Biomedical subjects
E P van Rees
Publications and source records attributed to E P van Rees.
The inflammatory response in CD1 mice shortly after infection with a CagA+/VacA+ Helicobacter pylori strain.
To investigate the early events of Helicobacter pylori infection in a mouse model, CD1 mice were infected with a type I (CagA+/VacA+) H. pylori strain. Up to 4 weeks after infection the majority of gastric tissue biopsies were positive in culture. Immunohistochemical analysis showed that inflammatory changes started to occur after 3 weeks. Four weeks after infection a significant increase in T cells was observed in the cardia/corpus region of the stomachs of infected mice. These T cells were CD4+ and CD8+, and they were located in an area with increased expression of MHC class II antigens. In 50% of the infected mice also an increased number of mast cells was seen. Furthermore, aggregates of B and T cells were present in the submucosa. Characterization of cytokines by immunohistochemistry showed an increase in IL-5-secreting cells in the inflamed area of the infected stomach. No difference was observed between interferon-gamma (IFN-gamma)-, IL-4- and IL-10-secreting cells in control and infected mice. These results suggest that no polarized T-helper cell response was present at this early phase of infection. Infection with H. pylori also induced a serum response and especially IgG was increased after 4 weeks of infection. However, no particular increase in IgG1, IgG2a or IgG3 isotype was observed. Part of the serum antibodies was directed against lipopolysaccharide (LPS), but no evidence for anti-Lewis antibodies or antibodies against epitopes on the gastric mucosa was found.
Helicobacter pylori-associated gastritis in mice is host and strain specific.
The vacA and cagA geno- and phenotypes of two mouse-adapted strains of Helicobacter pylori, SS1 and SPM326, were determined. The SS1 strain, which had the cagA+ and vacA s2-m2 genotype, induced neither vacuole formation in HeLa cells nor interleukin-8 (IL-8) production in KATO III cells. In contrast, H. pylori SPM326, with the cagA+ and vacA s1b-m1 genotype, induced vacuoles as well as IL-8 production in vitro. Furthermore, a spontaneous mutant of SPM326, which produced a vacuolating cytotoxin but was not able to induce IL-8 production (SPM326/IL-8(-)), was detected. C57Bl/6 and BALB/c mice were infected with these three strains to investigate the colonization pattern and the effect on the immune response in vivo. The SS1 strain colonized the stomachs of all mice in large numbers which remained constant over time. Colonization with the SPM326/IL-8(+) and SPM326/IL-8(-) strains was lesser, or even absent, and decreased over time. At 5 weeks postinoculation all three H. pylori strains induced a mild increase of neutrophil count in the gastric corpus of C57Bl/6 mice, which disappeared by 12 weeks. At both 5 and 12 weeks postinoculation C57Bl/6 mice colonized with SPM326/IL-8(+) showed an increased expression of major histocompatibility complex (MHC) class II antigen in the cardia which was accompanied by an increased number of T cells. C57Bl/6 mice that were infected with SS1 and SPM326/IL-8(-) did not show chronic inflammation. BALB/c mice colonized with SS1 and SPM326/IL-8(-) also showed an increase in neutrophil count at 5 weeks, which normalized again by 12 weeks postinoculation. At this time point SS1-infected mice showed inflammation in the corpus and antrum. At these sites an increased expression of MHC class II antigens and an increased number of T cells were observed. Although small lymphoid follicles were already observed 5 weeks after inoculation with SS1, their incidence as well as their number was increased at 12 weeks. These results show that inflammation induced by H. pylori depends both on the bacterial strain and the host.
Genomic DNA fingerprinting of clinical isolates of Helicobacter pylori by REP-PCR and restriction fragment end-labelling.
Genetic diversity of 32 Helicobacter pylori strains isolated from patients with gastritis, gastric or duodenal ulcer, carcinoma, or lymphoma was determined by repetitive sequence element polymerase chain reaction (REP-PCR), and by the new typing method restriction fragment end-labelling (RFEL). Furthermore, these two methods were used to investigate a possible correlation between clinical symptoms and the genetic background of Helicobacter pylori. Both REP-PCR and RFEL revealed 31 different patterns for the 32 strains tested, but the pair of isolates with identical REP-PCR patterns was not the same as the pair of isolates with identical RFEL patterns. Computer-assisted analysis of the DNA fingerprints was used to determine similarity coefficients. This analysis revealed no clustering of disease-specific strains by any of the two methods.
Effects of local budesonide treatment on the cell-mediated immune response in acute and relapsing colitis in rats.
Glucocorticosteroids (GCS) are effective in treatment of inflammatory bowel disease (IBD), but also have unwanted systemic side effects. Here, we describe the effects of budesonide and dexamethasone on acute experimental colitis and on T cells in thymus and spleen, as well as the effect of budesonide treatment on relapsing colitis. Acute colitis was induced by intracolonic administration of 2,4,6-trinitrobenzene sulfonic acid (TNBS) in ethanol, and a relapse was induced by an intraperitoneal booster of TNBS. GCS were administered intrarectally on days 1, 4, and 6 after induction of acute colitis or a relapse. Inflammatory cells in the colon were studied on day 7, and in acute colitis also on days 13 and 16. Budesonide treatment in acute and relapsing colitis resulted in reduction of macroscopic damage and decreased the numbers of macrophages and neutrophils in the colon. Dexamethasone was less effective. Dexamethasone, but not budesonide, reduced the number of T cells in the thymus. It is concluded that local budesonide is more effective in treatment of acute experimental colitis than dexamethasone and, in contrast to dexamethasone, did not cause a general suppression of T cells. Although budesonide was very effective in the treatment of relapsing colitis, this effect was not accomplished by affecting the number of T cells in the colon.
CD4+ T cells from 2,4,6-trinitrobenzene sulfonic acid (TNBS)-induced colitis rodents migrate to the recipient's colon upon transfer; down-regulation by CD8+ T cells.
CD4+ T cells play an important role in the aetiology of inflammatory bowel disease (IBD), but it is not clear which factor(s) cause activation of these cells. The aim of this study was to examine the effects of adoptive transfer of splenic (CD4+) T cells from TNBS/ethanol-sensitized donor rats to naive recipients and the migration pattern of transferred T cells. For the transfer experiments, colitis was induced in rats by colonic administration of TNBS/ethanol. Seventeen days later, either total splenic T cells or CD4+, or CD8+ T cells were transferred to naive recipients. At days 1, 2 and 3 after transfer, the recipients were killed and the migration pattern of the transferred T cells was studied, as well as inflammatory cells in several organs, including the colon. To determine cytokine profiles of the T cells, colitis was induced in mice. Therefore, different combinations of 2,4-dinitrobenzene sulfonic acid (DNBS) in ethanol or saline, or ethanol alone were intrarectally administered. At day 9 after induction of colitis, mice were killed and cytokine profiles in the colon were studied by reverse transcriptase-polymerase chain reaction (RT-PCR) and immunohistochemistry. The results show that CD4+ T cells from donor rats with TNBS/ethanol-induced colitis migrate in particular to the colon upon transfer to naive recipients, and that this process is down-regulated by CD8+ T cells. This migration is probably caused by T cell recognition of the colonic bacterial flora and initiates an inflammatory reaction in the recipient's colon, characterized by an increase of the recipient's own T cells, macrophages, and neutrophils. In the mice experiments we showed that a second administration of DNBS/ethanol or ethanol alone, which presumably causes bacterial translocation, results in increased numbers of T cells into the colon, accompanied by an increase in Th1 cytokines. These data suggest that Th1 cells recognize the colonic bacterial flora.
Functional immaturity of rat alveolar macrophages during postnatal development.
Alveolar macrophages (AM) are important in the regulation of immune responses in the lung, through their role as scavenger cells and through the production of many bioactive factors. Because in early infancy pulmonary infections are a recurrent problem, we studied the postnatal functional maturation of AM in a rat model. AM were isolated from rat lungs by bronchoalveolar lavage at several time intervals after birth and tested for their ability to ingest Escherichia coli in the presence of surfactant protein A (SP-A). Furthermore, their capacity to produce nitric oxide (NO) and interleukin-1 beta (IL-1 beta) after in vitro lipopolysaccharide (LPS) stimulation was analysed, as well as their capacity to downregulate proliferation of T cells from both mature and neonatal rats. SP-A-mediated phagocytosis of E. coli by AM was reduced in 14-day-old neonatal rats, as compared with mature rats (P < or = 0.05). Also the IL-1 beta production by rat AM after LPS stimulation was impaired at 14 days of age, as compared with IL-1 beta production by AM from mature rats (P < or = 0.05). In contrast, the LPS-induced NO production by rat AM as well as the capacity to inhibit T-cell proliferation were well developed at all ages tested. In conclusion, during postnatal development the rat AM is functionally immature, with respect to phagocytosis and secretion of inflammatory mediators. These differences may underly the enhanced susceptibility to pulmonary infections as found in human neonates.
Local cellular immune response in the acute phase of gastritis in mice induced chemically and by Helicobacter pylori.
Gastritis was induced in mice by oral administration of acetic acid 5%, a cagA positive Helicobacter pylori strain, or both. The induction of a mild gastritis by acetic acid before inoculation with H. pylori resulted in a slight but not significantly decreased colonisation rate. To study the initial stage of inflammation, the presence of gastric lymphoid and non-lymphoid cells was studied by immunohistochemistry during the first 2 weeks after induction of gastritis. Treatment with acetic acid alone or in combination with H. pylori resulted in an increase in the number of neutrophils in the mucosa and submucosa, without evident epithelial damage. The influx of neutrophils was most prominent in the mice that received a combined treatment of acetic acid and H. pylori. Macrophages were also increased in both acetic acid and acetic acid plus H. pylori-treated groups, although a different kinetic pattern was present in these groups. In mice infected with H. pylori alone, only a slight but not significant increase in neutrophils and macrophages was observed. The early presence of lymphoid aggregates in the gastric mucosa of mice in which colonisation was shown with H. pylori was remarkable. This phenomenon was not seen in control mice, in mice that received acetic acid alone or when colonisation was not shown. These data suggest that gastritis induced by a chemical agent such as acetic acid occurs by a different mechanism than gastritis induced by H. pylori and that the continued presence of H. pylori is required for local lymphocyte activation.
Effects of neonatal dexamethasone treatment on hypothalamo-pituitary adrenal axis and immune system of the rat.
Synthetic glucocorticoids (GC) are widely used drugs, also in the prevention of diseases that occur in the preterm newborn. Previously we have found that GC treatment of pregnant rats resulted in a persistent increase in the ratio of AVP over CRH in the mediobasal hypothalamus, and in an increased CD4/CD8 ratio in the thymus of the newborn. The objective of the present study was to investigate whether such effects were also seen after neonatal GC exposure, given in clinically-relevant doses. Dexamethasone-21-phosphate (DEX; 1.2 microg/g BW, i.p.) was given at day 5 and day 7 after birth. At day 18, 33, and 48 after birth effects of GC on the HPA-axis, and on CD4+ and CD8+ T cells in thymus and spleen were examined. Neonatal DEX treatment temporarily increased (p < 0.01) AVP stores in the external zone of the median eminence (ZEME) on day 18 after birth, and did not affect CRH stores. Resting plasma levels of ACTH and corticosterone remained unchanged after neonatal DEX treatment at any time interval studied. In the thymus and spleen, neonatal DEX treatment decreased (p < 0.0001) T cell numbers on day 18 after birth. Furthermore, neonatal DEX treatment increased (p < 0.01) the ratio of mature CD4-CD8+ over CD4-CD8+ thymocytes on day 18 after birth, but not on day 33 and day 48 after birth. In conclusion, neonatal DEX treatment has temporary effects on peptide expression in hypothalamic CRH neurons, and on thymocyte maturation. Apparently, neonatal exposure to GC affects potentially sensitive targets within the endocrine system and immune system but these alterations are reversible and readjusted during development.
Role of animal models for the pathogenesis and treatment of inflammatory bowel disease.
The etiology of chronic inflammatory bowel diseases (IBD) such as Crohn's disease and ulcerative colitis is still unknown. Recent studies including animal models of intestinal inflammation have identified interactions between the mucosal immune system, host genetic susceptibility and environmental factors, including normal intestinal microflora. Although the ideal animal model of IBD has not been found, each model can study pathogenetic factors such as acute intestinal injury and healing, acute and chronic inflammation, regulation by key cytokines, T-lymphocyte mediation, the role of luminal bacteria, immunoregulatory factors and genetic susceptibility. The relevance of these studies for the treatment of IBD is also discussed.
Ontogency of the responses of human peripheral blood T cells to glucocorticoids.
The inhibitory effect of steroids such as dexamethasone on the immune response of adults has been widely documented. Little is known, however, about the effect of these agents on the developing immune system in newborns. The present study describes the ontogeny of the sensitivity of peripheral blood T cells to dexamethasone during the first year of life. Cord blood T cells of preterm or term infants appear to be extremely sensitive to inhibition of the proliferative response. This high sensitivity of cells to dexamethasone can still be observed in the first 2 weeks after birth. Subsequently, the sensitivity to dexamethasone inhibition of T-cell proliferation gradually decreases. At 1 year of age, the adult response pattern has been acquired.
Effects of short-term dexamethasone treatment during pregnancy on the development of the immune system and the hypothalamo-pituitary adrenal axis in the rat.
The effects of glucocorticoid (GC) treatment on the mature immune and neuroendocrine system are known to be reversible. However, prenatal GC exposure may have irreversible consequences on the development of the newborn. In this study, possible long-lasting effects of short-term prenatal GC treatment were examined on the developing thymus, spleen and hypothalamo-pituitary adrenal axis (HPA axis). Female rats were given dexamethasone (DEX, 400 micrograms, i.p.) on day 17 and 19 of pregnancy and offspring was studied at several time intervals (1-20 days) after birth, for examination of thymus, spleen, hypothalamus and blood plasma. Examination of thymus and spleen revealed that prenatal exposure to DEX resulted in decreased T cell numbers in thymus and spleen on day 1 after birth. Thymus regeneration after DEX exposure both during pregnancy and in adult life was completed after 24 days. However, the kinetics of regeneration of the thymi after prenatal DEX exposure were different from that seen after DEX in adult life. Whereas DEX treatment during pregnancy resulted in an increased ratio of CD4+/CD8- thymocytes over CD4-/CD8+ thymocytes compared to control groups on day 7 and day 20 after birth (time X treatment interaction; P < 0.05), DEX treatment in adult life did not change this ratio. T cell numbers in the spleen were significantly decreased at all neonatal ages studied. Regarding the hypothalamus, prenatal exposure to DEX altered the pattern of neonatal changes in peptide expression in corticotropin-releasing hormone neurons, with a selective reduction in CRH storage in the median eminence (7 and 9 days after birth) and an increase in AVP storage (9 and 20 days after birth). The ratio of AVP over CRH was significantly increased at all developmental ages studied. No effects were seen on basal ACTH and corticosterone levels in plasma. In conclusion, the kinetics of thymus regeneration after DEX exposure during pregnancy were different from that seen after DEX exposure in adult life. Prenatal DEX exposure also seemed to delay the migration of T cells into the spleen. Furthermore, prenatal DEX treatment exerted major effects on hypothalamic CRH neurons that maintained for at least 20 days after birth, which points towards an enhanced stress responsiveness of the HPA axis in later life.
Reticulum cells in the ontogeny of nasal-associated lymphoid tissue (NALT) in the rat.
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Ontogeny of the mucosal immune response against different types of pneumococcal polysaccharide in rat.
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Mucosal immune responses to pneumococcal polysaccharides: implications for vaccination.
Systemic vaccination does not effectively induce a protective immune response to Streptococcus pneumoniae infections in infants, elderly people and immunosuppressed patients, who are highly susceptible to this pathogen. As mucosal immune responses develop early in life and still function well in the elderly, mucosal vaccination (that is, by oral, intratracheal or intranasal routes) may be an alternative approach to current strategies.
Non-lymphoid and lymphoid cells in acute, chronic and relapsing experimental colitis.
In rodents, intracolonic administration of ethanol 30% induces an acute colitis, while administration of 2,4,6-trinitrobenzene sulphonic acid (TNBS) in ethanol induces a longer lasting colitis. In the acute and chronic stages of experimental colitis, lymphoid and non-lymphoid cells were studied in the colon by immunohistochemistry. During the acute inflammation a high damage score of the colon was observed, which was related to an increase in the number of macrophages and granulocytes. Also a change in distributional patterns of macrophage subpopulations was found. The chronic stage of TNBS-ethanol-induced colitis was characterized by an increase in the number of lymphocytes, especially T cells. These data suggest that macrophages and granulocytes are important in the acute phase of experimental colitis, while lymphocytes play a pivotal role in the chronic stage. As most inflammatory bowel disease (IBD) patients have relapses during the chronic disease, we attempted to induce a relapse during experimental colitis by giving a second i.p. or s.c. dose of TNBS. This resulted in increased damage scores of the colon, new areas of ulceration and a further increase in macrophage numbers. No effect on the number of granulocytes was seen. These results indicate that it is possible to mimic relapses in experimental colitis by a second administration of TNBS, and suggest that the rats had been sensitized by the first dose of TNBS, given into the colon.
Anti-CD11b/CD18 antibodies reduce inflammation in acute colitis in rats.
The influx of monocytes and neutrophils into the inflamed tissue could be an important aspect in the pathogenesis of inflammatory bowel disease (IBD). A membrane protein involved in the monocyte/neutrophil adherence to endothelium is CD11b/CD18 or alpha M beta 2 (complement receptor type 3 = CR3). In the present study the role of CD11b/CD18 in experimental IBD was studied by treatment with ED7 and OX42, two MoAbs against CD11b/CD18. Colitis was induced in rats by a single, rectal administration of 30 mg 2,4,6-trinitrobenzene sulfonic acid (TNBS) dissolved in ethanol 30%. Two hours before and 3 days after induction of colitis, the animals were given an i.v. dose of 0.5 mg of either ED7 or OX42 in 1 ml PBS. Controls received PBS or an irrelevant MoAb. Four days after the last treatment with the antibodies, the rats were killed, and macroscopic damage scores of the colon were determined. Macrophages and granulocytes were studied by immunohistochemistry and quantified by Interaktives Bild Analysen System (IBAS), and myeloperoxidase (MPO) activity in colonic tissue was measured. After treatment with ED7 and OX42 the mean damage score of the colon was reduced from 4.2 in IBD animals to 1.0 and 1.3, respectively. Smaller areas of ulcerations and a decrease in the number of ulcerations were observed compared with PBS-treated rats. Furthermore, the amount of infiltrating monocytes and leucocytes in the submucosa was enormously reduced, as well as MPO activity in the colonic tissue. These results show that treatment with MoAbs against CD11b/CD18 reduces clinical signs of experimental IBD in rats by a partial blockade of infiltrating macrophages and granulocytes.
Characteristics of immune responses to native and protein conjugated pneumococcal polysaccharide type 14.
The immune response to pneumococcal polysaccharide type 14 (PPS-14), induced by native PPS-14 was compared with the response induced by PPS-14 conjugated with CRM197 (PPS-14-CRM197). In our animal model, immunization with PPS-14-CRM197 gave a significant enhancement of anti-PPS-14 serum titres for IgM and IgG, but not for IgA. Also an increase in total number of anti-PPS-14 antibody-secreting cells was found. Using immunohistochemical techniques, a different distribution pattern of specific antibody-containing cells in spleen section after immunization with PPS-14-CRM197 was observed. Furthermore, a higher number of IFN-gamma producing cells was found after immunization with PPS-14-CRM197, as compared with immunization with PPS-14. This enhanced IFN-gamma production may be the cause for enhanced IgG response observed after immunization with PPS-14-CRM197. The specific immune response was less affected by splenectomy in animals immunized with PPS-14-CRM197 than with PPS-14. However, an age-related response to the native as well as the conjugated form of the PPS-14 was observed, since no effect of conjugation with CRM197 was seen in the onset of the immune response to PPS-14 in young animals. In conclusion, our results affirm the hypothesis that conjugation of polysaccharides changes the characteristics of the antigen towards a thymus-dependent antigen.