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C D Dijkstra

Publications and source records attributed to C D Dijkstra.

At least 127 records · Page 7Linked to original sources

Immunohistochemical localization of Forssman glycosphingolipid-positive macrophages and reticular cells in murine lymphoid tissue.

Forssman (Fo) glycolipid antigen, as detected by a monoclonal antibody (mAb), is expressed by a subpopulation of murine macrophages in the spleen and peripheral lymph nodes. The histological distribution of Fo antigen in spleen and lymph nodes was studied by immunostaining of cryosections, and was compared with the staining pattern of four other mAbs known to recognize macrophage subpopulations: F4/80, Mac-1, MOMA-1, and ERTR-9. Fo+ macrophages were found exclusively in the red pulp of the spleen and the medulla of inguinal and axial lymph nodes. Macrophages in the other lymphoid organs were Fo-. Besides macrophages, reticular cells in T-dependent areas of spleen and lymph nodes were Fo+. Attempts to grow colonies of Fo+ macrophages from either bone marrow or spleen precursors were negative. While the usual number of F4/80+ colonies was obtained, only a few, small clusters of Fo+ macrophages were formed, which speaks against an early commitment of precursors to express Fo.

Animals↗

Isolation and characterization of brain macrophages from the central nervous system of newborn and adult rats and of rats with experimental allergic encephalomyelitis.

A method has been developed to isolate brain macrophages (M phi) from normal neonatal and adult rats brain cell suspensions, as well as from brain cell suspensions of rat with experimental allergic encephalomyelitis (EAE), by making use of the ability of M phi to adhere to plastic surfaces. The isolated adherent cells were immuno- and enzyme-cytochemically identified. Phagocytic activity and the presence of Fc-IgG receptors were also examined. Approximately 30%-40% of the isolated adherent cells from neonatal rat brain are phagocytic and can be stained with macrophage-specific monoclonal antibodies, suggesting that these cells belong to the monocyte/macrophage lineage. From normal adult rat brain, only a small number of brain M phi could be isolated. A highly purified population of brain M phi was obtained from EAE rat brain. The isolated brain M phi are phagocytic, possess Fc-IgG receptors and rat M phi-associated antigens. Besides these features, the isolated brain M phi also express MHC class II antigens (Ia-antigens), which suggests that M phi may be involved in the regulation of immunological disorders of the CNS. The method reported here for rapidly isolating a large number of blood-monocyte-derived brain M phi from neonatal and adult brain allows an investigation of the precise role of M phi in inflammatory diseases of the central nervous system.

Animals↗

Macrophages and dendritic cells during the early stages of antigen-induced arthritis in rats: immunohistochemical analysis of cryostat sections of the whole knee joint.

The appearance of different macrophage subpopulations, Ia-positive antigen-presenting dendritic cells and of T and B lymphocytes was studied in early phases of antigen-induced arthritis in rat knee joints. Cryostat sections of whole knee joints were analysed with immunohistochemical techniques using monoclonal antibodies against rat macrophages, Ia-antigen, and lymphocyte subpopulations. The results showed that in the early phases of the development of arthritis, the synovium was already infiltrated by many monocytes, young macrophages, granulocytes, perivascular Ia-positive non-lymphoid cells, some mature tissue macrophages, and only few T lymphocytes. In later phases not only monocytes, young macrophages and Ia-positive cells became more prominent but also the more mature ED2 positive macrophages and the ED3 positive macrophages that are normally confined to lymphoid organs became increasingly important. The T-cell population increased to some extent in later phases of arthritis induction, possibly induced by clustering with the Ia-positive cells.

Animals↗

Marginal zone of the murine spleen in autotransplants: functional and histological observations in the response against a thymus-independent type 2 antigen.

Splenic tissue from mice was autotransplanted; after initial necrosis, a rapid restoration of implants into a structure histologically indistinguishable from splenic tissue was observed. The development of the marginal zone in these autotransplants, as determined with monoclonal antibodies against different splenic cell types and routine histological stains, was compared with the local and systemic response against a thymus-independent (TI) type 2 antigen. Full restoration of time course and peak of anti-trinitrophenyl (TNP) serum titres against TNP-Ficoll was observed at 4 weeks after autotransplantation. Anti-TNP antibody-forming cells were observed in subnormal and normal numbers in 2- and 4-week old autotransplants, respectively. The appearance of normal numbers of antibody-forming cells, and the restoration of antibody titres at week 4 correlated with the return of newly formed B cells in a normal marginal zone. An unexpected observation was that marginal zone macrophages did not return until 10 weeks after transplantation, thereby making the necessity for these cells in the normal TI-2 response unlikely. We conclude that normal anti-TI-2 responses (onset and peak titres) can be restored by autotransplantation of splenic tissue. B cells and marginal zone organization are responsible for this response, for which marginal zone macrophages seem expendable. The partial protection against overwhelming post-splenectomy infections, given by autotransplants, can thus be explained by restorative capabilities of these implants on antigen presentation and antibody formation against TI-2 antigens, and not by an increase (compared with splenectomized individuals) of phagocytosis by marginal zone macrophages.

Animals↗

Reduction in phosphoenolpyruvate carboxykinase in rat liver parenchymal cells following experimentally induced cholestasis.

The effect of experimentally induced cholestasis on the amount of phosphoenolpyruvate carboxykinase (PEPCK) was studied immunohistochemically in rat liver parenchyma. In control liver, the enzyme was mainly localized periportally and, although the enzyme content was much reduced, this distribution pattern was maintained up to 2 weeks after ligation of the common bile duct. At 4 and 8 weeks after ligation the enzyme content in parenchymal cells remained low, but became distributed homogeneously throughout the liver parenchyma. This suggests that after bile duct ligation, gluconeogenesis from lactate is impaired. This may well be the cause of the adaptive changes to enhance the glycogenolytic capacity of parenchymal cells to maintain as far as possible a constant blood glucose level.

Albumins↗

Sequential analysis of experimental autoimmune thyroiditis induced by neonatal thymectomy in the Buffalo strain rat.

We have studied the evolution of thyroiditis induced by neonatal thymectomy in Buffalo strain rats, with particular emphasis on the thyroid lymphocytic infiltrate. The earliest change was increased endothelial Ia expression, and infiltration of the thyroid at 5 weeks by ED1- and ED2-positive macrophages and B and T cells. The T cells comprised equal numbers of Ox 8 (T cytotoxic/suppressor)- and W3/25 (T helper)-positive cells. Ia-positive thyroid follicular cells were seen only in the presence of a T-cell infiltrate. Thyroglobulin antibody levels, thyroid weight, thyroid follicular cell Ia expression, and lymphocytic infiltration of the thyroid were maximal between Weeks 12 and 24, and impairment of macrophage function by injection of silica at this time produced amelioration of disease. The thyroid weight returned to control levels by Week 34 and Ia expression by thyroid cells disappeared. Circulating Ox 8-positive T cells were reduced between Weeks 12 and 24 and by Week 34 had returned to control levels. Our results indicate that the mononuclear infiltrate precedes thyroid follicular cell Ia expression and macrophages play an important role in perpetuating thyroiditis. Recovery from disease is accompanied by a return to normal in circulating suppressor/cytotoxic T cells.

Animals↗

Low-dose cyclosporin A induces relapsing remitting experimental allergic encephalomyelitis in the Lewis rat.

Experimental allergic encephalomyelitis (EAE) in Lewis rats is an acute monophasic autoimmune disease. It can be treated prophylactically and therapeutically with high doses of cyclosporin A (CsA). Here we demonstrate that low-dose CsA does not prevent a first attack of EAE, but, on the contrary, induces a chronic relapsing form of the disease in 100% of Lewis rats examined. Possible explanations for the high relapse rate after low-dose CsA treatment are discussed. Further studies will be needed to evaluate the immunological mechanisms responsible for these results.

Animals↗

Discrimination between different types of neuroglial cells in rat central nervous system using combined immuno- and enzyme-histochemical methods.

The central nervous system (CNS) contains several types of neuroglial cells. In the present study, we characterized different types of glial cells in rat CNS by using single and combined immuno- and enzyme-histochemical methods, and immunofluorescence techniques. Two recently developed monoclonal antibodies (mAbs) against rat macrophages-associated antigens appeared to recognize a subpopulation of glial cells in the CNS of normal adult rats. These ED4- and ED8-positive glial cells were predominantly located in the white matter of adult rat CNS and shared morphological features with microglia. ED4 and ED8 were applied in a double staining combined with mAbs and an antiserum raised against galactocerebroside (GalC) to identify oligodendrocytes, or with anti-glial fibrillary acidic protein antiserum (GFA) to identify astrocytes. We also used a mAb against myelin basic protein (MBP) to identify oligodendrocytes. It appeared that ED4 and ED8 recognized a subpopulation of oligodendrocytes. MAbs against GalC and MBP recognized cells in an immunoperoxidase staining with a morphology identical to that of the ED8-positive cells and part of the ED4-positive cells. Frozen sections of Lewis rats CNS with acute experimental allergic encephalomyelitis (EAE) were investigated, where infiltrating brain macrophages could be found which stained positively with ED4 and ED8 as well as with the monocyte/macrophage mAbs ED1 and ED2. These brain macrophages did not stain when GalC, MBP and GFA markers were applied. Furthermore, ED4+GalC+ and ED8+GalC+ oligodendrocytes were present in the CNS white matter of EAE animals with similar appearance as in normal adult rats. With the currently used markers, we could not detect a third type of neuroglial cell, besides the astrocytes and oligodendrocytes. Thus, none of our anti-macrophage monoclonals recognized the presumptive microglia. Only under pathological conditions, e.g., in inflammatory infiltrates in the course of EAE, could brain macrophages be detected in the CNS parenchyma and only in the direct vicinity of blood vessels, indicating their hematogenous origin.

Acid Phosphatase↗

Neonatal development of lymphoid organs and specific immune responses in situ in diabetes-prone BB rats.

Rats of the BB strain develop diabetes mellitus in a high percentage and display a severe T-cell lymphopenia. In order to investigate the role of micro-environmental factors in the T-cell maturation in BB rats the postnatal development of macrophage subpopulations and T-lymphocyte subsets, in addition to the specific immune response in situ, were studied in thymus, spleen and lymph nodes of BB rats. Wistar rats were used as controls. From the day of birth on, a severe reduction was noticed in the macrophage subpopulations in the thymic cortex of BB rats, but not in spleen and lymph nodes, as compared to Wistar rats. The population of T-suppressor/cytotoxic cells (OX8-positive cells) did not increase any longer from Day 10 after birth in the thymic cortex and from Day 14 in spleen and lymph nodes. This is indicative for an intrathymic maturational defect of the OX8-positive cells in BB rats. No deviations could be observed in the development of the T-helper (ER2-positive) cell population. Young adult BB rats were as capable as Wistars of developing a specific immune response to thymus-independent (TI) antigens, but the response to a thymus-dependent (TD) antigen was delayed and decreased. Also the distribution pattern of the specific antibody-containing cells in a TD response in BB rats differed from that in Wistar rats. The ER2-positive cells, although present in normal numbers, may function insufficiently as T-helper cells in BB rats.

Animals↗

The ontogenetic development of macrophage subpopulations and Ia-positive non-lymphoid cells in gut-associated lymphoid tissue of the rat.

The ontogenetic development of macrophage subpopulations and Ia-positive non-lymphoid cells was studied in gut-associated tissue in fetal and neonatal Wistar rats. A two-step immunoperoxidase method was carried out on cryostat sections, a panel of monoclonal antibodies being applied and aimed specifically at rat macrophages (ED1, ED2 and ED3) and at Ia antigen (Ox4). The first ED1-positive macrophages appeared in the liver on Day 15 (gestational age), and they did not express Ia. In developing mesenteric lymph nodes and in the gut wall, macrophages were found for the first time on Day 17 and 18, respectively, of gestation. These early macrophages were also ED1-positive. Until birth, ED2 recognized few cells in the gut-associated tissue; on the day of birth this subpopulation showed a sudden and considerable increase. The distribution pattern of ED3-positive macrophages appeared to be the same in fetal and in adult rats; it was confined to lymph nodes and Peyer's patches. Ia-positive non-lymphoid cells appeared in the abdomen early in ontogeny. The first Ia-positive cells displayed dendritic features and were found on Day 15 of fetal life in the mesenchymal tissue between intestinal loops. A few days later, many Ia-positive cells with a dendritic appearance were demonstrable in the gut wall and in developing mesenteric lymph nodes. Their number increased rapidly during the following days. Based on these results, the existence of two differentiation lines for dendritic cells and classical macrophages is discussed. The function of early Ia-positive cells in the abdomen is suggested as not being an antigen-presenting one.

Animals↗

The early postnatal development of the primary immune response in rat popliteal lymph node, stimulated with thymus-independent type-1 and type-2 antigens.

To examine the development of the postnatal immune response to thymus-independent type-1 (TI-type 1) and TI type-2 antigens, respectively, trinitrophenyl-lipopolysaccharide (TNP-LPS) or TNP-Ficoll was injected subcutaneously into the hind footpads of young rats of various ages. After 5 days the popliteal lymph nodes (PLNs) were removed and the localization pattern of specific anti-TNP antibody-containing cells was studied. The first specific antibody-containing cells elicited in rats by TNP-LPS appeared in animals at day 19 after birth. The results suggest that the development of these cells from lymphocyte to plasma cell occurs while they migrate from cortex to medulla. An unexpected finding was the low response to TNP-Ficoll in PLN; from 6 weeks after birth only very few specific antibody-containing cells were found. However, in the spleen numerous anti-TNP antibody-containing cells were found in the periarteriolar lymphocyte sheaths. To test the exclusive role of the spleen in the appearance of anti-TNP antibody-containing cells in lymph node after subcutaneous administration of TNP-Ficoll, the experiment was repeated in rats that had been splenectomized. Evidence from these experiments suggests that the spleen plays a major role in the appearance of the above-mentioned cells in lymph nodes.

Aging↗

Transport of immune complexes from the subcapsular sinus into the lymph node follicles of the rat.

To study the mode of transport of immune complexes from the subcapsular sinus into the follicles of draining popliteal lymph nodes, horse radish peroxidase (HRP)-anti HRP was injected in rat footpads. Within six minutes, complexes were already present in the subcapsular sinus freely or attached to the plasma membrane of different types of cell including cells forming the stroma. A few minutes later, complexes were also seen in the deeper part of the outer cortex, and after two hours they had reached the periphery of the follicles. They were always seen scattered between lymphoid and non-lymphoid cells. After one day, complexes were present on well-developed follicular dendritic cells. After injection of HRP, no localization of this antigen was observed in the deeper part of the outer cortex including the follicles. These results strongly suggest that HRP-anti HRP complexes are passively transported through the outer cortex into the follicles where they are trapped and retained by follicular dendritic cells.

Animals↗