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Biomedical subjects

G Kraal

Publications and source records attributed to G Kraal.

At least 19 recordsLinked to original sources

Identification of a soluble form of a ligand for the lymphocyte homing receptor.

Lymphocytes are engaged in constant trafficking from the blood into secondary lymphoid tissues, such as peripheral lymph nodes (PLN), mesenteric lymph nodes (MLN), and Peyer's patches (PP). The initial step in this process is the binding of lymphocytes to high endothelial venules (HEV), and in the case of trafficking of cells to the PLN, it is required that they bear the L-selectin surface receptor. Using a chimeric protein, combining the extracellular domains of L-selectin with a human immunoglobulin (Ig) G1 Fc region (L-selectin-IgG), we have probed the expression of ligands for this receptor on HEV and in cell lysates. Two sulfated glycoproteins of 50 and 90 kD have been identified in lysates from PLN and MLN, but not PP. Here we show that the 50-kD molecule is secreted in organ cultures in vitro and is present in the blood of normal animals. Indeed, normal serum inhibits lymphocyte binding to HEV by approximately 50% in an in vitro assay. This inhibitory activity can be removed by passage of the serum over an L-selectin-IgG column and has a molecular mass of approximately 50 kD. We speculate on the possible reasons for secretion of a homing receptor ligand.

Amino Acid Sequence

Sialoadhesin on macrophages: its identification as a lymphocyte adhesion molecule.

In this study we present evidence that the mouse and rat sialoadhesin (originally named sheep erythrocyte receptor) on macrophages can function as a lymphocyte adhesion molecule. Lymphocytes were shown to bind to the splenic marginal zone, and lymph node subcapsular sinus and medulla in a frozen section assay. Selective depletion experiments showed that binding was mediated by macrophages. Adhesion was blocked by preincubation of the sections with monoclonal antibodies against mouse or rat sialoadhesin. Binding was temperature dependent, divalent cation independent, and involved sialic acid residues on the lymphocyte, as it could be inhibited by prior neuraminidase treatment or addition of the ganglioside GD1a. Binding to sialoadhesin was confirmed using the purified receptor and was observed among T cells, T blasts, B cells, and B blasts. Isolated macrophages or dendritic cells showed little binding. Sialoadhesin provides the first example of a macrophage-restricted lymphocyte adhesion molecule.

Animals

Monoclonal antibody mediated targeting of enzymes. A comparative study using the mouse spleen as a model system.

The aim of this study was to target enzymes specifically to cells in the murine spleen. Monomeric and polymeric conjugates of the enzymes horseradish peroxidase or alkaline phosphatase and monoclonal antibodies against cell surface determinants were prepared. Highly specific in vivo targeting of enzymes to macrophages was obtained only when monomeric MAb-enzyme conjugates were used.

Alkaline Phosphatase

Selective inhibition of immune complex trapping by follicular dendritic cells with monoclonal antibodies against rat C3.

The role of complement component C3 in the trapping of immune complexes by follicular dendritic cells (FDC) was studied in the rat, by means of the C3-specific monoclonal antibody ED11. Immunocytochemistry revealed the presence of C3 on FDC, where it co-localized with trapped peroxidase anti-peroxidase complexes. Furthermore, C3 was detected on reticular cells occupying the T cell areas of peripheral lymphoid organs, which are not involved in the handling of immune complexes. The in vivo administration of anti-C3 abolished the trapping of immune complexes in splenic follicles, but was unable to release preexisting complexes from the FDC. Trapping of immune complexes was also prevented by treatment of rats with cobra venom factor (CoVF). While CoVF caused massive depletion of C3 from serum, ED11 treatment had no such effect. The effect of anti-C3 appeared at least in part to be due to an inhibition of complement activation by immune complexes. We also analyzed earlier stages of the trapping process, with respect to their C3 dependence. Upon systemic injection immune complexes are initially observed in the marginal zone. Administration of anti-C3 reduced this localization, indicating a role for C3 in the entry of immune complexes into the spleen. Our results confirm experiments in CoVF-treated animals and extend the evidence for a role of C3 in the follicular trapping process using anti-C3 in vivo. The mechanism of immune complex trapping and the role of complement therein is discussed.

Animals

The monoclonal antibody ER-BMDM1 recognizes a macrophage and dendritic cell differentiation antigen with aminopeptidase activity.

Here we describe the reactivity of monoclonal antibody (mAb) ER-BMDM1, directed against a 160-kDa cell membrane-associated antigen (Ag) with amino-peptidase activity. The aminopeptidase recognized by ER-BMDM1 is present on various mouse macrophage (M phi) and dendritic cell (DC) subpopulations as well as on microvillous epithelia. Analysis of ER-BMDM1 Ag expression in in vitro models of M phi maturation revealed that the Ag is expressed at increasing levels upon maturation of M phi. In vivo, high level expression of the ER-BMDM1 Ag occurs after the monocytic stage of maturation, since bone marrow cells and peripheral blood monocytes are essentially ER-BMDM1 negative. Analysis of isolated-resident and elicited M phi populations showed that ER-BMDM1 recognizes a specific subpopulation of mature M phi: only some resident peritoneal and alveolar M phi are ER-BMDM1 positive, whereas virtually all thioglycollate-elicited peritoneal exudate M phi bind the mAb. In lymphoid organs, a subpopulation of M phi is recognized as well as interdigitating cells (IDC) located in T cell areas. Phenotypic analysis of isolated DC--the in vitro equivalents of IDC--from spleen and lymph nodes confirmed that the majority of this important antigen-presenting cell population expresses the ER-BMDM1 aminopeptidase. The molecular characteristics of the ER-BMDM1 Ag suggest that it may represent the mouse homolog of human CD13.

Aminopeptidases

Determination of the origin and nature of brain macrophages and microglial cells in mouse central nervous system, using non-radioactive in situ hybridization and immunoperoxidase techniques.

The origin and nature of brain macrophages and microglial cells in the mouse central nervous system (CNS) were investigated. First, the expression and localization of determinants recognized by the different monoclonal antibodies (mAbs) MOMA-1, Mac-1-alpha, and F4/80 (raised against cells of the mononuclear phagocyte system) were immunohistochemically studied in the developing and adult mouse brain. In order to clarify the origin of brain macrophages and microglial cells, we used bacteriophage lambda transgenic mice as donors for bone marrow transplantations in recipient mice of different ages. During ontogeny, numerous MOMA-1-, Mac-1-alpha-, and F4/80-positive blood monocyte-derived brain macrophages (amoeboid microglia) infiltrated the CNS parenchyma. These brain macrophages gradually disappeared from the brain parenchyma at postnatal day 7 (P7). From P17 on, Mac-1-alpha- and F4/80-positive cells were detected within the brain parenchyma with the morphology of resting microglial cells. Transitional forms between brain macrophages and "resting" microglia were not observed in the developing brain. Combined non-radioactive in situ hybridization and immunohistochemistry revealed many MOMA-1-positive bone marrow-derived brain macrophages that were located in the leptomeninges, the ventricles, and occasionally the blood vessel walls. These results show that brain macrophages are of bone marrow origin. Many "resting" microglial cells were detected in the brain, mainly in the white matter. It appeared that about 10% of these cells displayed the transgenic signal. This result indicates that the majority of "resting" microglial cells are of local, presumably neuroectodermal, origin.

Animals

PrP protein is associated with follicular dendritic cells of spleens and lymph nodes in uninfected and scrapie-infected mice.

Abnormal forms of a host protein, PrP, accumulate in the central nervous system in scrapie-affected animals. Here, PrP protein was detected immunocytochemically in tissue sections of spleen, lymph node, Peyer's patches, thymus, and pancreas from uninfected mice and from mice infected with a range of mouse-passaged scrapie strains and bovine spongiform encephalopathy (BSE). In the spleen, lymph node and Peyer's patches, PrP-positive cells were identified as follicular dendritic cells (FDC) by their location, appearance, and immune complex trapping function, whereas in the thymus they appeared to be two types of stromal cells: interdigitating cells (IDC) and cortical epithelial cells. In pancreas, PrP-containing cells were confined to the islets of Langerhans. Although the distribution of PrP immunolabelling was the same in tissues from scrapie-affected and uninfected mice, there was evidence that PrP accumulated in abnormal forms in FDC of infected mice. If, as is likely, PrP is essential for agent replication, our results suggest that FDC are the site of scrapie and BSE replication in the spleen and lymph node.

Animals

Cells in the marginal zone of the spleen.

The marginal zone of the spleen forms an intriguing area in which a variety of cell types are combined. Several of these cell types seem to have a fixed position in the marginal zone, such as the marginal zone macrophages, the marginal metallophilic macrophages at the inner border, and, to a lesser extent, the marginal zone B cells. For other cell types--T lymphocytes, small B cells, and dendritic cells--the marginal zone is only a temporary residence. It is this combination of relatively sessile cell populations and the continuous influx and passing of bloodborne immunocompetent cells that turn the marginal zone into a dynamic area, particularly apt for antigen processing and recognition. In no other lymphoid organ can such a unique combination of cells and functions be found. The opening of the arterial blood stream in the marginal sinuses results in a reduction of the velocity of the blood stream, and antigens are initially screened in the marginal zone. To this, extremely potent phagocytic cells, the marginal zone macrophages, are present which can take up and phagocytize large foreign particles, such as bacteria and effete red blood cells. Further filtration of the blood takes place in the filtration beds of the red pulp. The marginal zone macrophages express membrane receptors for bacterial polysaccharides which lead to efficient phagocytosis, probably even in the absence of prior opsonization. Antigenic fragments produced this way can be taken up by dendritic cells that enter the spleen by the blood as part of a mobile surveillance immune system. Dendritic cells present antigen to T cells in the outer area of the T cell-dependent PALS, leading to clustering and enrichment of antigen-specific T cells. Antigens in the marginal zone can also directly associate with memory B cells thought to reside here for longer times, having intimate contact with the marginal zone macrophages. B memory cells then migrate into the PALS and present antigen to T cells. The marginal zone therefore functions not only as an area of initial filtration and phagocytosis of antigens from the blood, but also as a site of lymphocyte emigration. Some of the incoming T and B lymphocytes in the recirculating pool enter the white pulp from the marginal zone. The underlying force and selective molecular mechanisms that guide this migration are unknown. Both B and T lymphocytes recirculate through the outer PALS area on their way to the follicles and the inner PALS, respectively.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

The influence of dietary fat on the interaction of lymphocytes with high endothelial venules.

The specific adherence of lymphocytes to high endothelial venules (HEV) represents the first step in the lymphocyte emigration from blood into most lymphoid tissues. The interaction of lymphocytes with HEV exhibits a remarkable organ specificity, which appears to be mediated by complementary receptors on both recirculating lymphocytes (homing receptors) and tissue-specific HEV (vascular addressins). The expression of homing receptors varies and depends on factors such as lymphocyte subtype, stage of activation and maturation. As these receptors are glycoproteins, which are anchored in the cell membrane, it can be envisaged that their position and function are determined by the overall composition of the cell membrane itself. In this study we investigated the significance of dietary fat concentration and saturation for the interaction between lymphocytes and HEV. In addition to these functional studies, the expression of homing receptors in combination with T and B cell markers were analyzed. Using immunohistochemistry the effect on the presence and characteristics of lymphocytes and HEV in situ was studied. Changes in the dietary fatty acid composition resulted in an altered ability of T and B cells to adhere to HEV, without affecting their binding preference. The changed adhesion patterns seemed to be associated with alterations in the expression of adhesion molecules, that are essential for the lymphocyte migration. The latter observation might in turn be explained by the observed modifications in the fatty acid composition of the lymphocytes. These results suggest a role for the fatty acid composition of the nutrition in the process of lymphocyte recirculation.

Animals

Persistent immune tolerance to nickel and chromium by oral administration prior to cutaneous sensitization.

Oral administration of allergens, foreign proteins, or cell-bound antigens may induce systemic suppression of subsequent humoral and cell-mediated immune responses ("oral tolerance"). The induction of specific immune tolerance provides a potential strategy for treatment of T-cell-dependent immune diseases. Therefore, in depth studies into preconditions for optimal and persistent tolerance induction are mandatory. Here we report on such studies in a guinea pig model using the non-cross-reactive contact allergens nickel and chromium. Feeding per os of nickel sulfate or potassium dichromate did not trigger systemic TDTH-effector functions. Instead, short feeding periods led to a dose-dependent, and metal-specific, suppression of subsequently induced allergic contact hypersensitivity. Administration of the allergens onto the oral mucosa was most effective in the induction of immune tolerance. When first sensitizing attempts were delayed until 1 year after feeding, the degree of unresponsiveness was reduced. In contrast, with cutaneous contacts starting shortly after the feeding period, tolerance was fully stable and undiminished for at least 2 years. Thus, in orally treated guinea pigs cutaneous contacts provide boosting tolerogenic signals, supporting the view that oral tolerance does not result from clonal deletion but from active antigen-specific immunosuppression. Indeed, unresponsiveness to cutaneous immunization could be transferred by lymphoid cells from fed guinea pigs in a metal-specific way.

Administration, Oral

Epidermal compromise in American cutaneous leishmaniasis.

In American cutaneous leishmaniasis (ACL), Leishmania parasites enter the epidermis of the host via the bite of infected sandflies. Immune responses against the parasite vary from "effective" in localized (LCL) to a state of "selective anergy" in diffuse (DCL) cutaneous leishmaniasis, whereas the intermediate muco-cutaneous form (MCL) is characterized by an exacerbated cell-mediated immunity. We have shown that in LCL epidermis, Langerhans cells (LC) are increased, HLA-DR is universally expressed and intercellular adhesion molecule-1 (ICAM-1) immunoreactivity is distributed in patches. In addition, mRNA for IL-1 beta, IL-8, TNF alpha, TNF beta, and INF gamma may be detected in epidermal sheets by reverse transcriptase followed by polymerase chain reaction (RT-PCR). In contrast, DCL epidermis shows fewer LC than LCL epidermis, and expression of ICAM-1, HLA-DR, and IL-1 beta mRNA cannot be detected. MCL lesions show a mucosal epithelium lacking LC, but ICAM-1 is universally expressed. The clinical manifestations of ACL can be reproduced experimentally in different strains of inbred mice. In healthy mice, we have shown a positive correlation between LC and dendritic epidermal T cells (DETC) numbers. This correlation was not, however, observed in L. mexicana-infected mice, suggesting that infection alters the balance between the two cell types. In addition, agents that modulate LC and DETC cell densities change the development of experimental leishmaniasis. These results suggest that the epidermis is essential in determining the type of immune response that is developed against the Leishmania parasites.

Animals

Regulation of IgE production in pre-sensitized animals: in vivo elimination of alveolar macrophages preferentially increases IgE responses to inhaled allergen.

Intratracheal inoculation of dichloromethylene diphosphonate encapsulated in liposomes leads to the rapid accumulation of this drug in alveolar macrophage (AM) phagolysosomes, and the death of the majority of these cells over the ensuing 24-48 hr. The technique is highly selective for phagocytes and has no detectable side-effects on other cells in the lung. The present experiments demonstrate that following AM depletion, pre-sensitized animals respond to aerosol challenge via secondary serum IgE (but not IgG) responses, and the accumulation of large numbers of allergen-specific and non-specific antibody forming cells in respiratory tract regional lymph nodes and in lung and airway tissues; the latter comprise both IgE and IgG plasma cells, which were detected in the approximate ratio of 2.5:1. Moreover, aerosol challenged AM-depleted animals develop large mononuclear cell infiltrates in the lung and airways, which includes a substantial CD4+ T-cell component. These results suggest a major role for AM in regulating the magnitude of secondary IgE responses to inhaled allergen.

Administration, Inhalation

Development of a concomitant nickel and chromium sensitization model in the guinea pig.

Although nickel allergy is the most frequent contact hypersensitivity in man, reports on successful nickel sensitization in experimental animals are scarce. Chromium hypersensitivity, on the other hand, is readily induced in guinea pigs. In this study we set out to obtain reproducible nickel sensitization in guinea pigs, in order to establish an animal model for immunospecific tolerance and desensitization studies in which two non-cross-reacting metal allergens, chromium and nickel, could be studied simultaneously. Strong and reproducible sensitization to nickel was achieved by injecting low amounts of Freund's complete adjuvant and nickel sulfate in a split-adjuvant procedure. Strong erythematous reactions were observed as early as 14 days after sensitization and could be elicited both by intradermal and open epicutaneous challenges. Optimal evaluation was with nickel sulfate administered epicutaneously in 40% dimethyl sulfoxide to enhance skin penetration. Hypersensitivity could be transferred with lymphocytes and not with serum. Sensitization procedures for nickel and chromium then could successfully be combined in a double sensitization procedure. With four different guinea pig strains no genetic restriction was observed for the induction of nickel or chromium sensitivity. However, for both metals a clear sex and age dependence was observed: female guinea pigs reached a higher degree of sensitization than males, whereas sensitization in young animals was relatively weak.

Administration, Cutaneous

Alveolar macrophages down-regulate local pulmonary immune responses against intratracheally administered T-cell-dependent, but not T-cell-independent antigens.

The role of alveolar macrophages in the pulmonary immune response against various antigens was studied after elimination of alveolar macrophages by intratracheal administration of liposome-encapsulated dichloromethylene diphosphanate. When the responses against T-cell-independent type 1 and type 2 antigens were compared, it was found that elimination of alveolar macrophages had no effect on T-cell-independent antigens. Intratracheal antigen administration resulted in low lung associated, local responses, although some response was observed in the spleen. In contrast, elimination of alveolar macrophages resulted in an increase in local pulmonary immune response against T-cell-dependent antigens. We conclude from these experiments that alveolar macrophages play an important role in controlling the local pulmonary immune response against T-cell-dependent antigens by down-regulation of local T-cell populations. The alveolar macrophages do not down-regulate the response against intratracheally administered T-cell-independent antigens, although they are important in the protection against inflammatory damage caused by bacterial endotoxins.

Animals

Regulation of immune response to inhaled antigen by alveolar macrophages: differential effects of in vivo alveolar macrophage elimination on the induction of tolerance vs. immunity.

A single intratracheal instillation of liposomes containing dichloro methylene diphosphonate into rats eliminated greater than 80% of the alveolar macrophage (AM phi) population, and the population was not significantly renewed during the ensuing week. AM phi depletion markedly increased local antibody production in the lung wall in pre-primed animals exposed to antigen aerosols. However, AM phi depletion did not affect the normal development of protective tolerance (particularly in the IgE antibody class) to inhaled antigen in immunologically naive rats. These results are discussed in relation to regional control of immune responses in the upper vs. the lower respiratory tract.

Aerosols

Is early repopulation of macrophage-depleted lymph node independent of blood monocyte immigration?

Popliteal lymph nodes (LN) of mice were depleted of their macrophage (M phi) populations in the subcapsular sinus and medulla by subcutaneous injection of dichloromethylene diphosphonate (Cl2MDP)-containing liposomes into the footpads. Complete restoration of both M phi populations could be observed as late as 5 months after liposome administration. This relatively long repopulation time could be due to a depot of liposomes, directly killing all M phi precursors after extravasation into the interstitial tissue of the footpad. On the other hand, local interstitial precursors with very low turnover rates may have been depleted in the interstitial tissue of the hind leg. Therefore, two different types of experiments were performed; one in which M phi-depleted LN were replaced by control LN at various time points after liposome treatment, and another whereby M phi-depleted LN were transplanted into control animals. When liposome-treated, M phi-depleted LN were transplanted into control animals, a complete restoration of both populations in the subcapsular sinus and medulla could be observed within 5 weeks. Control LN transplanted into a Cl2MDP-liposome-treated leg showed a rapid disappearance of M phi from the subcapsular sinus and medulla and these cell populations remained absent for at least 7-8 weeks after liposome treatment, when the first cells started to reappear. Complete repopulation of these areas by M phi took as long as 15 weeks. Using labeled liposomes the presence of a continuous liposome depot was found to be very unlikely. These results suggest that the population of precursor cells that will give rise to M phi in the subcapsular sinus and medulla of a LN is probably contained within the interstitial tissue and is almost independent of precursor supply from the blood compartment.

Animals

Cerebral amyloid plaques in Alzheimer's disease but not in scrapie-affected mice are closely associated with a local inflammatory process.

Complement proteins of the classical pathway can be immunohistochemically identified in cerebral amyloid plaques in Alzheimer's disease. Microglial cells in and around amyloid plaques express class II major histocompatibility (MHC) antigens and complement receptors CR3 and CR4. Negative immunostaining for immunoglobulins and for T-cell subsets in the brain parenchyma demonstrates a lack of evidence for the involvement of specific immune responses (such as an immune complex-mediated complement activation or a cell-mediated immune response) in cerebral amyloid deposits in Alzheimer's disease. Cerebral amyloid plaques in scrapie-affected mice (slow-virus induced encephalopathy) do not contain complement factors C1q and C3c and are not clustered with microglial cells expressing MHC class II molecules or complement receptor CR3. The data presented suggest the induction of a reactive inflammatory process by beta/A4 amyloid in the human brain, but not by scrapie-induced PrP amyloid in mice. Our findings do not support the hypothesis that the immune system is involved in the generation of amyloid plaques in Alzheimer's disease.

Aged