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Biomedical subjects

I Aoki

Publications and source records attributed to I Aoki.

At least 145 records · Page 8Linked to original sources

Suppressor T cells in mice made unresponsive to skin allografts.

We have induced suppressor T cells (Ts), capable of delaying allogeneic skin graft rejection, through the intravenous administration of allogeneic spleen cells under normal conditions. H-2 and non-H-2 incompatibility between recipient mice and donor skins induced strong graft rejection. However, when the Ts were transferred into recipient mice, the mean survival time was prolonged for every combination between recipient mice and donor skin. Studies using several strains of congenic mice revealed the antigen specificity of these Ts. Treatment with monoclonal anti-Lyt-2.2 or anti-Thy-1.2 antibody and complement abolished the suppression shown by the Ts of skin graft rejection. The suppression induced by these Ts, however, was resistant to treatment with monoclonal anti-Lyt-1.2, anti-L3T4, or anti-I-A antibody and complement. These results showed that the Ts were Lyt-1-2+, L3T4-, Ia-, T cells.

Animals↗

Genetic control of delayed-type hypersensitivity to D-penicillamine antigen.

For determining the mechanism of genetic control of D-penicillamine free-base-specific delayed-type hypersensitivity (DTH) in mice, footpad swelling response was employed. Studies with various congenic and recombinant inbred strains of mice revealed that D-penicillamine free-base-specific DTH was controlled by the I-A subregion. The footpad swelling response showed a highly antigen-specific pattern, and revealed that D-penicillamine free base was not cross-reactive with D-penicillamine disulfide or L-penicillamine, but with D-penicillamine HCl. Treatment of immune lymphoid cells with monoclonal antibodies plus complement revealed that the cells responsible for DTH transfer were Lyt-1+2-, L3T4+ and Ia-T cells.

Animals↗

The role of autoreactive T-cell hybridomas from autoimmune model mice.

Autoreactive IL-2-producing T-cell hybridomas were established from New Zealand Black and White (B/W) F1 and MRL/1 mice. In B/WF1 mice the frequency of IL-2-producing hybridomas increased with age. It is necessary for the cells to recognize autologous MHC molecules in order to release IL-2. Inoculation of hybridoma cells into several mouse strains via the footpad produced significant swelling responses in an H-2-restricted manner. Finally, several autoimmune abnormalities were induced in naive H-2-compatible mice by i.v. inoculation of certain hybridoma cells. These results demonstrate that self-MHC molecule recognition by T cells plays an important role in the development of autoimmunity.

Aging↗

Induction of suppressor T cells by intravenous administration of monoclonal anti-I-A antibody.

Intravenously administered monoclonal anti-I-A antibodies successfully induced suppressor T (Ts) cells specific for alloantigen-specific delayed-type hypersensitivity (DTH) responses in mice. These Ts cells exerted their effects in the effector phase and had no H-2 restrictions. Phenotypic analysis revealed L3T4 antigens on their cell surface but failed to reveal Lyt-2 antigen. Ts cell activity was abrogated by a 30-min incubation with the anti-I-A antibodies used for Ts cell induction. Incubation in the anti-I-A-antibody-coated plate also abrogated the Ts cell activity. Since anti-I-A antibody is idiotypic for the I-A antigen, it is suggested that these Ts cells might express antiidiotypic receptors for I-A antigens. These findings are considered to be consistent with previous observations of hapten-specific systems, in which antiidiotypic Ts cells are inducible by idiotypic antibodies.

Animals↗

Ras p21 expression in nephroblastoma group tumors.

Ras p21 expression in 30 cases of nephroblastoma and related tumors was evaluated by the immunoperoxidase method using monoclonal anti-ras p21 antibody (RAP-5) raised against a synthetic polypeptide fragment of ras p21. In normal renal tissue, the epithelial cells of convoluted and collecting tubules and arterial wall leiomyocytes were positively stained. In nephroblastoma tumors, some of the epithelial cells forming primitive tubular and glomerular-like structures in the nephroblastic-type tumors and the cells with rhabdomyocytic features were positive. However, the epithelial cells in more differentiated glandular structures of epithelial-type tumors, the rhabdoid cells in rhabdoid tumors and the cells in congenital mesoblastic nephroma failed to show positive staining. Nephroblastic cells, stromal cells and sarcomatous cells were also negative.

Antibodies, Monoclonal↗

Analysis of alloantigen-specific suppressor T cells.

The intravenous administration of allogeneic spleen cells successfully induced two distinct subsets of alloantigen-specific suppressor T cells that function at either the induction phase or the effector phase of alloantigen-specific DTH responses. The induction phase suppressor T cells were found to be Lyt2-, and were not genetically restricted by H-2 region genes. The effector phase suppressor T cells are Lyt2+, and their activity is controlled by genes within the H-2 region. The effector phase suppressor T cells mediate antigen-dependent bystander suppression, provided the appropriate alloantigen is present at the site of the immune responses. This effector phase suppression requires cyclophosphamide-sensitive targets. The results of this study suggest that allospecific suppressor T cells and hapten-specific suppressor T cells have a similar mechanism of action.

Animals↗

Delayed-type hypersensitivity to allogeneic mouse epidermal cell antigens. III. Analysis of suppressor cells.

The specificity of suppressor T cells (Ts cells) induced by intravenous administration of allogeneic spleen cells was studied in mice using a delayed-type hypersensitivity (DTH) assay. The DTH responses were induced by subcutaneous injection of allogeneic epidermal cells (ECs) and were assayed by footpad swelling. Afferent-phase Ts cells (Ts-aff cells) were transferred into the recipient mice before ECs immunization. Treatment with monoclonal anti-Thy-1.2 antibody and complement abolished the suppression by Ts-aff cells in the DTH response. The suppression induced by Ts-aff cells, however, was resistant to the treatment with monoclonal anti-I-A or anti-Lyt-2.2 antibody and complement. These results showed that Ts-aff cells were Lyt-2-, Ia- T cells. Efferent-phase Ts cells (Ts-eff cells) were transferred before challenge of the DTH assay. Phenotypic analysis of these Ts-eff cells showed them to be Lyt-2+, Ia- T cells. Studies using several strains of congenic mice revealed the antigen specificity of both Ts cell subsets. Adoptive transfer of Ts-eff cells required H-2 restriction, but Ts-aff cells did not. We also induced cognate suppression of the DTH responses to the alloantigens mediated by Ts-eff cells.

Animals↗

A role of L3T4+ antigen in the Con A response of regenerating splenic L3T4+ T cells after Cy treatment.

The role of L3T4 antigens in the concanavalin A (Con A) response of regenerating spleen cells (Cy-SCs) after cyclophosphamide (Cy) treatment was studied. Anti-L3T4 monoclonal antibodies (Mabs) markedly inhibited the Con A response of the regenerating Cy-SCs, which do not require Ia molecules expressed on accessory cells (ACs) for Con A activation. However, the Con A response of normal spleen cells (N-SCs), which do require Ia molecules on ACs, was not inhibited by the same Mabs, although the Con A response of N-SCs, as well as that of Cy-SCs, was demonstrated to be mediated by L3T4+ T cells. The optimal times for the inhibitory effect of anti-L3T4 Mab was 7 days after Cy treatment, when the number of spleen cells increased to a maximum following a regenerative phase. Its inhibitory effect was reduced by high concentrations of Con A, and was restricted to the early phase of the Con A response. A short time exposure of the Cy-SCs to the anti-L3T4 Mabs was sufficient to decrease the response to Con A. Our results cannot explain the hypothesis that the L3T4 molecule functions solely by interacting with non-polymorphic parts of Ia molecules on ACs. Taken together, these results and those of other groups of investigators suggest that Con A-induced T-cell activation may be mediated by at least two or more interaction mechanisms involving either Ia or L3T4 molecules. Firstly, normal L3T4+ T cells may mainly interact with Con A involving self Ia molecules on the ACs. The extent of this interaction is sufficient to induce T-cell activation, and then does not need another L3T4 molecule. Secondly, the regenerating L3T4+ T cells may usually interact with the cell surface antigens of other T cells, including L3T4+, by the binding of both cell surface molecules to Con A in the absence of ACs, and then transmit a signal for T-cell activation. Anti-L3T4 Mabs may exert inhibitory effects somewhere in this process.

Animals↗

Delayed-type hypersensitivity to allogeneic mouse epidermal cell antigens. I. Lyt-1+2- T cells are important for DTH.

Footpad swelling response was used to measure the alloantigenicity of epidermal cells (ECs) in delayed-type hypersensitivity (DTH). Strong footpad swelling was observed 3 h after the challenge, and it continued for 48 h after the challenge. Genetical incompatibility between the recipients and the ECs was required to induce significant footpad swelling. H-2 or non-H-2 incompatibility between mice and ECs in the sensitization phase sufficed to develop significant footpad swelling. Incompatibility caused by point mutation in the A region induced strong responses when B6.C-H-2bm12 mice were immunized with B6/J ECs, but the disparity in immunoglobulin h (Igh) allotype genes was insufficient. H-Y antigen on ECs could also elicit the DTH response. Semiallogeneic F1-derived ECs sensitized the parental recipients. The responses were successfully transferred by immune lymph node cells, but not by immune sera. Treatment of these immune lymph node cells with monoclonal antibodies plus complement revealed that the cells responsible for DTH transfer were Lyt-1+2-, Ia- T cells.

Animals↗

Analysis of hen egg white lysozyme (HEL)-specific delayed type hypersensitivity hybridomas.

Hen egg white lysozyme (HEL) specific delayed type hypersensitivity hybridomas (TDTH hybridomas) were established by fusing HEL specific C3H/HeN (H-2k haplotype) TDTH with BW5147 thymoma cells. TDTH hybridomas, which had Lyt-1+2- and Thy-1.2 antigens on their surfaces, were injected into mouse footpads with HEL antigens, and foot pad swellings were measured 24 h later. Mice with I-Ak haplotype showed strong responses, and their swellings were reduced by anti-I-Ak specific monoclonal antibodies, which suggests that the activity of the hybridomas is restricted by I-Ak. However, TDTH hybridomas did not modulate HEL specific T-cell proliferation responses.

Animals↗

Immunohistochemical and ultrastructural study of early lesions of intravascular bronchioloalveolar tumor with liver involvement.

Autopsy findings including immunohistochemical and ultrastructural study of intravascular bronchioloalveolar tumors (IVBAT) of the lung and liver which were incidentally found in a 68-year-old man were reported. The tumors presented as several, small nodular lesions in bilateral lungs and liver. Immunohistochemical study using the antibody against Factor VIII-related antigen and electron microscopic study suggested endothelial nature of both pulmonary and hepatic lesions. The study by using anti-estradiol antibody revealed the presence of estrogen in the cytoplasm of neoplastic cells, suggesting the possibility of the presence of estrogen receptors in the cells. Although the result is still preliminary, some role of estrogen in the development of IVBAT is suggested. The hepatic lesions have been thought to be metastases from the pulmonary IVBAT but the other possibilities such as primary hepatic or multicentric origin must be considered. Review of the previous reports of IVBAT disclosed several cases which were associated with liver involvement.

Aged↗