PubMed HealthSearch

Biomedical subjects

B L Pike

Publications and source records attributed to B L Pike.

16 recordsLinked to original sources

Some limits to post-antigen generation of diversity: failure to detect variants in clones of hapten-specific antibody-forming cells (AFC) developing in culture from direct AFC-progenitor B cells.

A search was made for variants in clones of hapten-specific antibody-forming cells (AFC) arising by stimulation of mature B cells with either thymus-independent hapten-POL (polymerized bacterial flagellin) conjugates, or the polyclonal activator lipopolysaccharides. Enriched, hapten-binding B cells or unfractionated spleen cells were cultivated for 3-4 days at limiting dilution in the presence of thymus filler cells, and the AFC in each microculture well were then assayed for plaque formation on various hapten-sheep red cell monolayers. No variants were found from (4-hydroxy-3-iodo-5-nitrophenyl) acetyl (NIP) to 2,4-dinitrophenyl specificity, nor from fluorescein (FLU) to NIP specificity. No variants were found in avidity for FLU hapten. All 374 clones examined, including clones of up to 300 AFC, appeared to be homogeneous in antibody specificity and plaque morphology under our conditions. These results differ from published findings using erythrocytes as antigens. Reasons for this discrepancy are discussed, including differences in sensitivity differences in immunological similarity between the test antigens, and in the particular B cell subsets involved.

Animals

Mechanisms of clonal abortion tolerogenesis. II. Clonal behaviour of immature B cells following exposure to anti-mu chain antibody.

This paper uses B-lymphocyte cloning methods to quantify the effects of anti-mu chain antibody on immature and mature B cells. Nude mouse spleen lymphocytes were incubated with various concentrations of sheep anti-mouse mu chain antibody for times varying from 10 min to 24 h. They were then washed and plated in the agar B-cell colony formation assay. Five to six days later, control B cells had developed into colonies with a plating efficiency of about 5%. B cells from newborn mice pretreated with anti-mu yielded fewer colonies. Remarkably low concentrations sufficed to inhibit subsequent mitogenesis. For example, 3 microgram/ml acting for 1 h or 0.1 microgram/ml acting for 24 h gave greater than 50% inhibition. Adult B cells were about thirty-fold more resistant to negative signalling. Immature cells become more profoundly inhibited as anti-mu treatment was prolonged. Anti-Ia or anti-H2 antibodies, in the absence of complement, did not deliver a negative signal. Anti-mu pretreatment also reduced the capacity of immature B cells to form clones of anti-hapten antibody-forming cells in a liquid microculture system where the triggering stimulus was a T-cell independent antigen. Mature 'T-independent' B cells were not inhibited. Populations of hapten-specific B cells prepared by the hapten-gelatin method were investigated in the agar cloning system. Pretreatment of immature cells with anti-mu reduced their capacity to form colonies, this subpopulation of cells behaving like unfractionated B cells. Furthermore, hapten-HGG delivered a negative signal also. Mature hapten-specific cells or unfractionated immature spleen cells formed normal numbers of colonies following hapten-HGG treatment. Overall, the studies support the view that anti-mu antibody and hapten-HGG deliver strong negative signals to immature but not mature cells with appropriate receptors. The value of anti-mu as a model, universal tolerogen was supported. Fluorescence-activated cell sorter (FACS) analysis was performed to study the relationships between functional inhibition and Ig receptor modulation. We confirmed that the IgM receptors of immature B cells are more readily modulated by anti-mu antibody than those of mature cells. Furthermore, the receptor regeneration could be partially inhibited amongst immature but not mature B cells. There was not a close quantitative relationship between the degree of modulation and the degree of functional inhibition. The results did not support the view that irreversible receptor modulation as such was the cause of functional inhibition.

Animals

Mechanisms of clonal abortion tolerogenesis. I. Response of immature hapten-specific B lymphocytes.

B lymphocytes with receptors specific for the hapten fluorescein (FLU) were prepared from the spleens of mice of various ages. For most experiments, a one-step fractionation procedure based on the adherence of FLU-specific cells to FLU-gelatin was used. For some experiments, a subset of higher FLU-binding capacity was prepared from the FLU-gelatin binding population through the use of the fluorescence-activated cell sorter (FACS). FLU-specific B cells were placed into microculture with either FLU(3.6)-human gamma globulin (FLU(3.6)HGG) or FLU(12)HGG usually for 24 h at 37 degrees C. The tolerogen was then removed and 0.1 mug/ml of a T-independent antigen, FLU-polymerized flagellin, was substituted. 3 days later, cells were harvested from the microcultures and assayed for FLU-specific plaque-forming cells to determine any reduction in clonable hapten-specific B cells which the tolerogenesis treatment might have induced. The results showed that with FLU(3.6)HGG, hapten-specific newborn B cells could be tolerized at 1,000-fold lower tolerogen concentrations than adult splenic B cells of equal antigen-binding capacity. The high-avidity subset was even more susceptible to tolerance induction. Tolerance could be induced within 8 but not within 2 h, and at lower tolerogen concentrations, longer periods of tolerogenesis were required for a given effect. Using a 24-h tolerogenesis phase, 50 percent reduction in clone frequency among newborn FLU-gelatin fractionated cells was achieved at 0.08 mug/ml of FLU(3.6)HGG. Tolerance induction in immature B cells was inhibited by the concomitant presence of a polyclonal B-cell activator, Escherichia coli lipopolysaccharide (LPS) but tolerance once induced, was stable to challenge with LPS. Tolerogenesis was hapten specific. The proportion of tolerizable cells in spleens decreased with increasing age, reaching 50 percent at around 9 days. FLUI(12)HGG proved a more powerful tolerogen than FLU(3.6)HGG. It had an effect on adult cells, 50 percent reduction in clone frequency being noted at around 1 mug/ml. However, and in contrast to results claimed for other T- independent systems, there still was a major difference between immature and mature B cells, the immature cells displaying much greater sensitivity to tolerogenesis.

Animals

Requirement for persistent extracellular antigen in cultures of antigen-binding B lymphocytes.

A system was established to assess the requirement for continuous presence of antigen in B-lymphocyte activation to antibody formation. Mouse spleen B lymphocytes, enriched for cells bearing anti-NIP (hapten 4-hydroxy-3-iodo-5-nitrophenylacetic acid) receptors, were pretreated briefly with NIP-POL (polymerized flagellin) antigen, washed, and added in small numbers to microcultures. The behaviour of these cells was compared with that of cells cultured in the continuous presence of antigen. Unfractionated spleen cells were studied under similar conditions. In contrast to unfractionated cells, enriched cells could not be triggered effectively by brief contact with antigen at any concentration tested. Fewer cells were activated, and clone size was smaller after brief contact with antigen than when antigen was present continuously. Furthermore, brief contact at high concentration did not cause tolerance induction.

Animals

Single cell studies on the antibody-forming potential of fractionated, hapten-specific B lymphocytes.

This study addresses itself to the problem of antibody formation in vitro by mouse splenic B lymphocytes enriched for reactivity to the hapten NIP by the hapten-gelatine binding and melting technique of Haas and Layton (1975). Small numbers of NIP-gelatine-bound B cells were placed in microcultures either by bulk dispensing of dilute cell suspensions, or by micromanipulation under direct microscopic visualization. Antibody formation was induced by the T cell-independent hapten-protein conjugate NIP-polymierized flagellin, using 10(4) thymus cells per microlitre as 'filler' cells. The frequency of precursors of NIP-specific antibody-forming cells among bound cells was about 2-2 X 10(-2) (one cell in forty-five) by both statistical and direct evaluation, after adjustment for a background frequency of 6-10 X 10(-8) precursors in the thymus filler cells. Single clones commenced antibody secretion asynchronously, as shown by the fact that the incidence of positive cultures continued to rise over the whole three days of culture, and that very small clones of one to four plaque-forming cells (PFC) were still found on day 3. The mean PFC number per positive culture rose from 1-2 at day 1 to 4-7 at day 2 and about 20 at day 3.

Animals

Evidence for the clonal abortion theory of B-lymphocyte tolerance.

This paper deals with the behavior of adult mouse bone marrow cells placed in tissue culture with or without antigen, and subsequently assessed for immune competence after adoptive transfer into lethally X-irradiated, syngeneic hosts. Attention was focussed on B lymphocytes through using hapten human gamma globulin (HGG) preparations as putative tolerogens in tissue culture, the T-cell-independent antigens DNP-POL and NIP-POL as challenge injections in adoptive hosts, and numbers of hapten-specific PFC in host spleens for the quantitation of immune competence. It was found that the capacity of bone marrow cells to mount an adoptive immune response rose by a factor of about fivefold over 3 days in tissue culture. This rise was completely abolished by the presence in the culture of hapten-HGG conjugates with about one mole of hapten per carrier molecule. The prevention of the emergence of immune competence amongst maturing B cells was termed clonal abortion tolerogenesis. Dose-response studies showed the lowest effective antigen concentration to be between 2.5 times 10- minus 10 and 2.5 times 10- minus 9 M, and a standard concentration of 2.5 times 10- minus 8 M was chosen as producing near maximal effects. The tolerance was antigen-specific and time-dependent, being maximal only when antigen was present continuously as the cultured cells was maturing. It did not depend on the presence of T lymphocytes in marrow, and was not of an "infectious" type. In contrast to tolerogenesis of mature B lymphocytes by high antigen concentrations, it could not be abolished by lipopolysaccharide. We speculate that clonal abortion may be a tolerance mechanism of great physiological significance for self-recognition, and discuss the results in the framework of other recent tolerance models, including those involving receptor blockade and suppressor T cells.

Animals

A microculture method for the generation of primary immune responses in vitro.

A microculture method for the generation and study of the primary immune response of murine spleen cells to defined antigens in vitro is described. Many of the variable parameters which occur in culture systems have been studied in an attempt to define the optimal culture conditions for this system. Cultures of 10(6) CBA spleen cells consistently produced an immune response of 300-600 hapten-specific plaque-forming cells after 3 days of incubation with the T cell-independent antigens DNP-POL and NIP-POL. Cultures were set up in Microtest II tissue culture plates in a volume of 0.2 ml of medium containing 10(-4) M 2-mercaptoethanol. The system described has the advantages of being highly efficient and reproducible and utilises small amounts of cells, medium and antigen. It provides a simple, economic and reliable approach for the systematic study of the immune response in vitro.

Aging