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Biomedical subjects

C S Via

Publications and source records attributed to C S Via.

At least 37 records · Page 2Linked to original sources

Critical role of interleukin-2 in the development of acute graft-versus-host disease.

Prior work using the parent-into-F1 model of graft-versus-host disease (GVHD) has shown that production of IL-2 by donor CD4+ T cells is an early, initiating event in either acute or stimulatory forms of GVHD. The aim of the present study was to determine whether acute GVHD could be prevented by blocking the effects of IL-2 in vivo during the first 2 weeks of disease. Acute GVHD was induced in B6D2F1 mice by the injection of C57BL/6 spleen cells i.v. Mice were untreated or received either anti-IL-2 mAb (S4B6) or control mAb at the time of GVHD induction and 1 week later. At 2 weeks, untreated or control mAb treated GVHD mice exhibited findings typical of acute GVHD, i.e. (i) in vitro donor anti-host cytotoxic T lymphocyte (CTL) activity, (ii) significant reductions in both numbers and function of splenic lymphocytes, and (iii) in vitro suppressor cell activity which profoundly blocked IL-2 production by normal syngeneic spleen cells. All of these findings were reversed or significantly inhibited in acute GVHD mice receiving anti-IL-2 treatment. Additionally, anti-IL-2 treated GVHD mice exhibited features previously observed in stimulatory GVHD such as: (i) B cell hyperactivity, (ii) a mild defect in CD4+ T cell production of IL-2 in vitro, and (iii) the ability to induce in co-culture a similar CD4+ cell defect in normal, syngeneic F1 spleen cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

B-cell and T-cell function in systemic lupus erythematosus.

The process of autoantibody production in systemic lupus erythematosus is characterized by findings of both an antigen-driven response and polyclonal B-cell activation. Autoantibody production does not appear to be critically dependent on the presence of the CD5+ B cell subset. Increasing evidence supports a role for T helper cell type 2 cytokines, such as interleukin-4 and interleukin-6, in promoting and perpetuating B-cell hyperactivity and autoantibody formation.

Animals↗

A factor from CD8 cells of human immunodeficiency virus-infected patients suppresses HLA self-restricted T helper cell responses.

Defective in vitro T helper cell (Th) function can occur in asymptomatic human immunodeficiency virus (HIV)-seropositive (HIV+) individuals. A characteristic, early finding is the loss of an in vitro response to recall antigens, such as influenza A virus (FLU), despite an intact Th response to alloantigen (ALLO). To determine whether suppressor cells and/or inhibitory factors could contribute to this HIV-associated Th immunodeficiency, coculture studies were performed using peripheral blood leukocytes (PBLs) from monozygotic twins, one of whom was HIV-infected (HIV+) and one of whom was uninfected (HIV-seronegative, HIV-). In vitro Th function was measured as interleukin 2 production or proliferation to FLU and ALLO. Two pairs of twins were repetitively studied. A single HIV+ individual with multiple samples of cryopreserved PBLs over 6 years (including a HIV- specimen) was also studied. PBLs from the HIV+, but not from the HIV-, individuals demonstrated defective in vitro Th function in response to FLU but not to ALLO. PBLs from HIV+ individuals could induce a similar defect in the Th function of syngeneic or autologous HIV- PBLs. This suppression was generated by CD4-depleted, but not by CD8-depleted, PBLs. A suppressive factor from CD8+ cells of HIV+ donors was generated by 24-hr unstimulated cultures of HIV+ PBLs. This factor inhibited FLU but not ALLO responses of autologous, syngeneic, or allogeneic HIV- PBLs. This suppressive effect could not be explained by HIV infection or replication during the culture period. These results demonstrate that selective abrogation of Th function to recall antigens in HIV+ individuals is associated with an inhibitory factor produced by CD8+ T cells.

CD8 Antigens↗

T-cell and B-cell function in lupus.

B-cell hyperactivity is characteristic of lupus and appears to be, in many instances, T-cell driven. Recent work continues to examine the paradox of T-cell activation in vivo and depressed T-cell function in vitro. The role of intrinsic B-cell abnormalities, particularly in CD5+ B cells, is an area of active investigation.

Animals↗

Kinetics of T cell activation in acute and chronic forms of murine graft-versus-host disease.

Induction of graft-vs-host disease (GVHD) in the parent-into-F1 model is dependent on the presence of T cells in the donor inoculum. Although in vivo activation of donor T cells in response to F1 alloantigens is thought to be critical to GVHD induction, direct evidence of activated donor T cells has been lacking in this model. In the present study, spleen cells from acute or chronic GVHD mice were studied for evidence of T cell activation at multiple intervals early after GVHD induction. Spleen cells from both acute and chronic GVHD mice exhibited striking elevations in spontaneous proliferation and IL-2 production, which were maximal 24 to 48 h after GVHD induction. Persistent lower levels of spontaneous in vitro activity were observed for spleen cells from mice tested 7 to 9 days after GVHD induction. In both forms of GVHD, increased spontaneous proliferation and IL-2 production were dependent on the presence of donor CD4+ T cells. These results strongly support the presence of activated donor T cells in vivo. Furthermore, these data imply that despite the significant differences in outcome, acute and chronic GVHD share a common early event.

Acute Disease↗

Functional dichotomy of CD4+ T helper lymphocytes in asymptomatic human immunodeficiency virus infection.

The majority of asymptomatic, human immune deficiency virus seropositive (HIV+) individuals exhibit a defect in CD4+ T helper cell (Th) function that is selective for responses to recall antigens, but not to HLA alloantigens. The CD4-dependent Th response to HLA alloantigens (Allo) can be mediated by two distinct Th pathways: self-restricted CD4+ Th that recognize allogeneic determinants processed and presented by autologous or self accessory or antigen-presenting cells (sAC); and allo-restricted, CD4+ Th that recognize allogeneic determinants directly on allogeneic accessory or antigen-presenting cells (aAC). In contrast, the Th response to recall antigens requires CD4+ Th and sAC and is therefore limited to the major histocompatibility complex (MHC) self-restricted pathway. Peripheral blood leukocytes from 56 asymptomatic HIV+ patients that exhibited a selective defect in CD4+ Th function were analyzed to determine whether the Th response to Allo was entirely functional, or whether one of the CD4-mediated components of the Allo Th response was also defective. By depletion of AC and/or CD8+ Th subsets (to analyze CD4+ Th function), we demonstrated that HIV+ patients who were selectively deficient in Th function to recall antigens were also unresponsive to Allo presented by autologous AC (HLA self-restricted Th pathway), but retained Allo Th activity presented by allogeneic AC (allo-restricted CD4+ Th pathway). These findings indicate that the CD4+ Th defect seen in the majority of asymptomatic, HIV+ individuals is not limited to recall antigens, but also extends to the component of the response to HLA alloantigens that involves the self-restricted, CD4+ Th pathway. Thus, the Th defect observed in asymptomatic, HIV+ patients does not involve a CD4+ Th defect per se, but is limited to the HLA self-restricted component of Th function.

Antigen-Presenting Cells↗

Immunization with subunit human immunodeficiency virus vaccine generates stronger T helper cell immunity than natural infection.

Healthy, human immunodeficiency virus seronegative (HIV-) volunteers were multiply immunized with a recombinant gp160 (rgp160) candidate acquired immunodeficiency syndrome (AIDS) vaccine. Peripheral blood lymphocytes from volunteers immunized with 40 micrograms or with 80 micrograms (two volunteers per group) of rgp160, as well as from control donors, were tested for T helper (Th) cell function either prior to immunization, 8 to 12 months after the third immunization, or 2 to 5 months after the fourth immunization. The Th cell functional tests included antigen-induced in vitro interleukin 2 (IL 2) production and proliferation in response to influenza A virus (FLU) and to four synthetic peptides of HIV gp120 and gp160, previously demonstrated to be recognized by T cells from HIV naturally infected patients. Our results demonstrate the following: (a) immunization of HIV- individuals with rgp160 results in IL 2 production and T cell proliferation in response to HIV determinants; (b) boosting with rgp160 enhances Th function; (c) HIV-specific Th function is up to 100-fold greater in the multiply immunized volunteers than that observed in asymptomatic, HIV-infected individuals; and (d) multiple immunization with rgp160 does not impair Th function to a non-HIV antigen such as influenza A virus. These results indicate that immunization of uninfected individuals with an HIV subunit vaccine results in much stronger Th cell immunity than does natural infection and suggests that vaccination against HIV may be possible.

Gene Products, env↗

Correlation of in vitro CD4+ T helper cell function with clinical graft status in immunosuppressed kidney transplant recipients.

We recently identified three distinct T helper pathways which contribute to interleukin-2 (IL-2) production by human peripheral blood lymphocytes following stimulation with HLA alloantigens. In two of these pathways, CD4+ T helper cells respond to alloantigen using either self antigen-presenting cells (sAPC)* or allogeneic antigen-presenting cells (aAPC). A third pathway involves CD8+ T helper cells using aAPC. Previous in vitro studies have shown that the T helper pathway dependent on CD4+ T helper cells and sAPC (CD4-sAPC) is the most susceptible to suppression by cyclosporine. In the present study, we measured alloantigen-stimulated IL-2 production by PBL from 42 kidney transplant recipients to characterize the strength of the three T helper-APC pathways. In 58% of patients, a loss of the CD4-sAPC pathway was identified and was correlated with cyclosporine treatment. However, several patients not receiving cyclosporine also exhibited a similar loss of T helper cell function, suggesting that cyclosporine is not the only factor involved. Of 27 patients exhibiting depressed CD4-sAPC function, none had evidence of ongoing/recent graft rejection. In contrast, of 11 patients with no defects in the three pathways of in vitro T helper cell function, 6 had evidence of chronic graft rejection. Of considerable interest are the data obtained from a separate group of 4 patients who had episodes of acute rejection during the study. In each case, at the time of the rejection episode, all exhibited an intact CD4-sAPC pathway. However, samples tested prior to the rejection episode or after successful treatment of the rejection episode showed a depressed CD4-sAPC pathway. These results suggest that depression of the CD4-sAPC pathway represents adequate immunosuppression for graft retention and that patients not exhibiting such suppression are at increased risk for both acute and chronic graft rejection. These data may have relevance for diagnosis and/or prediction of graft rejection and may provide an in vitro method of monitoring the functional degree of immunosuppression in transplant recipients.

Adult↗

Synergistic effect of murine cytomegalovirus on the induction of acute graft-vs-host disease involving MHC class I differences only. Analysis of in vitro T cell function.

The development of acute graft-vs-host disease (GVHD) is a common outcome after the injection of fully MHC disparate parental T cells into unirradiated F1 mice. Murine cytomegalovirus (MCMV) infection has been previously shown to augment the development of acute GVHD in the parent-into-F1 (P----F1) model, such that 10-fold fewer parental cells are required. In the present study, we have investigated the effect of MCMV infection on the induction of non-lethal GVHD that occurs in P----F1 combinations involving MHC class I only or class II only differences. Using P----F1 combinations involving either an H-2K only difference or an H-2D only difference, MCMV infection of F1 mice 3 days before the injection of parental spleen cells led to a profound T cell immunodeficiency that strongly resembled that observed in acute GVHD. Further studies examining the H-2K disparate P----F1 combination, C57Bl/6---- (C57Bl/6xB6.C-H-2bm1) F1 and combined MCMV infection showed that the immunodeficiency is characterized by a profound loss of in vitro Th cell production of IL-2 and an intrinsic defect in T effector function as shown by an inability of rIL-2 to restore defective CTL responses. Additional experiments in these mice revealed the presence of suppressor cells as well as significant parent-anti-F1 CTL activity possibly accounting for the suppressor effect. This pattern of immunodeficiency was not seen after the administration of either MCMV or MHC class I disparate parental cells alone. MCMV infection did not detectably alter the immunodeficiency observed in a P----F1 combination involving a MHC class II difference only. These results indicate that MCMV infection can alter the pattern of GVHD in the setting of an MHC class I disparity, but not in the setting of class II disparity, such that it resembles acute GVHD. These results may have relevance to the human transplant setting where intercurrent CMV infection has been associated with an adverse clinical outcome.

Acute Disease↗

Circumvention of defective CD4 T helper cell function in HIV-infected individuals by stimulation with HLA alloantigens.

PBL from approximately 50% of asymptomatic individuals infected with HIV have been previously demonstrated to exhibit defective in vitro Th function that is selective for influenza A virus (FLU), but not for HLA alloantigens (ALLO). In this report, we have further studied HIV+ individuals with this selective Th defect, and demonstrate that defective in vitro CTL responses to FLU can be restored by costimulation with FLU + ALLO. In contrast, HIV+ patients who have lost Th responses to ALLO were unable to correct CTL responses to FLU by this costimulation procedure. These findings indicate that intact Th responses to ALLO can be used in vitro to provide Th signals necessary to activate the T effector cell response to a potential pathogenic virus. Our results raise the possibility that a program of in vivo coimmunization with ALLO plus antigens of potential pathogens (including HIV) can be useful in HIV+ patients exhibiting selective defects in Th function. Furthermore, this approach could be incorporated in vaccine trials aimed at enhancing immunity to HIV in patients who have been infected previously with this virus.

Antigen-Presenting Cells↗

Human in vitro allogeneic responses. Demonstration of three pathways of T helper cell activation.

In our study, we have measured in vitro proliferation and IL-2 production by human PBL to characterize the interactions between Th cells and accessory cells (AC) involved in responses to either conventional Ag or alloantigens. IL-2 production and proliferative responses to conventional Ag, such as influenza or tetanus, are exclusively dependent on the presence of CD4+ T cells and AC. In contrast, IL-2 and proliferative responses to alloantigen can be mediated by either CD4+ or CD8+ T cells. CD4+ T cells respond to alloantigen using either autologous AC (self-restricted), or allogeneic AC (allo-restricted), whereas CD8+ T cells respond to alloantigen using allogeneic AC only. The understanding of Th cell-AC interactions involved in in vitro allogeneic responses will be important for delineating the Th cell-AC interactions involved in transplantation immunity as well as in clinical disorders characterized by T cell dysfunction such as human immunodeficiency virus infection and systemic lupus erythematosus.

Antigen-Presenting Cells↗

Altered immunoregulation and autoimmune aspects of HIV infection: relevant murine models.

After initial infection with human immunodeficiency virus 1 (HIV-1), patients may remain asymptomatic for years before the onset of acquired immune deficiency syndrome (AIDS). This non-aggressive or latent phase may be manifested by functional abnormalities of both T and B cells, even in the absence of critical reductions in lymphocyte numbers. At present, it is not clear whether the immune abnormalities in either the asymptomatic phase or in clinical AIDS are due solely to direct effects of HIV-1 or whether they also reflect host immunoregulatory mechanisms. In this article, by Charles Via, Herbert Morse and Gene Shearer, the immune abnormalities associated with early HIV-1 infection are compared with immune abnormalities found in three murine models of autoimmunity and immunodeficiency, and it is suggested that host mechanisms contribute to defective helper T (TH)-cell function early in the course of HIV-1 infection. Furthermore, two murine models appear relevant to the study of late HIV-1 infection and suggest a role for CD8+ T cells in the prevention of symptomatic AIDS.

Acquired Immunodeficiency Syndrome↗

Functional and phenotypic alterations in T cell subsets during the course of MAIDS, a murine retrovirus-induced immunodeficiency syndrome.

The functional and phenotypic characteristics of Ly-4(CD4)+ and Ly-2(CD8)+ T cells were studied after induction of murine AIDS with LP-BM5 murine leukemia virus. Assays of spleen cells for their ability to generate in vitro CTL responses to TNP-modified autologous cells (self + x CTL) and to alloantigens (allo CTL) showed that self + x CTL responses were greatly impaired at 3 to 4 wk postinfection and were undetectable thereafter. Allo CTL responses were normal at 3 to 4 wk, but were reduced at 8 to 9 wk and absent at 14 wk postinfection. This sequential loss of self + x and allo CTL responses was related to a selective defect in Ly-4(CD4)+ Th cell function associated with impaired production of IL-2 and deficient proliferative responses to Con A or to soluble Ag. Changes in the functional characteristics of Ly-4(CD4)+ T cells were unrelated to changes in their frequency in spleen, but did correlate with marked alterations in their distribution among four subsets defined by mAb SM3C11 and SM6C10. Assays of CTL responses generated by mixtures of spleen cells from normal and infected mice suggested that active suppression of Ly-4(CD4)+ Th function may contribute to this defect. Studies of Ly-2(CD8)+ T cells showed that infection with LP-BM5 murine leukemia virus also induced a major phenotypic shift in subpopulations defined by their reactivity with mAb 6C10. However, this phenotypic change did not appear to correlate with major functional defects.

Animals↗

Detection of three distinct patterns of T helper cell dysfunction in asymptomatic, human immunodeficiency virus-seropositive patients. Independence of CD4+ cell numbers and clinical staging.

We have tested the T helper cell (TH) potential of asymptomatic, HIV seropositive (HIV+) patients, using an in vitro assay for IL-2 production. Peripheral blood leukocytes (PBL) from 74 HIV+ patients and 70 HIV- control donors were tested for TH function when stimulated with influenza A virus (FLU), tetanus toxoid (TET), HLA alloantigens (ALLO), or PHA. Of the HIV+ patients, four different response patterns were observed: (a) patients who responded to all four stimuli (16%); (b) patients who were selectively unresponsive to FLU and TET, but responded to ALLO and PHA (54%); (c) patients who were unresponsive to FLU, TET, or ALLO, but responsive to PHA (16%); and (d) patients who failed to respond to any of these stimuli (14%). Our results indicate a time-dependent progression from a stage responsive to all four stimuli to a stage unresponsive to any of the stimuli tested, progressing in the order outlined above. The earliest TH defect is the loss of responses to FLU and TET, indicating a selective defect in CD4+ MHC self-restricted TH function. The later loss of ALLO and PHA IL-2 responses suggests more severe TH dysfunction involving both CD4+ and CD8+ T cells. None of these patterns of TH unresponsiveness in asymptomatic HIV+ individuals were correlated with CD4+ cell numbers nor with Walter Reed staging criteria. This study indicates that the in vitro TH assay used can detect multiple stages of immune dysregulation early in the course of HIV infection and raises the possibility that staging of HIV+ patients should include in vitro TH functional analyses of the type described here.

Acquired Immunodeficiency Syndrome↗

Functional heterogeneity of L3T4+ T cells in MRL-lpr/lpr mice. L3T4+ T cells suppress major histocompatibility complex-self-restricted L3T4+ T helper cell function in association with autoimmunity.

The present study demonstrates in MRl-lpr/lpr autoimmune mice an age-dependent loss of MHC-self-restricted function by L3T4+ Th. This defect is not present in age-matched, congenic MRL-+/+ spleen cells and appears to be due to the presence of suppressor cells that are selective for L3T4+ Th and not for Lyt-2+ Th. Surprisingly, the suppressor cells are also L3T4+ T cells and can suppress the IL-2 production of congenic MRL/+ L3T4+ Th to MHC-self-restricted antigens. These data support the idea of functional specialization within the L3T4+ population of T cells. Because L3T4+ suppressor cells are detected late in the course of autoimmunity, we interpret their presence not as a primary initiating event in the development of autoimmunity, but rather as a compensatory mechanism. Additionally, similar suppression of L3T4+ Th function has also been reported in a murine graft-vs.-host model of autoimmunity, suggesting that the suppressor cells represent an immunoregulatory mechanism that is a common feature of autoimmunity. Since excessive class II-restricted Th activity for B cells has been reported for both models of autoimmunity, L3T4+ suppressor cells may represent an attempt to down regulate such excessive Th activity. These findings may be relevant to human autoimmune diseases, such as systemic lupus erythematosus, in which B cell hyperactivity is also associated with reduced IL-2 production by Th.

Aging↗