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Biomedical subjects

S Habu

Publications and source records attributed to S Habu.

At least 109 records · Page 6Linked to original sources

Human c-erbB-2 proto-oncogene product as a target for bispecific-antibody-directed adoptive tumor immunotherapy.

To develop an efficient strategy for the targeting of anti-tumor effector cells, we prepared bispecific antibody (BsAb) containing anti-CD3 and an anti-c-erbB-2 proto-oncogene product. The prepared BsAb specifically reacts with both c-erbB-2-positive tumor cells and CD3+ CTL. Human CD4+ helper/killer T cells, induced from peripheral-blood mononuclear cells by activation with immobilized anti-CD3 monoclonal antibody (MAb) plus IL-2, showed no significant cytotoxicity against tumor cells. However, treatment of human CD4+ helper/killer cells with the BsAb caused the induction of specific cytotoxicity against c-erbB-2-positive tumor cells. CD4+ helper/killer cells also produced significant amounts of IL-2 during co-culture with c-erbB-2-positive tumor cells in the presence of the BsAb. Moreover, by combination with the BsAb, CD4+ helper/killer cells showed a strong in vivo anti-tumor effect against c-erbB-2 transfectant or human colon-cancer cells implanted in nude mice. Our results strongly suggest that the c-erbB-2 proto-oncogene product on human tumor cells may be a good target for BsAb-directed adoptive tumor immunotherapy.

Antibodies, Monoclonal↗

Generation propagation, and targeting of human CD4+ helper/killer T cells induced by anti-CD3 monoclonal antibody plus recombinant IL-2. An efficient strategy for adoptive tumor immunotherapy.

We developed a culture system for the rapid generation of CD4+ T cells that have both helper and killer functions. CD4+ T cells isolated from human PBL did not proliferate or develop significant cytotoxicity when treated with rIL-2 because of the lack of p75 IL-2R expression. However, culture of isolated CD4+ T cells with immobilized anti-CD3 mAb plus rIL-2 resulted in a marked proliferation (500-fold increase in 14 days) of CD4+ T cells. The proliferating CD4+ T cells produced IL-2 (92 U/ml) and showed strong cytotoxicity against OKT3 hybridoma cells and Daudi, K562, and U937 tumor cells in an anti-CD3 mAb-dependent manner. The CD4+ T cells contained significant amounts of cytolytic granule-related proteins such as serine esterase and perforin. Activated CD4+ helper/killer cells can be generated from both healthy donors and tumor patients and can be propagated in vitro for 14 to 35 days by biweekly restimulation with immobilized anti-CD3 mAb plus rIL-2. This culture yielded about 20,000-fold increase in cell number after a 21-day culture. Bispecific antibody containing anti-CD3 and anti-glioma Fab components enhanced the cytotoxicity of activated CD4+ helper/killer cells against IMR32 glioma cells. Moreover, the activated CD4+ helper/killer cells showed both helper and antitumor activity in vivo and prevented growth of anti-CD3 hybridoma cells in nude mice whether or not IL-2 was administered. These results indicate that anti-CD3 mAb plus IL-2-activated CD4+ helper/killer cells may provide an effective strategy for adoptive tumor immunotherapy of cancer.

Antibodies, Monoclonal↗

Natural cytotoxic T cells responsible for anti-CD3-induced cytotoxicity in mice.

T cells obtained from normal mouse spleen cells showed significant cytotoxic activity against Fc receptor positive tumor cells in the presence of anti-CD3 monoclonal antibody (mAb). This activity was designated as natural cytotoxic T cell (NCT) activity and compared with natural killer (NK) activity. Considerable levels of NCT activity were detected in mouse strains with both high and low NK activity. NCT cells were distributed in both lower and higher density fractions of Percoll discontinuous density gradients, while NK cells were enriched in the lower density fraction of Percoll gradients. Moreover, NCT activity was resistant to in vivo anti-asialo GM1 treatment, in contrast to NK cells. These results indicate that NCT cells, which have different characteristics from NK cells, are present in normal, nonimmunized mouse spleen cells. Unexpectedly, CD4+ T cells sorted from normal mouse spleen T cells revealed significant NCT activity, as did CD8+ T cells. It was also demonstrated that NCT cells require the LFA-1 molecule to lyse tumor cells in the presence of anti-CD3 mAb.

Animals↗

Perforin is expressed in CTL populations generated in vivo.

Immunization of C57BL/6 mice with syngeneic tumor cells, MBL-2, resulted in the generation of antitumor effector cells in vivo. The immunized C57BL/6 mice permanently rejected viable MBL-2 lymphoma cells, but not B16 melanoma cells. Cytotoxic T cells obtained from MBL-2-immunized mouse peritoneal cells (PEC) showed specific cytotoxicity against MBL-2, but not to YAC-1, RDM-4 and Meth A cells. By sorting with FACStar, the specific CTL were characterized as TCR alpha beta+ CD8+ T cells. Moreover, the cytoplasm of in vivo-induced CTL was stained with a monoclonal antibody against perforin. The localization of perforin in cytoplasmic granules of CTL was demonstrated by electron microscope analysis. This experiment presented the first evidence that in vivo-induced CD8+ CTL against syngeneic tumor cells expressed significant amounts of perforin.

Animals↗

Large-scale culture system of human CD4+ helper/killer T cells for the application to adoptive tumour immunotherapy.

A simple method for the rapid expansion of human CD4+ T cells with both helper and killer functions was established. CD4+ T cells separated from peripheral blood mononuclear cells using immunomagnetic beads were stimulated with immobilised OKT-3 monoclonal antibody (mAb) plus recombinant interleukin 2 (rIL-2) in 96 well culture plates. After 6 day-culture, the CD4+ T cells were restimulated by immobilised OKT-3 mAb for an additional 24 h, then inoculated into concentrated rotary-tissue culture bag and cultured for further 9 days. This procedure yielded a 3000-fold increase in cell number (about 3-5 x 10(9) per bag). Most of the cells (over 96%) continued to express CD4+ antigen and retained their capacity to produce IL-2. The activated CD4+ T cells showed marked cytotoxicity against Fc receptor positive tumour cells in the presence of OKT-3 mAb. Moreover, we succeeded in a specific targeting of the expanded CD4+ helper/killer T cells to c-erb B-2 positive tumour cells by means of anti-CD3 x anti-c-erb B-2 bispecific antibody. These results suggested that our established simple system will be available for the expansion of large number of CD4+ helper/killer T cells which may provide an efficient strategy for adoptive tumour immunotherapy.

Antibodies, Monoclonal↗

Proliferation of natural suppressor cells in long-term cultures of spleen cells from normal adult mice.

Natural suppressor cells were induced by culturing spleen cells from normal adult mice for 2 to 3 wk. The suppressor cells were large in size, nonadherent and nonspecifically suppressed the plaque-forming cells response of fresh spleen cells to SRBC in vitro. The suppressive activity of the cells was not affected by treatment with indomethacin or anti-Thy-1, anti-Ig, anti-Ia, or anti-asialoGM1 plus complement. Phenotype analysis by FACS showed that Thy-1, L3T4, Ly-2, CD3-epsilon, TCR-alpha beta, Ig, B220, Ia, and asialoGM1 Ag were all absent in the suppressor cells, although they were wheat germ agglutinin receptor positive. The suppressor cells did not demonstrate cytotoxicity against either YAC-1 or P-815 cells. Enriched large cell populations from fresh normal spleens expressed the same phenotypes and also exhibited the suppressive activity. These findings suggest that a minor population of natural suppressor cells exist in the normal adult mouse spleen and they proliferate during the in vitro culture of spleen cells.

Animals↗

Monoclonal antibody against actin cross-reacts with the Thy-1 molecule and inhibits lymphocyte function-associated antigen-1 dependent cell-cell interaction of T cells.

To assess the molecular mechanisms involved in cell-cell interactions of T cells, we produced a mAb that could block PMA-induced homotypic T cell aggregation. The established mAb (TN14 mAb) showed an inhibitory effect on T cell aggregation as large as that of mAb against lymphocyte function-associated Ag-1. TN14 mAb showed a strong reactivity with cell surface molecules on T cells, whereas it did not react with any cell surface Ag on macrophages, B cells, bone marrow cells, or WEHI 164 cells, which were used for immunization. However, all cell lysates could react with TN14 mAb in Western blotting analysis, indicating that TN14 mAb recognized some cytoplasmic protein. From biochemical analysis, TN14 mAb was demonstrated to react with the 43-kDa cytoskeletal protein actin. Moreover, from an immunoprecipitation study, TN14 mAb was demonstrated to cross-react with the Thy-1 molecule on T cells. The binding activity of TN14 mAb with the Thy-1 molecule on T cells was strongly blocked by the addition of purified actin, indicating that TN14 mAb recognized an actin-related epitope of the Thy-1 molecule. TN14 mAb blocked not only T cell aggregation but also cell-mediated cytotoxicity by CTL. These results strongly support the hypothesis that the Thy-1 molecule, a member of the Ig superfamily, may play an important role in cell-cell interactions of T cells.

Actins↗

Bispecific antibody-directed antitumor activity of human CD4+ helper/killer T cells induced by anti-CD3 monoclonal antibody plus interleukin 2.

Freshly isolated human CD4+ T cells can not respond to recombinant interleukin 2 (rIL-2) because of their lack of p75 IL-2 receptor expression. However, we succeeded in inducing a marked proliferation of purified CD4+ T cells by activation with rIL-2 plus anti-CD3 monoclonal antibody (mAb) cross-linked to a plastic plate. The proliferated CD4+ T cells produced a significant amount of IL-2 upon stimulation with phorbol ester plus A23187. Interestingly, CD4+ T cells activated with anti-CD3 mAb plus rIL-2 revealed a strong cytotoxic activity against Fc receptor (FcR)-positive tumor cells in the presence of anti-CD3 mAb. Moreover, the CD4+ T cells could lyse FcR-negative glioma cells by targeting with bispecific mAb containing anti-CD3 mAb and anti-glioma mAb. Thus, we demonstrated that rIL-2 and immobilized anti-CD3 mAb allowed the rapid generation of human CD4+ helper/killer T cells, which may be useful for the development of a new adoptive tumor immunotherapy.

Antibodies, Monoclonal↗

Macrophage-T cell interaction is essential for the induction of p75 interleukin 2 (IL-2) receptor and IL-2 responsiveness in human CD4+ T cells.

Fresh human CD8+ T cells showed a strong proliferative response to a high concentration of interleukin 2 (IL-2) in the absence of macrophages. In contrast, CD4+ T cells revealed no significant IL-2 responsiveness in the absence of macrophages. However, if CD4+ T cells were cocultured with macrophages, they showed higher proliferative response to IL-2 than CD8+ T cells. In accordance with the magnitude of IL-2 responsiveness, freshly isolated CD8+ T cells expressed significant amounts of p75 IL-2 receptor, while fresh CD4+ T cells did not express p75 IL-2 receptor. The expression of p75 IL-2 receptor on CD4+ T cells was induced by coculture with macrophages. The macrophage-induced p75 IL-2 receptor acquisition was blocked by monoclonal antibody (mAb) against class II antigen. Moreover, the addition of anti-CD4 mAb or anti-class II mAb to the culture caused a great inhibition of IL-2 responsiveness of CD4+ T cells. These results strongly suggest that macrophage-T cell interaction through CD4 and/or class II molecules is essential for the expression of p75 IL-2 receptor and IL-2 responsiveness in human CD4+, but not CD8+ T cells.

Antibodies, Monoclonal↗

T cell receptor-independent cell-mediated cytotoxicity by nude mouse lymphokine-activated killer cells.

Lymphokine-activated killer (LAK) cells, which can lyse a variety of tumor cells, can be induced from both normal and athymic nude mouse spleen cells by culture with high doses of recombinant interleukin 2 (rIL-2). LAK cells generated from nude mouse spleen cells (Nude-LAK cells) express just Thy 1.2 antigen, but not CD4 and CD8 antigens. Nude-LAK cells express neither T3 molecule, T cell receptor (TCR) alpha beta nor TCR gamma delta on their cell surface. The lack of TCR expression on Nude-LAK cells was confirmed by the results of northern blot analysis. LAK cells generated from normal mouse spleen cells (Nor-LAK) express TCR alpha, beta transcripts, while Nude-LAK cells express only sterile TCR beta transcript, but not TCR alpha transcript. TCR gamma delta transcripts were scarcely detected in both Nor-LAK cells and Nude-LAK cells. Thus, it is strongly suggested that Nude-LAK cells can recognize and lyse tumor cells by TCR-independent mechanisms. Monoclonal antibody against lymphocyte function-associated antigen (LFA-1) molecule can block the cytotoxicity of Nude-LAK cells, indicating an important role of such accessory molecules in Nude-LAK cell-mediated cytotoxicity.

Animals↗

Establishment of epithelial cell lines from human and mouse thymus immortalized by the 12S adenoviral E1a gene product.

To understand the role of thymic epithelial cells in the development of immature thymocytes, the establishment and cloning of thymic epithelial cell lines must be required. In the present study, we established human and mouse thymic epithelial cell lines through the immortalization by the transfection of cDNA sequences of adenoviral E1a 12S mRNA. This procedure resulted in the isolation of five stable cell lines (one human cell line and four mouse cell lines). These cell lines were positive in cytokeratin demonstrated by immunohistochemistry. Electron microscopic study revealed that they had bundles of tonofilaments and desmosome-like tight junctions. These findings indicate that the cell lines immortalized by E1a gene have retained the properties of epithelial cells. MHC class II antigens were not expressed on these cell lines. When interferon-gamma was added to the cultured epithelial cell lines, MHC class II antigens were induced in their cytoplasm and on their surface membrane, demonstrated by immunohistochemical and immunofluorescent studies. It is suggested that these stable cell lines from human and mouse thymus might serve a good tool for the further study of thymocytes differentiation and of unknown cytokines derived from thymus epithelium.

Animals↗

Thymic stromal cell clone with nursing activity supports the growth and differentiation of murine CD4+8+ thymocytes in vitro.

Thymic stromal cell clone, TNC-R3.1 cell, was established from spontaneous AKR/J mouse thymoma. TNC-R3.1 cell, which has the similar properties to thymic nurse cells, formed a unique complex with normal thymocyte subpopulations. Flow cytometry analysis demonstrated that CD4+8+ and CD4-8- immature thymocytes preferentially interacted with TNC-R3.1 stromal cell clone. CD4+8+ thymocytes, which interacted with TNC-R3.1 stromal cell clone, contained a higher proportion of large size and cycling T cells than did noninteracting CD4+8+ thymocytes. As is generally accepted, CD4+8+ thymocytes did not respond to any stimulation such as IL-2, anti-CD3 mAb (2C11), or IL-2 plus 2C11. However, culture of isolated CD4+8+ thymocytes on TNC-R3.1 stromal cell monolayer in the presence of suboptimal dose of IL-2 induced a significant cell growth. Moreover, the addition of 2C11 and IL-2 into this coculture system resulted in a dramatic increase of the proliferative response of thymocytes. Flow cytometry analysis showed the proliferating cells on TNC-R3.1, which originated from CD4+8+ thymocytes, were mostly TCR-alpha beta+ CD3+CD4-8+ T cells. These results provide in vitro evidence that CD4+8+ thymocytes are at an intermediate stage of T cell maturation and TNC-R3.1 stromal cell clone induces the growth and differentiation of CD4+8+ thymocytes into CD4-8+ T cells.

Animals↗

Dissociation of signal transduction via Thy-1 and CD3 antigens in murine T cells.

To understand the proliferation/differentiation of immature thymocytes which have not express T cell antigen receptor (TCR), we studied whether Thy-1 has signal-transducing capacity. Thy-1+ CD3-TCR- cells including thymocytes from BALB/c embryos and SCID mice and nude mouse splenic cells did not show proliferative responses in the culture with anti-Thy-1 (G7) plus phorbol myristate acetate (PMA), whereas Thy-1+ CD3+ cells from normal thymus or spleen did show a response to them. Since Thy-1-mediated activation is suggested to require co-expression of the CD3-TCR complex, we compared the T cell proliferative response in mature T cells stimulated with anti-Thy-1 (G7) and anti-CD3-epsilon (2C11). Under the presence of PMA or IL-2, accessory cell-depleted splenic T cells were cultured with G7 or 2C11. PMA augmented the proliferative response of splenic T cells cultured with G7 much more than that with 2C11. IL-2, however, showed reciprocal effect on the proliferation of G7 and 2C11-treated splenic T cells. These data suggest that signals triggered via Thy-1 and CD3-epsilon may provide a distinct intracellular pathway for T cell activation.

Animals↗

Anomalies in transgenic mice carrying the human interleukin-2 gene.

To elucidate the in vivo function of interleukin-2 (IL-2) we produced transgenic mice with either the human genomic IL-2 gene (hIL-2) or the murine metallothionein-I promoter-human IL-2 fusion gene (MThIL-2). Nine of 12 transgenic mice independently obtained showed motor ataxia (2 mice with hIL-2, and 7 mice with MThIL-2) due to the infiltration of lymphocytes into the cerebellar tissues (Katsuki et al. 1989). In addition to the ataxia shown by both groups of transgenic mice, other features were found with respect to each introduced DNA. The transgenic mice with hIL-2 suffered from alopecia. Lymphocytic infiltrates were found in the skin underlying the hairless regions as well as in the brains. On the other hand, the male transgenic mice with MThIL-2 had atrophic testes. In these male mice, sperm or cells of the later stages of spermatogenesis were depleted in the testes without any apparent signs of an immunological response. These findings suggest that the introduced human IL-2 genes may have the pleiotropic functions of inducing tissue-specific immunological responses in the brain and skin, and of having harmful effects on spermatogenesis.

Abnormalities, Multiple↗

Split tolerance in nude mice transplanted with 2'-deoxyguanosine-treated allogeneic thymus lobes.

To elucidate the acquisition of self tolerance in the thymus, full-allogeneic thymic chimeras were constructed. Athymic C3H and BALB/c nude mice were reconstituted with the thymic lobes of BALB/c and B10.BR fetuses, respectively, that were organ cultured for 5 days in the presence of 2'-deoxyguanosine. T cells in these chimeras were tolerized to the host MHC in both MLR and CTL assays. In contrast, T cells in the chimeras exhibited split tolerance for the thymic MHC haplotype. CTL specific for class I MHC of the thymic haplotype were generated not only from the peripheral T cells of the chimeras but also from thymocytes re-populated in the engrafted thymic lobes. However, T cells in these chimeras responded poorly to the class II MHC of the thymic haplotype in a standard MLR assay. In a syngeneic MLR culture upon stimulation with enriched APC of the thymic haplotype, only 22 to 48% of the responses were mediated by CD4+ cells, and proliferations of CD4- cells were prominent. There were no haplotype-specific suppressor cells detected which would cause the unresponsiveness to the thymic class II MHC. These results indicated that the thymic lobes treated with 2'-deoxyguanosine were defective in the ability to induce the transplantation tolerance for the class I MHC expressed on the thymus, although the same thymic lobes were able to induce the transplantation tolerance for the thymic class II MHC.

Animals↗

Expression and function of CD2 during murine thymocyte ontogeny.

CD2, originally recognized as the sheep erythrocyte receptor of human T cells, has been implicated in early T cell development in the thymus. In this report, we examined the expression and functional role of CD2 during murine thymocyte ontogeny by using monoclonal antibodies to murine CD2. Surface expression of CD2 was first detected in Thy-1+ fetal thymocytes at day 14 of gestation and it progressively increased during CD4-CD8- phenotype. Surface IL 2 receptor (CD25) expression was readily detected in surface CD2- cells at day 13 of gestation and the majority of CD2+ cells appeared to be generated from CD25+ cells thereafter. In adult CD4-CD8- thymocytes, the expression of CD2 and CD25 was mutually exclusive. These results indicate that surface CD2 expression is not a prerequisite for CD25 induction during murine thymocyte ontogeny. This was further confirmed by fetal thymus organ culture in which anti-murine CD2 mAb was included. The antibody treatment led to a suppressed CD2 expression on thymocytes; however, there was no effect on the appearance of CD25. Moreover, no influence on the development of mature CD3+ thymocytes was observed after fetal thymus organ culture in the presence of anti-murine CD2 mAb, and a substantial number of CD3+CD2- cells was demonstrated in fetal and adult CD4-CD8- thymocytes. These findings argue against the functional relevance of CD2 expression during early T cell development as proposed in humans.

Age Factors↗