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H Perlmann

Publications and source records attributed to H Perlmann.

At least 73 records · Page 4Linked to original sources

Analysis of clinical specimens by hybridisation with probe containing repetitive DNA from Plasmodium falciparum. A novel approach to malaria diagnosis.

The capacity of a DNA probe containing cloned repetitive sequences from Plasmodium falciparum to identify malaria-infected blood samples was tested with a spot hybridisation assay. Parasitaemia levels of 0.001% could be detected in 50 microliters blood from patients. The probe correctly diagnosed P falciparum infection in patients from different continents and appeared to be specific for P falciparum, since it did not cross-react with three other Plasmodium species tested.

Base Sequence↗

Human antibodies to a Mr 155,000 Plasmodium falciparum antigen efficiently inhibit merozoite invasion.

IgG from a donor clinically immune to Plasmodium falciparum malaria strongly inhibited reinvasion in vitro of human erythrocytes by the parasite. When added to monolayers of glutaraldehyde-fixed and air-dried erythrocytes infected with the parasite, this IgG also displayed a characteristic immunofluorescence restricted to the surface of infected erythrocytes. Elution of the IgG adsorbed to such monolayers gave an antibody fraction that was 40 times more efficient in the reinvasion inhibition assay (50% inhibition titer, less than 1 microgram/ml) than the original IgG preparation. The major antibody in this eluate was directed against a parasite-derived antigen of Mr 155,000 (Pf 155) deposited by the parasite in the erythrocyte membrane in the course of invasion. A detailed study of IgG fractions from 11 donors with acute P. falciparum malaria or clinical immunity revealed the existence of an excellent correlation between their capacities to stain the surface of infected erythrocytes, their titers in reinvasion inhibition, and the presence of antibodies to Pf 155 as detected by immunoblotting. No such correlations were seen when the IgG fractions were analyzed for immunofluorescence of intracellular parasites or for the presence of antibodies to other parasite antigens as detected by immunoprecipitation of [35S]methionine-labeled and NaDodSO4/PAGE-separated parasite extracts. The results suggest that Pf 155 has an important role in the process of erythrocyte infection and that host antibodies to this antigen may efficiently interfere with this process.

Adolescent↗

Regulation of the immune response in Plasmodium falciparum malaria. II. Antigen specific proliferative responses in vitro.

The antigen-induced DNA synthesis in vitro in lymphocytes from patients with acute Plasmodium falciparum malaria was investigated. The patients and healthy controls from Sweden or Colombia were the same as those studied in the accompanying paper (Troye-Blomberg et al., 1983). The malarial antigens used were sonicated membrane preparations or purified and concentrated supernatants from in vitro cultures of P. falciparum; similar preparations derived from normal human erythrocytes served as control antigen. In the patients' lymphocytes P. falciparum antigens induced a weak or moderate but significant stimulation of DNA synthesis, peaking after 3-4 days of incubation. This early response was specific for P. falciparum since it was not obtained with lymphocytes from healthy donors nor with those from patients with acute P. vivax or P. ovale malaria. No antigen-induced response was seen in about half of the P. falciparum patients. However in a few negative cases, available for consecutive testing, positive reactions were seen with lymphocytes taken 2 weeks after infection when the blood of these patients was free of parasites. The early response induced in patients' lymphocytes to the P. falciparum antigens was not obtained with RBC antigen. However, these preparations frequently induced a response rising to significant levels later during incubation (day 5-6). Similar delayed responses were obtained when either patients' or control donors' lymphocytes were exposed to the P. falciparum antigens. This indicates that both the RBC and the parasite preparations contained mitogenic substances affecting human lymphocytes in general and easily obscuring the P. falciparum specific response seen only in the patients. This latter response was relatively low and short lived, suggesting that it reflected a secondary in vitro stimulation of in vivo primed lymphocytes and that it was regulated by suppressor mechanisms.

Acute Disease↗

C3 receptors on human lymphocyte subsets and recruitment of ADCC effector cells by C3 fragments.

The presence of C3 receptors on human peripheral blood lymphocytes (PBL) and on the ADCC-exhibiting subset (K cells) thereof was analyzed by rosetting with bovine erythrocytes (Eb) or chicken erythrocytes (Ec) carrying human C3b, C3bi, or C3d. The indicator cells were coated with 20,000 to 100,000 C3 fragments, obtained by C3 activation with purified proteins of the alternative pathway and trypsin treatment. ADCC was studied at the cellular level by means of a plaque assay, with complement-free or complement-carrying indicator cells as targets. Of the total lymphocytes, 12 to 14% bound EC3b; 6 to 8%, EC3bi; and approximately 2%, EC3d. Surface marker analysis indicated that approximately 75% of the C3b-binding lymphocytes in PBL were either B or null cells and approximately 60% of the C3bi-binding cells were T cells, as characterized by the monoclonal antibodies OKT3 and OKT4 or by presence of receptors for Helix pomatia hemagglutinin. Of the K cells, which constituted from 5 to 10% of the total lymphocytes, approximately 20% bound C3b; 30 to 35%, C3bi; and 7 to 8%, C3d. Here the majority of the C3b binders were null cells, and the majority of the C3bi and C3d binders were T cells. Only one-third of the C3b-binding K cells and one-fifth of the C3bi-binding K cells bound both fragments. The nature of these double binding cells is unknown. In contrast, all C3d-binding K cells bound C3bi as well. C3 fragment-carrying target cells did not induce K cell-mediated lysis in the absence of anti-target antibodies but strongly enhanced ADCC in the presence of sublytic concentrations of such antibodies. The rank order for C3 fragment-induced enhancement was C3bi greater than C3d greater than C3b. It reflected the relative proportions of effector cells binding the different fragments. Enhancement was the expression of effector cell recruitment rather than of increased cytolytic activity of individual K cells. This recruitment was selective in that C3b-carrying target cells primarily recruited effector cells of null type, binding C3b, while C3bi- or C3d-carrying targets primarily recruited C3bi and/or C3d-binding K cells of T gamma type. Thus, these experiments show directly at the effector cell level that cell-bound C3 fragments constitute important recognition structures, which strongly amplify ADCC both by recruiting the proper effector cells into the cytolytic reaction and by very significantly decreasing the antibody concentration needed for its induction.

Animals↗

Monoclonal anti-parasite and anti-RBC antibodies produced by stable EBV-transformed B cell lines from malaria patients.

To produce human monoclonal antibodies associated with infectious disease, peripheral blood lymphocytes (PBL) from patients with Plasmodium falciparum malaria were transformed with EB-virus in vitro. To enrich for malaria-specific B cells, PBL were incubated for 3 days with unsoluble P. falciparum antigen before EBV-transformation. Furthermore, cyclosporin A was added during and after transformation to eliminate T cell suppression of B cell growth. Microcultures were screened for antibodies against blood stage antigens of P. falciparum or of noninfected erythrocytes by ELISA and indirect immunofluorescence. Cultures producing anti-P. falciparum and/or anti-erythrocyte antibodies were developed from the lymphocytes of eight patients, including some individuals with their first infection. Positive cultures were cloned and propagated for several weeks. Seven of 15 clones producing antibody at a stable rate have now been kept in cultures for more than 1 yr. Of six cultures analyzed in detail, all produced IgM antibodies of either K or lambda isotype. Although three clones were monoclonal after one cloning, three were oligoclonal. Of the former, two produced P. falciparum-specific antibodies directed to an antigen associated with the surface of merozoites. One of the oligoclonal cultures produced anti-erythrocyte antibodies, and it was probably reacting with spectrin.

Antibodies, Monoclonal↗

Regulation of the immune response in Plasmodium falciparum malaria. I. Non-specific proliferative responses in vitro and characterization of lymphocytes.

The mitogen-induced DNA synthesis in vitro in lymphocytes from 20 patients acutely ill with Plasmodium falciparum malaria was compared with that of 16 healthy donors. Within both groups part of the donors were individuals who had only experienced short exposure or none at all to the parasite (Sweden) while the other part were donors living in a malaria endemic area (Colombia). The proliferative response to the T cell mitogen La (leucoagglutinin from PHA) of the patients was significantly reduced as compared with that of the controls. With pokeweed mitogen which stimulates T cells and induces a T cell-dependent activation of B cells, no difference between patients or controls was seen. The results were similar for the donors of different geographical origin and malaria background. Lymphocytes and monocytes from the peripheral blood of these donors were also studied for surface marker distribution by means of monoclonal antibodies. Both the absolute and the relative frequencies of T cells in the blood of the malaria patients were significantly reduced as compared with the controls. Furthermore, in almost all eight patients tested, the ratio between T4+ T cells (including the helper/inducer subsets) and T8+ T cells (including the suppressor and cytotoxic subsets) were below 1:1 while they were close to 2:1 in the controls. The results indicate that the relative frequency of T8+ T cells, expressed as percentage total T cells (T3+) was significantly elevated in the P. falciparum patients. The possible relationship between this imbalance and the irregular La response of the patients lymphocytes requires further investigation of lymphocyte function.

Acute Disease↗

Regulation of IgG-IgM interplay by antibody specificity in human K-cell-mediated cytotoxicity.

IgM antibodies, by themselves unable to induce human K-cell-mediated cytotoxicity, enhanced the lysis of TNP-coated bovine erythrocytes (TNP-Eb) induced by suboptimal concentrations of IgG antibodies. The antibodies used were directed against either TNP or intrinsic Eb antigens. The best enhancement of antibody-dependent cell-mediated cytotoxicity (ADCC) was obtained when IgG and IgM antibodies had different specificities. IgM antibodies with specificity similar to that of the IgG antibodies often inhibited rather than enhanced cytolysis. By using 125I-labelled anti-DNP IgG, the number of IgG/TNP-Eb was determined. Under the present conditions, at least 9000 IgG molecules/TNP-Eb were required for K-cell-mediated lysis in the absence of IgM. In the presence of IgM antibody concentrations optimal for enhancement of ADCC, the minimal number of IgG molecules required for induction of ADCC was 30-100 times lower. No enhancement of cytotoxicity was seen with more than the optimal concentration of IgM even when IgG binding to the target cells was not reduced by IgM. This suggested that induction of ADCC was dependent on contiguous IgG-Fc receptor interactions, which were inhibited owing to steric hindrance by excessive amounts of IgM in the critical contact areas between effector cells and target cells.

Animals↗

Interaction of target cell-bound C3bi and C3d with human lymphocyte receptors. Enhancement of antibody-mediated cellular cytotoxicity.

The occurrence and distribution of distinct receptors for three C3 fragments on purified human blood lymphocytes were studied by rosette formation. Indicator cells were bovine, chicken, or sheep erythrocytes (E) bearing up to 100,000 molecules of human C3b (EC3b) without antibody. EC3b was converted to C3bi-bearing-E (EC3bi) with purified C3b inactivator (factor I) and beta1H (factor H), and to C3d-bearing E (EC3d) by treatment of EC3bi with trypsin. Using bovine E (Eb) as indicators, approximately 11% of the lymphocytes bound EbC3b, 6% bound EbC3bi and 2% bound EbC3d. Fractionation of the lymphocytes by adsorption to monolayers of C3-fragment-bearing Eb or by rosetting indicated that most of the cells with receptors for C3b were distinct from those having receptors for C3bi and/or C3d. Cells from two lymphoblastoid cell lines (Raji and Daudi) formed strong rosettes with EC3b, which were weak. 51Cr-labeled E was used as a target in antibody, C3-fragment-bearing E was not lysed by the lymphocytes. However, at suboptimal concentrations of IgG enhancing capacity of the fragments occurred in the order of C3bi greater than C3d greater than C3b. In addition, C3-fragment-bearing cells inhibited the lysis of antibody-coated cells not concluded that target cell bound C3 fragments enhance ADCC by improving contact between target cells and those effector cells which have C3 receptors. Cell-bound C3 effector cells. It is proposed that certain lymphocytes are capable of interacting with C3bi in addition to C3b and C3d and that C3bi and C3d have a greater regulatory effect on their cytolytic function than C3b.

Animals↗

Regulation of IgG antibody-dependent cellular cytotoxicity in vitro by IgM antibodies.

IgM antibodies have previously been reported to either inhibit or induce antibody-dependent lymphocyte cytotoxicity (ADCC). Here we show that human lymphocytes lyse bovine erythrocytes (Eb) in the presence of either IgM of IgG anti-Eb from rabbits. Seven out of 20 IgM preparations (Sephadex G-200) were ADCC-active. IgG-dependent ADCC was inhibited by human IgG but not by IgM. In contrast, IgM ADCC was inhibited by both IgG and IgM. The effector cells in IgM ADCC were a subpopulation of lymphocytes with distinct Fc receptors for both IgG and IgM. Most of them also had sheep erythrocyte receptors. Extensive purification of the ADCC-active IgM antibody preparations indicated that very small amounts of contaminating IgG anti-Eb were responsible for ADCC induction. When purified and ADCC-inactive IgM antibodies were mixed with suboptimal concentrations of IgG antibodies, a strong enhancement of ADCC was found. To achieve enhancement, the two antibody isotypes had to be present on the surface of the same target cells, and the IgM effect was not due to the release of soluble ADCC-enhancing factors. Thus, in this system, IgM antibodies are not capable of inducing ADCC on their own. However, they enhance ADCC by improving the contactual interaction between target cells and a special subset of effector cells.

Animals↗

A rosette assay for the determination of C 1 q receptor-bearing cells.

A rosette assay for the identification of cells with receptors for C 1 q is described. Glutaraldehyde-treated bovine erythrocytes bound C 1 q specifically, and the reagent thus prepared provided a valid indicator for rosette formation mediated by C 1 q receptors. The presence of these receptors on the membrane of a subset of human peripheral lymphocytes (mainly non-G cells) and on B-derived lymphoblastoid cells was confirmed. Rosette formation was dependent on the number of C 1 q molecules bound per indicator cell and was specifically inhibited by soluble native C 1 q and pepsin-resistant C 1 q fragments. These data, together with the reduced binding activity of C 1 r-C 1 s-associated C 1 q, indicated that the C 1 q binding sites for lymphoid membranes are expressed on the collagen-like moiety, C 1 q rosette formation provided a simple new procedure for fractionation of human lymphocyte populations and separation from phagocytes that do not express receptors for C 1 q.

Animals↗

Antibody dependent cellular cytotoxicity and mitogen responsiveness of human peripheral blood lymphocytes differing in avidity for sheep erythrocytes.

To characterize the effector cells (K-cells) in antibody-dependent cellular cytotoxicity (ADCC) against a nucleated target cell (El 4), human peripheral blood lymphocytes (PBL) were fractionated by rosette sedimentation into subpopulations differing in avidity for sheep erythrocytes (E). The fractions obtained were assayed for surface markers, and as a functional T cell marker, for responsiveness to the mitogen leucoagglutinin (La). By depleting PBL of E-receptor-bearing cells (Et+), approximately half of the cytotoxic potential was found in the Et-depleted fraction. While the Et+ fraction had low activity on a per cell basis, it nevertheless contained a significant proportion of the original cytotoxicity. By sequential E-rosetting, fractions binding E with high avidity (Et+), low avidity (Et+) or not at all (E-) were obtained. Both E-binding fractions consisted primarily of T-cells, as judged from their surface marker profiles. Both fractions responded well to La, but with different dose optima. The E- fraction contained primarily B-and null cells and did not respond to La. Significant K-cell activity was found in all these fractions. The results show that a significant fraction of the K-cells have receptors for E and these can be of either high or low avidity. Since both EH+ and EL+ fractions respond well to La and contain K-cells, a T-cell origin of the latter is suggested. However, whether or not cytotoxicity and La-responsiveness are functions of the same cells remains to be established.

Agglutinins↗

A new rat lymphocyte surface marker: characterization and separation of cells with receptors for Helix pomatia hemagglutinin.

Thirty-two percent of neuraminidase-treated DA rat spleen lymphocytes and 48% of lymph node lymphocytes possess receptors for Helix pomatia hemagglutinin (HP). Moreover, these HP-receptor-bearing cells can be separated from B cells by affinity chromatography on HP-Sepharose columns. The virtual absence of immunoglobulin (Ig) receptors and the close correlation with reported T-cell content of these lymphoid tissues suggest that HP-receptor lymphocytes are probably T cells and that HP may provide a convenient marker, for both the identification and the purification of rat T lymphocytes.

Agglutinins↗

Analysis by a plaque assay of IgG- or IgM- dependent cytolytic lymphocytes in human blood.

When monolayers of bovine erythrocytes (Eb) were exposed to purified human blood lymphocytes and either IgG or IgM fractions of rabbit anti-Eb serum, clear zones (plaques) appeared when Eb had been lysed by antibody-dependent effector cells (K cells). IgG-dependent plaque formation was complete by 20 h of incubation, while the IgM-dependent reaction required 40 h. The estimated minimal numbers of plaque forming cells (PFC) were 5.6% (IgG) and 2.0% (IgM) of the added lymphocytes. Inhibition experiments with human IgG or IgM indicated that different immunoglobulin receptors on the effector cells were involved in the two systems. In the IgG system, approximately 50% of the PFC had complement receptors and approximately 30% receptors for Helix pomatia A hemagglutinin (HP). In the IgM system, less than 10% of the PFC had complement receptors, while approximately 60% had HP receptors. The results suggest that a subset of human T cells had IgM-dependent K-cell potential. These cells are different from the majority of the IgG-dependent K cells.

Binding Sites↗

Purification, fractionation and assay of antibody-dependent lymphocytic effector cells (K cells) in human blood.

In this article we present methods for the purification and fractionation of human blood lymphocytes, which have been used in our laboratory to characterize antibody-dependent cytotoxic effector cells (K cells). The assay system consists of highly purified lymphocytes, 51Cr-labelled chicken erythrocytes (Ec) and IgG rabbit anti-Ec in high dilutions. Various ways of comparing K-cell potentials of different lymphocyte preparations in this system are discussed. When purified lymphocytes are partially depleted (60-85% depletion) of cells forming rosettes with sheep erythrocytes (E+ cells), the K-cell activity of the depleted fraction is increased, indicating the the majority of the E+ cells are inactive in this assay. Depletion of EAC-rosette-forming cells shows that most or all K cells have complement receptors. For depletion of B cells, the lymphocytes may be passed through glass bead columns, charg ed with F(ab')2 fragments of human IgG and F(ab')2 fragments of rabbit antibodies to the F(ab')2 part of human IgG. These columns give high yields of B-cell depleted fractions. These preparations are rich in E+ cells and contain approximately 80% of the Fc-receptor lymphocytes which form rosettes with bovine erythrocytes, coated with IgG antibodies. Their K-cell activity is unchanged or slightly elevated, indicating the mature B cells, i.e. SIg+ cells, have little or no K-cell activity. In contrast, passage of the lymphocytes through immune complex columns (ovalbumin/anti-ovalbumin) leads to approximately 70% depletion of Fc receptor-bearing cells, while most of the B cells (SIg+ cells) pass through the columns. The relative frequency of E+ cells in the passed fraction frequently shows a slight reduction. These preaparations have a very low K-cell activity, indicating that K cells are lymphocytes with Fc receptors of relatively strong avidity.

Antibody-Dependent Cell Cytotoxicity↗

Interaction of K lymphocytes with myeloma proteins of different IgG subclasses.

Human myeloma proteins of the four IgG subclasses and their Fc, F(ab)2, and Fab fragments were tested for their ability to inhibit antibody-dependent human K lymphocyte-mediated cytotoxicity to chicken erythrocytes (CRBC) sensitized with specific rabbit antibodies. In addition, the adsorption of K cells onto glass bead columns coated with myeloma proteins was investigated. Myeloma proteins and their Fc fragments of all four subclasses inhibited K cell activity. However, there were wide variations within a given subclass and IgG2 and IgG4 proteins usually inhibited less than IgG1 and IgG3 proteins. Aggregation of the weakly inhibitory proteins with bis-diazotized benzidine increased their inhibitory effect. An IgG1 half-molecule with a deletion in the Cgamma3 domain was weakly inhibitory. Passage of lymphocytes through glass bead columns coated with IgG1 and IgG3 proteins removed K cell activity. In contrast, columns coated with IgG2 and IgG4 proteins, even when aggregated with BDB, failed to absorb K cells but removed significant numbers of SIg positive B lymphocytes. An enhancement of the antibody-dependent cytotoxicity was observed in 34% of the inhibition experiments in the presence of low concentrations of the weakly inhibitory proteins, usually IgG2 and IgG4. This enhancement occurred more frequently (53% of the experiments) with Fc fragments independent of the subclass. Moreover, addition of IgG2 and IgG4 but not IgG1 and IgC3 fragments induced a dose-dependent cytotoxicity to CRBC in the absence of anti-CRBC antibodies. These data indicate that IgG2 and IgG4 proteins have a lower affinity to K cells than IgG1 and IgG3 proteins and are compatible with an earlier hypothesis that proposes that more than one site on the Fc fragment can react with Fc receptors. The present results suggest in addition that there may be functionally different sites, one having a triggering function in K lymphocyte lysis that may be localized on the second constant domain and one being responsible for high affinity binding of IgG to cell receptors that is probably localized on the third constant domain.

Animals↗

Fractionation of human blood lymphocytes on Helix pomatia A haemagglutinin coupled to sepharose beads.

Treatment of human blood lymphocytes with neuraminidase has previously been shown to uncover receptors for the A haemagglutinin of the snail Helix pomatia (HP). Neuraminidase-treated lymphocytes were now fractionated on columns charged with large Sepharose particles to which HP had been coupled covalently. HP-receptor negative (HP-) lymphocytes passed the columns while HP-receptor positive (HP+) lymphocytes were retained. The latter cells were eluted by addition of the competitive hapten N-acetyl-D-galactosamine (D-GalNAc). The total yield of cells recovered after fractional was 60-80% Surface marker studies indicated that there was no selective loss of any of the major lymphocyte subpopulations. The fraction that passed the columns (fraction I) consisted of approximately 10% of all lymphocytes. It contained approximately 1% HP+cells and approximately 3% of all lymphocytes forming rosettes which sheep erythrocytes (E+ cells) present before fractionation. 50-55% of the lymphocytes in this fraction had surface-bound immunoglobulin (SIg+ cells) and complement receptors (EAC+ cells). Of the SIg+ cells, approximately 60% were true B cells while the remaining 40% had IgG adsorbed to their surface. The majority of the B cells were recovered in this fraction. The lymphocytes of this fraction responded poorly to T-cell mitogen but had an enhanced K-cell activity to chicken erythrocytes. Elution of the cells retained on the column with 0.1 mg/ml D-GalNAc gave a fraction II, consisting of approximately 15% of all lymphocytes. This fraction had a mixed composition. The majority of the cells (approximately 45%) were recovered by subsequent elution with 1.0 mg/ml D-GalNAc. This fraction III was strongly enriched with HP+ and E+ cells (T cells). About 10% of the HP+ cells in this fraction were SIg+. However, on the majority of these cells this surface-bound immunoglobulin was probably externally absorbed IgG. These HP+-SIg" cells were also EAC+ and had Fc receptors, as shown by rosette formation with IgG-coated bovine erythrocytes. The lymphocytes of fraction III responded most strongly to T-cell mitogen while their K-cell activity was weak.

Cell Membrane↗

Cytolytic lymphocytic cells with complement receptor in human blood. Induction of cytolysis by IgG antibody but not by target cell-bound C3.

Human blood lymphocytes were fractionated on glass bead columns charged with sheep erythrocyte (Es) membranes-bearing human C3b (7,000-10,000 molecules/Es). In the passaged cells the proportion of C receptor lymphocytes was strongly reduced, in parallel with the capacity to lyse chicken erythrocytes (Ec) in the presence of IgG-rabbit anti-Ec antibody. In other experiments, lymphocytes forming rosettes with Es bearing activated rabbit complement [C(ra)] from C6-deficient rabbits were removed by centrifugation through human serum albumin-gelatine mixtures. This procedure also depleted the lymphocyte preparations of antibody-dependent cytolytic effector cells. The results suggest that rations of antibody-dependent cytolytic effector cells. The result suggest that such effector cells have receptors for human C as well as for C(ra). Lymphocytes were not able to lyse erythrocytes bearing either human C3b (similar to 30,000 molecules/Ec) or activated C(ra) in the absence if IgG antierythrocyte antibodies. Under the same experimental conditions these target cells were efficiently lysed in the presence of small amounts of IgG antitarget cell antibodies. This suggests that the interaction between the cellular Fcreceptors and the Fc part of the inducing antibodies is of special significance for the triggering of the cell-mediated lytic reaction. However, although target cell-bound C did not trigger cytolysis, it seemed to potentiate antibody-dependent cytolysis, probably by enhancing effector cell-target cell contacts.

Animals↗