MLVA. In addition, an alloantiserum raised against MLVA, and absorbed with P815, a nonstimulating mastocytoma cell line, showed no residual activity against MLVA cells.

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Secondary in vitro generation of cytolytic T-lymphocytes (CTL's) in the murine sarcoma virus system. Virus-specific CTL induction across the H-2 barrier.

Following in vitro stimulation of murine sarcoma virus Moloney isolate (M-MuSV)-immune spleen cells with syngeneic antigenically related Moloney leukemia cells, highly efficient cytotoxic T-lymphocytes (CTL's) were generated. The cytotoxic effect was directed only against H-2-compatible target cells bearing M-MuSV tumor-associated antigens (TAA). However, in a cold target competition assay a weak but detectable capacity to block CTL activity was also obtained when allogeneic Moloney leukemia cells were added. Moreover, when M-MuSV-immune spleen cells from mice inoculated with virus 14 days previously were stimulated by allogeneic Moloney leukemia cells, a strong cytotoxic effect toward syngeneic and allogeneic tumor cells bearing M-MuSV TAA was elicited.

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Genetics of murine sarcoma virus (MSV)--induced tumors in AKR mice: Evidence that late progressing and early regressing tumors are controlled by different gents.

The genetics of late appearing MSV tumors showing a progressive growth pattern in AKR mice was investigated. The late MSV tumor response in F1 hybrids depended on the genetic background of the non-AKR parent. Within the 4-month observation period following virus injection, (CBA X AKR) F1, (DBA/2 X AKR)F1, and (NIH X AKR)F1 developed progressing MSV tumors, which exhibited latency and growth behavior comparable to that seen in AKR mice, (BALB X AKR)F1, (B6 X AKR)F1, and (B10br x akr)f1 mice did not show any late MSV tumors. In contrast to early regressing M-MSV tumors, whose development is independent of Fv-1 genotype, late MSV tumor progression is largely a function of this gene, since all late tumors which appeared in (B10BR x AKR) x AKR were observed in Fv-1n homozygous mice, H-2k halotype is a further factor in the occurrence of late MSV tumors, at least in (B6 x AKR) x AKR mice. In crosses of AKR with Fv-1 compatible mice, tumor appearance was strongly associated with inheritance of AKR-Mulv, and MSV recovered from late tumors of first back-cross animals appeared to be a new pseudotype with the endogenous AKR-MuLV. It is suggested that the host genetic control in both early and late MSV tumors is exerted mainly on the helper component of the leukemia-sarcoma complex.

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