PubMed Health⌕ Search

Biomedical subjects

W C Gause

Publications and source records attributed to W C Gause.

At least 37 records · Page 2Linked to original sources

B7-CD28/CTLA-4 costimulatory pathways are required for the development of T helper cell 2-mediated allergic airway responses to inhaled antigens.

We have previously demonstrated that the development of allergen-induced airway hyperresponsiveness in a murine model is CD4+ T cell dependent. In the present study, we examined the role of the B7/CD28-CTLA4 costimulatory T cell activation pathway in the pathogenesis of allergen-induced airway hyperresponsiveness in this murine model. Sensitized A/J mice develop significant increases in airway responsiveness, bronchoalveolar lavage eosinophils, serum IgE levels, and Th2-associated cytokine production following aspiration challenge with OVA. Administration of CTLA4-Ig either before Ag sensitization or before pulmonary Ag challenge abolished Ag-induced airway hyperresponsiveness and pulmonary eosinophilia. Examination of cytokine protein levels in the bronchoalveolar lavage showed a significant decrease in the level of the Th2 cytokine, IL-4, after CTLA4-Ig treatment either before sensitization or before challenge, with no significant change in the concentration of the Th1 cytokine, IFN-gamma. Further, the Ag-specific Ab isotypes IgG1 and IgE were significantly decreased in animals treated with CTLA4-Ig before challenge, while there was no significant change in the IgG2a Ab isotype. These data demonstrate that administration of CTLA4-Ig is effective in ablating allergen-induced airway dysfunction concomitant with a significant reduction in the Th2 response. We conclude that B7/CD28-CTLA-4 costimulation is required for the development of many of the immunologic and physiologic features of asthma, possibly by promoting a pathologic type 2-associated response.

Abatacept↗

The function of costimulatory molecules and the development of IL-4-producing T cells.

The development of IL-4-producing effector T cells during a type 2 immune response requires signaling through B7 ligands, but probably not CD40 ligands. Here, William Gause and colleagues review the still controversial role of CD28 and CTLA-4 on T cells, and B7-1 and B7-2 on antigen-presenting cells, and provide a model to incorporate recent findings.

Abatacept↗

Cytokine regulation of host defense against parasitic gastrointestinal nematodes: lessons from studies with rodent models.

Studies with rodents infected with Trichinella spiralis, Heligmosomoides polygyrus, Nippostronglyus brasiliensis, and Trichuris muris have provided considerable information about immune mechanisms that protect against parasitic gastrointestinal nematodes. Four generalizations can be made: 1. CD4+ T cells are critical for host protection; 2. IL-12 and IFN-gamma inhibit protective immunity; 3. IL-4 can: (a) be required for host protection, (b) limit severity of infection, or (c) induce redundant protective mechanisms; and 4. Some cytokines that are stereotypically produced in response to gastrointestinal nematode infections fail to enhance host protection against some of the parasites that elicit their production. Host protection is redundant at two levels: 1. IL-4 has multiple effects on the immune system and on gut physiology (discussed in this review), more than one of which may protect against a particular parasite; and 2. IL-4 is often only one of multiple stimuli that can induce protection. Hosts may have evolved the ability to recognize features that characterize parasitic gastrointestinal nematodes as a class as triggers for a stereotypic cytokine response, but not the ability to distinguish features of individual parasites as stimuli for more specific protective cytokine responses. As a result, hosts deploy a set of defense mechanisms against these parasites that together control infection by most members of that class, even though a specific defense mechanism may not be required to defend against a particular parasite and may even damage a host infected with that parasite.

Animals↗

Differential effect of CTLA4Ig on murine graft-versus-host disease (GVHD) development: CTLA4Ig prevents both acute and chronic GVHD development but reverses only chronic GVHD.

The role of costimulation was examined in an in vivo model of alloantigen-driven Th1 or Th2 cytokine responses, the parent-into-F1 model of acute or chronic graft-vs-host disease (GVHD), respectively. The soluble fusion protein, murine CTLA4Ig, which blocks engagement of CD28 by its natural ligand B7-1 and B7-2, was administered either early, at the time of GVHD induction, or delayed, after the establishment of Th1 or Th2 effector responses (day 7). Early administration of CTLA4Ig prevented the development of both acute and chronic GVHD by preventing the activation of donor T cells, i.e., by blocking characteristic Th1 or Th2 cytokine production and blocking memory marker up-regulation on donor T cells. Delayed CTLA4Ig administration was unable to alter acute GVHD but did reverse chronic GVHD as evidenced by normalization of serum autoantibody levels, normal host B cell numbers and MHC class II expression, reduced donor T cell expression of CD40 ligand, and reduced numbers of donor CD4+ memory T cells. The percentage of donor memory cells was not altered by delayed CTLA4Ig. We conclude that in this model, alloantigen-driven Th1 or Th2 responses are equally susceptible to costimulatory blockade at the onset of disease; however, once effector mechanisms become established, only Th2-driven responses have a requirement for further costimulation for the continued expansion of CD4+ T cells. These data suggest that humoral, lupus-like autoimmunity requires continuous T cell help for B cells, and agents that interrupt this process may be beneficial.

Abatacept↗

Dendritic cells can present antigen in vivo in a tolerogenic or immunogenic fashion.

Dendritic cells (DC) are unmatched among APCs in their ability to bind, process, and present Ag. Presentation by such potent APCs, if always immunogenic and never tolerogenic, might stimulate pathogenic autoimmune responses. To determine whether Ag presentation by DC can induce tolerance, mice were injected with a rat IgG2b anti-splenic DC mAb, 33D1, and challenged 13 to 28 days later with a stimulatory rat IgG2b mAb. Injection of mice with 1 ng/100 micrograms of 33D1 rarely induced an anti-rat IgG2b Ab response and, in most mice, induced rat IgG2b-specific T cell and B cell tolerance. Tolerant mice had decreased ability to secrete Ab and make both type 1 and type 2 cytokine mRNA and protein in response to immunization with rat IgG2b. 33D1 was 100- to 1000-fold more potent as a tolerogen than an isotype-matched control rat IgG2b mAb. Injecting mice with aggregated 33D1, 33D1 plus anti-IgD mAb, or 33D1 plus IL-1 induced an IgG1 anti-rat IgG2b Ab response rather than tolerance. IL-1 injected 3 days after 33D1 still induced an Ab response rather than tolerance. Not all anti-DC mAbs are tolerogenic. Injection of a DC-specific hamster anti-CD11c mAb (N418) stimulates an IgG anti-hamster response, and injection of 33D1 plus N418 stimulates both anti-hamster and anti-rat IgG2b responses. These observations indicate that DCs can present Ag in either a tolerogenic or stimulatory manner and suggest that inflammatory stimuli can convert an otherwise tolerogenic signal to a stimulatory signal.

Animals↗

CD40-mediated stimulation contributes to lymphocyte proliferation, antibody production, eosinophilia, and mastocytosis during an in vivo type 2 response, but is not required for T cell IL-4 production.

CD40/CD40 ligand interactions are required for the development of T cell-dependent Ab responses in vivo. The role of these cell surface molecules in contributing to T cell cytokine production and the development of effector populations other than B cells and T cells is, however, less well defined. We have examined the in vivo effects of blocking CD40/CD40 ligand interactions on the type 2 mucosal immune response that follows oral inoculation of mice with the nematode parasite, Heligmosomoides polygyrus. Administration of anti-gp39 (CD40L) mAb (MR1) blocked H. polygyrus-induced elevations in serum IgG1 levels and inhibited elevations in blood eosinophils and mucosal mast cells at day 14 after inoculation. Anti-gp39 mAb markedly inhibited B cell blastogenesis 8 days after H. polygyrus inoculation but did not inhibit elevations in B cell class II MHC expression. Maximal elevations in B7-2 expression required signaling through both CD40 and the IL-4R. Elevations in T cell cytokine gene expression and elevations in the number of IL-4-secreting cells were unaffected by treatment with anti-gp39 mAb, although IL-4 production was inhibited by anti-IL-4R mAb. These results suggest that CD40/CD40L interactions are not required to activate T cells to produce cytokines but are required for the activation and proliferation of other effector cells associated with the type 2 response.

Animals↗

IL-12 protects immunocompetent and immunodeficient neonatal mice against infection with Cryptosporidium parvum.

The protozoan parasite Cryptosporidium parvum (Cp) causes diarrhea that can be acutely severe in immunocompetent persons and can become chronic and life-threatening in immunocompromised individuals. Because studies in mice have implicated IFN-gamma in protection against this parasite, and IL-12 can induce IFN-gamma production, we examined the ability of IL-12 to prevent or cure Cp infection in neonatal BALB/c and SCID mice. Treatment of both immunocompetent and immunodeficient mice with IL-12 before experimental inoculation with Cp oocysts prevented or greatly reduced the severity of infection. Intestinal epithelial cell invasion and/or early intracellular development of Cp was inhibited by exogenous IL-12. The protective effect of IL-12 was completely blocked by anti-IFN-gamma mAb. Established infections were associated with elevated IFN-gamma gene expression and were not ameliorated by IL-12 treatment, even though such treatment further enhanced IFN-gamma gene expression. The severity of Cp infection was, however, exacerbated by treatment with anti-IL-12 Ab. These observations provide the first evidence that treatment with exogenous IL-12 can prevent Cp infection through an IFN-gamma-dependent, specific immune system-independent mechanism, and that endogenous IL-12 production has a role in limiting Cp infection.

Adjuvants, Immunologic↗

Early IL-4 production does not predict susceptibility to Leishmania major.

Leishmania major in mice can be self-limiting or fatal, depending upon the inbred mouse strain. It is well established that the outcome of infection is dependent upon the Th cell subset that dominates after infection. This has led to intense study of the early events associated with infection, in order to better understand the factors that determine Th1/2 cell development. In the present report, we have analyzed the kinetics of IL-4 and IL-4 mRNA production in three mouse strains: BALB/c, C3H, and C57BL/6. We found that in the first week IL-4 is absent in the C3H mice, but present in the susceptible BALB/c and relatively resistant C57BL/6 mouse. These data indicate that the presence of IL-4 by itself does not determine whether the immune response will be dominated by Th2 cells, since C57BL/6 mice will eventually develop a Th1 response and heal. We suggest that the critical cytokine that determines susceptibility in experimental leishmaniasis is IL-12, rather than IL-4. Thus, in C3H mice IL-12 is evident soon after infection, and IL-4 responses are not observed. In C57BL/6 mice, IL-12 production is delayed, but once evident, the IL-4 response is ablated. Further, we show that addition of IL-12 can block early IL-4 production in BALB/c mice, and neutralization of IL-12 in C3H mice uncovers IL-4 production in response to L. major infection. Taken together, these data indicate that susceptibility to L. major, while possibly requiring IL-4, is not determined by the presence or absence of IL-4.

Animals↗

H. polygyrus: B7-independence of the secondary type 2 response.

The gastrointestinal nematode parasite, Heligmosomoides polygyrus, has been used extensively in experimental studies of host immunity. The pronounced type 2 primary immune response to H. polygyrus is associated with elevated CD4+, TCR-alpha/beta + T cell IL-4 production and elevated serum IgE levels that are blocked by inhibiting CD28/ CTLA4-B7 interactions following in vivo administration of the chimeric fusion protein, CTLA4Ig. In the present study, we have examined the in vivo effects of blocking CTLA4Ig ligands on the secondary type 2 mucosal host protective immune response to this parasite. Our results show that although CD4+, TCR-alpha/beta + cells remain the primary source of elevated IL-4 during the secondary response, the protective immune response and the effector cell activity associated with it is B7-independent as CTLA4Ig administration at the time of challenge does not block (1) elevations in T cell IL-4 gene expression or protein secretion; (2) elevations in serum IgE levels, mucosal mastocytosis, or eosinophilia; or (3) host protection, as measured by adult worm burden and fecundity. These findings suggest that memory T helper cells do not require CD28-B7 interactions for their activation to effector cells that can mediate a host protective type 2 immune response.

Abatacept↗

Kinetics of Th1 and Th2 cytokine production during the early course of acute and chronic murine graft-versus-host disease. Regulatory role of donor CD8+ T cells.

Acute and chronic graft-versus-host disease (GVHD) in the parent-into-F1 model are mediated by predominantly cellular or humoral immune responses, respectively, and are strikingly different entities by 2 wk of disease. Both forms of GVHD, however, evolve from a common starting point, i.e., donor CD4+ T cell recognition of host alloantigen and IL-2 production. Our study examines the first 2 wk of GVHD to delineate the events that critically influence GVHD development. Surprisingly, both forms of GVHD are initially characterized by increased Th2 cytokine (IL-4 and IL-10) production and B cell activation which persists into wk 2. The earliest distinguishing features of acute GVHD were detectable at days 5 through 7 of disease and consisted of 1) expansion of donor CD8+ T cells, and 2) increased IFN-gamma production by donor CD4+ and CD8+ T cells. Interestingly, IFN-gamma production by donor CD4+ T cells was not seen if donor CD8+ T cells were not engrafted in comparable numbers. Chronic GVHD in the DBA-into-BDF1 model was found to be caused by a relative defect in the ability of DBA CD8+ T cells to induce acute GVHD and to produce IFN-gamma. These studies demonstrate that both acute and chronic GVHD begin as a Th2 cytokine-mediated, B cell stimulatory response. The transition to acute GVHD is critically dependent on the engraftment of donor CD8+ T cells, which terminate B cell hyperactivity by 1) eliminating activated B cells and 2) promoting IFN-gamma secretion by donor CD4+ T cells.

Animals↗

Requirement of CTLA-4 counter receptors for IL-4 but not IL-10 elevations during a primary systemic in vivo immune response.

The CD28/CTLA-4 costimulatory signal is required for TCR-mediated T cell activation resulting in increased IL-2 production in vitro, but its role in IL-4 production is unclear and few studies have examined the function of CTLA-4/CD28 in the in vivo immune response. We have examined the in vivo effects of blocking the interaction of B7 with its ligands, CTLA-4 and CD28, in an IL-4 dominant in vivo immune response to goat anti-mouse IgD. This response is characterized by elevations in serum Igs preceded by elevations in IL-2 and the Th2 cytokines: IL-4, IL-9, and IL-10. The fusion protein CTLA4-Ig administered during the in vivo immune response to goat anti-mouse IgD caused an inhibition in elevations of IL-2, IL-4, and IL-9 gene expression at both day 3 and day 6 after immunization. In contrast, IL-10 cytokine gene expression as late as day 6 after immunization was not decreased. Cell sorting analysis demonstrated that TCR-alpha beta +, CD4+ T cells were the primary source of the elevated IL-10, suggesting that T cell activation leading to IL-10 gene expression may not require CTLA-4 ligand interactions. Similarly CTLA4-Ig completely blocked elevations in the number of IL-4- but not IL-10-secreting cells, as measured by ELISPOT, in both unsorted splenic cells and sorted CD4+, TCR-alpha beta+ T cells. In situ staining of spleen sections also showed inhibition of IL-4-producing cells. These results suggest that, with the notable exception of IL-10, interaction, of B7 with its ligands is required for elevated Th2 cytokine gene expression and secretion during a primary systemic IL-4-dominant response.

Abatacept↗

Role of B7 signaling in the differentiation of naive CD4+ T cells to effector interleukin-4-producing T helper cells.

Signaling through the T cell receptor must be accompanied by costimulatory signals for the differentiation of naive T cells to cytokine-producing effector T helper cells. The costimulatory signal through CD28 is required for T cell activation resulting in increased interleukin (IL)-2 production in vitro, but its role in the production of IL-4 and in the in vivo response is still unclear. We have examined the effects of blocking CTLA-4 (the CD28 homologue) ligand interactions on the in vivo development of IL-4-producing T helper effector cells during a primary mucosal immune response to the nematode parasite Heligmosomoides polygyrus and during a primary systemic immune response to immunogenic anti-IgD antibodies. Our results demonstrate that CD28 and/or CTLA-4 signaling is required for T cell priming leading to IL-4 cytokine production, B cell activation, and IgE secretion during both immune responses, suggesting that other signaling molecules do not substitute for these molecules in either of these two different immune responses. Furthermore, the CD28 ligands, B7-1 and B7-2, can substitute for each other in providing the required T cell costimulatory ligand interactions during the primary immune response to H. polygyrus. In contrast, memory T cells during the challenge immune response do not require CD28/CTLA-4 ligand interactions for IL-4 production and T helper effector function.

Abatacept↗

Gene expression of hematoregulatory cytokines is elevated endogenously after sublethal gamma irradiation and is differentially enhanced by therapeutic administration of biologic response modifiers.

Prompt, cytokine-mediated restoration of hematopoiesis is a prerequisite for survival after irradiation. Therapy with biologic response modifiers (BRMs), such as LPS, 3D monophosphoryl lipid A (MPL), and synthetic trehalose dicorynomycolate (S-TDCM) presumably accelerates hematopoietic recovery after irradiation by enhancing expression of cytokines. However, the kinetics of the cytokine gene response to BRMs and/or irradiation are poorly defined. One hour after sublethal (7.0 Gy) 60Cobalt gamma irradiation, B6D2F1/J female mice received a single i.p. injection of LPS, MPL, S-TDCM, an extract from Serratia marcescens (Sm-BRM), or Tween 80 in saline (TS). Five hours later, a quantitative reverse transcription-PCR assay demonstrated marked splenic gene expression for IL-1 beta, IL-3, IL-6, and granulocyte-CSF (G-CSF). Enhanced gene expression for TNF-alpha, macrophage-CSF (M-CSF), and stem cell factor (SCF) was not detected. Injection of any BRM further enhanced cytokine gene expression and plasma levels of CSF activity within 24 h after irradiation and hastened bone marrow recovery. Mice injected with S-TDCM or Sm-BRM sustained expression of the IL-6 gene for at least 24 h after irradiation. Sm-BRM-treated mice exhibited greater gene expression for IL-1 beta, IL-3, TNF-alpha, and G-CSF at day 1 than any other BRM. When challenged with 2 LD50/30 of Klebsiella pneumoniae 4 days after irradiation, 100% of Sm-BRM-treated mice and 70% of S-TDCM-treated mice survived, whereas < or = 30% of mice treated with LPS, MPL, or TS survived. Thus, sublethal irradiation induces transient, splenic cytokine gene expression that can be differentially amplified and prolonged by BRMs. BRMs that sustained and/or enhanced irradiation-induced expression of specific cytokine genes improved survival after experimental infection.

Animals↗

CTLA-4 ligands are required to induce an in vivo interleukin 4 response to a gastrointestinal nematode parasite.

The costimulatory signal provided to T cells through CTLA-4-ligand interactions is required for T cell activation resulting in increased interleukin 2 (IL-2) production in vitro, but its role in the production of IL-4 and other cytokines is unclear and few in vivo studies have been performed to confirm results of in vitro experiments. We have examined the in vivo effects of blocking CTLA-4 ligands on the T helper cell 2 (Th2)-associated mucosal immune response that follows oral infection of mice with the nematode parasite, Heligmosomoides polygyrus. CTLA-4Ig administration inhibited H. polygyrus-induced increases in mesenteric lymph node (MLN) B cell major histocompatibility complex class II expression and size and T cell-derived IL-4 gene expression. In addition, CTLA-4 immunoglobulin (Ig) partially blocked increased IL-3, IL-5, and IL-9 cytokine gene expression in Peyer's patch (PP) and MLN 8 d after primary inoculation of mice with the parasite. Increases in the number of IL-4- but not IL-5-secreting cells were also inhibited by CTLA-4Ig. H. polygyrus-induced elevations in serum IgE levels but not blood eosinophils, were markedly inhibited by CTLA-4Ig. These results suggest that stimulation of CD28 and/or CTLA-4 is required for T cell priming leading to IL-4 cytokine production, B cell activation, and IgE secretion during a Th2-like, mucosal immune response to a nematode parasite.

Abatacept↗

Effects of interleukin 12 on immune responses and host protection in mice infected with intestinal nematode parasites.

The cytokine interleukin (IL) 12 stimulates T cell and natural killer cell production of interferon (IFN) gamma and inhibits T cell production of IL-4. We investigated the effects of IL-12 on cytokine gene expression, immunoglobulin (Ig)E, mucosal mast cell, and eosinophil responses, and the course of infection in mice inoculated with the nematode parasite Nippostrongylus brasiliensis, as well as the IFN-gamma dependence of these effects. IL-12 stimulated IFN-gamma and IL-10 gene expression during primary and secondary N. brasiliensis infections and inhibited IL-3, IL-4, IL-5, and IL-9 gene expression during primary infections but had little inhibitory effect during secondary infections. IL-12 inhibited IgE, mucosal mast cell, and blood and tissue eosinophil responses during primary infections, but only eosinophil responses during secondary infections. IL-12 enhanced adult worm survival and egg production during primary, but not secondary infections. IL-12 needed to be administered by day 4 of a primary infection to inhibit IgE and mucosal mast cell responses, and by day 6 to strongly inhibit eosinophil responses and to enhance worm survival and fecundity. Anti-IFN-gamma mAb inhibited the effects of IL-12 on IgE secretion, intestinal mucosal mastocytosis, and parasite survival and fecundity, but did not affect IL-12 inhibition of eosinophilia. These observations indicate that IL-12, if administered during the initiation of eosinophilia. These observations indicate that IL-12, if administered during the initiation of an immune response, can change the response from one that is characterized by the production of T helper (Th)2-associated cytokines to one characterized by the production of Th-1 associated cytokines. However, IL-12 treatment has less of an effect once the production of Th2-associated cytokines has become established. In addition, our results provide evidence that Th2-associated responses protect against, and/or Th1-associated responses exacerbate, nematode infections.

Animals↗

Correction of accelerated autoimmune disease by early replacement of the mutated lpr gene with the normal Fas apoptosis gene in the T cells of transgenic MRL-lpr/lpr mice.

MRL-lpr/lpr mice develop a generalized autoimmune disease which includes increased autoantibody production, glomerulonephritis, and development of lymphadenopathy. The lpr genetic defect has been identified as a mutation in the Fas apoptosis gene that results in low expression of Fas mRNA. To determine the significance of the lpr mutation and T cells in the development of the autoimmune disease, we constructed transgenic MRL-lpr/lpr mice using a full-length murine Fas cDNA under the regulation of the T-cell-specific CD2 promoter and enhancer. Here we show that the early correction of the lpr gene defect in T cells eliminates glomerulonephritis and development of lymphadenopathy and decreases the levels of autoantibodies. In this model, early correction of the lpr defect in T cells is sufficient to eliminate the acceleration of autoimmune disease even in the presence of B cells and other cells that express the mutant lpr gene.

Animals↗

Effects of IL-12 on in vivo cytokine gene expression and Ig isotype selection.

The effects of murine rIL-12 on cytokine gene expression and Ig secretion were studied in vivo. In untreated mice IL-12 enhanced IFN-gamma and IL-10 gene expression and protein secretion, reduced base line IL-3 and IL-4 gene expression, and increased serum IgG2a concentration. In mice that had been injected with goat anti-mouse IgD antibody (G alpha M delta) to induce increases in IL-3, IL-4, and IL-10 gene expression and serum IgE, IgG1, IgG2a, and IgG3 concentrations, the simultaneous injection of IL-12 enhanced IFN-gamma and IL-10 gene expression and suppressed IL-3 and IL-4 gene expression and serum IgG and IgE responses. Anti-IFN-gamma mAb neutralized most, but not all, IFN-gamma produced by mice treated with G alpha M delta and IL-12. Anti-IFN-gamma mAb enhanced IL-3 and IL-4 gene expression, did not affect IL-10 or IFN-gamma gene expression, and increased serum IgG1, IgG2a, and IgG3 levels, but had relatively little effect on serum IgE in these mice. In contrast to its effects in G alpha M delta-treated mice, IL-12 failed to inhibit the IgE response to G alpha M epsilon antibody, which stimulates mIgE+ B cells to secrete IgE. These observations demonstrate that: 1) IL-12 may limit its own effects by inducing the production of a cytokine (IL-10) that down-regulates both IL-12 production and IL-12-induced IFN-gamma production; 2) IL-12 inhibits the production of at least one cytokine, IL-3, that is not generally regarded to be strictly Th1- or Th2-associated; 3) IL-12 inhibits switching to IgE secretion to a greater extent than it inhibits switching to other Ig isotypes; and 4) the in vivo effects of IL-12 are, to a large extent, IFN-gamma-dependent.

Animals↗