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Biomedical subjects

J Menezes

Publications and source records attributed to J Menezes.

At least 55 records · Page 3Linked to original sources

Positive correlation between the natural killer and gp 120/41-specific antibody-dependent cellular cytotoxic effector functions in HIV-infected individuals.

Using our recently developed target system model of env gene-transfected cells for gp120/41-specific antibody-dependent cellular cytotoxicity (ADCC) assays, we evaluated the ADCC effector function of the peripheral blood mononuclear cells (PBMC) in 39 human immunodeficiency virus type 1 (HIV-1)-infected individuals. The natural killer (NK) activity of the PBMC from these individuals against K562 was also determined. A significant positive correlation (p < or = 0.05, r = 0.37) was found between these two activities. On the basis of our data, we built a regression equation for the two activities whereby the ADCC effector function of PBMC of an HIV-infected individual can be predicted from their NK activity. We also found that the endpoint titer of a given serum for ADCC-mediating antibodies in the ADCC assay varied depending on the NK activity of the effector cells used: The effectors with high NK activity tended to give higher titers as compared with the effectors with low NK activity. To our knowledge, this is the first formal documentation of the existence of a positive correlation between the ADCC and NK activities of the PBMC. It also shows that the ADCC titer of serum in ADCC assay may vary depending on the NK activity of the effector cells used. This observation underscores an important variable of ADCC assays. Using our statistical model, one can predict the ADCC effector function of the PBMC from HIV-infected individuals from their NK activity and thus help clarify the role of this important immune response in HIV infection and AIDS prognosis.

Antibody-Dependent Cell Cytotoxicity↗

Immunosuppressive effect of human herpesvirus 6 on T-cell functions: suppression of interleukin-2 synthesis and cell proliferation.

Human herpesvirus-6 (HHV-6), the etiologic agent of roseola, is ubiquitous, establishes latency in the host, and can infect a variety of immunocompetent cells, with CD4+ T lymphocytes being the targets in which it replicates most efficiently. The present study was undertaken to learn more about specific immunobiologic effects of HHV-6 infection on T-lymphocyte functions. Our data demonstrate that infection of peripheral blood mononuclear cells (PBMC) by HHV-6 results in suppression of T-lymphocyte functions, as evidenced by reduced interleukin-2 (IL-2) synthesis and cellular proliferation. In fact, HHV-6-infected PBMC secreted 50% less IL-2 than mock-infected cells after mitogenic stimulation with OKT3 antibody or phytohemmaglutinin (PHA). The inhibition of IL-2 by HHV-6 was also observed in enriched T-cell cultures, suggesting a direct effect of this virus on this cell type. Messenger RNA (mRNA) analysis by reverse-transcriptase polymerase chain reaction (PCR) indicated that HHV-6 diminishes IL-2 mRNA levels in mitogen-stimulated peripheral blood T cells. These results were also confirmed by Northern blot using the leukemic T-cell line Jurkat. This inhibitory effect of HHV-6 did not require infectious virus, as the use of UV-irradiated HHV-6 produced similar results. Moreover, HHV-6-infected PBMC showed up to an 85% reduction in their mitogen-driven proliferative response, as compared with sham-infected cells. Proliferation of both CD4+ and CD8+ T cells was affected by HHV-6. Taken together, our data show that infection of T cells by HHV-6 results in immune suppression characterized by a downregulation of IL-2 mRNA and protein synthesis accompanied by diminished cellular proliferation.

Base Sequence↗

Interleukin-6 and Epstein-Barr virus induction by cyclosporine A: potential role in lymphoproliferative disease.

Posttransplant patients undergoing prolonged cyclosporine A (CsA) immunosuppressive therapy have been reported to have increased incidence of Epstein-Barr virus (EBV)-associated lymphoproliferative disorders. We undertook experiments to analyze the possible actions of CsA during EBV-infection of human peripheral blood mononuclear cells (PBMC). EBV-infected B cells cultured with CsA demonstrated increased EBV B-cell outgrowth as compared with those cultured without CsA. PBMC, after infection with EBV and CsA treatment, demonstrated increased interleukin-6 (IL-6) activity in the culture supernatant. The induction of IL-6 appears to differ within the various lymphocyte populations. In monocytes, IL-6 expression appears preferentially induced by EBV and is initiated by the binding of the two major virion glycoproteins, gp350 and gp220. Expression of IL-6 in T cells appears to be due mainly to CsA. B cells also express IL-6 after EBV exposure, but not after CsA treatment. EBV-immortalized B-cell lines cultured with CsA exhibited both an increased number of cells expressing viral lytic-cycle antigens and increased amounts of lytic-cycle proteins. IL-6, which is induced by CsA in PBMC, was also capable of inducing the lytic viral cycle in several EBV-immortalized cells. CsA, in promoting both increased numbers of lytic EBV B cells and an EBV paracrine factor, IL-6, within the microenvironment of EBV B cell:T cell and EBV B cell:monocyte interactions, may result in increased EBV B-cell immortalization and ultimately lead to the promotion of B-cell lymphomas in immunosuppressed patients.

Antigens, Viral↗

Epstein-Barr virus gp350-specific antibody titers and antibody-dependent cellular cytotoxic effector function in different groups of patients: a study using cloned gp350-expressing transfected human T cell targets.

An NK cell activity-resistant human lymphoid T cell line (CEM-NKr) expressing the transfected Epstein-Barr virus (EBV) gp350 gene was used in membrane immunofluorescence (MIF) and antibody-dependent cellular cytotoxicity (ADCC) assays to analyze the gp350-specific humoral and ADCC responses in groups of EBV-seropositive persons. Results show that there is no correlation between gp350-specific ADCC-mediating antibody titers and MIF or EBV neutralizing antibody titers. For example, sera from patients in the acute phase of infectious mononucleosis, while positive by MIF assay or EBV neutralization test, were not reactive in the ADCC assay. Results also show that nasopharyngeal carcinoma (NPC) patients on MIF present high IgG titers against gp350 compared with healthy persons. Anti-gp350 IgA antibodies were detected in all groups tested; however, titers were highest in the NPC group.

Antibodies, Viral↗

Evidence for a defect of antibody-dependent cellular cytotoxic (ADCC) effector function and anti-HIV gp120/41-specific ADCC-mediating antibody titres in HIV-infected individuals.

Antibody-dependent cellular cytotoxicity (ADCC) is an important antiviral effector mechanism. However, its role, as well as the functional integrity of the ADCC-effector cells in HIV infections, is not well understood. For studying gp120/41-specific ADCC, we recently developed a virus-free target cell system, using a natural killer (NK) cell activity-resistant human lymphoid cell line of B lineage, which was transfected with the env gene of the human immunodeficiency virus type 1 (HIV-1); gp120/41-expressing cell clones were thus selected. In this study, these gp120/41-expressing cloned cells were used as targets in a gp120/41-specific ADCC assay for (a) examining the functional integrity of ADCC-effector cells from HIV-seropositive individuals, and (b) titrating the sera of these individuals for gp120/41-specific, ADCC-mediating antibodies. Our data indicate for the first time that the percentage of sera positive for ADCC-mediating antibodies to gp120/41 is higher in individuals with CD4 counts < or = 400 and > or = 200/mm3. The individuals with CD4 counts < 200/mm3 were found to have the lowest titers of these antibodies in their sera. The ADCC-effector function of the peripheral blood mononuclear cells (PBMC) of HIV-infected individuals was significantly (p < 0.05) reduced as compared to the PBMC from healthy, HIV-seronegative individuals. Further, human recombinant IL2 and interferon-gamma were found to exert a significant (p < 0.05) enhancing effect on ADCC mediated by PBMC from these HIV-infected individuals.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Surface expression of the HIV-1 envelope proteins in env gene-transfected CD4-positive human T cell clones: characterization and killing by an antibody-dependent cellular cytotoxic mechanism.

The env gene of the human immunodeficiency virus-type 1 (HIV-1) was transfected in CEM-nkr, a human lymphoid cell line of T lineage that is resistant to the activity of natural killer cells, and for the first time, transfected T cell clones were established that stably express gp160 intracellularly and gp120 on the surface as demonstrated by radioimmunoprecipitation as well as by indirect membrane immunofluorescence. The regulatory protein vpu was not detected by radioimmunoprecipitation in these clones. The surface expression of gp120 without vpu in these clones provides direct evidence that gp160 is processed and cleaved (without vpu) in CD4+ cells. The CD4 antigens of these cells coprecipitated gp160; interestingly, no reduction of the surface CD4 expression (detectable by flow cytometric analysis of membrane immunofluorescence with OKT4) in the transfected cells was observed. However, decreased reactivity of the transfected clones with OKT4A was observed. The gp120-expressing cells did not form syncytia on coculture with other CD4+ human cell lines. These observations suggest the binding of gp120 to the surface CD4 antigen of the transfected cells. The transfected cells retained their resistance to the activity of the natural killer cells but showed a significant (p < 0.05) lysis when they were preincubated with AIDS patients' serum containing anti-gp120/41 antibodies. Thus, the expressed gp120/41 in these cells made them susceptible to killing by an antibody-dependent cellular cytotoxicity (ADCC) mechanism. To our knowledge, these are the first reported CD4+ T cell lines that stably express HIV envelope proteins. These cell lines would be useful as targets in exploring gp120/41-specific immune responses, especially in conducting gp120/41-specific ADCC studies in HIV-infected or gp120/41 (gp160)-vaccinated individuals.

Antibody-Dependent Cell Cytotoxicity↗

Stable expression of the transfected HIV-1 env gene in a human B cell line: characterization of gp120-expressing clones and immunobiological studies.

The env gene of human immunodeficiency virus type 1 (HIV-1) encodes gp 120/41 which plays an important role in the viral infection process and pathogenesis. The surface glycoprotein gp120 is a candidate molecule for the development of a subunit vaccine against HIV-1-induced acquired immunodeficiency syndrome (AIDS). However, thorough studies on the immunobiology of this molecule are hampered by the lack of a suitable model. With this background in mind, and in order to learn more on anti-gp120 cellular immunity, we attempted to develop gp120-expressing human cell clones. Thus by transfecting a human lymphoid cell line of B lineage (Raji), which is known to be resistant to the natural killer cell activity, with an expression vector encoding the envelope and vpu, we established three clones that stably express gp120/41 and vpu. The surface glycoprotein gp 120 is also expressed on the cell surface of these clones. The transfected cells from syncytia with CD4+ human cell lines as well as with peripheral blood mononuclear cells (PBMC) leading to the death of the fused cells. This observation represents additional evidence for the eventual depletion of CD4+ viral targets that fuse with adjacent HIV-infected, gp 120-expressing cells. The latent Epstein-Barr virus genome present in the transfected cells, was not induced to express the lytic cycle antigens. The densities of the surface expression of a number of molecules examined remained unchanged in the transfected cells except for the surface IgM, which increased significantly (P < 0.05) in two clones. One of the clones exhibited a significantly (P < 0.05) reduced proliferation rate as compared to the other clones. The transfected cells of all the three clones showed a significantly (P < 0.01) increased susceptibility to lysis by the PBMC from normal, healthy individuals in a 16-hr 51Cr-release assay. This is the first report of the MHC- and antibody-independent lysis of human cells transfected with the HIV-1 surface glycoprotein. The transfected cells also served as targets in a gp120-specific antibody-dependent cellular cytotoxicity assay. We anticipate that the present model will prove very useful for studying the gp120-specific immune responses in HIV-infected individuals.

Acquired Immunodeficiency Syndrome↗

Genomic organization and mapping of transcription and translation products of the NADL-2 strain of porcine parvovirus.

The NADL-2 strain of PPV was cloned into pUC19 and independent infectious clones were sequenced. This permitted a correction of published sequences and to predict a cruciform structure as an alternative to the 5'-hairpin of the "-" strand. This 5'-end structural covariance is shared with other parvoviruses of the same group and two alternative sequences ("flip" and "flop") were present in the region of the cruciform. Transcript and translation product mapping allowed the prediction of the location of the different expression signals. The 5'-startpoints of the transcripts were located at nucleotides 225 and 2035, respectively, and the polyadenylation site at nucleotides 4829-4833. This indicated that the TATA boxes at 196-TATA and 2004-AATA and the 4813-AATAAA polyadenylation sequence would be functional. Alternative splicing of capsid gene (VP) transcripts (either 2280-AG/GT or 2313-AG/GT spliced with 2386-AG/GA), to maintain or remove the first AUG (at 2287) in the ORF, yielded two 2.9-kb mRNAs containing a nested set of protein-coding sequences (VP-1 and VP-2 with predicted molecular mass 80.9 and 64.3 kDa, respectively). Three nonstructural (NS) protein gene transcripts were identified. The 4.7-kb transcript was not spliced in the NS gene and was predicted to code for a 75.5-kDa protein (NS-1; published value of phosphorylated form 84 kDa). The splicing sites of two different 3.3-kb NS transcripts were analyzed. These transcripts were predicted to code for the NS-2 protein (18.1 kDa). Of the two NS-2 transcripts, one had also the VP-intron removed downstream of the NS-2 coding sequences. A 2.9-kb transcript would code for an NS-3 protein (12.4 kDa) although such a protein has not been described before. A flow chart of the information from the viral DNA to the viral proteins is presented and several differences, both for the NS and the VP genes, with closely related parvoviruses are noted.

Amino Acid Sequence↗

Interleukin-2 production in pediatric inflammatory bowel disease: evidence for dissimilar mononuclear cell function in Crohn's disease and ulcerative colitis.

Crohn's disease (CD) and ulcerative colitis (UC) represent clinically distinct chronic inflammatory bowel diseases (IBD) of unknown etiology. Although the mucosal immune system is implicated in their pathogenesis, immunological differences between the two disorders are not well defined. The aim of this study was to compare in vitro mucosal T-lymphocyte function in CD and UC. Peripheral blood mononuclear cell interleukin-2 (IL-2) production was similar in pediatric IBD and control patients under unstimulated conditions, but was significantly increased in response to phytohemagglutinin (PHA) stimulation for the UC group. Lamina propria mononuclear cells (LPMNC) isolated from colonic resections in IBD patients had significantly lower spontaneous proliferation and IL-2 production in vitro than did LPMNC of control patients. In contrast, significantly greater IL-2 production was detected when the LPMNC of CD patients were cultured with PHA, in comparison with those of UC or control patients. When indomethacin, a prostaglandin synthetase inhibitor, was added to the cultures, significantly increased IL-2 secretion was observed for CD LPMNC, but not for UC cultures, under both stimulated and unstimulated conditions. These findings demonstrate abnormal LPMNC IL-2 production in IBD. Furthermore, our data suggest that inhibition of the prostaglandin synthetase pathway upregulates IL-2 production by LPMNC in CD. These results support the hypothesis that immunoregulatory mechanisms controlling IL-2 production differ between CD and UC.

Adolescent↗

Activation of the Epstein-Barr virus replicative cycle by human herpesvirus 6.

One common attribute of herpesviruses is the ability to establish latent, life-long infections. The role of virus-virus interaction in viral reactivation between or among herpesviruses has not been studied. Preliminary experiments in our laboratory had indicated that infection of Epstein-Barr virus (EBV) genome-positive human lymphoid cell lines with human herpesvirus 6 (HHV-6) results in EBV reactivation in these cells. To further our knowledge of this complex phenomenon, we investigated the effect of HHV-6 infection on expression of the viral lytic cycle proteins of EBV. Our results indicate that HHV-6 upregulates, by up to 10-fold, expression of the immediate-early Zebra antigen and the diffuse and restricted (85 kDa) early antigens (EA-D and EA-R, respectively) in both EBV producer and nonproducer cell lines (i.e., P3HR1, Akata, and Raji). Maximal EA-D induction was observed at 72 h post-HHV-6 infection. Furthermore, expression of late EBV gene products, namely, the viral capsid antigen (125 kDa) and viral membrane glycoprotein gp350, was also increased in EBV producer cells (P3HR1 and Akata) following infection by HHV-6. By using dual-color membrane immunofluorescence, it was found that most of the cells expressing viral membrane glycoprotein gp350 were also positive for HHV-6 antigens, suggesting a direct effect of HHV-6 replication on induction of the EBV replicative cycle. No expression of late EBV antigens was observed in Raji cells following infection by HHV-6, implying a lack of functional complementation between the deleted form of EBV found in Raji cells and the superinfecting HHV-6. The susceptibility of the cell lines to infection by HHV-6 correlated with increased expression of various EBV proteins in that B95-8 cells, which are not susceptible to HHV-6 infection, did not show an increase in expression of EBV antigens following treatment with HHV-6. Moreover, UV light-irradiated or heat-inactivated HHV-6 had no upregulating effect on the Zebra antigen or EA-D in Raji cells, indicating that infectious virus is required for the observed effects of HHV-6 on these EBV products. These results show that HHV-6, another lymphotropic human herpesvirus, can activate EBV replication and may thus contribute to the pathogenesis of EBV-associated diseases.

Antigens, Viral↗

The use of topical phenytoin as an adjunct to immobilization in the treatment of trophic leprosy ulcers.

A total of 30 leprosy patients (controls n = 16; topical phenytoin n = 14) with trophic ulcers on the feet were investigated to ascertain the efficacy of topical phenytoin powder in the healing of ulcers. The ulcers in the two groups were matched for initial size. Healing patterns were assessed by determining changes in depth and planar (surface) dimensions at weekly intervals over a three week study period. Results indicate that while immobilization of the ulcer site is effective in promoting ulcer healing, additional use of topical phenytoin accelerates the healing process. There may however be non-responders to topical phenytoin.

Administration, Topical↗

Modulatory effects of Epstein-Barr, herpes simplex, and human herpes-6 viral infections and coinfections on cytokine synthesis. A comparative study.

Herpesviruses such as EBV, HSV, and human herpes virus-6 (HHV-6) have a marked tropism for cells of the immune system and therefore infection by these viruses may result in alterations of immune functions, leading at times to a state of immunosuppression. We report the results of a comparative study in which we found that EBV, HSV-1, and HHV-6 act differentially on the immune system with regard to their effect on the synthesis of IL-1 beta, IL-6, and TNF-alpha, i.e., three immunoregulatory cytokines mainly secreted by activated monocytes/macrophages. Using the polymerase chain reaction technique, analyses of the mRNA levels for each of the three monokines after viral infection indicated that the effect exerted by each of these herpesviruses on cytokine synthesis by human PBMC was detectable at the transcriptional level. Different amounts of IL-1 beta protein were detected in infected PBMC cultures, HHV-6 being the strongest IL-1 beta up-regulatory among these three herpesviruses. Spontaneous releases of IL-6 and TNF-alpha were found reduced after infection by HHV-6 and EBV, respectively. In comparison to EBV and HHV-6, HSV-1 proved to be a weak monokine enhancer. Results of coinfection studies indicated that virus-induced suppressive effects on cytokine synthesis are dominant. In fact, EBV inhibited TNF-alpha synthesis even in the presence of HHV-6, a strong up-regulator of TNF-alpha synthesis. Similarly, EBV was unable to stimulate IL-6 production in the presence of HHV-6. Viral structural component(s) appeared to be responsible for the up-regulation of IL-6 by both EBV and HSV-1, and of TNF-alpha by HSV-1. Taken together, our observations illustrate that herpesviruses can selectively regulate cytokine synthesis thereby disturbing immune homeostasis; this effect may favor pathogenic events, including the reactivation and/or spread of other infectious agents within the host.

Base Sequence↗

Infection of peripheral blood mononuclear cells by herpes simplex and Epstein-Barr viruses. Differential induction of interleukin 6 and tumor necrosis factor-alpha.

Infection by herpesviruses can result in profound immunosuppressive or immunomodulatory effects. However, no significant information is available on the effect of such infections on the production of immunoregulatory cytokines. We studied the kinetics of production of two monocyte-derived cytokines, interleukin 6 (IL-6) and tumor necrosis factor-alpha (TNF alpha), induced by Epstein-Barr virus (EBV) and herpes simplex virus type 1 (HSV-1) in peripheral blood mononuclear cell cultures and in fractionated cell populations. We observed that, when compared to HSV-1, EBV is a stronger inducer of IL-6. In EBV-infected cultures, IL-6 protein was detected at day 1 postinfection and gradually increased with time. In contrast, lower amounts of IL-6 were detected 5 d postinfection in HSV-1-infected cultures. HSV-1-infected cultures secreted significant amounts of TNF alpha protein after 5 d of culture and reached a maximal level of production at day 7, whereas EBV inhibited TNF alpha production. In fractionated cell populations, monocytic cells were found to be the main source of IL-6 synthesis after EBV or HSV-1 infection. However, TNF alpha synthesis in HSV-1-infected cultures was from both B and monocytic cells. By using the polymerase chain reaction technique we show that, after infection by these two herpesviruses, differences in cytokine gene products are also observed at the transcriptional level. These observations demonstrate that EBV and HSV-1 exert differential effects on IL-6 and TNF alpha gene transcription and on the resulting protein secretion in human mononuclear blood cells.

Base Sequence↗

Establishment and characterization of Epstein-Barr virus gp350-expressing transfected human lymphoid (Raji) cell clones.

Gp350, a late Epstein-Barr-virus (EBV) glycoprotein expressed on both the envelope of viral particles and EBV-producing cells, is also the candidate for the development of an anti-EBV subunit vaccine. This glycoprotein is thought to play an important role in anti-EBV immunity. However, studies on the role of this viral antigen in cellular cytotoxicity and other immune functions have been hampered by the lack of a suitable model expressing gp350. We describe here a study in which we successfully transfected a gp350-negative cell line resistant to natural-killer(NK)-cell activity (i.e., Raji) with a recombinant plasmid (pZIP-MA) containing the EBV-gp350 and the neomycin resistance gene. Three clones with a stable and strong expression of gp350 on their surface membrane, as demonstrated using a gp350-specific (i.e., 2LI0) monoclonal antibody (MAb) were isolated, characterized and used as targets in an antibody-dependent cellular cytotoxicity (ADCC) assay. However, gp350 expression on 2 of the 3 isolated clones was not recognized by an anti-gp350 MAb (72AI) which is specific to a unique gp350 epitope with a dual function (i.e., involved in both EBV binding to its target cell receptors and in inducing virus-neutralizing antibody). We have also found that gp350 expression on our 3 selected clones does not affect EBV-receptor (CR2) density. Our model of gp350-expressing, NK-cell-activity-resistant targets revealed very useful in determining that gp350 serves as a target antigen for EBV-specific ADCC. These gp350-expressing cell clones appear to represent a valuable tool for diagnostic purposes (i.e., for detecting and titrating gp350 antibodies in patients with EBV-associated diseases). Our approach should also prove useful for studying the expression of other cell-surface-associated viral and tumor antigens and their role in specific cellular immunity and immunosurveillance.

Antibodies, Monoclonal↗

Inhibition of tumor necrosis factor-alpha transcription by Epstein-Barr virus.

Tumor necrosis factor-alpha (TNF-alpha), which is produced mainly by monocyte/macrophage cells, has diverse physiological functions on lymphoid cells. Moreover, it has been shown that TNF-alpha exhibits antiviral activities. Here we report that Epstein-Barr virus (EBV), a B lymphotropic human herpes virus that interacts intimately with the immune system, exerts a strong inhibitory effect on TNF-alpha production by lipopolysaccharide-treated peripheral blood leukocytes as well as by monocytic cell lines, HL-60 and U-937. Flow cytometric analysis following staining with OKB7 monoclonal antibody showed that about 20% of cells from these monocytic lines express the CR2 antigen. Direct binding of fluorescein isothiocyanate-labeled EBV indicated that the virus binds to approximately 22% of cells of both monocytic lines. However, no virus-specific antigens were detected in the infected cells by immunofluorescence, suggesting that the infection was of the abortive type. The use of UV- or heat-inactivated EBV and inhibitory effect on TNF-alpha synthesis. These results suggest that infectious virus is necessary to obtain such an inhibitory effect. Analysis of TNF-alpha mRNA by polymerase chain reaction amplification indicated that the EBV suppressive effect is manifested at the transcriptional level. In contrast, EBV did not inhibit interleukin 1 mRNA production by these cells. These results indicate that EBV interacts directly with monocytes/macrophages to exert its immunomodulatory effect.

Antibodies, Monoclonal↗

CD8+ suppressor cells inhibit staphylococcal protein A-induced gamma interferon production by CD4+ lymphocytes.

We have previously demonstrated that purified soluble staphylococcal protein A (SpA) induces the synthesis of gamma interferon (gamma-IFN) by human peripheral blood lymphocytes (PBL), that CD4+ (T helper) cells represent the subpopulation responsible for this synthesis and that prostaglandin E2 (PGE2)-activated CD8+ (T suppressor/cytotoxic) cells have an inhibitory effect on this synthesis. The mechanisms implicated in this regulation remain to be defined, and could involve direct cell-to-cell contact among members of these subpopulations or may be due to a soluble mediator release by CD8+ suppressor cells. In this study, we explored the ability of PGE2 to activate CD8+ cells into either cytotoxic or suppressor cells and the mechanisms by which these cells regulate the SpA-induced gamma-IFN production by CD4+ cells. Peripheral blood lymphocytes from 18 healthy volunteers, prepared by centrifugation over Ficoll-Hypaque gradient, were separated into subpopulations by passage on nylon wool columns and selective depletion using specific monoclonal antibodies and rabbit complement. CD4+ cells were incubated with SpA for gamma-IFN production and CD8+ cells were incubated with 10(-6) M PGE2. After 48 h these populations were remixed and the cytotoxic or suppressor effector function of CD8+ cells was measured. No cytotoxic activity was detected against CD4+ cells. Different levels of suppression of gamma-IFN production were observed in our subjects. Suppression mediated through the release of soluble factor was observed in only 2 of the 18 cases. Taken together, these results suggest that in the present experimental system, the regulation of gamma-IFN production is mediated by suppressor CD8+ T cells and that cell-to-cell contact between both subpopulations is usually necessary.

Anti-Inflammatory Agents, Non-Steroidal↗

Differential staphylococcal protein A-induced enhancement of natural killer cell activity of lymphocytes from HIV-seropositive individuals.

A decrease in Natural Killer (NK) cell activity is a common feature of the immune dysfunction found in patients with HIV-induced acquired immune deficiency syndrome (AIDS). We and others have shown earlier that staphylococcal protein A (SpA) preparations enhance NK cell activity against tumor targets. The present study was aimed at exploring whether the decreased NK activity of lymphocytes from HIV seropositive subjects could be modulated or restored in vitro by SpA. Two types of HIV-seropositive subjects were studied: hemophiliac and non-hemophiliac; matched controls were chosen among hospital staff and HIV-seronegative hemophiliac volunteers. In vitro proliferation and interleukin-2(IL-2)/interferon gamma (IFN gamma) release in response to mitogens were also studied. NK cell responses of peripheral blood lymphocytes (PBL) of HIV-seropositives were lower than those of seronegatives. However, exposure of PBL from HIV-seropositive individuals to SpA boosted their NK cell responses against NK-resistant target cells of tumor origin. The decrease in NK activity could not be attributed to the low number of NK cells, since no significant difference in NK cell number was observed between HIV-seropositive individuals and controls. Mitogen-induced blastogenic responses were present in all four groups, as was the mitogen-induced IFN gamma release. We conclude that impaired NK activity and its boosting against NK-resistant targets after SpA induction is an important characteristic of lymphocytes of HIV-seropositive individuals regardless of the disease state and that this NK defect may not be irreversible.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗