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Biomedical subjects

K J Thorne

Publications and source records attributed to K J Thorne.

At least 19 recordsLinked to original sources

The use of mouse/human chimaeric antibodies to investigate the roles of different antibody isotypes, including IgA2, in the killing of Schistosoma mansoni schistosomula by eosinophils.

We report the use of a matched set of mice/human chimaeric antibodies, directed against the 5-iodo-4-hydroxyl-3-nitrophenacetyl (NIP) hapten, to investigate the roles of different human isotypes in antibody-mediated eosinophil-dependent killing of schistosomula. The chimaeric antibodies consist of mouse VH, VL and CL regions with human gamma 1, gamma 2, gamma 3 (2 allotypes), gamma 4, alpha 2, mu or epsilon CH regions and were used in in vitro assays with human eosinophils and NIP-coated S. mansoni schistosomula. Some anti-NIP isotypes mediated high levels of killing, which was specific for NIP-coated larvae, and we suggest that these antibodies will be a valuable tool for studies on the role of antibody isotypes in anti-schistosome immune effector mechanisms. In particular, this method directly demonstrated, for the first time, that IgA is highly effective in mediating the killing of metazoan parasites by human eosinophils.

Animals↗

Human immunity to Schistosoma mansoni: observations on mechanisms, and implications for control.

This review summarizes the personal experiences of the authors and their colleagues during ten years of field and laboratory studies on human immunity to Schistosoma mansoni infections. There is evidence for the very slow development with age of an acquired resistance to reinfection (demonstrable after chemotherapy of the primary infection) distinguishable from a lack of reinfection due to reduced exposure. The implications of this immunity for the design of chemotherapy programs targeted at infected schoolchildren are discussed. Observational studies on the mechanisms of immunity have demonstrated a marked helminthocidal capacity of eosinophils. Subsequent correlative studies have indicated a role of IgM and IgG2 "blocking" antibodies in maintaining the continued susceptibility of young children, and of IgE antibodies in mediating protection in older individuals. Some problems in studying human immunity, and the implications for vaccine development, are also discussed.

Animals↗

The presence of eosinophil-activating mediators in sera from individuals with Schistosoma mansoni infections.

IgG antibodies and eosinophils kill schistosomula of Schistosoma mansoni in vitro, and there is now evidence to suggest that the main factor that contributes to the expression of purified IgG effector function is the degree of activation of the donor's eosinophils. This study was designed to identify serum-derived activating factors in sera from individuals infected with S. mansoni. Such activating factors may be responsible for enhancing eosinophil cytotoxicity against schistosomula. Serum-borne mediators were prepared by fractionation of sera from infected individuals by gel filtration high-performance liquid chromatography. The eosinophil-stimulating activity of these mediators was assayed by a new method which depends on the increased expression of the CR3 alpha chain (CD11b) on the surface of activated eosinophils. Sera from infected individuals exhibited different levels of eosinophil activation, and activation appeared to be due to several serum factors, including interleukin 5. In conclusion, our results suggest that eosinophil-activating factors present in infection sera may not only be responsible for enhancing eosinophil cytotoxicity but also be necessary for its expression.

Cytotoxicity, Immunologic↗

A new method for measuring eosinophil activating factors, based on the increased expression of CR3 alpha chain (CD11b) on the surface of activated eosinophils.

The observation that activation of eosinophils in vitro with PAF increases the surface expression of the alpha chain of the complement receptor CR3 (CD11b) has been extended to other eosinophil activating factors. CD11b may be detected on activated eosinophils by reaction with mouse monoclonal anti-human CD11b IgG, following the addition of urease-conjugated sheep anti-mouse IgG. CD11b levels were increased on eosinophils after incubation with (a) recombinant colony stimulating factors, IL-3, GM-CSF and IL-5, at concentrations of 100 U/ml, or (b) with eosinophil activating factors, recombinant TNF alpha (1000 U/ml), EAF purified from mononuclear cell supernatants and PAF (10(-6) M). CD11b levels were not affected by IL-1 alpha, IL-2 or IFN-gamma. Unstimulated neutrophils had higher levels of CD11b than unstimulated eosinophils, but neutrophil CD11b was unaffected by IL-3, GM-CSF and IL-5 and was only slightly affected by TNF, EAF and PAF. Polyclonal rabbit antibodies to IL-3 and TNF neutralised their CD11b enhancing activities. The PAF antagonists WEB 2086 and WEB 2170 neutralised the CD11b enhancing activity of PAF. We conclude that measurement of CD11b expression on eosinophils is a convenient method for the assay of eosinophil activating activity.

Animals↗

Functional role of human IgG subclasses in eosinophil-mediated killing of schistosomula of Schistosoma mansoni.

Although IgG antibodies and eosinophils have been shown to kill schistosomula of Schistosoma mansoni in vitro, very little data exist that describe the role of each IgG antibody isotype in this event. This study was designed to test the role of each IgG subclass in the eosinophil-dependent killing reaction. IgG antibodies purified by protein G or protein A affinity chromatography demonstrated a killing effect only in the presence of eosinophils activated in vivo or normal eosinophils activated in vitro by eosinophil activating factor. Purification of each IgG isotype allowed confirmation of these results and demonstrated that the killing effect was associated with IgG1 and IgG3 antibodies. IgG2 antibodies expressed a dual function: 1) an effector function with activated eosinophils and 2) a blocking function with normal eosinophils. IgG4 antibodies, whatever the source of eosinophils, blocked the killing mediated by IgG effector antibodies. These findings are discussed in relation to immunity and susceptibility to reinfection in human schistosomiasis.

Adjuvants, Immunologic↗

Production of eosinophil-activating factor (EAF) by peripheral blood mononuclear cells from asthma patients.

Mononuclear cells from blood samples from asthmatic patients were tested for their ability to produce two eosinophil activating factors, EAF and TNF. High levels of EAF were produced by some but not by all patients. The influence of external factors on EAF production was evaluated. Patients receiving prednisolone (10-30 mg/day) tended to produce only low levels of EAF. Prednisolone has been shown to inhibit production of EAF in vitro by isolated mononuclear cells, at concentrations of 0.1-1 micrograms steroid/ml. Incubation of mononuclear cells with certain allergens enhances EAF production in sensitive individuals. Little or no production of TNF was observed in the patients examined.

Adult↗

Effect of drugs used in the treatment of asthma on the production of eosinophil-activating factor by monocytes.

The cytotoxic activity of eosinophils, as measured by their ability to kill antibody-coated schistosomula of Schistosoma mansoni, is enhanced by a factor (eosinophil-activating factor, EAF) which is secreted by peripheral blood monocytes from certain moderately eosinophilic individuals. The secretion of this factor by monocytes is inhibited by methylprednisolone (1 microgram/ml), beclomethasone (10 micrograms/ml) and theophylline (100 micrograms/ml), but not by sodium cromoglycate or salbutamol. Methylprednisolone, beclomethasone and theophylline do not inhibit either eosinophil cytotoxic activity or enhancement of eosinophil cytotoxic activity by EAF at these concentrations.

Albuterol↗

Eosinophil-activating factor (EAF) production by a human cell line (ESH 98) stimulated with tumour necrosis factor.

A new cell line has been produced by fusing human cervical keratinocytes with HeLa cells. This cell line secretes eosinophil-activating activity upon stimulation with tumour necrosis factor (TNF). About one-third of the eosinophil-activating activity co-purifies with eosinophil-activating factor (EAF) from mononuclear cell supernatants. The purification procedure indicates that it resembles EAF in molecular weight and acidity. It also resembles EAF in its effect on eosinophils. Not only does it enhance the cytotoxic activity of eosinophils to antibody-coated schistosomula of Schistosoma mansoni, but it also increases the oxidative activity of eosinophils, as measured by reduction of nitroblue tetrazolium, and changes the morphology of eosinophils, affecting the distribution of F-actin in the cell.

Cell Line↗

A comparison of eosinophil-activating factor (EAF) with other monokines and lymphokines.

Monocytes from moderately eosinophilic individuals secrete material that enhances the cytotoxic activity of eosinophils against antibody-coated schistosomula of Schistosoma mansoni. This material is not a single substance, but can be fractionated into several active components of different size and different charge. Gel filtration of mononuclear cell supernatants separated the eosinophil-activating activity into a major component of molecular mass of 40 kDa and a minor component of molecular mass of less than 10 kDa. The major component exhibited further heterogeneity on fractionation by high performance liquid chromatography. The bulk of the eosinophil-activating activity could be separated from both colony-stimulating factor (CSF) alpha activity and from tumor necrosis factor (TNF) activity. However, human recombinant CSF alpha (GM-CSF), human recombinant TNF and rabbit tumor necrosis serum all had eosinophil-activating activity when tested against schistosomula. Eosinophils were not activated by interleukin 1, interleukin 2, interferon-alpha, lipopolysaccharide or phorbol myristate acetate.

Colony-Stimulating Factors↗

The effects of eosinophil activating factor on IgG-dependent sulphidopeptide leukotriene generation by human eosinophils.

Eosinophil activating factor (EAF) is a 40 kD protein released from cultured, unstimulated human monocytes which enhances the IgG-dependent eosinophil-mediated cytotoxicity of helminthic larvae. We have recently shown that eosinophils elaborate substantial quantities of leukotriene C4 (LTC4) during incubation with IgG-coated particles and now report that EAF, partially purified by sequential chromatography on Sephacryl S-200 and DEAE-cellulose, enhanced this IgG-dependent LTC4 production by human eosinophils in a dose- and time-dependent fashion. LTC4 production by normal density eosinophils, separated on discontinuous metrizamide gradients, was significantly increased after incubation with several dilutions of EAF (P less than 0.05), although an increase was not seen with low density cells. The enhancement was similar in degree to that seen when normal density eosinophils were activated with the bacterial analogue, f-met-leu-phe (fMLP). EAF produced a time-dependent increase in LTC4 which was significantly greater (P less than 0.01) than the control. Sulphidopeptide leukotriene (LT) generation was validated by reverse phase high pressure liquid chromatography (RP-HPLC). These results indicate that there is a firm association between monocytes, eosinophils and LTC4; an observation which may be of relevance to mechanisms in chronic asthma and related disorders, and in immune reactions against migrating helminthic larvae.

Dose-Response Relationship, Drug↗

Partial purification and biological properties of an eosinophil-activating factor.

A protein (eosinophil-activating factor, EAF), which enhances the capacity of human peripheral blood eosinophils to kill antibody-coated schistosomula of Schistosoma mansoni, has been partially purified from supernatants of cultured peripheral blood mononuclear cells by sequential chromatography on Sephacryl S200 and DEAE-cellulose. This protein is acidic with a molecular mass on gel filtration of 40 +/- 7 kDa. It not only enhances the activity of eosinophils against schistosomula but also increases their ability to lyse antibody-coated, herpes simplex virus-infected Chang liver cells. It enhances the production of superoxide and hydrogen peroxide by eosinophils that occurs both spontaneously and in response to opsonized zymosan. However, increased respiratory burst activity does not appear to be responsible for the enhancement of eosinophil-mediated killing of schistosomula, since a comparable or greater increase in hydrogen peroxide production is induced by column fractions that have little or no effect on schistosomulum killing. EAF enhances eosinophil degranulation, both spontaneously and after incubation with opsonized zymosan. Enhanced degranulation is associated with release of eosinophil peroxidase and eosinophil cationic protein. These findings suggest that EAF enhances the capacity of eosinophils to kill parasites by increasing the extent of eosinophil degranulation and the amount of toxic granule proteins that are secreted.

Antibody-Dependent Cell Cytotoxicity↗

Antibody-dependent cell-mediated cytotoxicity against IBR-infected bovine kidney cells by ruminant neutrophils: the role of lysosomal cationic protein.

Antibody-dependent cell-mediated cytotoxicity (ADCC) of infectious bovine rhinotracheitis (IBR)-infected bovine kidney cells (MDBK) by neutrophils was demonstrated. Neutrophils from bovine and sheep mammary exudate and peripheral blood, and also from human peripheral blood, were all active in the presence of anti-IBR antibody. The component of the ruminant neutrophil granules which was responsible for cytotoxicity appeared to be cationic protein since purified cationic protein lysed the virus-infected cells and heparin inhibited cytotoxicity. Human neutrophil cytotoxicity to herpes simplex virus (HSV)-infected human Chang liver cells was also inhibited by heparin. Human neutrophil cytotoxicity to IBR-infected bovine kidney cells did not appear to be mediated by cationic protein since it was inhibited by the chelators of oxidative intermediates DMSO, thiourea, tryptophane, benzoate and mannitol, and not by heparin.

Animals↗

Surface proteins of the human eosinophil. I. Isolation of eosinophil IgG binding proteins.

Proteins involved in the attachment of eosinophils to immobilized antigen-antibody complexes were isolated. Eosinophils, purified from normal human peripheral blood, were surface labelled with 125I-iodide in the presence of lactoperoxidase and hydrogen peroxide. Immobilized immune complexes were prepared by covalent coupling of tetanus toxoid antigen to cellulose and treatment of the fixed antigen with human anti-tetanus IgG. Intact cells were allowed to interact with the antigen-antibody complex and the cells were then lysed in situ with a salt solution containing the non-ionic detergent NP40. After exhaustive washing to remove unattached proteins, the bound proteins were eluted with a buffer containing mercaptoethanol with or without SDS. A major protein of mol. wt 16K and a minor protein of mol. wt 18K were isolated. These proteins were unaffected by the temperature of attachment of eosinophils to the fixed IgG antigen complexes or by the presence of protease inhibitors and did not therefore appear to be proteolytic cleavage products.

Antigen-Antibody Complex↗

Surface proteins of the human eosinophil. II. Effects of Schistosoma mansoni larvae on eosinophil surface proteins.

Incubation of eosinophils with schistosoma of Schistosoma mansoni in vitro induces changes in the eosinophil membrane. Cell surface proteins were blocked with unlabelled iodide and then, after incubation with schistosomula, newly accessible proteins were detected by lactoperoxidase catalysed iodination with radioactive iodide. Normal turnover restores several proteins to the eosinophil surface, but the schistosomula specifically induced the appearance of a protein of mol. wt 18K. This protein has previously been detected when eosinophils interact with antibody coated agar layers. Soluble factors released by schistosomula induced the appearance of enhanced levels of 16 and 18K proteins. It has previously been shown that proteins involved in binding of eosinophils to IgG coated antigen coupled cellulose have mol. wts of 16K and 18K.

Antigen-Antibody Complex↗

Cell-mediated killing of protozoa.

Cell-mediated immunity represents an important host defence mechanism against protozoal infections. The effector cells directly involved are neutrophils, macrophages and, ultimately, activated macrophages. Within this simple scheme there are, however, considerable variations in activity. Effector cells from different animal species, and even from different strains of the same species, may be more or less effective in controlling a certain protozoal infection. Different protozoa differ in their susceptibility to cell-mediated killing according to genus, species, strain and morphological form. The most susceptible morphological form is that which occurs in the insect vector, and which has not yet adapted to protect itself from the vertebrate host. Epimastigotes of Trypanosoma and promastigotes of Leishmania are readily killed by phagocytic cells, while the corresponding trypomastigote and amastigote forms are considerably more resistant. Protozoa which live in macrophages, such as amastigotes of Leishmania, endozoites (tachyzoites) of Toxoplasma and amastigotes of reticulotropic strains of T. cruzi, have developed a remarkable resistance to the microbicidal activity of the host cell. Conversely, amastigotes of myotropic strains of T. cruzi, which live in muscle cells, have not developed this resistance to cell-mediated killing by macrophages. Readily accessible protozoa, such as T. brucei trypomastigotes and Plasmodium merozoites in the bloodstream, while they lack the marked resistance developed by reticulotropic protozoa, have a partial protection since they are attacked by phagocytic cells only when specific antibody is present. Granulocyte-mediated killing can be largely attributed to neutrophils. Eosinophils appear to play only a minor role and compete ineffectually when neutrophils are also present. The only group of protozoal species which may be significantly controlled by eosinophils are the stercorarian species of Trypanosoma. In vitro experiments show that antibody-coated trypomastigotes of T. cruzi can be killed by eosinophils, although there is little evidence that this occurs in vivo. Interestingly, this is the only species that has been reported to be susceptible to the major basic protein of eosinophils, a toxic component of the lysosomal granules which is very active against helminths. Neutrophils are not very active against endozoites of Toxoplasma gondii, Trypanosoma, trypomastigotes of salivarian Trypanosoma, free merozoites of Plasmodium, and promastigotes and amastigotes of Leishmania.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Importance of oxidative metabolism in T cell cytotoxicity: a comparison of cloned T cells and spleen cells.

To distinguish between direct and indirect involvement of oxygen metabolites in CTL cytotoxicity a comparison was made of cloned CTLs and mixed cells from mouse spleen. Tumour cells could be protected from cloned CTLs and from spleen CTLs by the thiol protecting reducing agents DTT and DETC. Cytotoxic activity was inhibited by diversion of reducing power from NAD(P)H to artificial electron acceptors and by the inhibitor of NAD(P) linked enzymes cibacron blue. Although H2O2 formation could be detected during the lysis of P815 by spleen CTLs it did not prove to be a necessary requirement for cytolysis since it was not formed when glutaraldehyde-treated P815 cells were lysed. Of the scavengers of toxic oxygen metabolites tested only the hydroxyl radical scavenger sodium benzoate inhibited cytotoxicity.

Animals↗