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I Huitinga

Publications and source records attributed to I Huitinga.

34 records · Page 2Linked to original sources

A novel bone marrow frozen section assay for studying hematopoietic interactions in situ: the role of stromal bone marrow macrophages in erythroblast binding.

Bone marrow macrophages are found in intimate contact with erythroblasts. Exact mechanisms and functions of this interaction are unclear. New insights into erythroblast binding were obtained using a newly developed bone marrow frozen section assay. This modified Woodruff and Stamper assay has some important advantages compared to other adhesion assays. Erythroblasts specifically adhered to bone marrow macrophages forming clusters, as appear in vivo. Selective depletion of bone marrow macrophages by intravenous injection of dichloromethyl-enediphosphonate resulted in a release of immature erythroid cells to the peripheral blood. Furthermore no erythroblasts adhered to bone marrow sections without macrophages. Evaluating the binding of erythroblasts to bone marrow macrophages we found that this binding is temperature and cation dependent. The receptor for erythroblasts present on macrophages recognizes a sialyated protein as ligand on erythroblasts, since neuraminidase treatment of erythroblasts resulted in a decrease in binding. A possible candidate for the erythroblast receptor on macrophages is the ED2 antigen. ED2 is a differentiation antigen present on resident macrophages that has some biochemical features characteristic of an adhesion molecule. Erythroblast binding to bone marrow was inhibited using a monoclonal antibody directed against ED2.

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Prevention of experimental allergic encephalomyelitis in rats by targeting autoantigen to B cells: evidence that the protective mechanism depends on changes in the cytokine response and migratory properties of the autoantigen-specific T cells.

Previous experiments from this laboratory have shown that Lewis rats were protected from experimental allergic encephalomyelitis (EAE) induced by the injection of myelin basic protein (MBP) in Freund's complete adjuvant if they were treated with the encephalitogenic peptide of MBP covalently linked to mouse anti-rat immunoglobulin (Ig) D. It was suggested that this protection developed because the antibody-peptide conjugate targeted the peptide to B cells and that this mode of presentation induced a Th2-like T cell response that controlled the concomitant encephalitogenic Th1 reaction to the autoantigen. The current experiments were carried out to test this hypothesis and to examine the alternative explanation for the protective effect of the conjugate pretreatment, namely that it induced a state of nonresponsiveness in the autoantigenspecific T cells. It was shown that EAE induction was suppressed in Lewis rats when the antibody-peptide conjugate was injected intravenously 14 and 7 d before immunization with MBP in adjuvant, but that anti-MBP antibody titers were at least as high in these animals as in controls that were not pretreated with the conjugate before immunization. Lymph node cells from these pretreated animals, while proliferating in vitro to MBP as vigorously as those from controls, produced less interferon gamma and were very inferior in their ability to transfer disease after this in vitro activation. In contrast, these same lymph node cells from protected rats generated markedly increased levels of messenger RNA for interleukin (IL)-4 and IL-13. When these in vitro experiments were repeated using the encephalitogenic peptide rather than MBP as the stimulus, the proliferative response of lymph node cells from pretreated donors was less than that from controls but was still readily detectable in the majority of experiments. Furthermore, the cytokine expression induced by the peptide was similar to that elicited by whole MBP. While these results support the original hypothesis that the anti-IgD-peptide conjugate pretreatment protected rats from EAE by inducing a Th2-type cytokine response, a totally unexpected finding was that this pretreatment greatly reduced the level of leukocyte infiltration into the central nervous system. This result provides a direct explanation for the protective effect of the pretreatment, but it raises questions regarding migratory and homing patterns of leukocytes activated by different immunological stimuli.

Amino Acid Sequence↗

The role of macrophages, perivascular cells, and microglial cells in the pathogenesis of experimental autoimmune encephalomyelitis.

Clinical signs of experimental autoimmune encephalomyelitis (EAE) in rats can be suppressed by treatment with liposomes containing dichloromethylene diphosphonate (Cl2MDP liposomes). Here we investigated whether besides the blood-borne macrophages also ED2+ perivascular cells and microglia are affected by this treatment. For this purpose we examined the central nervous system of bone marrow chimeras in which EAE was induced with encephalitogenic T cells. Quantification of cell numbers of various cell types in inflammatory lesions in the spinal cord showed that after treatment with Cl2MDP liposomes more than 95% of the bone marrow derived (I1-69+) macrophages were eliminated. In addition the number of ED2+ perivascular cells were seen to be decreased by 68% as compared to ED2+ cells in control liposome treated animals. However the number of these perivascular cells in Cl2MDP liposome treated animals did not differ from the number of perivascular cells in naive animals, indicating that only newly recruited, inflammation associated, ED2+ macrophages were eliminated. Moreover, detection of degenerating nuclei by in situ nick translation (ISNT) in combination with staining for ED1 or ED2 showed that in the perivascular space no degenerating cells were present. Cl2MDP liposome treatment furthermore decreased the numbers of T cells infiltrating the parenchyma by more than 50%. Instead T cells were found in large numbers in the perivascular space. Microglia did not seem to be eliminated by Cl2MDP liposome treatment as shown by the absence of ED1+/ISNT+ cells in the CNS parenchyma. However the number of ED1+ (I1-69-) microglial cells decreased by more than 80%, indicating that the activation of this cell type was impaired. It is concluded that bone marrow derived macrophages play an important role in the pathogenesis of EAE via interactions with lymphocytes and the activation of resident microglia.

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Reactive oxygen species are involved in the pathogenesis of experimental allergic encephalomyelitis in Lewis rats.

During experimental allergic encephalomyelitis (EAE), both blood-borne macrophages as well as activated, resident microglial cells are considered to be involved in inflammatory reactions in the central nervous system (CNS), resulting in the neurological deficits common to EAE. Both cell types can produce multiple mediators of tissue damage, among which are the reactive oxygen species (ROS). In this study we show that macrophages and microglial cells, isolated from the CNS of Lewis rats with clinical signs of EAE, exhibited significantly elevated spontaneous and phorbol myristate acetate (PMA)-inducible levels of ROS compared to similar cells isolated from healthy controls, sham (complete Freund's adjuvant, CFA)-immunized rats as well as rats sacrificed before the manifestation of clinical signs of EAE. However, during clinical EAE, peripheral blood mononuclear cells (PBMC) did not show increased spontaneous nor PMA-inducible ROS production compared to controls. In vivo treatment of EAE with catalase, which scavenges the ROS H2O2, markedly suppressed the severity of the disease as compared to sham (albumin)-treated controls. In contrast, superoxide dismutase had no effect on clinical signs. Our studies point at a putative functional role for ROS, and in particular H2O2, in the pathogenesis of EAE.

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Macrophages in T cell line-mediated, demyelinating, and chronic relapsing experimental autoimmune encephalomyelitis in Lewis rats.

About 50% of the mononuclear cells in the perivascular lesions in the central nervous system (CNS) of rats suffering from experimental allergic encephalomyelitis (EAE) are blood-borne macrophages. In this study we investigated the role of these macrophages in different variants of EAE, using a liposome-mediated macrophage depletion technique. Intravenously injected liposomes containing dichloromethylene diphosphonate (Cl2MDP) are ingested by macrophages and cause temporary and selective elimination of these cells. Macrophage depletion during EAE induced by a T cell line specific for myelin basic protein (MBP; T cell-EAE) suppresses development of neurological signs of EAE. T cell-EAE with pronounced demyelination as induced by an additionally injected MoAb directed against myelin oligodendrocyte glycoprotein (MOG) was also significantly ameliorated after macrophage depletion. During chronic relapsing EAE (CR-EAE) the occurrence of relapses was prevented or suppressed, provided that the liposomes were injected before the initiation of a putative relapse. A chronic progressive course of CR-EAE was not modified by Cl2MDP containing liposome treatment. Histologic examination of the CNS of liposome-treated animals confirmed decreased infiltration of macrophages into the parenchyma in the rats with T cell and AD-EAE, whereas T cells were still present.

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Role of beta 2 integrins in the recruitment of phagocytic cells in joint inflammation in the rat.

Adhesion molecules of the beta 2 family of integrins play an important role in adhesion and migration of leukocytes to inflammatory sites. Several in vivo studies indicate that not only monoclonal antibodies (mAbs) directed against the common beta subunit (CD18) but also to the individual alpha subunits (CD11a, CD11b) can effectively inhibit different types of inflammation. In this study we report that in the adjuvant arthritis (AA) alpha CD11a, alpha CD11b, or even alpha CD18 treatment could not prevent disease development. Moreover, we examined the same mAbs in an acute nonspecific inflammation at different sites in the rat. We found that pretreatment with alpha CD11a or alpha CD11b could significantly block a zymosan peritonitis, but appeared to have no effect on a locally induced joint or dermal inflammation. Interestingly, alpha CD18 treatment, which blocks the entire CD11/CD18 complex, was able to inhibit the influx of inflammatory cells in a peritonitis as well as in a joint and dermal inflammation. These data not only indicate that the type of joint inflammation determines which adhesion molecules play a role in transendothelial migration, but also that involvement of the beta 2 integrins is highly site specific.

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Therapeutic effect of the D2-dopamine agonist bromocriptine on acute and relapsing experimental allergic encephalomyelitis.

We examined the effect of bromocriptine (BCR) treatment on the duration and severity of neurological symptoms of acute experimental allergic encephalomyelitis (EAE), an animal model for demyelinating diseases, particularly multiple sclerosis. To mimic the clinical situation, BCR treatment was started after the onset of clinical signs. Furthermore, the effect of BCR treatment on the course of a chronic relapsing form of EAE was studied. BCR was injected at daily intervals in a dose that resulted in sustained suppression of plasma concentrations of prolactin, a pituitary hormone that plays a role in immunoregulation. In acute EAE, BCR therapy reduced both severity and duration of the clinical signs. In chronic relapsing EAE, BCR treatment did not affect the severity and duration of the first attack, but reduced the duration of the subsequent, second attack. Thus, BCR treatment improves the clinical course in animals with ongoing disease. These findings may have implications for the search for new therapeutic approaches in multiple sclerosis.

Adrenocorticotropic Hormone↗

Treatment with anti-CR3 antibodies ED7 and ED8 suppresses experimental allergic encephalomyelitis in Lewis rats.

Experimental allergic encephalomyelitis (EAE) is an inflammatory disease of the central nervous system (CNS). Among the leukocytes which infiltrate the CNS during EAE, numerous macrophages are present. These macrophages are thought to play a crucial role in the generation of tissue damage and attendant neurological deficits. The mechanism by which the macrophages migrate across the blood-brain barrier is not yet clear. Membrane proteins involved in macrophage adherence to the endothelium include the CD11b/CD18 integrin, also known as the type 3 complement receptor (CR3). In this study we show that two monoclonal antibodies (mAb) ED7 and ED8 are directed against rat CR3. In addition, these mAb reduce recruitment of myelomonocytic cells towards thioglycollate induced peritonitis by 15-33%. This indicates that both ED7 and ED8 interfere with an epitope on CR3, which is involved in recruitment of phagocytes towards inflammatory lesions. Intravenous injection of ED7 and ED8 suppressed clinical signs of EAE. MRC OX-42, which also recognizes CR3, did not reduce thioglycollate-induced phagocyte recruitment into the peritoneum, and had no effect on EAE. These findings suggest that CR3 plays a role in the recruitment of macrophages towards the inflamed CNS of EAE animals, and confirm the role of macrophages in the generation of clinical signs of EAE. Involvement of CR3 in other phagocyte immune functions during EAE is discussed.

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Selective elimination of macrophages by dichlormethylene diphosphonate-containing liposomes suppresses experimental autoimmune neuritis.

The injection of liposome-encapsulated dichlormethylene diphosphonate (Cl2MDP) constitutes an effective method to selectively eliminate phagocytic cells from spleen, liver and the circulation. We evaluated the effect of Cl2MDP-liposomes on the course of actively induced and adoptively transferred experimental autoimmune neuritis (EAN), both animal models of the human Guillain-Barré syndrome. Injection of Cl2MDP-liposomes 11 and 13 days postimmunization (p.i.) of Lewis rats with bovine peripheral nerve myelin efficiently prevented clinical signs of EAN up to day 15 p.i., when all control animals were affected. Thereafter, EAN gradually also developed in Cl2MDP-liposome-treated rats, but until day 19 disease was significantly milder than in control rats injected with buffer-filled liposomes. Adoptive transfer EAN (AT-EAN) induced by injection of activated P2-specific T cells could be suppressed even more markedly by application of Cl2MDP-liposomes 1, 3, and 6 days after cell transfer. Efficient suppression of AT-EAN by Cl2MDP-liposomes rules out the possibility that EAN is prevented due to interference with the induction phase of this experimental disease and confirms that macrophages are important effector cells during EAN. Selective suppression of phagocytic cell function by drug-containing liposomes may hold promise as a novel treatment of demyelinating autoimmune diseases of the nervous system.

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The role of macrophages in demyelination.

Experimental allergic encephalomyelitis (EAE) is an autoimmune inflammatory disease of the central nervous system (CNS). In particular in the CsA-induced chronic relapsing form (CREAE), pronounced demyelination occurs, in temporal association with relapses. It is still a matter of discussion which cell type ultimately is responsible for the actual process of demyelination. Macrophages, cytotoxic T lymphocytes and also astrocytes are possible candidates. In this short overview, the role of macrophages in the pathogenesis of EAE is discussed. It is shown that in particular, newly recruited macrophages play a crucial role in the generation of clinical signs. Possible mechanisms by which macrophages are involved in the pathogenesis of demyelinating diseases are presented.

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Liposome mediated affection of monocytes.

Dichloromethylene diphosphonate (Cl2MDP) enclosed in liposomes, when injected intravenously, selectively eliminates all phagocytizing macrophages that are in direct contact with the blood circulation of the spleen and the liver. We examined whether Cl2MDP containing liposomes affect, in addition, rat monocytes and bone marrow macrophage precursors (BMMP's). In addition to Phosphatidylcholine-Cholesterol liposomes (PC liposomes), we also used mannosylated PC liposomes (PCMAN liposomes), which are reported to bind more efficiently to macrophages. Monocytes appeared to be affected 24 h after injections of 2 ml of Cl2MDP containing PC as well as PCMAN liposomes. In addition, almost no macrophages could be detected in one week cultures of blood leukocytes isolated from these animals; cultures from control animals contained +/- 50% macrophages. Bone marrow macrophage precursors did not appear to be affected.

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Expression of the ED3 antigen on rat macrophages in relation to experimental autoimmune diseases.

Susceptibility to experimental autoimmune diseases (EAD) is rat strain dependent. Susceptible animals are reported to have a defective glucocorticoid response. Although many EAD are regarded as preferentially T cell-mediated, macrophages (M phi) play an important role in several different stages of these diseases. In this study we have investigated the possible effect of the disturbed hypothalamic-pituitary (HPA) axis on M phi phenotype. Therefore we studied M phi differentiation in several different rat strains, especially with regard to the M phi specific differentiation antigen as recognized by monoclonal antibody (mAb) ED3. This mAb is, in normal healthy rats, reactive with very restricted M phi subpopulations present in the lymphoid organs only. However, in autoimmune diseased tissues many of the infiltrated M phi are also ED3-positive. It appeared that M phi, in vitro derived from monocytes out of susceptible rat strains, showed a high ED3 expression in contrast to monocyte-derived M phi out of resistant rat strains. This difference in ED3 expression appeared to be T cell-mediated. Our results are suggestive for the fact that the impaired HPA-axis in EAD susceptible rat strains affects M phi differentiation. The relevance of the observed differences with respect to disease induction, maintenance, or suppression is discussed and obviously needs further investigation.

Animals↗

Macrophages in experimental autoimmune diseases in the rat: a review.

In the pathogenesis of most experimental autoimmune diseases T lymphocytes play a crucial role in the initiation, whereas macrophages are essential in the effector phase. This review deals with several methods to elucidate the exact role macrophages play in different stages of autoimmune models in the rat. By using monoclonal antibodies an inventory has been made on the different macrophage subsets that are present in the infiltrates of the affected tissues. That macrophages play a decisive role in provoking the clinical signs has been shown by several macrophage elimination studies. The severe tissue damage caused by macrophages is brought about by the release of inflammatory mediators. Especially interference with the production or action of these products could provide new therapeutical means.

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Suppression of experimental allergic encephalomyelitis in Lewis rats after elimination of macrophages.

Almost 50% of the cells infiltrating the central nervous system (CNS) of animals with experimental allergic encephalomyelitis (EAE) are macrophages (M psi). To investigate the role of the M psi in the pathogenesis of EAE, we eliminated M psi by means of mannosylated liposomes containing dichloromethylene diphosphonate (Cl2MDP). Cl2MDP-containing liposomes injected intravenously eliminate M psi in spleen and liver. Incorporation of mannose into the lipid layers enables the liposomes to pass the blood-brain barrier (BBB). Injections of Cl2MDP-containing mannose liposomes intravenously shortly before the appearance of clinical signs, markedly suppressed the expression of clinical signs of EAE. This suppression was accompanied by a marked reduction of infiltrated M psi in the CNS. Cl2MDP-containing liposomes without mannose incorporated had no effect. Cl2MDP-containing mannosylated liposomes had no effect on plasma corticosterone levels compared with injections of saline; thus, the suppression of expression of EAE was not corticosterone mediated. These results show that the M psi within the CNS play an important role in the pathogenesis of EAE.

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Substance P- and enkephalin-containing projections from the interpeduncular nucleus to the dorsal tegmental region in the rat.

A combination of fluorescent retrograde tracing and immunohistochemical staining for substance P (SP) and Leu-enkephalin (Enk) was used to study the projections from the interpeduncular nucleus (IP) to the dorsal tegmental region, i.e. the dorsal tegmental nucleus of Gudden, the dorsolateral tegmental nucleus and the caudal extension of the dorsal raphe nucleus. After injections of 'Granular Blue' (GB) in the dorsal tegmental region, followed one or two days later by a colchicine injection near the IP, and subsequently two days later by the immunohistochemical procedure, populations of neurons double labeled for Enk and GB, or SP and GB, cells that only showed GB labeling, and a number of cells stained only for one of the peptides could be identified in the rostral subnucleus of the IP. This study demonstrates the existence of both Enk- and SP-containing projections from the IP to the dorsal tegmental region.

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