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T Abo

Publications and source records attributed to T Abo.

At least 73 records · Page 4Linked to original sources

Mechanisms involved in graft-versus-host disease induced by the disparity of minor histocompatibility M1s antigens.

In this study we investigated which type of T cells: high T-cell receptor (TCRhigh, cells of thymic origin) or intermediate TCR (TCRint, cells of extrathymic origin), expanded in the liver and other organs, resulting in the induction of graft-versus-host disease (GVHD) with minor lymphocyte stimulating (M1s) disparity. When 6.5 Gy-irradiated BALB/c (H-2d M1s-1b2a) mice were injected with interleukin-2 receptor beta-chain(-) (IL-2Rbeta(-)) CD3high cells purified from the spleen of B10.D2 (H-2d M1s-1b2b) mice, IL-2Rbeta(+)CD3high cells expanded in the liver and other organs of recipient mice. The majority of these cells were found to be IL-2Ralpha(-)Mel-14(-)CD4(+)Vbeta3(+) in GVHD mice. The CDR3 region in their TCR-alphabeta (i.e. N-Dbeta-N) was polyclonal, although there were skewed usages of Vbeta3 and Jbeta2.4. The majority of cells were confirmed to be of donor origin by the individual discrimination method, namely, they originated from isolated IL-2Rbeta(-)CD3high cells. Interestingly, these T cells lacked cytotoxicity against both a natural killer (NK)-sensitive target and thymocytes with M1s disparity and nondisparity. Another important finding was that activated granulocytes expanded at generalized sites in GVHD mice. The present results raise the possibility that M1s disparity is mainly recognized by TCRhigh cells with unique properties but that direct effector cells that induce GVHD might not be such T cells but rather accompanied granulocytes.

Adoptive Transfer↗

Effects of intestinal bacteria on the development of colonic neoplasm II. Changes in the immunological environment.

To study the effects of intestinal bacteria on the development of colonic neoplasm, we have established gnotobiotic mice with a single species of intestinal bacteria. In the previous study, the incidence of colonic adenoma induced with 1,2-dimethylhydrazine (DMH) in the gnotobiotic mice with Lactobacillus acidophilus, gnotobiotic mice with Escherichia coli and germ-free mice were 30, 50 and 74%, respectively. In this study, 7-week-old mice in each group were sacrificed without the administration of DMH to examine the constituents of immuno-competent cells in various mouse organs using flow cytometry. In the gnotobiotic mice, CD3 intermediate interleukin (IL)-2Rbeta positive cells were observed predominantly in the liver. In the gnotobiotic mice with L. acidophilus, Mac-1 positive Gr-1 positive cells were observed predominantly in the colonic lamina propria. The activation of extrathymic T cells in the liver and granulocytes in the colonic mucosa may be related to anti-neoplastic effects of L. acidophilus in this experimental model.

1,2-Dimethylhydrazine↗

The majority of lymphocytes in the bone marrow, thymus and extrathymic T cells in the liver are generated in situ from their own preexisting precursors.

Parabiotic pairs of B6.Ly5.1 and B6.Ly5.2 mice were used to investigate how lymphocytes in various organs and various lymphocyte subsets mixed with partner cells. The origin of partner cells was determined by using anti-Ly5.1 mAb in conjunction with immunofluorescence tests. Parabiosis was also produced after the irradiation of B6.Ly5.2 mice at various doses to prepare an immunosuppressive partner. Irrespective of irradiation, lymphocytes and other hematopoietic cells in the bone marrow and lymphocytes in the thymus showed a low mixture of partner cells in comparison with those of all other organs tested. On the other hand, lymphocytes in the blood, spleen, and lymph nodes became a half-and-half mixture of their own cells and partner cells by 14 days after parabiosis. Among lymphocyte subsets, intermediate CD3 cells (i.e., CD3int cells) and NKT cells (i.e., NK1.1+ subset of CD3int cells) in the liver also showed a low mixture of partner cells. The present results raise the possibility that lymphocytes in the bone marrow and thymus, and extrathymic T cells in the liver might be in situ generated from their own preexisting precursor cells. Another observation was that, after irradiation, partner cells showed accelerated mixture even if they showed a low mixture under non-irradiated conditions. However, only lymphocyte subsets with the same phenotype as those of preexisting cells entered the corresponding sites.

Animals↗

Erythropoietin induces the expansion of c-kit+ progenitors for myeloid and erythroid cells, but not for lymphoid cells, in the bone marrow and liver.

In humans, the numbers of erythrocytes and granulocytes, but not that of lymphocytes, tend to increase in parallel. To determine the mechanism, we investigated how the administration of erythropoietin induces the expansion of erythroid cells and other lineage cells in the bone marrow, liver, and other organs of mice. When mice were injected twice (days 1 and 2) with erythropoietin at a dose of 20 or 200 IU/day/ mouse, a prominent expansion of TER 19+ (erythroid cells) and Gr-1high cells (granulocytes) occurred in the liver, spleen, and bone marrow day 3 after the initial injection. On the other hand, lymphoid cells, including NK cells, extrathymic T cells, and conventional T cells, did not expand. In parallel with the expansion of erythroid cells and granulocytes, the levels of c-kit(+)Lin- cells increased in the liver and bone marrow. Despite the increase in the proportion of c-kit(+) Lin(-) cells, the generation of lymphocytes (e.g., T cells) decreased when such bone marrow cells were injected to scid mice. These results suggest that erythropoietin has the ability to induce the expansion of not only erythroid cells but also granulocytes in the liver, spleen, and bone marrow. Furthermore, c-kit+ progenitors which may commit themselves to erythroid and myeloid cells, but not to lymphoid cells, were also activated in the liver and bone marrow of mice treated with erythropoietin.

Adult↗

Successful treatment of two patients with primary cardiac malignant lymphoma.

We describe two patients with primary cardiac malignant lymphoma involving the right atrium and superior vena cava, resulting in intractable right cardiac failure and superior vena cava syndrome. Patients were diagnosed by surgical myocardial biopsy and were treated with combination chemotherapy for non-Hodgkin's lymphoma. Each attained a marked response, and hence avoided sudden death from tricuspid atresia. Both have remained alive for more than 21 and 34 months, respectively, and continue intermittent combination chemotherapy.

Aged↗

Recombinant murine interleukin-12 facilitates induction of cardiac myosin-specific type 1 helper T cells in rats.

Autoimmunity after viral myocarditis is considered to be one of the causes of dilated cardiomyopathy. Cytokines are assumed to play an important role in the pathogenesis. We recently reported that interleukin (IL)-2 and interferon (IFN)-gamma mRNA are expressed in the myocardium of rats with experimental autoimmune myocarditis (EAM). However, the role of cytokines in autoimmune myocardial injury in detail is still not clear. Reverse transcription-polymerase chain reaction identified IL-12 (p40) mRNA in antigen-presenting cells in the initial phase of EAM. Cardiac myosin-specific T lymphocytes (MSTLs) were cultured with cardiac myosin peptide (CMP) in the presence of IL-2 and/or IL-12 and were transferred to other naive rats. The results showed that EAM could be effectively induced by transfer of MSTLs cultured with IL-12, whereas transfer of MSTLs cultured with IL-2 was less effective. However, IL-2 acts synergistically with IL-12, and MSTLs cultured with both cytokines most efficiently induce EAM. In vitro experiments showed that MSTLs cultured with both IL-12 and IL-2 produced a much greater amount of IFN-gamma than did MSTLs cultured with either IL-12 or IL-2 alone. The amount of IFN-gamma production was correlated with pathogenicity of MSTLs. Transfer experiments after sorting further demonstrated that the transfer was affected by CD4+ helper T (Th) cells but not by CD8+ cytotoxic T lymphocytes. IL-12 and IL-2 synergistically enhance the pathogenicity of MSTLs. Furthermore, a type 1 Th (Th1) cytokine, IFN-gamma, which is a potent regulatory cytokine of autoimmunity, is produced by MSTLs. IL-12 and IL-2 potentiate the expansion of cardiac myosin-specific Th1 cells and play an important role in the development of autoimmune myocardial injury.

Animals↗

Differentiation of forbidden T cell clones and granulocytes in the parenchymal space of the liver in mice treated with estrogen.

Estrogen was administered to B6 (NK1.1+ strain), BALB/c (Mls-1b2a, V beta 3+ cells being forbidden clone), or (B6 x BALB/c) F1 mice (1 mg/mouse). On days 3 and 10, the number of cells yielded by the liver doubled, whereas that yielded by the thymus decreased prominently. The numbers of cells in the spleen, bone marrow, and blood were unchanged. c-kit+ stem cells, which give rise to multilineage cells, were present in the liver and bone marrow. The proportion of such c-kit+ cells in the liver increased while that in the bone marrow decreased on day 3. Therefore, the absolute number of c-kit+ stem cells increased severalfold in the liver and clusters of lymphoid cells became visible in the parenchymal space. At that time, the expression of recombination activating gene-1 and -2 mRNAs became prominent. Reflecting these phenomena, the number and proportion of IL-2R beta+ CD3int cells (i.e., primordial T cells) increased in the liver on days 3 and 10. An increase in the number of proportion of such CD3int cells was seen even in the thymus and uterus. In parallel with the increase of CD3int cells, the proportion of granulocytes also increased in various organs on day 3. Forbidden clones were present in either the NK1.1+ or the NK1.1- subset of CD3int cells in (B6 x BALB/c) F1 mice treated with estrogen and liver mononuclear cells in such mice acquired potent cytotoxicity against syngeneic thymocytes. These results reveal that estrogen has the ability to potentiate the generation of self-reactive T cells and granulocytes in the liver and other organs.

Animals↗

Intermediate TCR cells can induce graft-versus-host disease after allogeneic bone marrow transplantation.

Mice fall victim to GVHD when subjected to immunosuppressive treatment and injected with allogeneic bone marrow cells. A major population of cells associated with GVHD is known to be T cells. However, whether such T cells are of thymic or extrathymic origin is obscure. We applied two immunosuppressive conditions, 9 and 6.5 Gy irradiation, to C3H/He mice (H-2k). Bone marrow cells for injection were obtained from C57BL/6 (B6) mice (H-2b). The 9-Gy mice were reconstituted by lymphocytes of donor origin and showed GVHD, whereas 6.5-Gy mice were reconstituted by lymphocytes of recipient origin and showed mild GVHD. The liver was the organ where the reconstitution of lymphocytes occurred efficiently, and a major lymphocyte subset was intermediate (int) CD3 cells (i.e., CD3int cells) in both mice. CD3int cells had the properties of extrathymic T cells, showing the phenotype of NK1.1 + CD3int using invariant V alpha 14 chain. In 6.5-Gy mice, allogeneic cells were rejected by extrathymic T cells of recipient origin. The stored CD3int cells from the liver of 9-Gy mice evoked similar GVHD when transferred into 6.5-Gy irradiated C3H/He mice. These results suggest that CD3int cells of extrathymic origin are a major population for the induction of GVHD under immunosuppressive conditions.

Adoptive Transfer↗

The primary site of CD4- 8- B220+ alphabeta T cells in lpr mice: the appendix in normal mice.

There have been no reports on an abundance of CD4- 8- B220+ alphabeta T cells, seen in autoimmune mice carrying the lpr gene (abnormal Fas gene), in any immune organs of normal mice. We herein report, however, that such alphabeta T cells were abundant at intraepithelial sites of the appendix in normal mice. They lacked the expression of NK1.1 Ags (C57BL/6 mice), but had the morphology of granular lymphocytes and contained forbidden T cell clones in the minor lymphocyte-stimulating antigen (Mls) system (C3H/He mice with Mls-1b2a). In other words, many properties of intraepithelial T cells in the appendix resembled those ascribed to abnormal alphabeta T cells, which expand in the lymph nodes and spleen of lpr mice. In the case of lpr mice, CD4- 8- B220+ alphabeta T cells first expanded in the appendix and then extended to other organs. CD4- 8- B220+ alphabeta T cells seemed to originate in situ from c-kit+ stem cells in the appendix. These results suggest that the appendix is one of the primary sites in which CD4- 8- B220+ alphabeta T cells exist, and that these cells carry many primordial properties as prototype T cells.

Animals↗

Critical role of NK1+ T cells in IL-12-induced immune responses in vivo.

CD1-dependent NK1+ T cells rapidly produce IL-4 upon stimulation through the TCR. These cells may therefore play an important role in the initiation of Th2 responses. Here, we show that NK1+ T cells constitutively express receptors for IL-12 and IFN-gamma, and that IL-12 induces production of perforin in these cells. Moreover, while IL-12 induces high levels of IFN-gamma and cytotoxic activity of hepatic or splenic mononuclear cells against tumor cells, this effect of IL-12 is significantly reduced in CD1-deficient mice with impaired NK1+ T cells development. These results indicate that NK1+ T cells play a critical role in IL-12-induced production of IFN-gamma to initiate Th1 immune responses and as IL-12-induced cytotoxic effector cells to initiate antitumor immunity.

Animals↗

Low level of mixing of partner cells seen in extrathymic T cells in the liver and intestine of parabiotic mice: its biological implication.

c-kit+ stem cells have recently been found in the liver and intestine of adult mice. We examined whether such stem cells give rise to extrathymic T cells in these organs in situ. To this end, we used parabiotic B6.Ly5.1 and B6.Ly5.2 mice, i.e. mice sharing the circulation. The origin of lymphocytes was identified by anti-Ly5.1 and anti-Ly5.2 monoclonal antibodies in conjunction with immunofluorescence assays. Lymphocytes in the blood, spleen, lymph nodes and liver had become a half-and-half mixture of Ly5.1+ and Ly5.2+ cells in both individuals by day 14. However, this level of mixing decreased in extrathymic T cells in the liver (i.e. NK T cells) and intestine by day 14 and thereafter. The same was observed in T cells of the thymus. The data from immunohistochemical staining supported the results of immunofluorescence assays for suspension cells. The present results raise the possibility that extrathymic T cells in the liver and intestine may arise from their own pre-existing precursor cells, possibly from their own stem cells. Another important finding was that the composition pattern of lymphocyte subsets in one individual was quite similar to that in its partner at various sites. This result was interpreted to mean that only selected partner cells migrate to specific sites in the other partner individual.

Animals↗

Decrease in the proportion of granulated CD56+ T-cells in patients with a history of recurrent abortion.

We investigated levels of CD56+ T-cells (CD3+ CD56+ cells) in peripheral circulation, which express one of the natural killer (NK) cell markers, by flow cytometry and with monoclonal antibodies in patients with a history of recurrent abortion. We compared these values with those obtained in normal women who were not pregnant as well as in normal pregnant subjects. The percentage of CD56+ T-cells in the peripheral blood of patients with a history of recurrent abortion was less than that in the non-pregnant or pregnant women. These results suggest that CD56+ T-cells with extrathymic properties may be associated with the maintenance of normal pregnancy in humans.

Abortion, Habitual↗

Increase of CD57+ T cells in knee joints and adjacent bone marrow of rheumatoid arthritis (RA) patients: implication for an anti-inflammatory role.

The distribution of CD57+ T and CD56+ T cells in patients with RA was examined. In control osteoarthritis patients, these cells exist as a minor population in the peripheral blood. Our data show that in patients with RA, CD57+ T cell levels are elevated in peripheral blood, knee joint fluid, knee synovial membrane and bone marrow (BM), compared with peripheral blood of controls. CD57+ T cells are especially high in knee joint fluid and joint-adjacent BM, while CD56+ T cells show no such increase. CD57+ T cells contain a major population of CD8+ cells and higher proportions of CD4-8- cells and gammadelta T cells than do CD57- T cells. CD57+ T cells in peripheral blood and joint fluid increase with the duration of disease. Erythrocyte sedimentation rate (ESR) is inversely correlated with the proportion of CD57+ T cells in the joint fluid. Although RA frequently occurs in patients with CD3+57+ cell leukaemia, and some CD57+ T cells are likely to be involved in the onset of RA, we suggest that CD57+ T cells may rather suppress inflammation of RA, and other cellular components (e.g. granulocytes) may govern the severity of the inflammation of RA. These CD57+ T cells are probably generated extrathymically in the adjacent BM or joint space.

Adult↗

Phenotypic and functional modulation of T cells in vivo by extrathymic T cells when T cells with MHC class II disparity were injected into athymic nude mice.

TCRhigh cells are generated by the mainstream of T cell differentiation in the thymus, whereas TCRint cells (or NK1.1+ T cells) are generated extrathymically in the liver and by an alternative intrathymic pathway. It is still unknown how these T cell populations interact in vivo with each other. To investigate the interaction of TCRint cells with TCRhigh cells, we used congenitally athymic nude (B6-nu/nu) mice which carry only TCRint cells in all immune organs. When TCRhigh cells from B6-C-H-2bm12 (bm12) mice (i.e. I-Abm12) were injected into B6-nu/nu mice (i.e. 1-Ab), the expanding T cell population was a mixture of TCRhigh cells of donor origin and TCRint cells of recipient origin. However, 9 Gy-irradiated nude mice permitted a full expansion of TCRhigh cells which expressed the IL-2Ralpha+beta+ phenotype, namely, they were at the most activated state. These mice died of acute graft-versus-host disease (GVHD) within 5 days. On the other hand, non-irradiated nude mice suppressed the expansion of TCRhigh cells of donor origin and such TCRhigh cells continued to have the IL-2Ralpha(+/-)beta+ phenotype. These mice could survive but showed signs of chronic GVHD thereafter. In both situations, CD4+alphabeta T cells expanded irrespective of donor or recipient origin. These results suggest that TCRint cells in the recipient mice possess a regulatory function in relation to donor TCRhigh cells; as a result, fully activated TCRhigh cells acquired the IL-2Ralpha+beta+ phenotype and injured the host, but TCRhigh cells suppressed in vivo remained as the IL-2Ralpha(+/-)beta+ phenotype and only partially injured the host.

Animals↗

Expansion of CD56+ NK T and gamma delta T cells from cord blood of human neonates.

A particular T cell population expressing NK cell markers, CD56 and CD57, exists in humans. Many CD56+ T and CD57+ T cells (i.e. NK T cells) exist in the liver and increase in number in the blood with ageing. They may be a human counterpart of extrathymic T cells, similar to NK1.1+ CD3int cells seen in mice. We investigate here the existence of such NK T cells in human cord blood and the in vitro expansion of these cells by the stimulation of human recombinant IL-2 (rIL-2). There were very small populations (< 1.0%) of CD56+ T cells, CD57+ T cells, and gamma delta T cells in cord blood. However, all of these populations increased in number after birth and with ageing. When lymphocytes in cord blood were cultured with rIL-2 (100 U/ml) for 14 days, CD56+ T cells expanded up to 25% of T cells. CD57+ T cells were never expanded by these in vitro cultures. The expansion of gamma delta T cells (mainly V gamma9- nonadult type) also occurred in the in vitro culture. A considerable proportion of CD56+ T cells was found to use V alpha24 (i.e. equivalent to invariant V alpha14 chain used by murine NK T cells) for TCR alpha beta. These results suggest that neonatal blood contains only a few NK T cells but CD56+ NK T cells and gamma delta T cells are able to expand in vitro.

Adult↗

Characterization of NK cells and extrathymic T cells generated in the liver of irradiated mice with a liver shield.

We previously reported that c-kit+ stem cells which give rise to extrathymic T cells are present in the liver of adult mice. Further characterization of extrathymic T cells in the liver of adult mice is conducted here. When mice with a liver shield were lethally (9.5 Gy) irradiated, all mice survived. All tested organs showed a distribution pattern of hepatic lymphocytes on day 7. The distribution pattern in the liver was characterized by an abundance of NK (CD3- IL-2Rbeta+) and extrathymic T cells (CD3int IL-2Rbeta+) before and after irradiation. To determine their function, post-irradiation allogeneic bone marrow transplantation (BMT) was performed in mice with or without a liver shield. Allogeneic BM cells were rejected in mice with a liver shield and specific activation of CD8+ CD3int IL-2Rbeta+ cells was induced. At that time, potent cytotoxicity of liver mononuclear cells (MNC) against allogeneic thymocytes was induced. Both NK1.1+ and NK1.1- subsets of CD3int cells expanded in these mice. An in vivo elimination experiment of the subsets indicated that the NK1.1+ subset of CD3int cells (i.e. NK T cells) was much more associated with the rejection of allogeneic BM cells. However, even after the elimination of NK T cells, allogeneic BM cells were rejected. In this case, granulocytes expanded in parallel with NK1.1- subsets. Granulocytes may also be associated with the rejection of allogeneic BM cells. These results suggest that the liver is an important haematopoietic organ even in adult life.

Animals↗

Regulatory mechanisms in expression of the traY-I operon of sex factor plasmid R100: involvement of traJ and traY gene products.

BACKGROUND: The plasmid R100 encodes tra genes essential for conjugal DNA transfer in Escherichia coli. Genetic evidence suggests that the traJ gene encodes a positive regulator for the traY-I operon, which includes almost all the tra genes located downstream of traJ. The molecular mechanism of regulation by TraJ, however, is not yet understood. traY is the most proximal gene in the traY-I operon. TraY promotes DNA transfer by binding to a site, sbyA, near the origin of transfer. TraY is suggested to have another role in regulation of the traY-I operon, since it binds to two other sites, named sbyB and sbyC, located in the region preceding traY-I. RESULTS: Using a traY-lacZ fusion gene, we showed that the traY-I operon was expressed only in the presence of traJ. The TraJ-dependent expression of traY-I required the E. coli arcA gene, which encodes a host factor required for conjugation. TraJ-dependent transcription occurred from a promoter (named pY) located upstream of traY-I. The isolated TraJ protein was found to bind to a dyad symmetry sequence, named sbj (specific binding site of TraJ), which existed in the intergenic region between traJ and traY-I. We also demonstrated that TraY repressed the TraJ-dependent expression of traY-I at the TraY binding sites, sbyB and sbyC, which overlapped with pY. CONCLUSIONS: TraJ is a protein which binds to the sbj site in the region upstream of the promoter pY and positively regulates expression of the traY-I operon in the presence of the E. coli arcA gene. Since sbj is located 93bp upstream of pY in the intergenic region between traJ and traY-I, TraJ presumably contacts with a transcription apparatus to promote transcription from pY. TraY, which is known to activate the initiation of conjugal DNA transfer, has a new role in the transcriptional autoregulation of traY-I expression. At levels which are sufficient to initiate conjugal DNA transfer, TraY represses traY-I transcription in the presence of TraJ.

Bacterial Outer Membrane Proteins↗