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Biomedical subjects

R Jonsson

Publications and source records attributed to R Jonsson.

At least 19 recordsLinked to original sources

Estrogen accelerates immune complex glomerulonephritis but ameliorates T cell-mediated vasculitis and sialadenitis in autoimmune MRL lpr/lpr mice.

Estrogen is known to influence immune responses in healthy subjects in a dichotomous fashion. Thus, in number of previous studies we and others have demonstrated that B cell activities are augmented after exposure to estrogen whereas T cell reactivity is suppressed. Furthermore, it has been shown that this hormone has significant impact on the course of certain human and experimental autoimmune diseases. In this study we report that treatment with physiological doses of estradiol exerts dichotomous effects on different manifestations of the lupus disease in MRL/l mice. On one hand immune complex-mediated glomerulonephritis was significantly accelerated. This outcome was due to polyclonal B cell activation with increased production of antibodies to double-stranded DNA and formation of circulating immune complexes. In contrast, T cell-mediated lesions such as focal sialadenitis, renal vasculitis, and periarticular inflammation were all significantly ameliorated in MRL/l mice exposed to estrogen. Thus, we were able to demonstrate that, within one subject and even within one organ, administration of estrogen leads to differential outcome of SLE morbidity. We propose that the differential effect of estrogen on the manifestations of the autoimmune disease of MRL/l mice is due to its dichotomous effects on B and T cell-mediated immune responses.

Animals

Genetic, hormonal and behavioural influence on spontaneously developing arthritis in normal mice.

DBA/1 male mice develop arthritis spontaneously at the age of 4 months. The affected joints show cell-rich pannus formation without T cell infiltration and only limited MHC class II expression. Specific pathogen-free DBA/1 mice from different sources developed the same disease. Analyses of inbred mouse strains with various genetic backgrounds and F1 hybrids revealed that the disease is genetically dependent of DBA/1 recessive genes. However, F1 hybrids between DBA/1 and BXSB spontaneously developed arthritis with earlier onset than DBA/1 mice, suggesting that the BXSB autoimmune gene background had both permissive and contributing effects on the development of arthritis. The complete male preponderance for disease susceptibility was investigated by castration and testosterone treatment of DBA/1 males. No arthritis developed after castration and disease susceptibility was restored by testosterone treatment. Arthritis developed only where more than two males were kept in cages, suggesting an influence by aggressive behaviour. Thus, the spontaneous development of arthritis is dependent on hormonal and behavioural mediated effects and differs from experimental models for rheumatoid arthritis such as type II collagen-induced arthritis and pristane-induced arthritis. We conclude that the spontaneously developing arthritis in the normal DBA/1 strain may be more useful as a disease model for osteoarthritis than for rheumatoid arthritis.

Animals

Arthritis induced in rats with adjuvant oil is a genetically restricted, alpha beta T-cell dependent autoimmune disease.

Adjuvant arthritis in rats is usually induced by injection of mycobacterium tubercle cell walls suspended in various adjuvant oils such as Freund's incomplete adjuvant (FIA) or pristane. We have recently shown that injection of adjuvant oils without inclusion of mycobacterium tubercle cell walls triggers arthritis [oil adjuvant-induced arthritis (OIA)] in the DA rat strain. The OIA is a genetically restricted disease since only DA rats are susceptible while Lewis, DA-fostered Lewis and F1 (Lew x DA) rats are relatively resistant. Activated alpha beta T cells infiltrate the affected joints of adjuvant oil-injected DA rats and treatment with monoclonal antibodies to the alpha beta T-cell receptor abrogates development of arthritis. These findings show that alpha beta T-cell activation is a critical event in the development of OIA.

Animals

Differential effects of oestrogen in murine lupus: acceleration of glomerulonephritis and amelioration of T cell-mediated lesions.

Oestrogen is known to accelerate glomerulonephritis and autoantibody production in human and murine systemic lupus erythematosus (SLE). In this study we demonstrate that treatment of castrated autoimmune MRL +/+ mice with physiological doses of oestrogen results in enhanced immunoglobulin and autoantibody production as well as increased deposition of IgG in renal glomeruli. Accelerated development of glomerulonephritis was also evident from the increase of albuminuria. Interestingly, in contrast to these deteriorative effects of oestrogen on immune complex-mediated disease we now show that the lymphocytic infiltrations in the submandibular glands and perivascular lesions in the kidneys were significantly diminished after exposure to oestrogen. This remarkable impact of physiological oestrogen levels on the outcome of SLE in MRL +/+ mice is postulated to be the result of a differential effect on T and B cell-mediated immune responses.

Animals

Murine models for systemic lupus erythematosus and Sjögren's syndrome.

Of the types of defects that have been observed in autoimmune mice, two are common to most strains and appear to be of critical importance in the development of autoimmune disease. The first of these is a deficiency in the maintenance of self-tolerance by B or T lymphocytes. This is an intrinsic defect due to genetic abnormalities that presumably affect an early developmental signaling mechanism. The disruption of early B- and T-cell development leads to the appearance of lymphocytes that are predisposed to loss of tolerance. In certain strains of autoimmune mice, it also leads to overproduction of Ly1+ (CD5+) B cells or CD4-CD8-B220+ T cells, which apparently do not contribute to autoimmunity. The second type of defect is a strain-specific, antigen-driven autoimmune disease syndrome. This defect is limited by the affinities of the available T-cell receptor and immunoglobulin variable regions and the efficiency of antigen presentation. Current evidence suggests that the major histocompatibility complex molecules play the most important role in determining which autoantigens lead to a pathogenic antigen-driven immune response. For example, the type and magnitude of the autoimmune response may be directed by the production of specific cytokines. The type of antigen and the context of its presentation can bias the production of cytokines that favor the production of the Th2 subset of CD4+ T helper cells. These cells secrete predominantly interleukin-4, interleukin-5, and interleukin-10, and may contribute to a chronic response and autoimmune disease.

Animals

Immunoglobulin isotype distribution of locally produced autoantibodies to collagen type I in adult periodontitis. Relationship to periodontal treatment.

Production of antibodies to collagen type I was analyzed by means of an enzyme-linked immunospot (ELISPOT) assay in patients with chronic adult periodontitis (AP) before and after periodontal hygiene treatment. Anti-collagen type I antibody-secreting cells were found among mononuclear cells enzymatically eluted from inflamed gingiva in 9 of 15 patients with untreated AP and in 4 of 14 hygiene-treated patients with a varied isotype distribution. A notably high prevalence of IgG and IgM isotypes was observed for the anti-collagen antibodies in untreated patients. With wide variation, chronic AP was characterized by a high frequency of spontaneous IgG and low numbers of IgA and IgM-producing cells. Periodontal hygiene treatment significantly reduced the number of IgA and IgM-secreting cells. Although AP is not an autoimmune disease in the accepted sense, our results indicate that local autoimmune reactions to collagen type I are common in untreated AP, implying an interplay between periodontal infection and autoimmunity.

Autoantibodies

Antibody-producing cells in peripheral blood and salivary glands after oral cholera vaccination of humans.

We examined whether immunization with a newly developed oral cholera vaccine would elicit gut-derived antibody-producing cells in the blood and in distant mucosal tissues, such as the minor salivary glands, in 30 adult Swedish volunteers. The results of this study demonstrated that this vaccine indeed induced production of specific antibody-producing cells against the cholera toxin B subunit in both peripheral blood and salivary glands. The response in blood, which after primary and booster immunizations comprised both immunoglobulin A (IgA) and IgG antibody-forming cells, was highly transient and preceded the response in salivary glands; the latter response was restricted to the IgA isotype. The results provide further evidence of the existence of a common mucosal immune system in humans. Furthermore, these findings support previous observations that in animals, the cholera toxin B subunit may be a useful carrier protein for preparing enteric vaccines against pathogens encountered at intestinal and extraintestinal mucosal sites.

Administration, Oral

Swallowing problems in rheumatoid arthritis.

Twenty-nine female patients with definite or classical rheumatoid arthritis (RA) and 30 controls were investigated in order to evaluate oral symptoms, particularly xerostomia, and swallowing difficulties in RA by means of a questionnaire, physical examination, stimulated saliva secretion, labial salivary gland biopsy, esophageal manometry and laboratory blood tests. Xerostomia was reported by 6 patients (21%), compared with no-one in the control group. Four of these 6 patients had decreased stimulated saliva secretion, compared with 2 of the remaining 23 patients. Dysphagia was experienced by 8 patients (28%), compared with one control subject. Dysphagia was associated with disease severity. Esophageal manometry revealed a decrease of the amplitude of the peristaltic pressure complex in the proximal part of esophagus in the RA group, indicating dysfunction of the striated muscles. No correlation was found between dysphagia and esophageal manometry results.

Arthritis, Rheumatoid

Local IgA and IgM rheumatoid factor production in autoimmune MRL/lpr mice.

Spontaneous local immunoglobulin (IgA, IgG, IgM) as well as IgA and IgM rheumatoid factor (RF) production in salivary glands, lymph nodes, and spleen was analyzed at various ages in autoimmune MRL/Mp-lpr/lpr (MRL/lpr) mice by using an ELISPOT assay. The longitudinal design of the study permitted correlations with severity of disease in salivary glands (sialadenitis). Local production of immunoglobulins in salivary glands and lymph nodes occurred with a pattern of IgG much greater than IgM greater than IgA. This isotype pattern differed from that simultaneously observed in spleen where IgG did not predominate to the same extent. Moreover, the spleen was the major site of IgM production. Rheumatoid factors constituted a significant fraction of local IgA and IgM in involved salivary glands. The pattern of IgA RF isotype expression in salivary glands contrasted with that observed in spleen. While the number of IgA and IgG secreting cells increase at an early age, the peak of RF production in salivary glands occurs in older mice. Furthermore, the level of immunoglobulin secretion was positively correlated with disease severity in salivary glands. The results suggest that local RF production is a secondary event in salivary gland inflammation in MRL/1pr mice rather than an initiating factor in this process.

Animals

Multiple epitopes on cartilage type II collagen are accessible for antibody binding in vivo.

Monoclonal mouse antibodies specific for the major epitopes on mouse type II collagen (CII) were biotinylated and injected into neonatal and adult mice. Anti-CII antibodies, specific for four different epitopes on the CII molecule, could be shown to bind specifically to joint surfaces in the paws of 2-day-old syngeneic DBA/1 mice after an intraperitoneal injection of 100 micrograms of biotinylated antibody. The anti-CII antibodies did not bind to cartilage from DBA/1 mice in vitro, unless the sections were pretreated with hyaluronidase or the specimens decalcified prior to freezing, showing that the epitopes are accessible in vivo but not in vitro. By analyzing the in vivo binding capacity for a number of monoclonal anti-CII antibodies which represented different IgG subclasses, it could be demonstrated that binding to the same epitopes occurred independent of IgG subclass. However, one epitope (denoted "B1") was only weakly detected, possibly due to the fact that the antibody used (CIIB1) crossreacts with type I collagen and C1q. Monoclonal anti-CII antibodies, injected into neonates or adult mice, bound specifically to most, but not all, tissues containing CII; including hyaline joint cartilage, fibrous sternal and costal cartilage, tracheal cartilage and fibrous cartilage in the spine but not to CII-containing structures in the eye. The finding that CII, while present in cartilage, is accessible for antibody binding in vivo may have important implications for the availability of CII for the immune system and for the understanding of the development of pathological autoimmunity leading to collagen-induced arthritis in mice.

Animals

Involvement of macrophages and dendritic cells in synovial inflammation of collagen induced arthritis in DBA/1 mice and spontaneous arthritis in MRL/lpr mice.

Type II collagen induced arthritis (C1A) is an antigen-specific and T-cell dependent autoimmune disease in which the time course of disease is known. Arthritis is induced with type II collagen (CII) immunization, but can also be induced with passive transfer of anti-CII antibody containing syngenic serum and with local administration of gamma interferon. In the present study we analysed the spectrum of inflammatory cells appearing in the arthritic joints. Three phases of the disease process could be defined: 1) Early infiltration of T cells and appearance of class II expressing macrophages in the synovial lining layer 2) Profound infiltration of granulocytes and oedema formation and 3) Pannus formation containing activated macrophages, granulocytes, T cells and dendritic cells. At this severe destruction of cartilage and bone beginning from the marginal zone was seen. In contrast, joints from spontaneously arising arthritis in MRL lpr/lpr mice showed no granulocytes or T cells, sparse expression of class II but relatively uniform appearance of C3bi-receptor+, Fc-receptor+ and MOMA2+ synovial cells.

Animals

Arthritis in DBA/1 mice induced with passively transferred type II collagen immune serum. Immunohistopathology and serum levels of anti-type II collagen auto-antibodies.

Arthritis was induced in DBA/1 mice by passive transfer of syngeneic anti-type II collagen (CII) serum concentrate. After transfer of serum containing 0.2 or 0.5 mg anti-CII auto-antibodies the first clinical signs of arthritis appeared 48 h after injection. Severe clinical arthritis was detected 96 h after injection. Immunohistochemical analyses of joints 48 h after serum injection revealed synovial foci in intercarpal and metacarpophalangeal joints of macrophage-like cells, expressing C3bi-receptors and major histocompatibility complex class II molecules, and infiltration of few CD4+ lymphocytes. Later (96 h after injection), the inflamed synovia were dominated by C3bi-receptor+ polymorphonuclear cells. In contrast to conventionally induced collagen arthritis (CIA), the inflammatory infiltrates, filling joint spaces and synovial tissue, were extensively dominated by polymorphonuclear cells, whereas macrophage-like cells expressing class II molecules and a few T cells were seen only in the periphery of the developing pannus. The anti-CII serum induced arthritis may be used as a model for studies of humoral mediated mechanisms operating in conventionally induced CIA as well as in rheumatoid arthritis.

Animals

Expression of heterozygous lpr gene in MRL mice. II. Acceleration of glomerulonephritis, sialadenitis, and autoantibody production.

Recently we showed that not only homozygous MRL lpr/lpr mice but also heterozygous MRL +/lpr mice display defective antigen- and mitogen-driven T-cell responses as well as polyclonal B-cell activation compared with congeneic MRL +/+ mice. In this study we examined the impact of the heterozygous lpr gene on organ pathology in kidneys, joints, and salivary glands, as well as serum levels of immunoglobulins and autoantibodies in young and old MRL mice. Only 1 out of 17 heterozygous lpr-bearing MRL mice developed clinically overt renal disease with significant proteinuria and haematuria during the first year of life. However, examination of Ig and C3 deposits in glomeruli of kidneys from these mice revealed that the expression of the heterozygous lpr gene in MRL mice accelerates glomerulonephritis. In addition, histological examination of the submandibular salivary glands showed an increased focus score in heterozygous MRL mice at 4-5 months of age compared with that of matched congeneic +/+ mice. In contrast, no signs of arthropathy were registered in the heterozygous lpr-bearing MRL mice. Heterozygous MRL mice displayed an expanding lymphoid system as evaluated by significantly increased spleen and lymph node weights compared with those of matched MRL +/+ mice. Further evidence for immunomodulatory properties of the heterozygous lpr gene was obtained when analysing serum levels of IgG, IgM, and autoantibodies. Thus, heterozygous MRL +/lpr mice produced significantly higher levels of both Ig and autoantibodies than matched MRL +/+ mice. We conclude that the expression of the heterozygous lpr gene in MRL mice results in acceleration of the autoimmune process, giving rise to precocious clinical disease.

Age Factors

Infiltrating mononuclear cells in salivary glands and kidneys in autoimmune MRL/Mp-lpr/lpr mice express IL-2 receptor and produce interferon-gamma.

The salivary gland inflammatory lesions and renal vasculitic lesions of autoimmune MRL/lpr mice were analyzed for the presence of activated lymphocytes. Immunohistologic analysis revealed that the majority of lymphocyte-like cells in salivary glands and kidneys expressed CD4 antigen (greater than 50%). Lesser numbers of interleukin-2 receptor (IL-2R) expressing and interferon-gamma (IFN-gamma)-producing cells were present (1-5%). CD4+, IL-2R+, and IFN-gamma + mononuclear cells were found in small inflammatory foci. In larger inflammatory foci the IFN-gamma-producing cells were detected in the periphery in comparable numbers as the IL-2R expressing cells although with different location. Large numbers of cells in the inflammatory foci also expressed MHC Class II molecules (greater than 50%). The expression of IL-2R and production of IFN-gamma in the tissue lesions indicate presence of activated inflammatory T cells. Production of IFN-gamma by the infiltrating mononuclear cells may induce Class II antigens on epithelial cells and stimulate further T cell migration into the inflammatory site.

Animals

Elucidating the pathogenesis of autoimmune disease: recent advances at the molecular level and relevance to oral mucosal disease.

Humoral and/or cellular immune responses directed against self antigen are currently thought to underlie a wide spectrum of systemic and organ-specific human and animal autoimmune diseases. Although the immunopathology of these diseases has been well characterized in most cases, the etiology still remains obscure. In order to gain a more fundamental insight of the abnormal processes leading to autoimmunity, efforts are currently being directed toward defining these diseases at a molecular level. Because of the clinical diversity and immunological complexity of these diseases, several directions are being pursued. Relevant to autoimmune oral disease, this review will focus on antigen processing and recognition (immunoglobulin and T cell receptor genes), the key role of the major histocompatibility complex, and the involvement of the cytokine network. Advances made in these fields have clear relevance for future diagnostic and therapeutic strategies related to autoimmune diseases affecting oral tissues.

Animals

The relationship between intraoperatively assessed atrial and ventricular insertions of accessory pathways.

To gain insight into the complex problems regarding the extension of the atrial and ventricular insertions of anomalous pathways, the activation patterns obtained from intraoperative epicardial mapping in 23 patients with Wolff-Parkinson-White syndrome were carefully analyzed. The atrial and ventricular activation times along the atrioventricular groove were measured at 15 predefined anatomical landmarks. The width of the region of earliest atrial and ventricular activation times and the extent of atrial and ventricular overlap were assessed. The relationship between the atrial and ventricular insertions was studied by predicting the ventricular insertions from the observed atrial insertions and vice versa. The mean extension of an atrial and a ventricular insertion at surgery was 1.9 +/- 0.2 (SE) and 1.6 +/- 0.2 (SE) anatomical landmarks, respectively. The width of the region of early atrial and ventricular activation times measured 2.7 +/- 0.3 (SE) landmarks, thus indicating an overlap of the atrial and ventricular insertions. The lateral distance between the sites of earliest atrial and ventricular activation times was, on average, 1.7 +/- 0.3 (SE) landmarks. The predicted atrial insertion from a known ventricular insertion, and vice versa was found to cover 4 to 6 anatomical landmarks. These observations suggest that wide surgical dissections along the atrioventricular groove are warranted even if epicardial mapping discloses only a single accessory pathway.

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