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J L Ferrara

Publications and source records attributed to J L Ferrara.

At least 73 records · Page 4Linked to original sources

Effects of exogenous interleukin-10 in a murine model of graft-versus-host disease to minor histocompatibility antigens.

IL-10 is a regulatory cytokine of both T cells and monocytes. We have investigated the ability of IL-10 to regulate responses to alloantigens in vitro and in vivo. Addition of IL-10 to mixed lymphocyte cultures profoundly decreased the proliferation and IL-2 production by donor B10.BR cells stimulated with CBA cells expressing minor histocompatibility antigens. Administration of IL-10 for a period of 2 weeks after bone marrow transplantation decreased the expansion of CD4+ and CD8+ donor T cells. In addition, splenocytes from BMT mice treated with IL-10 secreted less IFN-gamma after stimulation with Con A in vitro. The suppression of the mitogen-driven proliferative response of lymphocytes from the IL-10-treated group could also be reversed with significantly less anti-IFN-gamma antibody than for saline-treated controls. However, treatment with IL-10 was not sufficient to alter significantly the clinical course of graft-versus-host disease in CBA recipient mice as assessed by survival, weight loss, and splenomegaly. The results suggest that exogenous IL-10 suppresses the afferent Th1 response in a graft-versus-host reaction but does not significantly diminish the effector stage of graft-versus-host disease.

Animals↗

Guidelines for internal validation of the HLA-DQ alpha DNA typing system.

Validation experiments were performed to evaluate the HLA-DQ alpha DNA typing system for forensic casework. Temperature profiles for two Perkin Elmer TC-1 Thermal Cyclers were measured, and the efficiency of the instruments was tested by amplifying a control sample (DQ alpha 1.2,4) susceptible to allelic drop-out. DNA extraction using chelex was compared to non-organic extraction, and the amplification and hybridization procedures were evaluated at extremes of time and temperature. With the protocol in place, samples exposed to stresses commonly encountered in forensic casework were typed to determine the flexibility of the system. Mixed samples of two different bloods and blood mixed with saliva were typed to determine the threshold at which mixtures could be resolved using the reverse dot blot method. Different storage conditions were evaluated using a set of control bloodstrains, and a set of 12 postmortem blood samples was typed repeatedly over the course of 5 months to determine the effects of natural degradation on the DQ alpha results. Finally, casework stains on a variety of substrates were typed. These experiments demonstrate the flexibility of the HLA-DQ alpha system. Based upon these results, a comprehensive quality assurance program was developed to ensure the integrity of typing results for casework.

Blood Stains↗

Induction of graft-versus-host disease as immunotherapy for relapsed chronic myeloid leukemia.

BACKGROUND: The ability of allogeneic bone marrow transplantation to cure chronic myeloid leukemia (CML) is due to both the conditioning regimen and the antileukemic effects of the lymphocytes in the grafted marrow. We studied the ability of interferon alfa-2b and infusions of mononuclear cells from the marrow donor to induce a graft-versus-leukemia reaction in patients with CML in relapse after bone marrow transplantation. METHODS: Eleven patients with relapsed CML after allogeneic bone marrow transplantation were treated with interferon alfa-2b and infusions of mononuclear cells. The patients were monitored for toxic effects, for hematologic and cytogenetic responses, and, with use of the polymerase chain reaction, for elimination of cells containing the bcr/abl messenger RNA transcript characteristic of the leukemic cells. RESULTS: Six of the eight patients with stable CML after relapse had complete remissions according to molecular genetic criteria, since no cells with bcr/abl messenger RNA transcripts were detected (the method can identify 1 leukemic cell among 1 million normal cells). The three patients with accelerated CML after relapse did not enter remission. Myelosuppression was prominent in eight patients. Grade I acute graft-versus-host disease (GVHD) occurred in six patients, and grade III acute GVHD occurred in three. Limited chronic GVHD developed in five patients. CONCLUSIONS: The induction of a graft-versus-leukemia reaction with interferon alfa-2b and infusions of donor mononuclear cells in patients with CML in relapse after bone marrow transplantation is an effective antileukemic therapy that may offer an alternative to a second marrow transplantation.

Adult↗

T cell receptor (beta chain) transgenic mice have selective deficits in gamma delta T cell subpopulations.

TCR-beta (T cell receptor-beta chain) transgenic mice have altered lymphocyte development. TCR-beta transgenic mice are hyporesponsive to alloantigens in vivo and are deficient in gamma delta T cells. In order to begin a study of the relationship between a deficiency of alloreactive gamma delta cells and the defective function of in vivo alloantigen recognition, we analysed the gamma delta T cell development in TCR-beta mice. The presence of the TCR-V beta 8.2 chain transgene is associated with inhibition of gamma chain gene rearrangement. In order to determine how the presence of the TCR-beta transgene affects gamma delta T cell development, gamma delta T cells were studied in the skin, intestine and spleen. TCR-beta mice have dramatically reduced numbers of gamma delta T cells in the spleen and moderately reduced numbers of gamma delta T cells among intestinal intraepithelial lymphocytes. In contrast, these mice have normal numbers of gamma delta dendritic epidermal cells (DEC). These selective deficits could be due to the developmental regulation of transgene transcription during fetal life. We examined transcription of the TCR-beta transgene in the fetal thymus and found that the TCR-beta transgene is first transcribed at high levels on day 16 of fetal life, after DEC have already migrated from the thymus to the epidermis. Furthermore, mRNA from the transgene was detected in DEC, ruling out the formal possibility that DEC bear a gamma delta receptor only because they are incapable of expressing the transgene.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Cytokines other than growth factors in bone marrow transplantation.

The role of cytokines during transplantation is currently an area of intense research. In particular, cytokines are increasingly appreciated as critical mediators of inflammatory responses to allogeneic tissue. Allogeneic bone marrow transplantation (BMT) involves cytokines not only in their capacity as hematopoietins but also as inducers of systemic inflammation after conditioning for BMT and during graft-versus- host disease (GVHD). GVHD is, in fact, a paradigm disease of systemic cytokine dysregulation, and the onset of severe acute GVHD can be considered a "cytokine storm." Advances in our understanding of the cytokine networks involved in BMT and GVHD should increase our ability to modify the complex interactions among cytokines and their cellular targets that lead to transplant-related morbidity.

Bone Marrow Transplantation↗

Cytokine dysregulation as a mechanism of graft versus host disease.

Graft versus host disease (GVHD) remains the major complication of allogeneic bone marrow transplantation. T cells in the donor bone marrow recognize and react against host alloantigens and thereby initiate GVHD, but the precise mechanisms by which host tissues are damaged remain unclear. Recently, several convergent lines of evidence have suggested that inflammatory cytokines act as mediators of acute GVHD. Most of the clinical manifestations of GVHD may in fact be due to the dysregulated production of cytokines by T cells and other inflammatory cells. The complex interactions among cytokines and their cellular targets suggest that individual cytokines may play an important and distinctive role in the pathophysiology of GVHD. Perturbation of the cytokine network may function as a final common pathway of target organ damage, and the rapid onset of severe, acute GVHD can be considered a 'cytokine storm.'

Animals↗

Interleukin-1 is a critical effector molecule during cytokine dysregulation in graft versus host disease to minor histocompatibility antigens.

Cytokines are believed to cause a number of inflammatory diseases. We have investigated the role of 3 inflammatory cytokines, IL-1, IL-2, and TNF alpha, during graft-versus-host disease (GVHD), a paradigm disease of cytokine dysregulation in vivo. Measuring cytokine mRNA transcripts with a quantitative polymerase chain reaction technique, we demonstrate that IL-1 transcript levels are increased several hundred-fold in GVHD target organs, whereas TNF alpha transcripts increase only 4- to 6-fold. Kinetic studies during the first month after transplant unexpectedly show that GVHD never induces IL-2 transcripts in the skin and only induces IL-2 transcripts in the spleen during the first week, whereas levels of IL-1 transcripts continue to increase throughout the entire 4 weeks. Administration of an IL-1 receptor antagonist after the termination of the IL-2 response and after the establishment of GVHD significantly increases long-term survival, confirming the central role of IL-1 as an effector molecule of GVHD and suggesting new therapeutic strategies for this disorder.

Animals↗

Cytokine dysregulation and acute graft-versus-host disease.

We suggest that acute GVHD after marrow transplantation reflects (1) host injury due to the conditioning regimen followed by the production of inflammatory cytokines; (2) stimulation of mature donor T cells in the milieu of increased cell surface expression of leukocyte adhesion molecules and HLA molecules, followed by the autocrine production of IL-2; and, finally, (3) recruitment and activation of additional mononuclear effector cells from donor marrow progenitors, which produce additional inflammatory cytokines, thus sustaining the response. The second step is critical for the amplification of the systemic inflammatory response, and it is absence in autologous, syngeneic, and T-cell-depleted transplants. These T cells may also contribute to the inflammatory cytokine network. Acute GVHD can occur in the absence of primary tissue injury in such settings as transfusion-related GVHD; however, it is likely that a greater HLA disparity between donor and host is required. We propose that inflammatory cytokine production is the final common pathway of acute GVHD. If this model is correct, control of cytokine dysregulation at any of several points should control GVHD. Further studies of GVHD and investigations of cytokine antagonists (eg, IL-4 or IL-10) or combinations of antagonists such as IL-1ra and soluble TNF receptor or pentoxifylline will allow us to determine the validity of this hypothesis.

Animals↗

The effect of donor T lymphocytes and total-body irradiation on hemopoietic engraftment and pulmonary toxicity following experimental allogeneic bone marrow transplantation.

To study the effects of donor T lymphocytes on engraftment and graft-versus-host disease in relation to recipient total-body irradiation, we have returned small numbers of T cells to T-cell-depleted bone marrow transplanted across a minor histocompatibility barrier in mice (B10.BR-->CBA). T-cell-depleted B10.BR marrow (10(7) cells) was transplanted into CBA recipients prepared with TBI doses ranging from 4 to 14 Gy. Selected animals also received 10(4) (0.1%) and 10(5) (1.0%) measured B10.BR T lymphocytes. The extent of donor marrow engraftment was determined from hemoglobin and carbonic anhydrase phenotyping of peripheral blood at 3 months posttransplant. Toxicity was assessed from breathing-rate measurements, histopathology, and animal survival. Addition of T cells had a profound effect on survival related to radiation dose. The TBI doses resulting in an LD50 at 12 weeks were 6.9 Gy, 9.3 Gy, and 13.0 Gy for animals receiving 10(5), 10(4), and no T cells, respectively. Mortality was associated with pulmonary dysfunction as measured by an elevation of breathing rates. Autopsy and histological analysis revealed extensive damage to the lung parenchyma. In contrast to the toxicity data, addition of T cells to the donor marrow had no effect on the TBI dose required for equivalent erythroid engraftment. These results demonstrate that in combination with TBI small numbers of T cells in the transplanted marrow do not aid engraftment but do significantly increase the risk of pulmonary toxicity.

Alleles↗

Lymphocytes with a CD4+ CD8- CD3- phenotype are effectors of experimental cutaneous graft-versus-host disease.

Graft-versus-host disease (GVHD) is known to cause profound dysregulation of the immune system, although its effector mechanisms are poorly understood. We now describe an effector lymphocyte of unusual phenotype in the skin of mice with GVHD. This cell is of donor origin and expresses several T-cell surface proteins including Thy-1, CD2, and CD4 but does not express CD8, CD3, NK1.1, or macrophage antigens. Mononuclear cells of this phenotype are the predominant lymphocyte in the epidermis of mice with GVHD 3 weeks after transplant but are not detected in transplanted mice without GVHD. Isolation and transfer of these lymphocytes into secondary recipients causes epidermal damage characteristic of GVHD. These data demonstrate that CD4+ CD8- CD3- lymphocytes are an important effector population that can be amplified outside the thymus and that can mediate target organ damage of GVHD.

Animals↗

Effect of graft-versus-host disease on hematopoiesis after bone marrow transplantation in mice.

We have examined the effect of graft-versus-host disease (GVHD) on the reconstitution of donor hematopoiesis in a murine bone marrow transplant (BMT) model of GVHD to minor histocompatibility antigens. GVHD had no effect on peripheral blood counts, which normalized by 1 month after BMT, and did not affect numbers of hematopoietic progenitors in the BM, which remained decreased in all transplant recipients. Donor stem cells (colony-forming unit-spleen day 8) and stem cell self-renewal remained low in all mice for 5 months after transplant, but GVHD further damaged the stem cell compartment. Peripheral counts 1 month after transplant were supported by increased numbers of stem cells in cycle and increased splenic hematopoiesis. However, GVHD altered the pattern of extramedullary hematopoiesis, causing dramatically decreased activity in the spleen and increased activity in the liver. We conclude that GVHD further decreases hematopoietic reserve and causes damage to the donor stem cell compartment during hematopoietic reconstitution after transplant, despite unaffected progenitor frequencies and peripheral blood counts.

Animals↗

Inhibition of interleukin-1 by an interleukin-1 receptor antagonist prevents graft-versus-host disease.

Graft-versus-host disease (GVHD) is the major complication of allogeneic bone marrow transplantation (BMT). Dysregulation of inflammatory monokines such as tumor necrosis factor alpha (TNF alpha) has been noted in both clinical and experimental GVHD. We present evidence that interleukin-1 (IL-1), another inflammatory monokine, is an important mediator of GVHD. Expression of the gene for IL-1 alpha as well as the gene for TNF alpha is increased in the skin of mice with GVHD. Inhibition of IL-1 function by the in vivo administration of IL-1 receptor antagonist (IL-1ra) reduces the immunosuppression and mortality of GVHD without impairing the engraftment of hematopoietic stem cells. GVHD thus appears to be a systemic inflammatory process in which monokines, especially IL-1, appear to be important mediators. Inhibition of IL-1 by IL-1ra represents a novel approach to the understanding and control of GVHD.

Animals↗