B-cell suppression by anti-IgM antibody: humoral and cellular analyses.
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Biomedical subjects
Publications and source records attributed to P S Friend.
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Soluble human serum albumin anti-albumin immune complexes (IC) have been shown to bind to freshly isolated human peripheral blood monocytes and polymorphonuclear leucocytes (PMN) in vitro. Binding sites on both cell types were saturable and specifically inhibited by heat aggregated IgG1 and IgG3 subclasses. PMN contained a greater number of binding sites than monocytes although the affinity was similar for both cell types. The enhanced binding of IC by both cell types observed after incubation at low pH (pH 6.0) was a consequence of increased affinity of the PMN binding site and an increase in the number of sites in monocytes. Binding of IC by both cell types was inhibited by normal human serum. Enhanced IC binding associated with enhanced affinity and number of sites was observed in PMN and monocytes preincubated in suspension with trypsin. However, monocytes exposed to trypsin while adherent to microexudate coated flasks demonstrated a marked increase in affinity without any change in the number of sites.
Complete HLA typing including HLA--A, --B, --C, --DR (D related B cell typing), --D, mixed lymphocyte culture (MLC), and primed lymphocyte testing (PLT), together with complete red blood cell (RBC), glyoxalase (GLO), GBG (Factor B), and phosphoglucomutase 3 (PGM3) typings were performed on a informative family. The five siblings inherited the four possible combinations of parental HLA haplotypes, and two of the siblings were HLA--A, --B, --C and --DR identical. Repeated MLC testing of the family revealed positive mixed lymphocyte reactivity in all combinations. B cell typing for the DR specificities demonstrated no variation from the expected inheritance pattern and specifically no recombination event. GBG and GLO typings militated against a recombination involving the paternal chromosome. HLA--D testing revealed that only one of the HLA--A, --B, --C, and --DR identical siblings gave typing responses to the HLA--Dw3 specificity present on that maternal haplotype. Utilizing HLA haploidentical combinations, lymphocytes were primed against the four parental haplotypes and the non-Dw3 haplotype of interest (Aw24--B8--DRw3--LDY) in the PLT. The sibling inheriting this haplo-type did not restimulate cells primed against the A2--B40--DRW6--LDY specificity. Furthermore, no discrimination was observed in the restimulation of lymphocytes primed against this haplo-type. Possible interpretations of these family data include: a spontaneous mutation, non-major histocompatibility locus (MHC) stimulation, and HLA--DR/D recombination.
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Because of our prior demonstration of a strong association betwen a specific B lymphocyte determinant and the occurrence of chronic membranoproliferative glomerulonephritis and the demonstration by others of the frequent concurrence of an IgA deposit disease, anaphylactoid purpura nephritis,with HLA-BW35, we conducted an investigation of the association among Minnesota Caucasians of the HLA markers BW35, DW1 and B lymphocyte determinants identified by three alloantisera with IgA nephropathy and the syndrome of recurrent macroscopic hematuria. The highly significant association between HLA-BW35, DW1, and B cell antigens identified by alloantisera L, B, and F, present in 50 normal Minnesota Caucasians, was not observed in 18 Minnesota patients with IgA nephropathy. The frequency of HLA-DW1 was the same among controls and patients, whereas the relative risk of developing IgA nephropathy was demonstrated to be increased 4- to 5-fold in the presence of the B cell antigens identified by alloantisera L and B. These sera appear to identify determinants on B lymphocytes associated with the disease state and possibly not intimately related to the HLA-D region. These findings emphasize the possible informativeness of defining B cell alloantisera on disease panels.
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Human and rat alveolar macrophages produce haemolytic C2 during in vitro culture. We conclude that C2 synthetic ability is maintained during in vivo maturation of human monocytes to macrophages and that production of complement components by mature tissue macrophages may be important for optimal generation of inflammatory responses.
NZB X NZW F1 mice initiated on calorie restriction at weaning or at 4 to 5 months of age or initiated on moderate protein restriction at weaning, were afforded significant protection from the development of immune nephritis. Whereas animals on normal calorie intake demonstrated deposition of immune reactants in glomerular basement membrane-oriented pattern, those on either protein or calorie restriction exhibited mesangial confinement of immunoglobulins and complement. Associated with these divergent patterns of immune deposition, mice on normal calorie intake evidence extensive cellular proliferation and glomerular sclerosis while dietary restricted mice demonstrated virtually no hyalinization and only mild cellular proliferation. Autoantibody formation of calorie-restricted animals was significantly decreased compared to mice fed a normal diet. Thus, moderate dietary restriction may serve as either a prophylactic or effective therapeutic approach to ongoing autoimmune disease.
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Thirteen patients with chronic mesangiocapillary glomerulonephritis (M.C.G.) defined by light and immunofluorescent microscopy were examined for possible B-lymphocyte alloantigen associations by means of antisera from multiparous mothers of M.C.G. probands. Three such sera reacted with M.C.G.-patient B-cells. One of these sera (M.C.G.3) was highly discriminative for a B-cell antigen present in 77% of M.C.G. patients and only 17% of normal individuals tested. The risk of developing M.C.G. was estimated to be 16-6 times greater in the presence of the M.C.G.3 antigen than in its absence. This is the first demonstration of an association between a specific B-lymphocyte determinant and immune-mediated glomerulonephritis.
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The occurrence of membranoproliferative glomerulonephritis in a 13 year old boy with inherited complete deficiency of the second component of complement (C2) is described here for the first time. Results of the complement studies and the associations of glomerulonephritis with complement deficiencies are discussed.
Serum from three patients with a complete, selective deficiency of the second component of complement (C2) did not promote optimal killing of Staphylococcus aureus, 502A by neutrophilic polymorphonuclear leukocytes (PMN) in vitro. The addition of C2 reagent or the presence of heat-stable opsonin in the C2-deficient serum corrected the defective killing of S. aureus that was observed with patient or control PMN. PMN from the patients or control subjects killed bacteria with equal efficiency under conditions of optimal opsonization (normal pooled serum). However, twice-washed control PMN were better than patient PMN in killing S. aureus under circumstances of suboptimal opsonization (C2-deficient serum, heated C2-deficient serum, heated normal pooled serum, or no replacement of serum). The latter finding was due to residual C2 on the surface of twice-washed control cells. As repeated washing of control PMN progressively removed cell-associated C2, the staphylocidal effectiveness of the control RMN decreased to the level of patient PMN. In contrast to the findings with S. aureus, triply-washed PMN from patients or controls killed normal numbers of Escherichia coli, ON2, in C2-deficient serum.