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N R Rose

Publications and source records attributed to N R Rose.

At least 19 recordsLinked to original sources

In vivo deposition of myosin-specific autoantibodies in the hearts of mice with experimental autoimmune myocarditis.

Experimental autoimmune myocarditis (EAM) is elicited in certain strains of mice by immunizing with mouse cardiac myosin. Concomitant with the onset of myocardial inflammation is the induction of circulating IgG antibodies to myosin. To further examine the role of myosin in disease, both EAM-susceptible (A/J) and EAM-resistant (B10.A) mice were immunized with myosin emulsified in CFA and examined for myocardial inflammation and IgG deposition. Myocarditis was common in susceptible, but not resistant strain mice. IgG deposition was extensive in A/J mice, but modest in B10.A mice, when compared to controls given adjuvant alone. Localization was independent of inflammatory or necrotic lesions. A spot ELISA indicated that antimyosin IgG antibody-secreting cells were present in the myocardial infiltrate and likely contributed to antibody localization. Antibody was eluted from the hearts of immunized animals and found to react strongly with normal heart tissue by indirect immunohistochemistry. This reactivity was not completely absorbed by skeletal muscle, indicating that some of the antibody was heart-specific. Western immunostaining demonstrated that eluates from immunized A/J and B10.A mice possessed anti-myosin antibody activity; similar reactivity was not observed in eluates from control mice of either strain. Comparison of heart reactivity with syngeneic and allogeneic tissue suggests that although myosin immunization elicits homologous antibody in both strains, each may recognize distinct epitopes. These findings strongly suggest that cardiac myosin or a myosin-like determinant is expressed on the surface of normal mouse myocytes.

Animals

Interleukin 1 or tumor necrosis factor can promote Coxsackie B3-induced myocarditis in resistant B10.A mice.

We have previously demonstrated that bacterial lipopolysaccharide (LPS) is capable of promoting Coxsackie B3 (CB3)-induced myocarditis in genetically resistant B10.A mice. Because LPS is known to increase production of various cytokines, we tested CB3-infected, LPS-treated mice for the presence of interleukin 1 (IL-1) and tumor necrosis factor (TNF). We found significantly increased amounts of both cytokines in the sera of CB3/LPS-treated mice compared with animals treated only with LPS. We also found immunohistochemical evidence for local production of these cytokines in the cardiac tissue of CB3/LPS-treated mice. Treatment with IL-1 or TNF alone promoted CB3-induced autoimmune myocarditis in resistant B10.A mice. Myocarditis was also observed when uninfected mice were immunized with syngeneic heart extract in the presence of IL-1 or TNF.

Animals

In situ detection of human cytomegalovirus immediate-early gene transcripts within cardiac myocytes of patients with HIV-associated cardiomyopathy.

OBJECTIVE: Recent clinical and echocardiographic studies have identified dilated cardiomyopathy in 10-20% of HIV-infected adults. The purpose of this study was to determine the role of cardiotropic cytomegalovirus (CMV) infection in the development of HIV-associated cardiomyopathy. DESIGN: We generated sense and antisense digoxigenin-labeled riboprobes derived from the CMV immediate-early (IE) and delayed-early (DE) genes and applied them retrospectively to endomyocardial biopsy samples and control autopsy cardiac samples from HIV-infected patients. SETTING: Tertiary care, referral hospital. PATIENTS: Twelve consecutive HIV-infected patients with global left ventricular hypokinesis demonstrated on two-dimensional echocardiography; eight randomly selected control autopsy cardiac samples from HIV-infected patients without cardiac disease during life. MEASUREMENTS AND MAIN RESULTS: Of the 12 endomyocardial biopsy specimens, six (50%) were found to have specific myocyte nuclear and perinuclear hybridization for transcripts of the CMV IE gene, consistent with non-permissive or latent infection. Similar patterns were not found in any of the eight autopsy control samples. All six patients presented with unexplained congestive heart failure and had CD4 counts less than 100 x 10(6)/l; all six biopsy samples had immunohistochemical evidence of increased myocardial major histocompatibility complex (MHC) class I expression, a finding typical of non-HIV myocarditis. None of the endomyocardial biopsy samples had characteristic CMV inclusions and no specific hybridization was noted with the DE gene riboprobe, suggesting that no active viral DNA replication was present. Only two of the six patients with myocyte hybridization with the IE riboprobe had clinical evidence of solid organ infection with CMV at the time of cardiovascular presentation. CONCLUSIONS: This study is the first to demonstrate the expression of the IE gene of CMV within myocytes from HIV-infected patients with cardiomyopathy, suggesting a non-permissive infection of myocytes without classical intranuclear inclusions. Myocyte infection may be necessary to trigger cellular and humoral-mediated cardiac injury and may be best identified using in situ hybridization techniques.

Adult

Immunology.

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Acute Disease

Antigen-specific immunoregulation and autoimmune thyroiditis.

1. Large Thy1+, CD8+ immunoregulatory cells were found in the thymus of mice 9-16 days after injection of soluble mouse thyroglobulin (without adjuvant). 2. Similar immunoregulatory cells appeared in the spleen 14-21 days after antigen administration suggesting that they were generated in the thymus and later migrated to the spleen. 3. The immunoregulatory cells were antigen-specific and attached to cognate antigen. 4. The degree of inhibition by the immunoregulatory cells differed among various inbred strains of mice and were virtually absent from SJL mice. 5. The regulatory function of the cells was strain specific in vitro and in vivo, and was restricted by both H-2 and non-H-2 haplotype. 6. By panning on antigen-coated plates, immunoregulatory cells were isolated and cell lines and clones with inhibitory function established.

Animals

The interaction of basic science and population-based research: autoimmune thyroiditis as a case history.

This brief commentary illustrates how laboratory research compliments populational research. The finding that susceptibility to autoimmune thyroid disease in animals is due to the additive effects of a number of unrelated genes led to a field study of a genetically predisposed population. In humans, as in animals, the major histocompatibility complex plays a preeminent role. Unlike many other autoimmune diseases, however, different HLA haplotypes predominate in different families, just as different H-2 haplotypes determine susceptibility in different strains of mice. Like the predisposed chicken, humans have a number of other genes that act independently to influence autoimmune susceptibility. Insight into the nature and action of the additional genes depends upon renewed studies of the animal models. Thus, we see a symbiotic relation between basic science as practiced in the laboratory and population-based research in the field.

Animals

LPS promotes CB3-induced myocarditis in resistant B10.A mice.

Coxsackie virus B3 (CB3) infection of A/J or A.SW mice results in autoimmune myocarditis characterized by a diffuse mononuclear cell infiltrate and heart-specific autoantibodies. C57BL/10 congenic mice that are identically treated are resistant to this disease. CB3-infected resistant B10.A mice were treated with LPS to determine if this immunomodulator alters disease susceptibility. In contrast to mice infected only with CB3 or treated only with LPS. CB3-infected/LPS-treated (CB3/LPS) B10.A mice developed autoimmune myocarditis similar to that observed in susceptible A/J or A.SW mice. By Day 14, CB3/LPS-induced disease was characterized by significant mortality, myocardial immunoglobulin deposition, and mononuclear cell infiltration of the heart. Immunohistochemical examination revealed deposits of IgG in the heart tissue and serum IgG autoantibodies reactive with sarcolemmal and fibrillary antigens in normal heart tissue. This serum IgG reacted with normal mouse cardiac antigens of a wide range of molecular weights by Western immunoblotting. Because LPS treatment is capable of increasing cytokine levels as well as MHC Class I and Class II expression in heart tissue, it suggests that these factors may contribute to susceptibility to autoimmune myocarditis in CB3-infected mice.

Animals

Autoimmune myocarditis: concepts and questions.

There has been a resurgence of interest in immunologically-mediated heart disease, culminating in a recent meeting. This interest was sparked off by new experimental models of autoimmune myocarditis that have served two useful functions: first, as good models of human myocarditis and second, as paradigms of infection-induced autoimmune disease.

Animals

Clinicopathologic description of myocarditis.

Histologic evidence of myocarditis was demonstrated in 35 of 348 patients submitted to endomyocardial biopsy over 5 years. Analysis of the histologic findings and clinical course of these patients resulted in a new clinicopathologic classification of myocarditis in which four distinct subgroups are identified. Patients with fulminant myocarditis become acutely ill after a distinct viral prodrome, have severe cardiovascular compromise, multiple foci of active myocarditis by histologic study and ventricular dysfunction that either resolves spontaneously or results in death. Patients with acute, chronic active and chronic persistent myocarditis have a less distinct onset of illness. Patients with acute myocarditis present with established ventricular dysfunction and may respond to immunosuppressive therapy or their condition may progress to dilated cardiomyopathy. Those with chronic active myocarditis initially respond to immunosuppressive therapy, but they have clinical and histologic relapses and develop ventricular dysfunction associated with chronic inflammatory changes including giant cells on histologic study. Chronic persistent myocarditis is characterized by a persistent histologic infiltrate, often with foci of myocyte necrosis but without ventricular dysfunction despite other cardiovascular symptoms such as chest pain or palpitation.

Acute Disease

Elution of autoantibodies from the hearts of coxsackievirus-infected mice.

Circulating heart-reactive antibodies are commonly reported in myocarditis and cardiomyopathy patients. While these observations support the hypothesis that autoimmune mechanisms may be involved in pathogenesis, such evidence is largely circumstantial. The current studies demonstrate that heart-reactive antibodies can be eluted from the hearts of infected Coxsackievirus B3-infected A/J mice with post-infectious autoimmune myocarditis, but not from the hearts of infected B10.A mice which are resistant to autoimmune myocarditis. The eluted antibodies recognize fewer cardiac antigens than are recognized by circulating antibodies. These results provide an opportunity to examine the role of autoantibodies in the pathogenesis of chronic myocarditis.

Animals

Heart-specific autoantibodies can be eluted from the hearts of Coxsackievirus B3-infected mice.

This study was undertaken to determine if immunoglobulin G (IgG) antibodies could be eluted from the hearts of mice with Coxsackievirus B3-induced autoimmune myocarditis and to characterize the immunoreactivity of any elutable autoantibodies. Susceptible (A/J) and resistant (B10.A) mice were administered the virus or the control treatment and killed at various times after treatment. Acid eluates from pooled heart tissue from each treatment group and each time were tested for IgG reactivity with normal heart tissue by immunohistochemistry and with normal heart extracts by Western immunostaining. Eluates from infected A/J mice reacted strongly with syngeneic heart and modestly with syngeneic skeletal muscle tissue. Eluates from infected B10.A or control mice of either strain exhibited little reactivity with either tissue. Tissue reactivity was similar when allogeneic tissue was used as the substrate. Eluates from infected A/J mice recognized the heavy chain of cardiac myosin and several other cardiac antigens by Western immunostaining while eluates from the other treatment groups exhibited little or no reactivity with any normal heart constituents. These results indicate that in vivo IgG deposition occurs in the hearts of mice with post-infectious autoimmune myocarditis and that the specificity of these antibodies is similar to that reported for serum from animals with this disease. The mechanism(s) leading to myocardial IgG deposition and its possible role in pathogenesis remain to be elucidated.

Animals

Preliminary studies on the indium slide immunoassay for estimation of human chorionic gonadotropin and antihuman chorionic gonadotropin antibody.

Human chorionic gonadotropin (hCG) is synthesized and secreted as early as 170 hr after fertilization and has been used as an index for pregnancy. Neutralization of hCG with a beta-subunit hCG vaccine(s) has been proposed as a contraceptive technique. To monitor the duration of effectiveness of the vaccine, it will be necessary to monitor the anti-hCG antibodies, especially those responsible for inhibiting the hCG bioactivity. We report a simple, rapid technique using an indium slide immunoassay for the qualitative estimation of hCG and to monitor a bioeffective anti-hCG antibody. The sensitivity of the indium slide assay to measure hCG ranged from 1 microgram/ml to 1 ng/ml, depending on the format of the assay. The indium slide assay also detected anti-hCG antibodies generated against a specific determinant on hCG recognized by a neutralizing monoclonal antibody (P3W80) in women immunized with a contraceptive vaccine.

Antibodies