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C D Dijkstra

Publications and source records attributed to C D Dijkstra.

At least 109 records · Page 6Linked to original sources

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.

Animals↗

Cellular binding mechanism on rat macrophages for sialylated glycoconjugates, inhibited by the monoclonal antibody ED3.

The mAb ED3 recognizes a subpopulation of rat macrophages, with a highly restricted tissue distribution. The tissue distribution as well as the in vitro expression of the ED3 antigen and of the sheep erythrocyte receptor (SER), binding unopsonized erythrocytes in the mouse, are very similar. This receptor has almost the same binding characteristics, although a different tissue distribution, as the sialic acid binding receptor (SAR), binding ganglioside-coated erythrocytes in the rat. In this study we summarize the available literature concerning these sialic acid binding receptors (SER and SAR). Furthermore we have identified ED3 as SER by inhibition studies of erythrocyte binding with mAb ED3, as well as by the newly developed equivalents ED16 and ED17. We also show that light trypsin treatment of alveolar macrophages, expressing SAR, results in SER-like activity. This obtained SER-like activity could not be blocked by the mAb ED3, indicating that SER and SAR are different receptors. It appears that rat macrophages can express two receptors for sialylated glycoconjugates, a high-affinity receptor SER, recognized by mAb ED3, and a low-affinity receptor SAR, not recognized by mAb ED3.

Animals↗

Interferon-gamma induced IA antigen expression on cultured neuroglial cells and brain macrophages from rat spinal cord and cerebrum.

The inducibility of major histocompatibility complex class II (Ia) antigens on glial cells of the brain suggests that neuroglia have immunoregulatory functions within the central nervous system (CNS), i.e., recognition and presentation of antigens. The aim of the present study was to investigate rat recombinant-interferon-gamma (r-IFN-gamma) induced Ia antigen expression in rat cerebral cultures containing type-1 astrocytes and macrophages, and in rat spinal cord cultures enriched in type-2 astrocytes or oligodendrocytes. We compared induction of Ia antigen expression in glial cell cultures derived from Lewis rats, which are very susceptible to experimental allergic encephalomyelitis (EAE), with those from Wistar rats, which are but modestly EAE susceptible. After 5 days in culture we found in Wistar rat type-1 astrocyte-enriched cultures that Ia antigens were expressed by 19% of the astrocytes, whereas we found that in Lewis rat type-1 astrocyte cultures a considerably higher number of astrocytes expressed Ia antigens (53%). However, no significant difference were found in Ia antigen expression between type-2 astrocytes derived from Wistar rat spinal cord (49%) and Lewis rat type-2 astrocytes (56%). In contrast, in oligodendrocyte-enriched cell cultures derived from either Lewis or Wistar rats no Ia antigen expression was found. Interestingly, we found in type-1 astrocyte-enriched cerebral cultures a large number (approx. 46% of the cells) of brain macrophages (amoeboid microglia), all expressing Ia antigens after treatment with r-IFN-gamma.

Animals↗

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.

Animals↗

Depletion and repopulation of macrophages in spleen and liver of rat after intravenous treatment with liposome-encapsulated dichloromethylene diphosphonate.

Rats received a single intravenous injection with liposome-encapsulated dichloromethylene diphosphonate (C12MDP). This treatment resulted in the elimination of macrophages in spleen and liver within 2 days. Macrophages ingest the liposomes and are destroyed by the drug, which is released from the liposomes after disruption of the phospholipid bilayers under the influence of lysosomal phospholipases. Repopulation of macrophages in spleen and liver was studied at different time intervals after treatment. Macrophages in the liver (Kupffer cells) and red pulp macrophages in the spleen were the first cells to reappear, followed by marginal metallophilic macrophages and marginal-zone macrophages in the spleen. Different markers of the same cell did not reappear simultaneously. On the other hand, the same marker (recognized by the monoclonal antibody ED2) reappeared much more rapidly in the liver than in the spleen. The present results in the rat were different from those earlier obtained in the mouse. Red pulp macrophages were the first cells and marginal zone macrophages were the last cells to repopulate the spleen in both rodents after treatment with C12MDP liposomes. However, there was much more overlap in the repopulation kinetics of splenic macrophage subpopulations in the rat, when compared with the mouse.

Acid Phosphatase↗

Glycosyl receptors in macrophage subpopulations of rat spleen and lymph node. A comparative study using neoglycoproteins and monoclonal antibodies ED1, ED2 and ED3.

We have developed an immunohistochemical method for the in vivo and in vitro detection of glycosyl receptors in rat spleen and lymph nodes by using neoglycoproteins. The receptor in both organs recognized mannose coupled to bovine serum albumin (mannose-BSA), fucose-BSA, N-acetylglucosamine-BSA and to a lesser extent glucose-BSA, but not galactose-BSA or N-acetyl-galactosamine-BSA. In vitro neoglycoprotein-receptor binding was Ca2+ dependent and could be inhibited by mannan but not by mannose. Simultaneous staining with the monoclonal antibodies ED1, ED2 or ED3 revealed that only ED1- and ED3-positive macrophages were involved in the binding of neoglycoproteins. In the spleen, the marginal-zone macrophages and a subpopulation of the marginal metallophils possess glycosyl-binding receptors. In the lymph nodes, the medullary sinus macrophages and a subpopulation of the outer-cortex macrophages are able to bind neoglycoproteins.

Animals↗

Characterization and expression of the antigen present on resident rat macrophages recognized by monoclonal antibody ED2.

Because of the absence of a specific marker for labeling resident macrophages in the rat, there is almost no information available regarding the properties of individual resident macrophages in different organs. The recently described and in our laboratory developed mAb ED2, has been shown to exclusively recognize resident macrophages. The present study examines expression, function and structure of the ED2 antigen to obtain more information about the marker and therefore, more information about resident macrophages. In earlier studies, the expression of ED2 could not be induced by a range of macrophage stimulating factors under non-adherent culture conditions. We show a highly inducible expression of the ED2 antigen under adhering, non proliferating conditions as well as in long-term bone marrow cultures. ED2 appears to recognize a surface protein on resident macrophages consisting of three protein chains of 175, 160, and 95 kDa.

Animals↗

Suppression of experimental allergic encephalomyelitis by intraventricular administration of interferon-gamma in Lewis rats.

Experimental allergic encephalomyelitis (EAE) is an autoimmune inflammatory disease of the central nervous system (CNS) which causes paralysis. Several studies have reported the involvement of Ia antigen-expressing cells in the pathogenesis of EAE. Interferon-gamma (IFN-gamma) can induce Ia antigen expression on a wide range of cells. We examined the effect of IFN-gamma on EAE in Lewis rats. Systemically administered IFN-gamma did not change the disease course of EAE, whereas IFN-gamma applied locally into the ventricular system of the CNS resulted in complete suppression of clinical signs. Furthermore, we found that systemic administration of anti-IFN-gamma just prior to the onset of clinical symptoms resulted in a more severe disease course. We conclude that IFN-gamma is capable of exerting a suppressive action in EAE, possibly through induction of Ia antigen expression or through the induction of suppressive mechanisms locally in the CNS.

Animals↗

The heterogeneity of the reticulum of rat peripheral lymphoid organs identified by monoclonal antibodies.

We have developed a panel of six monoclonal antibodies, ED10-ED15, directed against reticular cells in peripheral lymphoid organs. Immunohistochemistry revealed prominent differences between these antibodies with regard to their tissue distribution in lymphoid and non-lymphoid organs. Furthermore, the determinants recognized by ED10-ED13 were found to be differentially expressed by reticular cells occupying the various specialized compartments present in peripheral lymphoid organs. The reactivity patterns of these antibodies observed during the ontogenetic development of the spleen suggest that they recognize differentiation antigens expressed by reticular cells. In contrast, ED14 and ED15 were found to have a relatively ubiquitous tissue distribution recognizing reticular cells in each compartment, with a constitutive reactivity during splenic ontogeny. The present results indicate that reticular cells form a heterogeneous population within the lymphoid organs.

Age Factors↗

Rat bone marrow and monocyte cultures: influence of culture time and lymphokines on the expression of macrophage differentiation antigens.

A set of seven monoclonal antibodies (moabs) has been shown to discriminate in situ between distinct subpopulations of macrophages in the rat. It is still controversial if this heterogeneity is caused by the existence of different lineages or by differentiation of a common precursor. In both cases, the differentiation process might be regulated by microenvironmental factors. The present study examines the expression of the macrophage markers recognized by the seven ED-moabs in bone marrow and monocyte cultures. Furthermore, the impact of culture time and stimulating factors on the antigen expression in these cultures was tested. The expression of the ED3 antigen is highly inducible in bone marrow cultures. Factors that might be responsible for the increased ED3 expression are investigated. This strong ED3 expression by bone marrow-derived macrophages is nearly absent by monocyte-derived macrophages. This implies that the ability to express ED3 is blocked before the macrophage precursor cells enter the circulation to become monocytes. The ED2 expression cannot be induced under the tested circumstances bone marrow macrophages in vivo do not express these antigens. In culture, these macrophages stain positive for these markers already after the first day of culturing. The other three antigens are expressed on all macrophages under all tested circumstances.

Animals↗

Heterogeneity of macrophages in the rat evidenced by variability in determinants: two new anti-rat macrophage antibodies against a heterodimer of 160 and 95 kd (CD11/CD18).

A set of three monoclonal antibodies (MoAbs), ED1, ED2, and ED3, has been shown to recognize in situ different subsets of macrophages in the rat. This macrophage diversity can be correlated with differences in stage of differentiation of cells belonging to one lineage. The present study quantifies this antigen distribution in the macrophage fractions of several lymphoid organs provided by Percoll centrifugation. Four new MoAbs (ED4, ED7, ED8, and ED9) raised against macrophages are included in this study. The tissue distribution of each of the four new MoAbs is determined by immuno- and enzyme-histochemistry on cryostat sections. The MoAbs recognize distinct subpopulations of macrophages. The new MoAbs ED4, ED7, ED8, and ED9 recognize granulocytes and other unrelated cell types, as well as cells of the mononuclear phagocyte system. ED7 and ED8 recognize a surface heterodimer of Mr 160,000 and 95,000.

Animals↗

Parallel development of noradrenergic innervation and cellular compartmentation in the rat spleen.

By combining neurochemical measurement of norepinephrine (NE) with double-label immunocytochemistry for tyrosine hydroxylase-positive (TH+) noradrenergic nerves and specific lymphoid markers, we have examined the developmental compartmentation of noradrenergic nerves in the rat spleen. TH+ nerve fibers were present in the white pulp of the spleen at birth, among surface IgM-positive (sIgM+) B lymphocytes at the outer border of the periarteriolar lymphatic sheath (PALS), distant from the central artery. During the first 7 days, noradrenergic innervation developed rapidly, forming plexuses of nerve fibers along the central artery and its branches, among T and B lymphocytes of the PALS, and along the developing marginal sinus where ED3+ macrophages accumulate. The splenic concentration of NE (per mg wet wt.) and 3-methoxy-4-hydroxy-phenetheleneglycol (MHPG), a NE metabolite, increased rapidly during this period, suggesting that NE is available and released from these nerves. From 7-14 days, the white pulp expanded to include an inner PALS, outer PALS, marginal sinus, and marginal zone; during this period, TH+ fibers arborized principally among T lymphocytes of the inner PALS and adjacent to macrophages along the marginal sinus. By 14 days of age, NE concentration reached adult levels, although the MHPG/NE ratio (an index of NE turnover) remained higher throughout development than in adulthood. Finally, from 14-28 days, the outer PALS expanded to include follicles containing sIgM+ B lymphocytes. At the earliest stages of follicular development, a parafollicular rim of noradrenergic fibers was present, providing occasional branches which arborized within the follicle. No further changes were observed in either noradrenergic innervation or cellular compartmentation after 28 days of age. These findings suggest that noradrenergic fibers are present in developing compartments of the spleen at the earliest stages of their development, providing norepinephrine for interaction with a variety of adrenoceptor-bearing lymphoid and nonlymphoid cells.

Animals↗

Observer agreement in the assessment of clinical signs in experimental allergic encephalomyelitis.

Rats suffering from experimental allergic encephalomyelitis (EAE) were examined by a number of investigators whose assessments were compared. Considerable consensus of opinion was reached, especially when a standard, easily interpretable, scoring classification was used. More discrepancies occurred when a more expanded scale, differentiating between more clinical grades, was used. It is demonstrated that part of these discrepancies can be overcome by having the examinations done by the same investigator. Possible consequences of these findings for the assessment of clinical signs in EAE are discussed.

Analysis of Variance↗