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F Miedema

Publications and source records attributed to F Miedema.

At least 163 records · Page 9Linked to original sources

Immunological and virological markers in individuals progressing from seroconversion to AIDS.

Six men were selected from a large cohort of homosexual men participating in a study on HIV infection that was followed from seroconversion to AIDS. The patients were studied retrospectively for immunological functions of T cells, T-cell subset distribution and biological phenotype of HIV. A severe decrease in anti-CD3 monoclonal antibody (MAb)-induced T-cell proliferation at seroconversion was observed in two out of six men. After this acute phase, CD4+ T-cell numbers were in the normal range in the early asymptomatic period; the proliferative response was subnormal, whereas the capacity to generate cytotoxic T cells (CTL) was normal. From seroconversion on, CD4+CD29+ memory T-cell numbers were decreased to approximately 50% of normal values, which may contribute to loss of T-cell reactivity. In the asymptomatic phase only slow-replicating non-syncytium-inducing HIV variants were observed. The T-cell proliferative response further declined with the depletion of naive CD4+ CD45RA+ T cells and CD4+ T-cell numbers started to decline. This second decrease in T-cell function coincided with the emergence of more rapidly replicating, often (four out of six) syncytium-inducing variants. At diagnosis of AIDS, T-cell proliferation and CD4+ T-cell numbers were extremely low in five out of six patients and CTL function had declined in three out of five individuals tested. Circulating CD8+ cells had gradually shifted to an immature CD38+CD28- phenotype. Our findings support the theory that HIV-induced immune dysfunction allows for the emergence of virulent HIV variants associated with CD4+ cell loss and disease.

Acquired Immunodeficiency Syndrome↗

Monocytotropic human immunodeficiency virus type 1 (HIV-1) variants detectable in all stages of HIV-1 infection lack T-cell line tropism and syncytium-inducing ability in primary T-cell culture.

We previously demonstrated a correlation between the presence of syncytium-inducing (SI) human immunodeficiency virus type 1 (HIV-1) variants showing tropism for cell line H9 and the occurrence of rapid CD4 cell decline and progression to AIDS. In contrast, in stable asymptomatic individuals, we detected only isolates with low replication rates that were non-syncytium-inducing (NSI) and nontropic for the H9 cell line. Here, we investigated the monocytotropism of established HIV-1 isolates with a panel of isolates and with biological HIV-1 clones with distinct phenotypes. Moreover, the prevalence and biological phenotypes of monocytotropic HIV-1 variants in the course of HIV-1 infection were analyzed in comparative primary isolation studies on peripheral blood lymphocytes (PBL) and monocyte-derived macrophages (MDM). In cell-free infection studies with MDM from eight blood donors, 13 of 17 NSI isolates but only 4 of 14 SI isolates were able to infect MDM. NSI isolates also infected significantly more different donors than SI variants (median, 3 of 8 versus 0 of 8). This enhanced monocytotropism of NSI isolates was confirmed in experiments with biological HIV-1 clones with distinct phenotypes recovered from the same donor. To investigate the prevalence and biological phenotypes of monocytotropic variants in different stages of HIV-1 infection, sequential isolates from peripheral blood mononuclear cell samples from nine asymptomatic individuals, five of whom progressed to AIDS and seven of whom had a known time of seroconversion, were recovered by cocultivation with both PBL and MDM. Monocytotropic variants were obtained from 37 of 42 time points. All monocytotropic variants were NSI in PBL culture and non-T-cell-line tropic, even when SI, T-cell-line-tropic HIV-1 variants could be recovered from the same patient sample by cocultivation with PBL. We conclude that monocytotropic HIV-1 variants mostly have an NSI phenotype in PBL and, in contrast to SI variants, are present at all stages of HIV-1 infection. These results suggest an important role for monocytotropic variants in the persistence of HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Regulation of T-cell differentiation by CD2 and CD28 accessory molecules.

It was analysed to what extent the functional T-cell responses that result from T-cell receptor (TcR)/CD3 triggering differ from responses that are induced after simultaneous ligation of CD2 and CD28 accessory molecules. To allow a quantitative comparison of these activation pathways, purified lymphocytes were stimulated with either graded densities of immobilized anti-CD3 monoclonal antibodies (mAb) or with increasing amounts of anti-CD28 mAb in the presence of a constant concentration of anti-CD2 mAb. Both activation systems were sensitive to the regulatory properties of CD11a/CD18 molecules. T-cell stimulation via CD2/CD28 molecules induced a more potent release of interleukin-2 (IL-2) and more pronounced T helper (Th) cell responses than T-cell stimulation via the TcR/CD3 complex, whereas CD25 expression was more readily initiated after T-cell activation via the TcR/CD3 complex. Optimal Th cell differentiation was detected under conditions of suboptimal receptor occupancy whereas, in contrast, optimal cytolytic T lymphocyte (CTL) differentiation required optimal TcR/CD3 or CD2/CD28 engagement. The findings indicate that T-cell differentiation can be influenced in a qualitative manner by the strength of the activation signal provided, and suggest that antigen-specific T-cell responses might be regulated in a quantitative manner through CD2 and CD28 accessory molecules.

Antigens, CD↗

Induction of monocyte proliferation and HIV expression by IL-3 does not interfere with anti-viral activity of zidovudine.

Myelosuppression is a major symptom in the acquired immunodeficiency syndrome (AIDS). Moreover zidovudine, an anti-retroviral drug used to treat AIDS patients has myelosuppressive side effects. Therefore treatment with IL-3, a multi-lineage hemopoietic growth factor may be beneficial for zidovudine-treated individuals. In this study we examined the effect of IL-3 on human immunodeficiency virus (HIV) expression. The proliferative response to rIL-3 and the effects on the replication of the monocytotropic HIV variant, HTLV-III Ba-L, in the absence or presence of the anti-retroviral drug zidovudine was studied in purified human peripheral blood monocytes. Zidovudine concentrations sufficient for complete inhibition of HIV replication did not affect rIL-3 induced monocyte proliferation. Although rIL-3, like rGM-CSF, was able to augment HIV expression in monocytes, it did not interfere with the anti-retroviral activity of zidovudine. These data indicate that rIL-3 is a potential candidate for use in myelosupportive therapy in AIDS patients treated with anti-retroviral drugs.

Cell Division↗

Analysis of the role of leukocyte function-associated antigen-1 in activation of human influenza virus-specific T cell clones.

The role of leukocyte function-associated Ag-1 (LFA-1) in intercellular adhesion is well documented. Previously, we demonstrated that the LFA-1 molecule (CD11a/CD18) can also regulate the induction of proliferation of peripheral blood T cells. In these studies, we observed opposite effects of antibodies against CD11a (LFA-1-alpha-chain) or CD18 (LFA-1-beta-chain). Here, we determined the effects of anti-CD11a and anti-CD18 mAb on proliferation of cloned influenza virus-specific T cells. Anti-CD18 mAb had similar inhibiting effects on the proliferative response of T cell clones induced by immobilized anti-CD3 mAb as it had on the response of peripheral blood T cells. In contrast to its costimulatory effect on resting peripheral blood T cells, anti-CD11a mAb did not increase the proliferation of cloned T cells. Similar differences in effects of anti-CD11a and anti-CD18 mAb were observed when proliferation of the T cell clones was induced by immobilized anti-TCR mAb. When proliferation was induced by influenza virus presented by monocytes as APC, both anti-CD11a and anti-CD18 mAb inhibited T cell proliferation. However, when EBV-transformed B cells were used as APC, neither anti-CD11a nor anti-CD18 mAb inhibited proliferation. These results demonstrate that the effects of antibodies against CD11a (LFA-1-alpha) or CD18 (LFA-1-beta) on T cell proliferation depend on 1) the stage of activation of the T cells, 2) the activation stimulus and its requirement for intercellular adhesion involving LFA-1, and 3) the type of cell used to present Ag.

Antigen-Presenting Cells↗

Selective loss of T cell functions in different stages of HIV infection. Early loss of anti-CD3-induced T cell proliferation followed by decreased anti-CD3-induced cytotoxic T lymphocyte generation in AIDS-related complex and AIDS.

To investigate the effects of persistant human immunodeficiency virus (HIV) infection on T cell reactivity, functional properties of peripheral blood T cells from HIV-seropositive homosexual men in various stages of infection were studied. T cell activation via CD3 resulting in proliferation and differentiation was measured in a model system independent of accessory cells, using immobilized anti-CD3 monoclonal antibodies (mAb). T cells from HIV-infected asymptomatic men had a decreased proliferative response compared to HIV-negative controls. T cells from AIDS-related complex (ARC) and AIDS patients, compared to T cells from asymptomatic HIV-infected men, had a significantly lower proliferative response to anti-CD3 mAb. This diminished response to anti-CD3 mAb was shown to be due to decreased interleukin (IL) 2 production and could be enhanced by co-stimulation with anti-CD28 mAb or by adding IL 2. Anti-CD3-induced generation of cytotoxic T lymphocytes was fully intact in early infection but was severely decreased in T cells from ARC and AIDS patients. Cytotoxic activity could be restored to near normal levels after co-stimulation with either anti-CD28 mAb or IL 2. Our data demonstrate a differential loss of T cell functions in the course of HIV infection which is predominantly caused by a lack of IL 2 production after stimulation via the CD3/T cell receptor complex. In early HIV infection this seems to be predominantly caused by a specific loss of memory T cells. However, in later stages of infection when both naive and memory T cell subsets are depleted, resulting in a normal naive/memory T cell ratio, T cell functions further deteriorate probably due to intrinsic activation defects. These findings may be of pathogenic relevance since diminished T cell reactivity may facilitate spreading and replication of virulent HIV variants heralding development of ARC and AIDS.

AIDS-Related Complex↗

Low T-cell responsiveness to activation via CD3/TCR is a prognostic marker for acquired immunodeficiency syndrome (AIDS) in human immunodeficiency virus-1 (HIV-1)-infected men.

In a cohort of 300 HIV-1-infected homosexual men, studied longitudinally, the prognostic value of T-cell proliferative responses for development of AIDS was analyzed. In 15 persons we observed that, at seroconversion, T-cell reactivity to anti-CD3 monoclonal antibody (Mab) and phytohemagglutinin (PHA) was decreased to 20 and 60% of the normal values, respectively. After seroconversion, within 3 months, the response to anti-CD3 Mab and PHA returned to 60 and 80%, respectively, of the normal magnitude and declined thereafter. To investigate whether low T-cell reactivity correlated with progression to AIDS, groups of progressors and nonprogressors were compared. In individuals who progressed to AIDS, already 12 months before diagnosis, responses to anti-CD3 Mab were virtually absent, whereas at that time CD4+ cell numbers and reactivity to horse anti-human lymphocyte serum and PHA were still comparable to values observed for nonprogressors and the asymptomatic population as a whole. In a disease-free survival analysis, low anti-CD3 Mab reactivity predicted progression to AIDS. Our findings demonstrate that low T-cell responsiveness to anti-CD3 Mab is an early marker of progression toward AIDS in HIV-1 infected individuals.

Acquired Immunodeficiency Syndrome↗

Functional and phenotypic evidence for a selective loss of memory T cells in asymptomatic human immunodeficiency virus-infected men.

In addition to a well-documented depletion of CD4+ T helper cells in later stages of human immunodeficiency virus (HIV) infection, evidence has been provided for a specific unresponsiveness to triggering either by specific antigen in the context of autologous major histocompatibility molecules (self + X) or anti-CD3 monoclonal antibodies (MAb) in both CD4 and CD8 cells from asymptomatic HIV-infected individuals. In the present study we analyzed this unresponsiveness using mitogenic antibodies to distinct T cell membrane receptors. T cells from HIV-infected men who had normal numbers of CD4+ T cells responded poorly to activation signals via the CD3 membrane antigen in both accessory cell-dependent as well as accessory cell-independent culture systems. A similar low response was observed in an anti-CD2-driven system. In contrast, proliferation induced by anti-CD3, anti-CD2, or the phorbol ester Phorbol myristate acetate could be normally enhanced by anti-CD28 MAb. We demonstrated that this unresponsiveness is not due to a failure to induce early events required for activation, such as increased intracellular concentration of free calcium and activation of protein kinase C, but is caused by an imbalance between naive and memory T cells. In HIV-infected asymptomatic men, CD29+ memory T cells are selectively depleted which results in a poor responsiveness to self + X. These findings provide new insights that may have implications for our understanding of the immunopathogenesis of AIDS.

Antibodies, Monoclonal↗

Generation of alloreactive cytolytic T lymphocytes by immobilized anti-CD3 monoclonal antibodies. Analysis of requirements for human cytolytic T-lymphocyte differentiation.

Requirements for the induction of human cytolytic T-lymphocyte (CTL) activity were studied in a monocyte-free T-cell activation system that uses immobilized anti-CD3 monoclonal antibodies (mAb) as a stimulus. Alloreactive CTL with specificity for HLA-A and -B locus antigens could be demonstrated within 2 days after the initiation of activation. CTL induction in purified T cells initiated by an optimal concentration of immobilized anti-CD3 mAb was not enhanced by the addition of monocytes or exogeneous cytokines, whereas addition of anti-CD25 mAb largely blocked the response. Upon suboptimal anti-CD3 mAb stimulation, addition of recombinant interleukin (rIL)-2, rIL-1 and rIL-4, but not recombinant interferon-gamma (IFN-gamma) or rIL-6, potentiated the development of CTL activity. Finally it was shown that immobilized anti-CD3 mAb induced significant levels of CTL activity in both purified CD4+ and CD8+ cells. This study indicates that the requirement for cytokines in the differentiation of CTL precursors depends on the strength of the activation signal delivered through the T-cell receptor.

Antibodies, Monoclonal↗

Association between biological properties of human immunodeficiency virus variants and risk for AIDS and AIDS mortality.

49 individuals seropositive for human immunodeficiency virus (HIV) antibody were studied longitudinally for the relation between in-vitro properties of their sequential HIV isolates and clinical course before and after the development of AIDS. They were classified into three groups according to the syncytium-inducing capacity, replication rate, and host range of their HIV isolates. The most rapid progression to AIDS (median 15 months) and the lowest survival rate following AIDS diagnosis (median survival 12.5 months) were observed in individuals with high-replicating, syncytium-inducing HIV isolates, followed by individuals with high-replicating, non-syncytium-inducing isolates. In contrast, most individuals with low-replicating, non-syncytium-inducing HIV isolates remained symptom-free during the study period (median follow-up until AIDS diagnosis greater than 42 months), and the few individuals from this group in whom AIDS developed were still alive at the end of the study period (median survival greater than 34 months). In addition, AIDS patients from the three groups differed with respect to their symptoms. Zidovudine treatment in the symptom-free period seemed to delay the onset of AIDS in all risk groups, although stabilisation of CD4+ cell numbers was observed only in individuals with non-syncytium-inducing HIV variants.

Acquired Immunodeficiency Syndrome↗

Longitudinal study of leukocyte functions in homosexual men seroconverted for HIV: rapid and persistent loss of B cell function after HIV infection.

The early effects of infection with human immunodeficiency virus (HIV) were investigated in homosexual men who had seroconverted for anti-HIV antibodies. Leukocyte functional activities were determined in longitudinally collected peripheral blood mononuclear cell samples. During the first 10 months following seroconversion, anti-CD3 monoclonal antibody-induced T cell proliferation, monocyte accessory function and T helper activity on B cell differentiation in a pokeweed mitogen-driven system were not affected. In contrast, from the moment of seroconversion on, B cells of seroconverted men failed to produce immunoglobulin in the pokeweed mitogen-driven system. This defect was not restored by addition of normal CD4+ T cells. Immunoglobulin synthesis induced by Staphylococcus aureus and interleukin 2 decreased gradually, until it was completely lost 10 months after seroconversion. In addition, proliferation in response to anti-IgM or Staphylococcus aureus by B cells from HIV seroconverted men was decreased. The lack of inducible in vitro B cell activity was not accompanied by elevated spontaneous Ig synthesis by B cells of the seroconverted men. In the second group of men studied during the 2nd year following seroconversion, T helper activity on normal B cell differentiation significantly decreased, whereas anti-CD3-induced T cell proliferation and monocyte accessory function were not significantly affected. Our results demonstrate that in almost all HIV-infected individuals B cell functional defects are the first leukocyte abnormalities observed preceding defects in T helper activity.

Antibody Formation↗

Regulatory role of CD19 molecules in B-cell activation and differentiation.

Cluster of differentiation ([CD]) 19 antigens are B-cell-specific molecules expressed on virtually all human cells of the B-lymphocyte lineage except plasma cells. We produced a new anti-CD19 monoclonal antibody (McAb), CLB-CD19, that was used to study the role of CD19 molecules in B-cell activation. Anti-CD19 McAb induced mobilization of free intracellular calcium ([Ca2+]i) in Daudi cells, but not in normal spleen or tonsillar B cells, for which crosslinking with a second anti-mouse Ig antibody was not required. Anti-CD19 McAb inhibited B-cell proliferation induced by anti-IgM coupled to Sepharose beads. This inhibitory effect was overcome by the addition of nonmitogenic concentrations of phorbol myristate acetate. Anti-CD19 McAb did not interfere with Staphylococcus aureus- or B-cell growth factor-induced B-cell proliferation. Anti-CD19 McAb inhibited T-cell-dependent polyclonal B-cell differentiation in pokeweed mitogen-, interleukin 2-, or anti-CD3-driven culture systems. Delayed addition studies showed that once differentiation of B cells was induced, CD19 molecules lost their regulating function. Taken together, our results indicate that CD19 molecules play a regulatory role in B-cell proliferation and differentiation.

Antibodies, Anti-Idiotypic↗