Comparative antigenic phenotypes of normal and leukemic hemopoietic precursor cells analysed with a "library" of monoclonal antibodies.
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Biomedical subjects
Publications and source records attributed to C Sieff.
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A case of steroid-resistant acquired pure red-cell aplasia associated with a relative and absolute increase of TG cells is described. Removal of T cells enhanced erythroid colony and burst formation in vitro, and it is suggested that TG cells may be implicated in the pathogenesis of this case of acquired pure red-cell aplasia.
Three males with the X-linked lymphoproliferative syndrome (XLP) with hypo- or agammaglobulinemia following Epstein-Barr virus (EBV) infection and two males with the chronic mononucleosis syndrome were investigated for immune responses to EBV-determined antigens. Males with XLP showed profound cellular immune defects. Markedly diminished responses of natural killer cell and interferon-activated killer cell activities and impaired leukocyte migration inhibition responses to phytohemagglutinin were determined in patients with XLP. The two patients with chronic mononucleosis showed less severe defects. All patients showed partial or complete impairment of their EBV-specific immune responses as measured by leukocyte migration inhibition. EBV-specific antibodies were markedly diminished against EBV-associated nuclear antigen, early antigen, and viral capsid antigen in males with XLP. In contrast, patients with chronic mononucleosis had elevated antibodies to most EBV-specific antigens. Individuals with life-threatening EBV-induced lymphoproliferative disorders may exhibit multiple defective immune mechanisms against the virus.
Multiple methods, pedigree analysis, clinical evaluation, and Epstein-Barr virus (EBV)-specific serology, EBV DNA hybridization of tissues to probe for viral genome, staining of touch imprints for EBV nuclear-associated antigen, establishment of spontaneous infected B-cell lines from peripheral blood or tissues, examination of peripheral blood smears, and hematopathology studies, were used to study seven patients with the X-linked lymphoproliferative syndrome and seven additional patients with life-threatening EBV-associated diseases. These studies demonstrated EBV in the tissues of all 14 patients and immunodeficient antibody responses to EBV were documented. This virus can produce various life-threatening lymphoproliferative diseases in a variety of immunodeficient patients.
Forty-two patients with aplastic anemia (AA) were studied to determine whether or not transfusion-induced sensitization is responsible for the in vitro inhibition by patient lymphocytes of HLA-identical erythroid burst-forming units (BFU-E). The results indicate that lymphocytes from 12 of 34 transfused patients inhibited normal colony growth. In contrast, lymphocytes from none of the 8 untransfused patients demonstrated inhibition. These data were interpreted to mean that coculture studies would not be useful for identifying immune-mediated AA in transfused patients. Therefore, in order to identify possible immune-related AA, we assayed BFU-E from patient blood before and after T-cell depletion. In all 32 patients studied, BFU-E failed to grow from peripheral blood cells before T-cell depletion, but in 8 cases, normal-appearing BFU-E grew after T cells had been removed. Growth of patient BFU-E colonies was inhibited in 6 cases when patient T cells were added back to the culture, indicating that in these 6 patients, an "autoimmune" mechanism may have been present.