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Biomedical subjects

G W Siskind

Publications and source records attributed to G W Siskind.

At least 19 recordsLinked to original sources

Memory T cells enhance the expression of high-avidity naive B cells.

The secondary immune response classically differs from the primary response in magnitude, avidity, and isotype of the antibodies produced. Cell transfer studies to assess the contribution of memory B and memory T cells to each of these parameters are described. Avidities of the anti-DNP plaque-forming cells (PFC) generated in lethally irradiated recipients of naive B cells and keyhole limpet hemocyanin (KLH)-primed T cells, followed by immunization with soluble DNP-KLH, are medium to high, and do not differ significantly from the avidities of anti-DNP PFC in recipients of DNP-primed B cells and KLH-primed T cells. However, the number of indirect (I)-PFC and the ratio of I-PFC to direct (D)-PFC are significantly greater in the recipients of primed B and primed T cells. The results suggest that carrier primed T cells can selectively activate virgin B cells which are committed to produce medium- and high-avidity antibodies, and/or enhance the generation of somatic mutation which leads to antibodies of higher avidity. Priming of B cells is necessary for the increased magnitude of the I-PFC.

Animals

Cellular control of IgE induction by a polyphenol-rich compound. Preferential activation of Th2 cells.

The polyphenol group rutin (R) appears to influence isotype expression, because R-BSA conjugates induce anti-BSA responses in mice that show a significant decrease in hemagglutinating antibodies (HA) to BSA, as compared to mice immunized with BSA. However, the level of IgE antibodies to BSA is unaltered. To determine if suppressor cells for isotypes other than IgE are induced by R-BSA, cell transfers were performed. The results were consistent with the view that the decrease in HA titer to BSA in R-BSA immunized mice is not due to the activation of suppressor cells for isotypes other than IgE. Inasmuch as the IgE response in mice is associated with the production of IL-4 by Th2 cells, we analyzed the factors produced by spleen cells cultured with R-BSA. We found that supernatant from spleen cells cultured with R-BSA contained IL-4 as determined by the enhanced expression of Fc epsilon R (CD23) on B cells. This enhancement was inhibited by 11B11, the anti-IL-4 mAb. IL-2, a product of Th1 cells, was not detected in these supernatants. Moreover, IL-4 mRNA, but not IL-2 mRNA, was detected by Northern blot analysis of RNA from spleen cells cultured with R-BSA. Taken together the data suggest that the polyphenol containing compounds preferentially activate Th2 cells, thereby favoring IgE production.

Animals

Exposure of female mice to type II collagen reduces susceptibility to collagen-induced arthritis in offspring.

The effect of exposure of female DBA/1 mice to collagen II (CII) prior to breeding on the susceptibility of their offspring to CII-induced arthritis (CIA) was investigated. It was found that female offspring, born within 3 months after exposure of the mothers to CII, had a significantly reduced incidence of CIA, following immunization with CII. Just prior to this immunization, no anti-CII could be detected in the offspring. Offspring born more than 3 months after exposure of the mothers to CII showed no differences in susceptibility to induction of CIA, if optimal conditions for induction were used. However, when suboptimal conditions for induction of CIA were used, offspring of females that had been exposed to CII developed less severe arthritis and had a delayed onset of arthritis as compared with controls. It is concluded that exposure of female mice to CII prior to mating results in changes in the immune response to CII in the offspring, leading to a subtle decrease in susceptibility to CIA.

Animals

T cell receptor variable gene expression: analysis in ragweed-sensitive patients during allergen exposure.

Four monoclonal antibodies (MAb) to V region determinants of the alpha/beta-chain of the T cell antigen receptor (TCR) were used, by cytofluorography, to detect discrete populations of peripheral blood T cells (PBT). Together they identify 10-15% of circulating CD3+ T cells. Each MAb is known to detect specific V regions of the beta-chain. Thus V beta 5 gene products are recognized by MAb C37, V beta 6 by OT145, V beta 8 by Ti3a, and V beta 12 by MAb S511. In previous studies, we found that the percentages of PBT detected by these MAb show little variation over time in normal individuals. In order to determine if there is a change in TCR V gene usage during an immune response to an environmental antigen, 12 atopic patients with known ragweed sensitivity by history and skin test were followed for a 6-month period encompassing the ragweed season. No shifts in V gene usage that could be correlated with the ragweed season were consistently observed. The patients could be arbitrarily divided into two groups: in group I little variation over time was observed in the T cell populations identified by the MAb used, while group II was characterized by marked variation of the same T cell populations over time. In group II individuals, the population of Ti3a+ T cells showed the most variation over time. Failure to observe shifts in PBT subpopulations, identified by expression of different TCR V regions, during exposure to an allergen to which an IgE response has been made may mean that such shifts do not occur or that they occur primarily at the tissue site of antigen exposure and not in the peripheral circulation or that they occur in T cell subpopulations not identified by the reagents used.

Adult

Immunobiology of aging and cancer.

Although the incidence of neoplasms is increased in the elderly, some tumors appear to grow more slowly in old as compared to young patients. We have used the B16 melanoma to explore the relationship between age, T-lymphocyte function, and the rate of tumor growth. Increasing age is associated with a decreased rate of tumor growth and impaired T-cell function in C57BL/6 mice. Furthermore, when T-cell immunity in young mice is compromised by thymectomy, B16 tumor growth is decreased. Mixed cell transfer studies demonstrated that T cells from young but not old donors stimulate the growth of B16 melanoma cells in young lethally irradiated recipients. Recently, T cells from young but not old mice have been reported to produce angiogenic factors. As tumors from young mice have a richer vascular supply than in old mice, it appears that one mechanism for the age-associated decrease in B16 melanoma growth is the decreased capacity of T cells from old mice to generate angiogenic factors. However, parabiosis of young and old mice showed that local factors in old mice also limit the stimulatory influences of T cells from young mice. Novel therapeutic approaches to limit the growth of tumors might result from a greater understanding of the production of and response to angiogenic factors produced by T cells.

Aging

Regulation of antibody secretion by hybridoma cells. II. Mechanism of idiotype-induced suppression of antibody secretion by hybridoma cells.

We have previously reported that antibody secretion by B.22 hybridoma cells can be suppressed in an MHC-restricted manner, by idiotype-specific T cells. It was shown that T cells of both helper and suppressor phenotypes are involved, and that the suppression is mediated by soluble factors. In the present paper, we have characterized the effects of T-cell-mediated suppression at the level of B.22 antibody mRNA expression and stability. Nuclear run-on analysis comparing suppressed and control B.22 cells indicates no change in the transcription rates of heavy and light chains. Northern blot analysis demonstrates that steady-state levels of heavy and light chain mRNAs are also unchanged. Thus, the suppression of antibody secretion by B.22 cells probably occurs at the levels of translation or secretion.

Animals

The influence of immune complexes, steric effects, and antigen-antigen interactions on the sensitivity of enzyme-linked immunosorbent assays.

Serum from mice hyperimmunized with 2,4,6-trinitrophenylated bovine gamma globulin (TNP-BGG) or keyhole limpet hemocyanin have been shown to have enhanced binding to several ligands unrelated to the antigen used for immunization. Addition of the immunizing antigen to the serum can result in increased binding to unrelated ligands and to the polyvinyl chloride surface of microtiter wells in solid-phase enzyme-linked immunosorbent assays. In a competitive binding assay using TNP-BGG-hyperimmune serum adsorbed to the microtiter well followed by an alkaline phosphatase conjugate of BGG in the presence or absence of TNP-BSA, substantial inhibition of BGG binding is seen. Steric hindrance appears to be the major cause of such inhibition since addition of hapten alone has little effect on BGG binding. An antigen-antigen interaction between KLH and TNP is also detectable. Immune complex formation, steric effects, and antigen-antigen interactions potentially have substantial influences on ELISA sensitivity and must be considered as possible sources of artifact in these assays.

Animals

Immunological studies of aging. Normal B-cell repertoire in aged mice: studies at a clonal level.

As previously reported, old mice produce lower avidity plaque-forming cells (PFC) after immunization with 2,4,6-trinitrophenyl-Ficoll (TNP-F) than do young mice. However, if spleen cells from TNP-F-immunized old mice are incubated with hapten to elute auto-anti-idiotype antibody then high avidity PFC, comparable to those in young mice, are detected. To further evaluate the effect of age on the B-cell repertoire anti-2,4,6-trinitrophenyl-bovine gamma globulin (TNP-BGG) hybridomas were prepared from young (6 to 8 weeks old) and old (18 to 24 months old) mice which had been primed and boosted with TNP-BGG. The monoclonal antibodies (MoAb's) were TNP-specific. Spleens from old and young mice were comparable with respect to the incidence of immunoglobulin-secreting hybridomas obtained, the incidence of TNP-BGG-specific hybridomas obtained, and the isotype distribution of the anti-TNP-BGG hybridomas. The avidities for TNP-BGG of the IgG1 anti-TNP-BGG MoAb's obtained from old and young donors were also comparable. The overall results thus suggest that old and young mice have similar B-cell repertoires and that differences in the antibodies produced are due to regulatory influences.

Aging

Serum IgD levels in mice: effect of strain, age and autoimmune disease.

Serum IgD levels were studied in mice. Strain-related variability of serum IgD levels was noted, and advanced age was associated with markedly increased IgD levels in a large percentage of mice from all strains. Strains prone to spontaneously arising autoimmune disease had elevated IgD levels; in NZB mice this was already present very early after birth (one week), whereas in MRL mice the elevated serum IgD levels were first seen somewhat later (3 months). In contrast, mice with collagen type II (CII)-induced autoimmune arthritis had no increase in serum IgD. Injection of the immunomodulating agents LPS and complete Freund's adjuvant (CFA) did not have a significant effect on serum IgD levels, but IL-1 induced a significant decrease in IgD.

Adjuvants, Immunologic

Peripheral T cells select the B-cell repertoire in old mice.

These studies have shown that the alterations in the repertoire of antibody produced by old mice is not due to an intrinsic defect in the bone marrow or in the B-lymphocyte population arising from the bone marrow but rather to a selective downregulation by auto-anti-idiotypic antibody and idiotype-anti-idiotype interactions, shifting the idiotype distribution in the peripheral B-cell population. Thus, the clonal distributions of B cells generated by bone marrow of old and young mice are very comparable. The age-related differences in antibodies expressed by young and old mice are, to a great extent, determined by the activity of a peripheral regulatory immune network. This immune cellular network operates prior to exposure to antigen, presumably on the basis of an idiotype-anti-idiotype network between T and B lymphocytes. After exposure to antigen, a network of idiotype-anti-idiotype antibody interactions also contributes to differences in the immune responses of old and young mice to foreign antigens. If the expressed repertoire of antibody reflects down-regulation of auto-anti-idiotypic antibody, comparable repertoires of B-cell clones would be expected to be recovered from old and young mice if B cells from old mice were rescued from selective peripheral downregulatory influences active in old mice. Support for this hypothesis has been obtained by generating B-cell hybridomas from young and old mice immunized with TNP bovine gamme globulin (Marcenario et al. 1989). The same number of anti-TNP hybridomas and a comparable number of IgG and high-affinity antibody-producing clones were recovered from the spleens of young and old mice. Thus, the actual B-cell clonal repertoires of young and old mice appear to be similar although the expressed repertoires of antibody-producing lymphocytes from old and young mice are very different. This conclusion has considerable impact on strategies that could be employed to reverse the senescence of humoral immunity. Strategies to counter downregulatory influences which constrain the expression of the B-cell population should be more effective than attempts to reconstitute the repertoire of B lymphocytes in aged individuals. Finally, the mechanisms underlying these age-associated shifts in the expressed humoral antibody response can be attributed to life-long interactions with self and foreign antigens. The overall shift may be described as a decreased reactivity to foreign antigens and a complementary increase in reactivity with self antigens.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging

Production of auto-anti-idiotype antibody during the normal immune response. XIV. Evidence for the antigen-independent operation of the idiotype network.

We have previously shown that that idiotype (Id) repertoire expressed by old mice is different from that of young mice after immunization with trinitrophenylated Ficoll. Older mice also produce more auto-anti-Id antibodies than do young mice. Mice surviving a normally lethal dose of radiation (800 rads) as result of partial shielding of their bone marrow slowly recover immune function, after the repopulation of their peripheral lymphoid system by bone marrow precursor cells. Aged mice subjected to such a procedure produce low auto-anti-Id responses, like those of young mice. However, transfer of splenic T cells from old donors into such mice increases the magnitude of the auto-anti-Id response. In the present studies, we show that the age-related shift in Id expression is also determined by the age of the donor T cells. Furthermore, we show in serial cell transfer studies that the peripheral T-cell population of old mice modifies the level of the auto-anti-Id response in the absence of antigen. The results thus provide evidence for the normal, in vivo, operation of an Id-anti-Id network between B and T lymphocytes.

Aging

The role of immunity to cartilage proteoglycan in adjuvant arthritis. Intravenous injection of bovine proteoglycan enhances adjuvant arthritis.

It has been suggested that autoimmunity to the proteoglycan (PG) component of cartilage plays a major role in the etiology of adjuvant arthritis (AA), which occurs in rats, but not in mice, after injection of CFA. In order to more directly investigate this role, bovine and human cartilage PG were used to modulate AA, and immunity to PG was assessed. Immunization of rats or mice with PG by itself does not induce arthritis. However, in rats, a single i.v. injection of soluble PG, given 1 wk before injection of CFA, results in a significant increase in incidence and severity of the arthritis induced. Rats injected with CFA have both antibody and delayed type hypersensitivity (DTH) to PG. Upon pretreatment of rats with PG i.v., both DTH and antibody titers to PG are increased. Rats immunized with PG in IFA have high titers of anti-PG and strong DTH to PG, which are also enhanced by pretreatment with PG i.v., although none of these animals develops arthritis. In contrast to these findings in rats, when mice are pretreated with PG i.v., DTH to PG induced by injection of CFA is lower, whereas anti-PG titers are higher than in unpretreated controls. The results presented here show that, in rats, i.v. injection of PG synergizes with CFA in the induction of AA, and enhances both humoral and cellular immunity to PG. The findings support the hypothesis that immunity to PG is of importance in AA, although under the conditions of these experiments immunity induced by PG alone is clearly not sufficient for the induction of arthritis.

Adjuvants, Immunologic

Studies on suppressor factors produced by T-cell hybridomas. I. Characterization of antigen-specific suppressor factors.

Antigen-specific and antigen-nonspecific suppressor T cells were generated when spleen cells prepared from C57BL/6J (H-2b) were incubated with trinitrophenylated polyacrylamide beads (TNP-PAA) in vitro. T hybridomas were prepared by fusion of spleen cells cultured with TNP-PAA for 4 days and the thymoma cell line BW5147. More than 100 hybridomas were generated, and 15 of them suppressed the anti-TNP PFC response of fresh spleen cells cultured with TNP-PAA. The suppression was antigen specific with three of these five hybridoma supernatants tested. Hybridomas that caused antigen-specific suppression secrete factors which bring about suppression of the anti-TNP PFC response by spleen cells cultured with TNP-PAA. These hybridoma supernatants which cause antigen-specific suppression typically depressed the anti-TNP PFC response by 60% while depressing anti-SRBC PFC response by only 10%. The antigen-specific suppressor factors were bound to a TNP-BGG column but not to a BGG column. The suppressor factors, purified by affinity chromatography on a TNP-BGG column, were bound to anti-I-Jb antibody.

Acrylic Resins

Effects of tobacco glycoprotein (TGP) on the immune system. II. TGP stimulates the proliferation of human T cells and the differentiation of human B cells into Ig secreting cells.

We have been studying the effects of tobacco glycoprotein (TGP), a polyphenol-rich glycoprotein isolated from cured tobacco leaves, on the immune system. We have shown previously that mice immunized with TGP produce preferentially antibodies of the IgE isotype and that TGP is a T cell-independent B cell mitogen for mice, which stimulates B cell proliferation and B cell differentiation into Ig-secreting cells. We report herein that TGP stimulates a significant increase in [3H]TdR incorporation by human PBL and by human cord blood lymphocytes. The magnitude of the proliferative response of PBL to TGP does not correlate with the donor's titer of IgE antibodies to TGP, as assayed by a wheal and flare response after an i.d. injection of TGP, neither does it correlate with the donor's smoking history. [3H]TdR uptake is not observed before day 5 of culture, and the response peaks between days 5 and 10 of culture. Analysis of the cellular basis for the proliferative response suggests that T cells are proliferating. Two-parameter analysis by flow cytometry shows that CD3+, CD4+, and CD8+ cells are in the S + G2 + M phases, but not Ig-bearing cells or monocytes. A significant increase in HLA-DR (Ia)-bearing cells is observed on cells in all of the cell cycle phases. This increase coincides with cells entering the S phase. No increase is observed in the expression of the IL-2-R as assayed by the anti-Tac antibody. TGP also stimulates human PBL to differentiate and to produce Ig of the IgM, IgG, and IgA isotypes, without stimulating a detectable B cell proliferative response. The proliferative response of PBL is clearly due to TGP and not to contamination with LPS, because by the limulus amebocyte assay the TGP preparation contains less than 2% LPS, which could not account for the stimulation observed.

Adult

Physiology of IgD. IX. Effect of IgD on immunoglobulin production in young and old mice.

Weekly i.p. injections of IgD from birth in (SJL X BALB/c)F1 mice were found to accelerate the development of IgG- and IgA-secreting cells and to increase the numbers of Ig-secreting cells of all isotypes in 17-28-day-old mice, but not in 7-10-day-old mice. Similarly, repeated weekly injections of IgD in normal adult BALB/c mice increased the numbers of reverse plaque-forming cells/spleen for all isotypes studied, including IgM, IgG1, IgG2, and IgA, but not for IgD itself. No such effect was observed in IgD-treated aged (20 months old) BALB/c mice. The absence of an effect of IgD on Ig secretion appeared to correlate with a lack of induction of receptors for IgD on T cells of the host, both in 7-10-day-old and in aged mice. In 7-10-day-old mice this lack of induction appeared due to their very low numbers of L3T4+ T cells. A comparison was made between the effect of a single injection of IgD or lipopolysaccharide (LPS) on numbers of Ig-secreting cells in the spleen determined 1-7 days after injection. Both agents caused increases, but the increase in IgM-producing cells was much greater after LPS (day 4), while IgD caused a relatively greater increase in IgG2 and IgA (days 4-7). Increases in IgG1 and IgG3-producing cells induced by LPS and IgD were of similar magnitude (days 6-7). IgD production, however, was not increased. The number of cells producing antibody of anti-trinitrophenyl (TNP) specificity was enhanced by LPS (day 4), but not by a single injection of IgD, although more than one injection of IgD caused a significant increase in anti-TNP-producing cells above background. LPS, but not IgD, caused B cell proliferation in vitro in the presence or absence of gamma-irradiated T delta cells. However, in vivo, IgD injections caused a significant increase in the percentage of lymphoid follicles with germinal centers in lymph nodes from 17-21-day-old and normal adult mice, but not in 7-10-day-old or aged mice. Such an effect was also absent in 24-28-day-old mice, where germinal center development, even in untreated mice, was very high.

Aging

A cross-reactive idiotype on anti-collagen antibodies in collagen-induced arthritis: identification and relevance to disease.

Immunization of mice with type II collagen (CII) leads to the production of anti-CII antibodies and, in susceptible strains, to the induction of arthritis. Specifically purified anti-CII antibodies from arthritic DBA/1 mice were used to prepare a rabbit anti-idiotypic antiserum. This antiserum recognizes a cross-reactive idiotype (CRI) present on 20-25% of anti-CII antibodies from DBA/1 mice immunized with bovine CII. The CRI is not present on DBA/1 anti-trinitrophenyl, undetectable in normal Ig and not Igh allotype linked. The presence of this CRI was examined after antigen specific suppression of the anti-CII antibody response by intravenous administration of chick or bovine CII. While intravenous injection of bovine CII, prior to immunization with chick CII, greatly reduces both the incidence of arthritis and the anti-CII response, the fraction of anti-bovine CII which expresses the CRI is increased by this treatment. These findings suggest that the CRI characterizes a disease-unrelated fraction of anti-CII which recognizes bovine and chick CII, but probably not mouse CII. In addition, attempts at idiotypic regulation of arthritis incidence and antibody response by in vivo administration of anti-idiotypic serum also indicate that the CRI-bearing antibody is not important for the induction of arthritis.

Animals

Tolerance induction by a poorly arthritogenic collagen II can prevent collagen-induced arthritis.

Collagen type II (CII)-induced arthritis (CIA) can be induced in 78% of B10.RIII mice (H2r) by intradermal (id) immunization with CII of bovine origin in complete Freund's adjuvant (CFA), whereas immunization with CII of chick origin induces arthritis in less than 5% of these mice. Nevertheless, tolerization of B10.RIII mice with intravenously injected chick CII renders the animals resistant to induction of CIA by immunization with bovine CII. Such tolerization can be achieved either by intravenous injection of 500 micrograms chick CII 1 week prior to immunization with bovine CII in CFA or by such an intravenous injection of chick CII 2 weeks after immunization with bovine CII in CFA. Postimmunization treatment results in a significant decrease in the concentration of antibody to bovine CII. Preimmunization administration of chick CII causes a marked decrease in the antibody reactive with chick CII without a significant effect on the anti-bovine CII antibody concentration. In DBA/1 mice, a strain in which both bovine CII and chick CII can induce a high incidence of the disease, intravenous injection of bovine CII can also prevent arthritis induced by chick CII, even when given 7 or 14 days after immunization. The fact that chick CII as tolerogen is quite effective in preventing arthritis in B10.RIII mice, while as immunogen it is very ineffective in inducing arthritis in this strain, may be interpreted as evidence for interaction between different epitopes on CII in the pathogenesis of CIA.

Animals