Abstract Sarcoidosis is a multisystem disorder that primarily affects the lungs and is characterizedby granulomatous inflammation. However, much of the underlying disease mechanisms remain poorly understood. Extracellular vesicles (EVs) are small membrane-bound particles released by all cells and carry various cargos including metabolites. They are involved in intercellular communication that can be dysregulated in diseases.This study characterizes the metabolic cargo of EVs isolated from bronchoalveolar lavage fluid (BALF), using liquid chromatography-mass spectrometry (LC-MS)-based metabolomic analysis, in patients with sarcoidosis (n=37), compared to healthy controls (n=10). Additionally, the sarcoidosis signature was compared to another pulmonary disorder, anti-synthetase syndrome (ASyS, n=10). Arachidonic acid (AA) results were verified by ELISA. A total of 1202 metabolites were detected, with 111 annotated ones further analyzed. EVs from sarcoidosis patients showed distinct metabolomic profiles compared to both ASyS patients and healthy controls, with 38 annotated metabolites differentially expressed in any of the groups. In both annotated and non-annotated data, sarcoidosis patients clustered separately from ASyS patients and healthy individuals. Furthermore, sarcoidosis patients clustered in 3 subgroups, whereof one was similar to ASyS patients and one stood out as showing higher cell counts in BALF. Higher AA levels were found in sarcoidosis patient EVs by LC-MS, and AA results were verified by ELISA. Our data show that BALF EV metabolites are disease-dependent and support the notion thatsarcoidosis patients should be further subgrouped for better diagnosis and treatment.
Background To address the reactivity and affinity against histidyl-transfer RNA synthetase (HisRS) autoantigen of anti-Jo1 autoantibodies from serum and bronchoalveolar lavage fluid (BALF) in patients with idiopathic inflammatory myopathies/anti-synthetase syndrome (IIM/ASSD). To investigate the associations between the reactivity profile and clinical data over time. Methods Samples and clinical data were obtained from (i) 25 anti-Jo1(+) patients (19 sera with 16 longitudinal samples and 6 BALF/matching sera at diagnosis), (ii) 29 anti-Jo1(-) patients (25 sera and 4 BALF/matching sera at diagnosis), and (iii) 27 age/gender-matched healthy controls (24 sera and 3 BALF/matching sera). Reactivity towards HisRS full-length (HisRS-FL), three HisRS domains (WHEP, antigen binding domain (ABD), and catalytic domain (CD)), and the HisRS splice variant (SV) was tested. Anti-Jo1 IgG reactivity was evaluated by ELISA and western blot using IgG purified from serum by affinity chromatography. In paired serum-BALF, anti-Jo1 IgG and IgA reactivity was analyzed by ELISA. Autoantibody affinity was measured by surface plasmon resonance using IgG purified from sera. Correlations between autoantibody reactivity and clinical data were evaluated at diagnosis and longitudinally. Results Anti-Jo1 IgG from serum and BALF bound HisRS-FL, WHEP, and SV with high reactivity at the time of diagnosis and recognized both conformation-dependent and conformation-independent HisRS epitopes. Anti-HisRS-FL IgG displayed high affinity early in the disease. At the time of IIM/ASSD diagnosis, the highest autoantibody levels against HisRS-FL were found in patients ever developing interstitial lung disease (ILD) and arthritis, but with less skin involvement. Moreover, the reactivity of anti-WHEP IgG in BALF correlated with poor pulmonary function. Levels of autoantibodies against HisRS-FL, HisRS domains, and HisRS splice variant generally decreased over time. With some exceptions, longitudinal anti-HisRS-FL antibody levels changed in line with ILD activity. Conclusion High levels and high-affinity anti-Jo1 autoantibodies towards HisRS-FL were found early in disease in sera and BALF. In combination with the correlation of anti-HisRS-FL antibody levels with ILD and ILD activity in longitudinal samples as well as of anti-WHEP IgG in BALF with poor pulmonary function, this supports the previously raised hypothesis that the lung might have a role in the immune reaction in anti-Jo1-positive patients.
ObjectiveAutoantibodies targeting histidyl–transfer RNA synthetase (HisRS; anti–Jo‐1) are common in the idiopathic inflammatory myopathies (IIMs) and antisynthetase syndrome. This study was undertaken to investigate immunity against HisRS in the blood and lungs of patients with IIM/antisynthetase syndrome.MethodsBronchoalveolar lavage (BAL) fluid, BAL fluid cells, and peripheral blood mononuclear cells (PBMCs) from patients with IIM/antisynthetase syndrome (n = 24) were stimulated with full‐length HisRS protein or a HisRS‐derived peptide (HisRS11–23). BAL fluid and PBMCs from patients with sarcoidosis (n = 7) and healthy subjects (n = 12) were included as controls. The CD4+ T cell response was determined according to levels of CD40L up‐regulation and cytokine expression using flow cytometry. Anti–Jo‐1 autoantibody responses in the serum and BAL fluid were assessed by enzyme‐linked immunosorbent assay. Lung biopsy samples from patients with IIM/antisynthetase syndrome (n = 14) were investigated by immunohistochemistry.ResultsIn BAL fluid, CD4+ T cells from 3 of 4 patients with IIM/antisynthetase syndrome responded to stimulation with HisRS protein, as measured by the median fold change in CD40L expresssion in stimulated cells compared to unstimulated cells (median fold change 3.6, interquartile range [IQR] 2.7–14.7), and 2 of 3 patients with IIM/antisynthetase syndrome had the highest responses to HisRS11–23 (median fold change 88, IQR 27–149). In PBMCs, CD4+ T cells from 14 of 18 patients with IIM/antisynthetase syndrome responded to HisRS protein (median fold change 7.38, IQR 2.69–31.86; P < 0.001), whereas a HisRS11–23 response was present in 11 of 14 patients with IIM/antisynthetase syndrome (median fold change 3.4, IQR 1.87–10.9; P < 0.001). In the control group, there was a HisRS11–23 response in 3 of 7 patients with sarcoidosis (median fold change 2.09, IQR 1.45–3.29) and in 5 of 12 healthy controls (median fold change 2, IQR 1.89–2.42). CD4+ T cells from patients with IIM/antisynthetase syndrome displayed a pronounced Th1 phenotype in the BAL fluid when compared to the PBMCs (P < 0.001), producing high amounts of interferon‐γ and interleukin‐2 following stimulation. Anti–Jo‐1 autoantibodies were detected in BAL fluid and germinal center (GC)–like structures were seen in the lung biopsy samples from patients with IIM/antisynthetase syndrome.ConclusionThe results of this study demonstrate a pronounced presence of HisRS‐reactive CD4+ T cells in PBMCs and BAL fluid cells from patients with IIM/antisynthetase syndrome as compared to patients with sarcoidosis and healthy controls. These findings, combined with the presence of anti–Jo‐1 autoantibodies in BAL fluid and GC‐like structures in the lungs, suggest that immune activation against HisRS might take place within the lungs of patients with IIM/antisynthetase syndrome.
Pulmonary complications play an important role in causing morbidity and mortality in myositis, and interstitial lung disease (ILD) has been reported in up to 65% of myositis patients. Clinical symptoms including cough and dyspnoea are common, but they are not reliable for ILD detection. The diagnosis should be based on pulmonary function tests, chest radiographs and high resolution computed tomography, which should all be regarded as standard procedures for the initial evaluation of all myositis patients. Biomarkers, in particular anti-aminoacyl tRNA synthetase antibodies, have been demonstrated to be useful in predicting the risk of ILD in patients with myositis. Glucocorticoids remain the mainstay of therapy in adult polymyositis and dermatomyositis patients with ILD, but most patients fail to fully respond to this treatment and require additional immunosuppressives such as methotrexate, cyclophosphamide, azathioprine and ciclosporin A. Other treatment options include intravenous γ-globulins, tacrolimus and CD20 monoclonal antibodies. Myositis is closely related to the antisynthetase syndrome, which also includes manifestations such as ILDs, arthritis, Raynaud’s phenomenon, fever and mechanic’s hands. In this syndrome, ILD is often the first manifestation of a chronic inflammatory disease. There is now also accumulating data to support a role of a T-cell- and B-cell-mediated immune response in the development of ILD in patients with anti-tRNA synthetase autoantibodies.
OBJECTIVE:To investigate whether sera or purified IgG from patients with polymyositis (PM) and patients with dermatomyositis (DM), with or without interstitial lung disease (ILD), can activate endothelial cells (ECs).METHODS:Patients' sera were selected based on the presence or absence of anti-Jo-1, anti-SSA, or anti-U1 small nuclear RNP autoantibodies. The presence of autoantibodies was determined by line blot assays. Cultured human microvascular ECs derived from lung tissue (HMVEC-L) were incubated with sera or purified IgG from 22 patients with PM, 7 patients with DM, and 10 healthy individuals as controls. Assessment of intercellular adhesion molecule 1 (ICAM-1) expression was conducted by immunofluorescence (n=22) and by cell-based enzyme-linked immunosorbent assay (ELISA) (n=20). Serum levels of soluble ICAM-1 (sICAM-1) were determined by ELISA.RESULTS:Sera from PM patients with ILD who were positive for anti-Jo-1 autoantibodies had a significantly stronger effect on the expression of ICAM-1 by HMVEC-L in comparison with sera from healthy controls and patients with other autoantibodies. Purified IgG did not induce ICAM-1 expression. Higher serum levels of sICAM-1 were found in patients with myositis compared with healthy controls.CONCLUSION:EC activation with ICAM-1 expression could contribute to the multiorgan involvement, including the development of myositis and ILD, in patients carrying anti-Jo-1 autoantibodies. The EC-activating factors are not the autoantibodies themselves, but might be systemic factors associated with these autoantibodies.
Testing analog circuits is a challenging endeavor. The subject paper investigates the oscillation-based built-in self-test (OBIST) technique for testing the analog circuits. An analog circuit-testing environment based on the OBIST method is considered and implemented.Experimental results show that OBIST is a promising testing method for analog circuits which neither requires a stimulus generator nor a complex result analyzer.
Congenital malformations causing mild cyanosis can be overlooked. A large intrapulmonary right pulmonary artery to left atrium connection was the unusual etiology of arterial oxygen desaturation and erythrocytosis in an asymptomatic 30-year-old patient. The shunt was not possible to detect at echocardiography. It was closed via a median sternotomy without the aid of cardiopulmonary bypass. A novel technique was to use an angiographic catheter inserted through the wide shunt into the left atrium before the operation to securely identify it at the surgical dissection.
OBJECTIVE:To estimate predictors and long-term outcome of interstitial lung disease (ILD) in patients with polymyositis (PM) and dermatomyositis (DM).METHODS:We conducted a prospective study in which newly diagnosed PM/DM patients, regardless of clinical symptoms of pulmonary disease, were investigated with repeated chest radiography, high-resolution computed tomography (HRCT) of the lungs, and pulmonary function test (PFT). Clinical, radiologic, and lung function outcome was based on the last followup results.RESULTS:Twenty-three patients with a mean followup period of 35 months were included. Findings on radiographic examination and/or PFT compatible with ILD were recorded in 18 patients (78%). Patients with ILD had lower lung function, higher radiologic scores, and higher creatine kinase values than those without ILD. All patients were treated with high-dose glucocorticoids and other immunosuppressive agents. Two patients died due to ILD, both with active myositis. During the followup, total lung capacity (TLC) improved in 33%, remained stable in 39%, and deteriorated in 28%. Changes in TLC correlated only partially with HRCT findings, which persisted even after normalizing for lung function.CONCLUSION:ILD associated with PM/DM is in most cases mild, chronic, and has a nonprogressive course during immunosuppressive treatment. PFT can be normalized during treatment with immunosuppressive therapy, even if radiologic signs of ILD persist. The course of ILD could not be predicted on the first examination. Therefore, myositis patients with ILD need careful evaluation of clinical features as well as PFT and radiologic features during followup.
OBJECTIVE To investigate T cell receptor (TCR) expression in 3 different compartments that could be involved in patients with myositis: muscle, lung, and peripheral blood. METHODS Nine patients with polymyositis (PM), dermatomyositis, or inclusion body myositis underwent bronchoscopy and bronchoalveolar lavage (BAL) as well as muscle biopsy and blood sampling. A panel of 19 monoclonal antibodies specific for TCR V(beta) (BV) and V(alpha) (AV) were used to characterize the TCR profile in CD4(+) and CD8(+) T cell populations in BAL fluid and peripheral blood by flow cytometry. Muscle biopsy tissues were analyzed by immunohistochemistry. Patients were also typed for HLA-DRB1 and DRB3 alleles. RESULTS A total of 17 T cell expansions were detected in BAL fluid, 6 in the CD4(+) T cell population and 11 in the CD8(+) T cell population. Four T cell expansions were detected in peripheral blood. A selective TCR V usage was found in muscle. Two PM patients, both of whom had BAL fluid BV3(+) T cell expansions in the CD4 population and in whom BV3 was also a prominent TCR V segment in muscle tissue, shared the HLA-DRB1*03 allele. These 2 patients were the only ones who were positive for anti-Jo-1 antibody. CONCLUSION We found a restricted accumulation of T lymphocytes expressing selected TCR V-gene segments in the target organ compartments (i.e., lung and muscle). The occurrence of shared TCR gene segment usage in muscle and lungs could suggest common target antigens in these organs.
Our aim was to investigate presence of tumour necrosis factor (TNF) and interleukin (IL)-10 in serum and their relation to different genotypes as well as to clinical and laboratory phenotypes in patients with polymyositis and dermatomyositis. In 65 patients with poly- or dermatomyositis the inflammatory cytokine balance was evaluated by the assessing absolute levels as well as the ratio between TNF and IL-10 in serum. These levels were correlated to the G-308A TNFA, G-1087A IL10 and G915C TGFB1 gene polymorphisms and haplotype frequencies, gender, autoantibody profiles and clinical manifestations. Increased serum levels of TNF and IL-10 were observed in patients compared to controls. A significantly higher TNF:IL-10 ratio was detected in female poly- and dermatomyositis patients carrying the TNF2 allele compared to female patients with the TNF1/TNF1 genotype (median±IQR 1.513±0.0.679 vs. 0.950±1.173, p=0.021). This ratio was also significantly higher in patients with the extended MICA5.1/TNF2/TNFa2/DRB1*03 haplotype compared to patients lacking this haplotype. A significantly higher TNF:IL-10 ratio was recorded in sera of patients with anti-Ro52 (1.513±1.275 and 1.276±0.671, positive vs. negative, p=0.010) antibodies and in women with anti-Jo-1 (1.919±0.918 and 1.281±0.790, positive vs. negative, p=0.041). Our data suggest that a genetically programmed cytokine imbalance exists in patients with poly- or dermatomyositis and that this imbalance is related to the presence of disease-associated autoantibodies.
PURPOSE OF REVIEW:The purpose of this review is to discuss current concepts regarding management of interstitial lung disease in polymyositis and dermatomyositis.RECENT FINDINGS:Interstitial lung disease seems to be a more frequent manifestation in patients with polymyositis and dermatomyositis than previously reported. Modern technology, including high-resolution computerized tomography in combination with pulmonary function tests provides sensitive tools to detect early signs of interstitial lung disease. By systematic use of these investigations in newly diagnosed polymyositis and dermatomyositis, up to two thirds of patients were discovered to have signs of interstitial lung disease in a recent study. Clinical symptoms such as cough and dyspnea may not be sensitive enough to detect interstitial lung disease. Awareness of this complication in patients with myositis is important, because early diagnosis and management of interstitial lung disease may prevent development of chronic pulmonary fibrosis and thereby prolong patient survival and improve quality of life. Treatment recommendations of interstitial lung disease in polymyositis and dermatomyositis are still limited by absence of controlled trials and could only be based on experiences from small case series and case reports. At least some patients with interstitial lung disease improve with immunosuppressive treatment, but data are limited, and longitudinal studies are needed.SUMMARY:Interstitial lung disease seems to be a common manifestation in patients with polymyositis and dermatomyositis already at diagnosis of the muscle disease. When present, interstitial lung disease has a major effect on morbidity and mortality and should be looked for in these patients using high-resolution computerized tomography and pulmonary function tests early in the disease course, because immunosuppressive treatment may change the course of the lung disease.