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Biomedical subjects

L Hviid

Publications and source records attributed to L Hviid.

At least 73 records · Page 4Linked to original sources

Seasonal changes in human immune responses to malaria.

Cellular as well as humorol immune responses to malaria antigens fluctuate in time in individuals living in molono-endemic areas, particularly where malaria transmission is seasonal. The most pronounced changes are seen in association with clinical attacks, but osymptomatic infection can also lead to apparent immune depression. However, recent data have shown that seasonal variation in cellular immune responses may occur even in the absence of detectable porositaemia. Here, Lars Hviid and Thor G. Theonder review the seasonal variation in human immune responses to malaria, and discuss its possible causes and implications.

Journal Article↗

Specific T-cell recognition of the merozoite proteins rhoptry-associated protein 1 and erythrocyte-binding antigen 1 of Plasmodium falciparum.

The merozoite proteins merozoite surface protein 1 (MSP-1) and rhoptry-associated protein 1 (RAP-1) and synthetic peptides containing sequences of MSP-1, RAP-1, and erythrocyte-binding antigen 1, induced in vitro proliferative responses of lymphocytes collected from Ghanaian blood donors living in an area with a high rate of transmission of malaria. Lymphocytes from a large proportion of the Ghanaian blood donors proliferated in response to the RAP-1 peptide, unlike those of Danish control blood donors, indicating that this sequence contains a malaria-specific T-cell epitope broadly recognized by individuals living in an area with a high transmission rate of malaria. Most of the donor plasma samples tested contained immunoglobulin G (IgG) and IgM antibodies recognizing the merozoite proteins, while only a minority showed high IgG reactivity to the synthetic peptides.

Adolescent↗

Kinetics of human T-cell expression of LFA-1, IL-2 receptor, and ICAM-1 following antigenic stimulation in vitro.

Numerous studies have examined kinetics of T-cell functional responses following non-specific and antigen-specific stimulation in vitro. However, while reports of phenotypic T-cell changes after non-specific stimulation are abundant, only little information on phenotypic effects of antigen-specific stimulation is available. In the present study we have examined phenotypic T-cell changes after in vitro stimulation by the antigens purified derivative of tuberculin (PPD) and tetanus toxoid (TT). We show that the well-established differences in kinetics of mitogen- and antigen-induced T-cell proliferation in vitro is paralleled by differential kinetics in the expression of the T-cell adhesion and activation antigens leukocyte function-associated antigen 1 (LFA-1; CD11a/CD18), interleukin-2 receptor (IL-2R; CD25), and intercellular adhesion molecule 1 (ICAM-1; CD54). Furthermore, the changes in expression of all 3 surface antigens showed similar kinetics, and correlated with the magnitude of the lymphoproliferative response. By day 8 (PHA-stimulation) or day 12 (PPD or TT stimulation), the lymphoproliferative response was essentially completed, the expression of CD11a and CD54 had approached prestimulation levels, and CD25 expression was decreasing. This indicates that T-cell expression of all the 3 surface antigens examined is reversible. While this is in agreement with previous reports of the expression kinetics of IL-2R and ICAM-1, this is the first report indicating that the regulation of T-cell surface expression of LFA-1 is bidirectional. The results are discussed in relation to phenotypic characterization of memory T cells.

Adult↗

The relation between T-cell expression of LFA-1 and immunological memory.

Antibodies against isotypes of the leucocyte common antigen (LCA, CD45) can be used to identify largely reciprocal subsets of human peripheral T cells, characterized by differential ability to respond to recall antigen in vitro. The transition from naive, unprimed T cells to memory cells capable of responding to recall stimulating has been associated with a switch in surface expression of CD45 from the CD45RA isotype to CD45RO. It has been proposed that this transition is accompanied by the coordinated up-regulation of a number of cell-surface molecules involved in cellular adhesion and/or activation, including the leucocyte function-associated antigens (LFA). In the present study we have examined the expression of LFA-1 on subsets of human peripheral T cells, and related it to the expression of markers of cellular activation and CD45 isotypes, and thus to immunological memory. Our results suggest that the intensity of LFA-1 expression on the surface membrane of human peripheral T cells is not tightly associated with maturation status as judged by LCA isotype expression, but rather reflects the degree of cellular activation. This conclusion is supported by data of T-cell function in vitro, showing similar antigen- and mitogen-induced proliferative responses in T-cell subsets characterized by low as well as high surface expression of LFA-1.

Adult↗

Anti-phospholipid antibodies in patients with Plasmodium falciparum malaria.

Plasma levels of antibodies against phosphatidylinositol (PI), phosphatidylcholine (PC) and cardiolipin (CL) were measured by enzyme-linked immunosorbent assay (ELISA) in patients from malaria endemic area of Sudan and The Gambia. Some Sudanese adults produced IgM antibodies against all three types of phospholipids (PL) during an acute Plasmodium falciparum infection. The anti-PL antibody titre returned to preinfection levels in most of the donors 30 days after the disease episode. IgG titres against PI, PC and CL were low. In Gambian children with malaria, IgM antibody titres against PI and PC were significantly higher in those with severe malaria than in those with mild malaria. These results show that a proportion of malaria patients produce anti-PL antibodies during infection and that titres of these antibodies are associated with the severity of disease.

Adult↗

Modulation of the cellular immune response during Plasmodium falciparum infections in sickle cell trait individuals.

Plasma and peripheral blood mononuclear cells (PBMC) were obtained from P. falciparum-infected individuals with and without the sickle cell trait at diagnosis and 7 days after treatment. HbAA and HbAS patients were compared for levels of plasma soluble IL-2 receptors (IL-2R) and the in vitro cellular reactivity to affinity-purified soluble P. falciparum antigens (SPAg), PPD and phytohaemagglutinin (PHA). At diagnosis, HbAS patients with clinical disease had lower plasma-soluble IL-2R levels and parasite counts than the corresponding HbAA patients, whereas HbAS and HbAA patients with asymptomatic infections had comparable soluble IL-2R levels and parasite counts. PBMC from HbAS patients had higher proliferation and IFN-gamma production in response to SPAg than PBMC from HbAA patients. The difference in the lymphoproliferative responses to SPAg between the two groups was evident in patients with asymptomatic infections. In all patients, the clinical severity, the soluble IL-2R levels and the parasite counts were directly related. The former two were inversely related to the proliferative responses to SPAg. After treatment, all the studied parameters were comparable in the two groups. The study indicates that during P. falciparum infection, HbAS compared with HbAA patients had lower in vivo cellular activation and higher in vitro cellular reactivity in response to soluble malaria antigens.

Adolescent↗

The concentration of the C-type lectin, mannan-binding protein, in human plasma increases during an acute phase response.

Two ELISAs for estimating mannan-binding protein (MBP) were constructed and the concentration of MBP in plasma was followed in patients undergoing major surgery and in patients having a malarial attack. In both cases increases of MBP in the plasma were observed. The relative increase and the kinetics varied from person to person. The concentration of MBP increased between 1.5- and three-fold following surgery. In some patients an increase was seen at day 1 whereas in others the increase was not observed until days 3-9. In the malaria patients an increased level of MBP was maintained during 30 days of treatment with chloroquine. The relative increase in MBP was independent of the presurgery or premalaria levels.

Acute-Phase Reaction↗

T-cell responses in malaria.

Malaria is caused by infection with protozoan parasites of the genus Plasmodium. It remains one of the most severe health problems in tropical regions of the world, and the rapid spread of resistance to drugs and insecticides has stimulated intensive research aimed at the development of a malaria vaccine. Despite this, no efficient operative vaccine is currently available. A large amount of information on T-cell responses to malaria antigens has been accumulated, concerning antigens derived from all stages of the parasite life cycle. The present review summarizes some of that information, and discusses factors affecting the responses of T cells to malaria antigens.

Amino Acid Sequence↗

Transient depletion of T cells with high LFA-1 expression from peripheral circulation during acute Plasmodium falciparum malaria.

Acute P. falciparum malaria is associated with loss of in vitro T cell responsiveness to antigenic stimulation, and with high plasma levels of soluble interleukin 2 receptor (IL 2R). In the present study peripheral T cells from acute P. falciparum malaria patients from a malaria-endemic area of Sudan were analyzed for expression of cell surface antigens associated with T lymphocyte adhesion, activation and maturation. The results were compared to results from T cells obtained from the same donors either before the attack, or during convalescence. Most donors showed a remarkable loss of T cells with high expression of the surface marker LFA-1 (CD11a/CD18) during the clinical episode, in addition to the functional changes described above. Two donors that did not show phenotypic changes were furthermore characterized by having an unabated proliferative response and normal plasma IL 2R levels. All peripheral CD3+ T lymphocytes expressed LFA-1, which had a clearly bimodal distribution on these cells. The T cell subpopulation having high LFA-1 expression (LFA-1++) was composed of both memory and unprimed T cells, according to their expression of CD45RA and CD45R0. Analysis of expression of membrane-bound IL 2R (CD25) and ICAM-1 (CD54) did not reveal in vivo activated T cells in the peripheral blood of the patients. Taken together, these data suggest that circulating T cells recognizing parasite antigens are temporarily withdrawn from peripheral circulation during P. falciparum malaria.

Acute Disease↗

Lymphoproliferative responses to Plasmodium falciparum antigens in children with and without the sickle cell trait.

Blood mononuclear cells (BMNC) were isolated from sickle cell trait (HbAS) healthy donors and normal haemoglobin (HbAA) healthy donors resident in a P. falciparum endemic area of eastern Sudan. Blood samples were collected during the malaria season. BMNC were tested for their proliferative responses to phytohaemagglutinin (PHA), purified protein derivative of tuberculin (PPD) and to soluble P. falciparum antigens (SPAg). Higher responses to SPAg and PPD were observed in the HbAS children compared with the HbAA children, whereas no differences were observed among adults of the two phenotypes. Proliferative responses to PHA were comparable in all individuals tested. The significance of these findings in relation to haemoglobin phenotype, age and the possible immunoregulatory mechanisms operating in HbAS and HbAA children during the malaria season is discussed.

Animals↗

Activation of human T lymphocytes by Leishmania lipophosphoglycan.

This study describes Leishmania antigen-induced activation of lymphocytes isolated from Kenyan donors, previously treated for visceral leishmaniasis, and from Danish and Kenyan controls. Peripheral blood mononuclear cells (PBMC) from cured Kala-Azar patients proliferated and produced Interferon-gamma in vitro in response to lipophosphoglycan (LPG) isolated from Leishmania major. The proliferative response was mainly due to activation of CD2-positive T cells. PBMC from controls did not respond to LPG, but to sonicates prepared from both L. major and L. donovani promastigotes. The surface glycoprotein GP 63 failed to activate PBMC from any of the donors tested. These results show that the individuals cured from visceral leishmaniasis had expanded T-cell clones recognizing LPG, conceivably as a result of Leishmania infection. The LPG preparation was without detectable protein contamination. Thus, the results suggest that human T lymphocytes can respond to glycolipid antigens.

Animals↗

Loss of cellular immune reactivity during acute Plasmodium falciparum malaria.

Sixteen patients suffering from acute Plasmodium falciparum malaria were studied. All were residents of an area of unstable malaria-transmission in Eastern Sudan. Blood-samples were drawn at diagnosis, and 7 and 30 days later. Blood-samples from thirteen donors, drawn outside the malaria transmission season 5 months prior to the attack, were included in the study. Lymphoproliferative responsiveness to purified soluble malarial antigens and to the unrelated antigen PPD was lost during the acute phase of the disease in most donors, but was regained during convalescence, except in four donors recrudescing or reinfected by day 30. In contrast to the suppression of antigenic responses, cellular responses to phytohaemagglutinin (PHA) remained virtually unaffected. All donors showed elevated plasma-levels of soluble IL-2 receptor during the acute phase of the disease which normalized during convalescence. Five donors examined by fluorescence-activated cell sorting (FACS) showed no increase in surface expression of IL-2 receptor on peripheral lymphocytes. The data indicate that acute P. falciparum malaria causes a depletion of antigen-reactive T-cells from the peripheral circulation, probably due to homing of this cell-population to lymphoid tissues. It was also found that acute-phase plasma was suppressive to PPD-induced proliferative responses, indicating an additional suppressive mechanism operating in vivo.

Acute Disease↗

Isolation and characterization of a soluble antigen complex of Plasmodium falciparum with pyrogenic properties.

A soluble antigen complex, previously designated antigen no. 7 (Ag7) on the basis of the pattern obtained by crossed immunoelectrophoresis of culture supernatants of P. falciparum, was isolated by affinity chromatography. It was shown to be synthesized at the schizont stage of the parasite growth cycle and to be located on the surface of the schizonts. Antibodies to Ag7 did not inhibit the growth of the parasite in vitro. Ag7 is recognized by immune human sera from many parts of the world and it stimulated the production of specific antibody in mice when incorporated into immune-stimulating complex (ISCOM) structures. It also specifically stimulated in vitro proliferation of lymphocytes from clinically immune adults. That it induced the secretion of interleukin 1 by human monocytes and was pyrogenic in rabbits was of particular interest. Thus Ag7 has endotoxin-like properties which make it a possible candidate for an antitoxic malaria vaccine.

Animals↗

Biochemical characterization, localization and immunostimulating properties of a soluble glycoprotein, Ag1, isolated from in vitro cultures of Plasmodium falciparum.

The soluble amphiphilic glycoprotein, Ag1 (gp60), purified from supernatants of in vitro cultures of Plasmodium falciparum has a molecular mass of 60 kDa and did not exhibit size variation in the different P. falciparum isolates tested by immunoblotting. Ag1 was shown to interact with the lectin Erythrina christagalli agglutinin, which is specific for carbohydrates bearing beta-D-galactose(1-4)-D-N-acetylglucosamine. Indirect immunofluorescence studies showed that Ag1 is located on the surface of trophozoites and schizonts but not on the surface of merozoites. Ag1 is recognized by human immune sera from six different malaria-endemic regions. Ag1 induces in vitro proliferation of lymphocytes from malaria-immune individuals in an antigen-specific manner.

Animals↗

Reduced cellular immune reactivity in healthy individuals during the malaria transmission season.

Antigen-induced cellular immune responses are suppressed during acute malaria. The present study engages the possibility that malaria-induced alterations in cellular immune reactivity extend beyond the clinical disease. Thus, lymphoproliferative responses of healthy individuals were diminished during the malaria transmission period in individuals living in an area of highly seasonal, unstable malaria transmission. This finding may have important implications for the design of studies of stimulatory properties of antigens using lymphocytes of endemic origin.

Adolescent↗

Cell-mediated immune responses to Plasmodium falciparum purified soluble antigens in sickle-cell trait subjects.

To determine the possible differences in the immune response to Plasmodium falciparum between sickle-cell trait (Hb AS) and normal haemoglobin (Hb AA) individuals, we examined 35 Hb AS and 24 Hb AA subjects matched for age and microenvironment. Their age was 2-55 years and all lived in a malaria endemic area 300 km south of Khartoum. Antibodies to ring-infected erythrocyte surface antigen (Pf155/RESA) and to circumsporozoite (CS) protein (anti-NANP40) indicated equal exposure to falciparum malaria. Peripheral blood mononuclear cells (BMNCs) from 20/35 (57%) Hb AS subjects compared with 10/24 (42%) Hb AA subjects, responded to affinity-purified P. falciparum soluble antigens (SPAg). Of those responding to SPAg, 9 (26%) Hb AS subjects and only two (8%) Hb AA subjects had high responses. The mean proliferative response to SPAg of BMNCs from Hb AS individuals was significantly higher than in Hb AA individuals (P less than 0.025). Responses of BMNCs to PPD and PHA were also higher among Hb AS individuals and correlated positively with responses to SPAg. These findings support the hypotheses that the sickle-cell trait protects individuals from P. falciparum infections, at least in part, by modulating the immune response.

Adolescent↗

Cell-mediated immune responses to soluble Plasmodium falciparum antigens in residents from an area of unstable malaria transmission in the Sudan.

This paper describes immune responses to P. falciparum infection in individuals living in an area of highly seasonal, unstable malaria transmission. The in vitro cellular immune responses of peripheral blood mononuclear cells (PBMC) from 36 Sudanese donors to a complex of affinity purified soluble P. falciparum antigens (SPag) and two components thereof (Ag1 and Ag7) were examined and compared to humoral immune parameters. In 29/36 Sudanese donors, SPag induced a significant lymphoproliferative response in vitro. In contrast only 3/27 Danish donors never exposed to malaria responded to SPag. Ag1 and Ag7 induced significant lymphoproliferation in 9/34 and 13/36 Sudanese donors respectively, whereas no Danish donors responded. Significant interferon-gamma production was observed in 16/27, 1/5 and 3/12 Sudanese donors when stimulated by SPag, Ag1 and Ag7 respectively. Lymphoproliferative responses to SPag correlated with proliferative responses to Ag1 and Ag7, and with Spag-induced interferon-gamma production. These results indicate that T-cell clones recognizing epitopes on Ag1 and Ag7 have been expanded in the studied population as a result of exposure to P. falciparum infection. The T-cell parameters did not correlate with the presence of antibodies to SPag, Pf155/RESA or a crude parasite sonicate or with the schizont IFA titers of the plasma. This indicates that parameters outside the degree of exposure to P. falciparum influence the cellular immune responses to malaria.

Adult↗

Functional and phenotypic changes in human lymphocytes after coincubation with Leishmania donovani in vitro.

In this paper we describe functional and phenotypic changes in T cells after in vitro coincubation of peripheral blood mononuclear cells (PBMC) and Leishmania donovani parasites at different parasite/peripheral blood mononuclear cell ratios. The phytohemagglutinin (PHA)-induced lymphoproliferative response was reduced by the coincubation, and at the maximal parasite/peripheral blood mononuclear cell ratio used (7.5:1), the average response was less than 40% of the response in the absence of parasites. The cause of the reduction in lymphoproliferation is not clear, but it requires live parasites. Interleukin-1 production was unaffected, the levels of soluble interleukin-2 receptor in supernatants were not changed by the coincubation, and the addition of exogenous interleukin-2 failed to revert the suppressive effect of the parasites. In addition to the reduction in lymphocyte proliferation, phenotypic lymphocyte changes were observed. Cell surface expression of the CD3 antigen, which is part of the CD3-T-cell receptor complex, was significantly reduced with increasing parasite/peripheral blood mononuclear cell ratios; the reduction was general in the sense that the parasites caused a shift in the fluorescent intensities of anti-CD3 labeled cells toward lower values, without affecting the distribution pattern. In contrast, the parasites altered the CD25 (interleukin-2 receptor) expression on PHA-stimulated cells from a homogenous CD25-positive population to two populations, one small and without CD25 expression and the other, larger population with only a slight reduction in size and CD25 expression. In addition to the changes in expression of surface antigens, a general reduction in the size of PHA-stimulated lymphocytes after coincubation with the parasites was observed. The data presented thus suggest that the inhibition of the proliferative response to PHA by live L. donovani in vitro is associated with early processes in lymphocyte activation. Further studies on the inhibitory phenomena described may be of potential significance in the investigation of the suppressive mechanisms in human visceral leishmaniasis.

Animals↗