Search PubMed⌕ Search

Biomedical subjects

H HogenEsch

Publications and source records attributed to H HogenEsch.

50 records · Page 3Linked to original sources

Gastrointestinal AAPOAII and systemic AA-amyloidosis in aged C57BL/Ka mice. Amyloid-type dependent effect of long-term immunosuppressive treatment.

The light microscopic and immunohistochemical features of a novel localized senile amyloidosis in the gastrointestinal tract of C57BL/Ka mice are described. Senile gastrointestinal amyloidosis was predominantly found in the lamina propria of the ileum, cecum and stomach and infrequently in other segments of the gastrointestinal tract. The Congo red affinity of the senile amyloid was sensitive to potassium permanganate pretreatment. The amyloid did not react with anti-AA and anti-immunoglobulin antisera, but stained positively for apoAII, a major apolipoprotein of high density lipoproteins. A similar type of amyloid, termed AApoAII, has recently been described in a systemic form of senile amyloidosis in mice. In the present study, we investigated the effect of long-term immunosuppressive treatment on the incidence of systemic AA-amyloidosis and gastrointestinal AApoAII-amyloidosis in aged C57BL/Ka mice. Gastrointestinal amyloidosis occurred in 60% of the control mice, but significantly less in mice of the immunosuppressed groups. In contrast, systemic AA-immunoreactive amyloidosis was only found in mice that were given immunosuppressive treatment. There was no codeposition of AA and AApoAII-amyloid. These findings indicate that immunosuppressive drugs have a profound effect on the incidence as well as the type of amyloidosis in C57BL/Ka mice.

Aging↗

Constitutive expression of Ly-6.A2 on murine keratinocytes and inducible expression on TCR gamma delta+ dendritic epidermal T cells.

We investigated the expression of Ly-6.A2 on isolated murine epidermal cells by flow cytometry. Ly-6.A2 was expressed on 61% of keratinocytes and 6% of dendritic epidermal T cells of C57BL mice. Phosphatidylinositol-specific phospholipase C removed Ly-6.A2, indicating that the antigen is anchored to the keratinocyte membrane via a glycosyl-phosphatidylinositol anchor similar to its attachment to the membrane of lymphocytes. Induction of dermatitis by topical application of PMA increased the expression of Ly-6.A2 on TCR gamma delta+ dendritic epidermal T cells and did not change its expression on keratinocytes. The increased expression of Ly-6.A2 on dendritic epidermal T cells was transient and reached a peak at 4 days after application of PMA, when 55% of the cells were positive.

Animals↗

A spontaneous mutation characterized by chronic proliferative dermatitis in C57BL mice.

Chronic proliferative dermatitis is a new spontaneous mutation in C57BL/Ka mice. Breeding results suggest an autosomal recessive mode of inheritance. Mutant mice develop skin lesions at the age of 5 to 6 weeks. The lesions occur in the ventral and dorsal skin of the body, whereas ears, footpads, and tail are not involved. The lesions are characterized by epidermal hyperplasia, hyper- and parakeratosis, and single cell necrosis of keratinocytes. The dermis and epidermis are infiltrated by granulocytes and macrophages, and occasionally subcorneal and intracorneal microabscesses are formed. The number of mast cells in the dermis progressively increases with age. There is dilatation and proliferation of dermal capillaries. Similar lesions develop in the mouth, esophagus, and forestomach, which, in the mouse, are all lined by orthokeratinizing stratified squamous cell epithelium. Studies with bromodeoxyuridine confirm the increased rate of epithelial cell proliferation. Most inflammatory cells in the affected skin express Mac-1, and few express the T lymphocyte marker CD3. There is increased expression of intracellular adhesion molecule-1 on keratinocytes and endothelial cells. Infiltration of neutrophils and macrophages are also seen in the liver, lung, and several joints. The disease could not be transferred by bone marrow or spleen transplants into irradiated normal syngeneic hosts. Treatment of the mice with triamcinolone, a long-acting corticosteroid, resulted in nearly complete regression of the lesions over a period of 4 weeks, whereas systemic cyclosporin A treatment was ineffective.

Adrenal Cortex Hormones↗

Isolation and phenotypic and functional characterization of cells from Peyer's patches in the dog.

Cells were isolated from canine Peyer's patches (PPs) and their phenotype and capacity to secrete immunoglobulins in vitro were determined. Cells isolated from duodenal and jejunal PPs of adult dogs consisted of 91.4% lymphocytes and 1.6% macrophages with 55.4% mIg(+)-cells and 35.6% Thy-1(+)-cells. In vitro IgA secretion by pokeweed mitogen (PWM)-stimulated PP cells exceeded that by cells from other lymphoid tissues and was specifically increased by concanavalin A, suggesting a role for isotype-specific T-cells. Comparison of duodenal and jejunal (proximal) PPs and the ileal PP revealed that the ileal PP contained fewer T-cells, fewer mIgA(+)-cells and more mIgM(+)-cells. Cells from the ileal PP produced very little IgA and IgG, but abundant IgM in vitro. These data suggest that the proximal PPs of dogs are important in the generation of IgA B-cells, similar to PPs of rodents. The ileal PP of dogs may have a function in the early development of the B-cell system of the dog.

Animals↗

Immunohistology of Peyer's patches in the dog.

Canine Peyer's patches were examined by light microscopy and immunohistochemistry for possible variations depending on the location within the small intestine and for similarities and dissimilarities to PPs from other species. The duodenal and jejunal PPs were characterized by relatively large domes and interfollicular areas. In contrast, the ileal PP had small domes and poorly developed interfollicular areas and very large follicles. T cells were found in the interfollicular area and corona and in lesser numbers in the dome and germinal centers. The ileal PP contained far fewer T cells than the proximal PPs. Domes of canine PPs contained some cytoplasmic IgA+ (cIgA+) and many cIgG+ cells. Peanut agglutinin (PNA) stained germinal center cells in a selective but not-uniform way and did not stain T cells.

Animals↗

Immunologic abnormalities in canine juvenile polyarteritis syndrome: a naturally occurring animal model of Kawasaki disease.

This study describes the immunologic abnormalities during the acute phase of juvenile polyarteritis syndrome (JPS), a multisystem necrotizing vasculitis of young dogs with a predilection for the coronary arteries. JPS has striking clinical, laboratory, and pathologic similarities to Kawasaki disease (KD), the most common cause of acquired heart disease in children in the United States. The immunologic abnormalities include an increase in serum IgA, an increase in the percentage of peripheral B cells and a decrease in the percentage of total peripheral T cells, a marked suppression of the blastogenic response to mitogenic stimulation, an inability to generate immunoglobulin-secreting plasma cells following polyclonal activation, the presence of antineutrophil cytoplasmic antibodies, and evidence of monocyte/macrophage activation. These immunoregulatory abnormalities are similar to those observed in children during the acute phase of KD. This unique, naturally occurring animal model of necrotizing vasculitis may prove useful for investigating novel therapeutic interventions in the treatment of necrotizing vasculitis and may yield insight into the immunopathology and etiology of KD.

Animals↗

Glycosylphosphatidyl inositol-linked membrane protein expression by intestinal intraepithelial lymphocytes.

Murine intestinal intraepithelial lymphocytes (ilEL) represent a heterogeneous population of cells which contains both TCR alpha beta+ and TCR gamma delta+ cells. In contrast to the TCR alpha beta+ cell population in peripheral lymphoid organs, the TCR alpha beta+ ilEL contain high numbers of Thy-1- cells. This negativity of ilEL for Thy-1, a glycosylphosphatidyl inositol (GPI)-linked membrane protein, is not the result of conformational changes of the Thy-1 molecule. The absence of Thy-1 on TCR gamma delta+ and a subset of TCR alpha beta+ ilEL is furthermore not caused by a general defect in the processing of GPI-linked proteins, since Thy-1- ilEL mainly express another GPI-linked protein, Qa-2. However, TCR alpha beta+ and TCR gamma delta+ ilEL are also virtually negative for two other members of this family of activation-associated GPI-linked proteins, Ly-6A and Ly-6C. This unusual pattern of GPI-linked protein expression on TCR+ ilEL may be related to differences in cellular activation and signal transduction pathways between TCR+ ilEL and regular peripheral T cells.

Animals↗

Ultrastructure and alkaline phosphatase activity of the dome epithelium of canine Peyer's patches.

The dome epithelium of Peyer's patches from different parts of the intestine of four dogs was examined by scanning and transmission electron-microscopy and by alkaline phosphatase histochemistry on glycol-methacrylate embedded sections. M cells were scattered among more numerous enterocytes in duodenal and jejunal Peyer's patches, but constituted the major cellular component of dome epithelia of the ileal Peyer's patches. Alkaline phosphatase histochemistry demonstrated low enzyme activity in the brush border of M cells, as compared to enterocytes, in the duodenum and jejunum, allowing identification of M cells at the light microscopic level. Alkaline phosphatase activity was too low in ileal enterocytes to permit visualization of M cells. The presence of intrafollicular invaginations of dome epithelium is a consistent finding in duodenal Peyer's patches of the dog and these invaginations were characterized by few M cells, many intraepithelial lymphocytes and strong alkaline phosphatase activity.

Alkaline Phosphatase↗

Ultrastructure of epidermis of mice with chronic proliferative dermatitis.

C57BL/Ka mice with chronic proliferative dermatitis (cpdm/cpdm) develop chronic persistent skin lesions characterized by epidermal hyperplasia, infiltration by granulocytes and macrophages, and vascular dilatation. Similar lesions are present in other orthokeratotic epithelia in affected mice, in particular the esophagus and forestomach. Here, we report on further characterization of epidermal hyperplasia and the granulocytes. Keratinocytes of lesional skin, but not of normal skin, show round and electron-dense mitochondrial inclusions that are present in all layers of the epidermis. Similar inclusions are also present in the esophagus and forestomach of affected mice. There appears to be a direct relation between the presence of intramitochondrial inclusions and epidermal hyperplasia in the mouse. Furthermore, the presence of keratinocyte-derived apoptotic bodies in the epidermis, esophagus, and forestomach was frequently observed in the lesions, which is consistent with previous light microscopic observations of single cell death of keratinocytes. The granulocytes present in the skin, esophagus, and forestomach were mainly eosinophils. There were widespread gaps observed in the lamina densa in the epidermis that were mostly directly associated with dermal or epidermal eosinophils. This type of gap is also observed in psoriasiform diseases in humans. This electron microscopic study demonstrated that this mouse model should be useful to screen potential therapeutic strategies for psoriasiform and other inflammatory skin disorders.

Animals↗