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Biomedical subjects

J A Gracie

Publications and source records attributed to J A Gracie.

At least 19 recordsLinked to original sources

Abnormal expression of MHC class II and ICAM-1 by melanocytes in vitiligo.

The relationship between damage to cutaneous melanocytes and antimelanocyte autoimmunity in vitiligo is unclear. We have demonstrated abnormal expression of MHC class II molecules by perilesional melanocytes in 13/21 patients with vitiligo and a six-fold increase in the number expressing the intercellular adhesion molecule ICAM-1. These molecules have important roles in normal antigen presentation and activation of helper T lymphocytes, and their expression by melanocytes may contribute to the abnormal immune response in vitiligo. MHC class II is not expressed by melanocytes in psoriasis and is unlikely to be induced in vitiligo by cytokines released from activated non-melanocyte-specific T lymphocytes.

Autoimmune Diseases

B cell dysfunction in haemophilia in the absence and presence of HIV-1 infection.

56 haemophiliacs selected on the basis of HIV-1 antibody status, liver disease grade and mean annual dose of clotting factor concentrate used were studied. Spontaneous and stimulated IgG and IgM production in vitro were measured. HIV-1 infection was associated with increased spontaneous immunoglobulin production and an impaired response to pokeweed mitogen and Staph Aureus protein A. Implying a shift in the proportions of partially and fully activated B cells. In the absence of HIV-1 infection there was a shift to a greater proportion of partially activated B cells in patients with severe liver disease. The remainder had in vitro immunoglobulin production comparable to controls. B cell abnormalities occur early in the course of HIV-1 infection. Liver disease and not clotting factor concentrate treatment cause B cell abnormalities in the absence of HIV-1 infection in haemophilia.

Adolescent

T cell requirements for the rejection of renal allografts bearing an isolated class I MHC disparity.

This study has examined the cellular and humoral responses underlying the rejection of rat renal allografts bearing an isolated RT1Aa class I MHC disparity. RT1Aa disparate kidneys were rejected promptly by high responder RT1u but not by low responder RT1c recipients (median survival time 10 d and greater than 100 d, respectively). The magnitude and phenotype of the cellular infiltrate were similar in rejecting and nonrejecting RT1Aa disparate kidneys. Paradoxically, graft infiltrating cells and spleen cells from RT1u recipients showed minimal ability to lyse donor strain lymphoblasts in vitro, whereas effector cells from RT1c recipients showed modest levels of cytotoxicity. Injection of RT1u rats with MRC OX8 mAb was highly effective at selectively depleting CD8+ cells from graft recipients but had no effect in prolonging the survival of RT1Aa disparate grafts despite the complete absence of CD8+ cells from the graft infiltrate, which included numerous CD4+ T cells and macrophages. RT1u, but not RT1c, recipients mounted a strong alloantibody response against RT1Aa disparate kidneys. Immune serum obtained from RT1u recipients that had rejected a RT1Aa disparate graft was able, when injected into cyclosporin-treated RT1u recipients, to restore their ability to reject a RT1Aa, but not a third-party RT1c, kidney. These results suggest that CD8+ cells in general and CD8+ cytotoxic effector cells in particular are unnecessary for the rapid rejection of RT1Aa class I disparate kidney grafts by high responder RT1u recipients. By implication, CD4+ T cells alone are sufficient to cause prompt rejection of such grafts and they may do so by providing T cell help for the generation of alloantibody.

Animals

Renal allograft rejection in CD4+ T cell-reconstituted athymic nude rats. The origin of CD4+ and CD8+ graft-infiltrating cells.

PVG-rnu/rnu nude rats reject a fully allogeneic DA renal allograft after the adoptive transfer of naive CD4+ T cells alone, but rejection is accompanied by the accumulation of many CD8+ leukocytes within the graft. In order to clearly establish the provenance of these CD8+ cells infiltrating rejecting kidney allografts, nude recipients (PVG-RT7a) were injected with CD4+ T cells from the PVG-RT7b congenic strain bearing an allotypic variant of the leukocyte-common antigen. Dual fluorescence and immunohistochemistry demonstrated that approximately 75% of the total infiltrate was host-derived; the donor-derived RT7b population was almost entirely (92-99%) CD4+, CD5+, CD3+, and alpha beta TCR+. At least 97% of the CD8+ cells were of nude origin. There was no evidence of donor-derived CD8+ cells or of a CD4+8+ double-staining population. Unexpectedly, nearly half of the alpha beta TCR+ cells from the grafts were of nude origin.

Animals

Capacity to produce interleukin 2 is impaired in haemophilia in the absence and presence of HIV 1 infection.

Capacity to produce interleukin-2 (IL-2) was measured in haemophiliacs from a well-defined treated cohort. Patients were selected on the basis of HIV-1 antibody status, mean annual dose of clotting factor and liver disease severity. T-cell subsets and peripheral blood mononuclear cell proliferation to Mycobacterium tuberculosis purified protein derivative (PPD) were also measured. Haemophiliacs had reduced IL-2 production, independent of HIV-1 antibody status, mean annual dose of clotting factor concentrate used and liver disease severity. In HIV-1 antibody positive patients reduced levels correlated with PPD proliferative responses (r = 0.6, P = 0.04) and CD8 + ve (r = 0.5, P = 0.05) but not CD4 + ve cell numbers (r = 0.3, P = 0.2). No such correlations were seen in HIV-1 antibody negative patients. Reduced IL-2 production in HIV-1 antibody negative haemophiliacs was due to a qualitative defect. In HIV-1 positive patients a qualitative defect in T lymphocytes that selectively proliferate in response to PPD was observed. CD4 + ve cell numbers were reduced in HIV-1 positive patients.

Adult

FcR blocking activity in serum of actively enhanced rat renal allograft recipients due to IgG anti-class II MHC alloantibody.

In some rat strain combinations, pre-operative donor-specific blood transfusion produces long-term renal allograft survival, although the underlying mechanisms are unclear. This study has examined whether Fc receptor (FcR)-blocking activity could be detected in the serum of unmodified PVG strain recipients bearing a rejecting renal allograft and in recipients bearing an actively enhanced graft following pre-operative blood transfusion. Serum harvested on Day 5 from actively enhanced PVG recipients of DA rat renal allografts was shown to specifically inhibit erythrocyte-antibody (EA) rosette formation with donor strain, but not third-party, splenocytes, while the levels of EA rosette inhibition (EAI) in Day 5 serum from rejecting rats remained markedly lower. This FcR-blocking activity was present in enhanced serum fractions, prepared by discontinuous density gradient centrifugation, which corresponded to the 7 S peak. Purified IgG prepared from enhanced serum was also found to inhibit EA rosette formation with donor splenocytes, and absorption of the IgG preparations with donor strain erythrocytes failed to abrogate EA rosette inhibition. Further experiments, in which absorbed IgG from enhanced animals was tested for FcR blocking activity against splenocytes of defined major histocompatability complex (MHC) subregion specificities, established that FcR-blocking activity was mediated by IgG alloantibodies directed against donor MHC class II antigens. Whether the presence of such antibodies early after transplantation contributes to the beneficial effect of blood transfusion on graft survival remains to be determined.

Animals

Cellular requirements for renal allograft rejection in the athymic nude rat.

This study has examined the ability of adoptively transferred CD4+ and CD8+ T cells to mediate rejection of a fully allogeneic DA renal graft in the PVG nude rat. Transfer, at the time of transplantation, of naive CD4+ T cells caused rapid graft rejection and primed CD4+ cells were several times more potent. In contrast, naive or specifically sensitized CD8+ cells were entirely ineffective at mediating renal allograft rejection. Whereas nonrejecting grafts showed only a mild cellular infiltrate, rejecting grafts in CD4+ reconstituted animals showed a substantial infiltrate and many of the infiltrating cells had a phenotype (MRC OX8+, MRC OX19-), consistent with NK cells. Experiments using a mAb (HIS 41) against an allotypic determinant of the leukocyte common antigen confirmed that the majority (greater than 80%) of the cellular infiltrate in rejecting grafts derived from the host rather than from the CD4+ inoculum. Infiltrating mononuclear cells, obtained from rejecting allografts 7 d after transplantation in CD4+-injected PVG nude hosts, showed high levels of in vitro cytotoxicity against not only kidney donor strain Con A blasts but also third-party allogeneic Con A blasts, as well as against both NK and LAK susceptible targets. When splenocytes from nontransplanted nude PVG rats were tested in vitro they also demonstrated high levels of lytic activity against both NK and LAK susceptible targets as well as allogeneic Con A blasts, which were not susceptible to lysis by spleen cells from euthymic rats. These findings suggest that injected CD4+ cells may cause renal allograft rejection by the recruitment of extrathymically derived, widely alloreactive cells into the kidney in this model of graft rejection.

Animals

The cellular basis of the local graft-versus-host reaction in rat kidney.

Injection of parental strain rat lymphocytes under the kidney capsule of semi-allogeneic F1 recipients causes a local graft-versus-host reaction (GVHR) characterized by a heavy mononuclear cell infiltrate and renal tubular destruction. Since the cellular events involved may have relevance to allogeneic tissue damage in GVH disease and allograft rejection, a detailed analysis of the rat renal GVH reaction was performed. A purified CD4+ lymphocyte subpopulation was as effective in mediating a local GVHR as unfractionated parental lymphocytes, but neither naive CD8+ nor specifically sensitized CD8+ lymphocytes produced a detectable renal GVHR. Mononuclear cells harvested from renal GVHR lesions induced by CD4+ lymphocytes were able to lyse natural killer (NK)-sensitive targets when tested in vitro, but showed no allospecific cell-mediated cytotoxicity. Experiments using recombinant PVG rats demonstrated that the ability of the injected cells to cause a GVHR was dependent upon a disparity in MHC class II antigens and that an isolated disparity of MHC class I antigens alone was not a sufficient stimulus to provoke a response. The use of chimaeric rats demonstrated that F1 MHC alloantigens present on kidney parenchyma (but absent on bone marrow-derived cells) were not sufficient to stimulate injected parental lymphocytes, even in the presence of markedly increased amounts of MHC antigens on vascular endothelium and renal tubular cells following in vivo administration of interferon-gamma (IFN-gamma). These results suggest that the renal GVHR in the rat is mediated principally by the interaction of parental CD4+ lymphocytes recognizing and responding to class II F1 alloantigens on bone marrow-derived cells. The resulting tissue damage is most likely a result of a delayed-type hypersensitivity (DTH) phenomenon.

Animals

Immunology of AIDS.

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Acquired Immunodeficiency Syndrome

Normal values for the different classes of venous blood mononuclear cells defined by monoclonal antibodies.

We present the data obtained from routine quantitation of normal venous blood mononuclear cells using 19 monoclonal antibodies against defined mononuclear cell surface antigens. The results indicate different values for percentage and absolute numbers of T lymphocytes and of T lymphocyte subsets depending on the monoclonal antibodies used to quantify these populations. In most instances the total number of identified cells was significantly less than the total number of recovered blood mononuclear cells, which suggests the existence in blood of a null cell population. Evidence is advanced to support previous observations that at least a proportion of this population is of B cell lineage, expressing cytoplasmic immunoglobulin but lacking other class or lineage specific markers. The value of a diverse monoclonal panel in routine quantitation of peripheral blood mononuclear cells is discussed.

Adult

AIDS--again.

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Acquired Immunodeficiency Syndrome