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J Müller-Quernheim

Publications and source records attributed to J Müller-Quernheim.

At least 37 records · Page 2Linked to original sources

Angiotensin-converting enzyme (ACE) gene polymorphisms and familial occurrence of sarcoidosis.

OBJECTIVES: The aim of this study was to test for genetic linkage and association between polymorphisms of the angiotensin-converting enzyme (ACE) gene and familial occurrence of sarcoidosis. DESIGN, SETTING AND SUBJECTS: German families with more than one member suffering from sarcoidosis were contacted and a DNA bank was established. Sixty-two families (140 patients, 77 females and 63 males, and 104 unaffected relatives) were genotyped for the ACE gene insertion/deletion (I/D) polymorphism and for two flanking variable sites (ACE A-5466C and ACE 4656(CT)2/3). As controls, 100 DNAs from unrelated resident Caucasians (50 females, 50 males) were analysed. ACE allele and genotype frequencies were determined, and parametric linkage and affected sib pair analyses and transmission disequilibrium tests were performed. RESULTS: There was a striking over-representation of the ACE I/D genotype DD in patients with sarcoidosis and their families as compared with controls of the study and well founded genotype frequencies from the literature. The same was evident for the accompanying genotypes CC and 2,2 of the flanking polymorphisms. Linkage between the segregation of ACE alleles and the disorder within families was clearly excluded for simple models of inheritance. However, there was a suggestive but not significant (P = 0.06) excess of allele sharing amongst affected siblings. There was no transmission disequilibrium for any ACE allele or haplotype. CONCLUSIONS: ACE is involved in the pathogenesis of sarcoidosis, but the ACE polymorphisms are not an inherited main cause of the disease. They are more likely to modify the development of the disorder, and the ACE I/D genotype DD might be a promoter to clinical manifestation.

Adult↗

[Corrected normal values for serum ACE by genotyping the deletion-/insertion-polymorphism of the ACE gene].

BACKGROUND: In sarcoidosis, serum ACE is widely recognised as a marker of disease activity. Since 1990 a deletion-/insertion polymorphism of the ACE gene is known and a correlation between the genotypes of this polymorphism and serum ACE levels has been observed. Homzygotes for the deletion allele (DD) have the highest levels and homozygotes for the insertion allele (II) the lowest. Heterozygote (DI) persons show intermediate levels. The extent of this influence varies in populations of different ethnic origin. In a large cohort of healthy individuals from North of Germany, genotype-based normal ranges for serum ACE were determined for the population of Germany for the first time. METHODS: In 262 healthy individuals the genotype of the ACE D/I gene polymorphism was determined from genomic DNA by a PCR method. In addition, in serum samples of all these individuals ACE level was measured with a kinetic test. RESULTS: The genotype DD was found in 29.4 % of the individuals examined, the genotype DI in 49.6 % and the genotype II in 21.0 %, respectively. These results are similar to those found in previous investigations in other populations of Central European origin. The mean serum ACE levels (95 % confidence interval) in individuals with the genotypes DD, DI and II are 59.8 U/l (31.8 - 87.8), 47.7 U/l (18.6 - 76.8) and 32.2 U/l (13.7 - 50.7), respectively. Without taking the genotype into account, the average value is 48.0 U/l (15.0 - 80.9). Differences between all genotype groups are highly significant (p < 0.0001). CONCLUSIONS: In sarcoidosis patients, the determination of this ACE gene polymorphism once in the course of the disease allows a better interpretation of the serum ACE levels measured.

Acetylcholinesterase↗

Analysis of gene polymorphisms in interleukin-10 and transforming growth factor-beta 1 in sarcoidosis.

BACKGROUND AND AIM OF WORK: Interleukin-10 (IL-10) and transforming growth factor-beta 1 (TGF-beta 1) are anti-inflammatory cytokines that play important roles in the immunoregulatory processes of numerous granulomatous diseases. In sarcoidosis polymorphisms (PMs) within these cytokine genes are suspected of modifing the course of the disorder. Therefore, we were interested in whether the genotype frequencies for a PM at position -1082 of the IL-10 or in codon 25 of the TGF-beta 1 gene differ in sarcoidosis or its distinct phenotypes in comparison with healthy individuals. METHODS: In 51 sarcoidosis patients and 72 healthy blood donors, genotyping for the named PMs was performed by PCR methodology and restriction enzyme digestion. Patients were retrospectively classified according to their course of disease, namely spontaneous remission, regressive under therapy, or chronic-progressive. RESULTS: For TGF-beta 1 PM the genotype frequencies ranged between 81.8-90.5, 9.6-13.9 and 0-5.3 percent for genotype GG, CG and CC respectively. For IL-10 PM the values ranged between 17.7-23.2, 54.4-68.4 and 21.1-26.4 percent for AA, AG and GG. Statistical comparisons of the allele and genotype frequencies between the clinical defined sarcoidosis groups and the healthy blood donors revealed no significant differences.

Adult↗

Evidence for disease phenotype associated haplotypes (DR.TNF) in sarcoidosis.

BACKGROUND AND AIM OF THE WORK: In a previous study, gene polymorphisms of the MHC locus (-308 TNFalpha promotor, HLA-DR) in patients with pulmonary sarcoidosis had been investigated and significant correlations with the presentation of the disease as defined by the presence of Löfgren syndrome had been found. Since genotyping of both loci was necessary to reveal a significant difference on the genetic level between the two patient groups Löfgren and non-Löfgren, a working hypothesis was derived in which a disease course associated haplotype, rather than single specific genes, was considered to play a role in the pathogenesis of sarcoidosis. METHODS: A first step to test this hypothesis was taken by calculating virtual haplotypes from these previous data. Statistical analysis of disease phenotype association and relative risk of these virtual haplotypes was performed to assess correlations with sarcoidosis and the two disease phenotypes. RESULTS: The results not only substantiated the previous findings, but also showed that the virtual haplotype DR3.TNFalpha2 was significantly associated with Löfgren syndrome and that the virtual haplotype DR2.TNFalpha1 was noticeably although not significantly associated with the non-Löfgren patients. CONCLUSIONS: Using theoretical calculations based on actual data, haplotypes, rather than single genes interacting with each other, were found to be a highly likely explanation for the previously published observations. In addition, the results allow the conclusion to be drawn that disease course associated haplotypes in sarcoidosis are highly probable and that further investigation of polymorphisms in the MHC gene region holds the potential of defining prognostic markers.

HLA-DR Antigens↗

Genetic predisposition and pathogenetic mechanisms of interstitial lung diseases of unknown origin.

Understanding of the cellular and cytokine interactions associated with inflammation and fibrosis in interstitial lung diseases (ILDs) has increased substantially during the past few years. Presently, many agents are known to have the ability to induce ILDs, although only a small percentage of exposed individuals will develop the disease. In addition, the majority of ILDs are of unknown origin and many are labelled "idiopathic". Therefore, host susceptibility, genetic factors and, possibly, environmental cofactors may be important for the clinical expression of ILDs. The present review reports evidence of the genetic predisposition to develop ILDs of unknown origin, more specifically sarcoidosis, idiopathic pulmonary fibrosis (IPF), lymphangioleio-myomatosis and ILDs, in systemic sclerosis. For instance, for sarcoidosis and IPF several histocompatibility antigens have been associated with the development and/or the clinical presentation of the disease. Furthermore, there are also several types of ILD that are associated with inherited disorders, of which the tuberous sclerosis complex is only one example. This clearly indicates that pulmonary fibrosis can be influenced by genetic factors. Familial occurrence of sarcoidosis and IPF is also well known, although the exact modes of inheritance are debatable. Several studies have shown that extrinsic factors, such as single or multiple fibrosing agents, probably contribute to the development of clinical ILDs of unknown origin. It is probable that some of these studies deal with patients who do not have classical IPF, as recently defined by the American Thoracic Society (ATS)/European Respiratory Society (ERS) consensus. Therefore, the true role of these extrinsic factors in the development of IPF, or even sarcoidosis, remains speculative. With the help of animal studies and, more specifically, by using knock-out mice, it may be possible in the near future to unravel at least some of the genes that are responsible for the increased susceptibility of the development of interstitial lung diseases.

Animals↗

Analysis of differentially regulated mRNAs in peripheral blood monocytes of berylliosis patients after in vitro stimulation.

In berylliosis and other granulomatous diseases the macrophage is regarded as effector cell in granuloma formation. However, little is known about granuloma-associated regulation of genes in these cells. Differential display reverse transcription polymerase chain reaction (DDRT-PCR) is an attractive method for detection of differentially expressed genes. Since DDRT-PCR requires a comparably low quantity of RNA, its application to rare and limited amounts of clinical samples is convenient. In the present study we applied DDRT-PCR in a multiple and complex comparison of expressed sequence tags induced in response to various granuloma-associated and control stimuli. Since we are interested in granuloma-restricted changes, we tested peripheral blood monocytes from berylliosis patients by DDRT-PCR stimulated with up to nine different stimuli, including BeSO4, the causal agent of berylliosis. Comparison of a total of 1663 sequence tags in four berylliosis patients revealed a mean of 32.5-37.4% differentially regulated sequence tags in peripheral blood monocytes of berylliosis patients, caused by stimuli including beryllium or Mycobacterium tuberculosis and control stimuli such as Latex or Zymosan. In 7.7-28.0% of the analyzed sequence tags we detected a differential regulation restricted to the presence of granuloma-associated stimuli BeSO4, HgS, LiCO3, NiSO4, lipopolysaccharide, and/or heat killed M. tuberculosis; 1.4-12.3% were induced by more than one granuloma-associated stimulus. Alterations associated with BeSO4 and one of the named stimuli were detected in 1.4-4.5%. An exclusive association with BeSO4 was found in 2.6-5.7% of the analyzed sequence tags.

Adult↗

Accessory function and costimulatory molecule expression of alveolar macrophages in patients with pulmonary tuberculosis.

An effective immune response against M. tuberculosis requires a coordinated interaction of alveolar macrophages (AM) and lymphocytes. Secondary signals, such as accessory function (AF) of antigen presenting cells and interaction of costimulatory molecules are also important for T cell activation. In the present study we determined the AF and the expression of CD11a, CD54, CD58, CD80, CD86 and HLA-DR costimulatory molecules by AMs lavaged from patients with pulmonary tuberculosis and controls. We hypothesized that alterations in AF and costimulatory molecule expression may influence the presentation of tuberculosis. Therefore these parameters were also correlated with the radiographic extension of the disease. AMs of patients with tuberculosis exhibited an increased AF and a significantly increased expression of co-stimulatory molecules compared with controls. Furthermore, we observed that the expression of CD54 (ICAM-1) decreased with the course of the disease. We conclude that the infection by M. tuberculosis results in an increased AF of AMs and the activity of AMs remains uninfluenced by the extension of the disease. Clear-cut changes of patterns of costimulatory molecule expression by AMs could not be observed with the progression of tuberculosis.

Antigens, CD↗

Serum level of soluble tumour necrosis factor receptor II (75 kDa) indicates inflammatory activity of sarcoidosis.

OBJECTIVES: Tumour necrosis factor alpha (TNFalpha) is a key cytokine involved in granuloma formation of sarcoidosis. Since soluble TNF receptors (sTNF-R) are known to inhibit TNF effects, we were interested in whether they are elevated in the serum of sarcoidosis patients. METHODS: We determined serum levels of sTNF-R I (55 kDa) and sTNF-R II (75 kDa) in 49 patients with sarcoidosis and 22 controls. The clinical course of the disease was re-evaluated in a follow-up after (mean +/- SE) 6.8 +/- 6.6 months. RESULTS: sTNF-R I (3.1 +/- 1.1 ng mL-1, P < 0.05) and sTNF-R II (5.5 +/- 2.7 ng mL-1, P < 0.0005) were significantly elevated in sarcoidosis compared with controls (2.4 +/- 0.7 and 3.0 +/- 1.3 ng mL-1, respectively). Interestingly, both sTNF receptors were significantly higher in the serum of patients with active compared with inactive sarcoidosis (P < 0.005 and P < 0.0005, respectively). Furthermore, serum sTNF-R II levels were significantly higher in sarcoidosis patients with advanced radiological types II and III. In 10 patients, serum sTNF-R levels were obtained before and after systemic corticosteroid therapy and we observed a significant decrease of sTNF-R II (P < 0.02), whereas sTNF-R I levels were not reduced significantly. CONCLUSIONS: Both types of sTNF receptors are elevated in the serum of sarcoidosis patients with active disease, but only the sTNF-R II seems to be useful for monitoring the inflammatory activity of the disease.

Adrenal Cortex Hormones↗

Familial sarcoidosis is linked to the major histocompatibility complex region.

Sarcoidosis is a systemic granulomatous disorder associated with high CD4+ cell activity, but no pathogen is detectable. Clustering in families occurs, and the existence of a genetic predisposition to sarcoidosis is widely accepted. The major histocompatibility complex (MHC) is believed to contribute to this susceptibility. Many studies testing this hypothesis have produced conflicting results. We have genotyped 122 affected siblings from 55 families for seven DNA polymorphisms that flank and cover the MHC region on chromosome 6, and for HLA-DPB1, a candidate gene for granulomatous disorders. Multipoint nonparametric linkage (NPL) analysis showed linkage (NPL score > 2.5; p < 0.006) for the entire MHC region with a maximum NPL score of 3.2 (p = 0.0008) at marker locus D6S1666 in the Class III gene cluster. There was a significant excess of marker haplotype sharing among affected siblings. However, the frequency of HLA-DPB1 alleles on 104 shared chromosomes did not differ from that of a control group of founders from the family panel. Transmission disequilibrium was found for allele DPB1*0201, but only nine families contributed to this result. We conclude that genes of the MHC are involved in the genetic predisposition to sarcoidosis, but HLA-DPB1 alone does not sufficiently explain this fact.

Alleles↗

Human alveolar epithelial cells type II are capable of regulating T-cell activity.

Alveolar epithelial cells type II (AEC-II) express MHC class II on their surface, an important prerequisite for antigen presentation. However, accessory signals are required for an efficient T-cell activation. We therefore isolated AEC-II from tumor-free sections of human lungs obtained by lobectomy/pneumectomy and purified the cells by magnetic-activated cell sorting. Furthermore, we tested the expression of CD54, CD58, CD80, and CD86 on AEC-II and evaluated their accessory function (AF) in cell culture using a coculture of interleukin-2 (IL-2), releasing Jurkat cells and AEC-II. An increased AF is documented by an elevated IL-2 release and expressed as accessory index (AI). In 33 experiments the AF of AEC-II proved to be highly variable. AI ranged between 0.3 and 17.1 with a median of 1.4 (0.3-17.1). Forty-four percent (4-77) of the AEC-II expressed HLA-DR, 44% (12-89%) of the cells expressed CD58, and CD54 was expressed by 55% (16-89%). AEC-II also expressed CD80 and CD86 (38% [0-77%] and 40% [4-68%], respectively). Interestingly, AEC-II released high levels of TGF beta (1730 pg/mL [771-5876]) and the accessory index could be increased (approximately 2-fold) by the addition of neutralizing anti-TGF beta antibodies or radiation. Thus, type II alveolar cells express costimulatory molecules and are able to deliver costimulatory signals for T cells, providing evidence that AEC-II are able to act as antigen-presenting and immunoregulatory cells of the lung. Additionally, the accessory function of AEC-II is under the control of endogenously released TGF beta.

Antigen-Presenting Cells↗

In vitro release of interleukin-15 by broncho-alveolar lavage cells and peripheral blood mononuclear cells from patients with different lung diseases.

IL-15 shares several biological activities with IL-2 and uses the b and g chain of the IL-2 receptor. In addition to its T-cell stimulating capacity, IL-15 exhibits regulatory properties on macrophage proinflammatory cytokine release. IL-15 is released by non-lymphoid cells, e.g. muscle cells, fibroblasts and monocytes/macrophages. In many lung diseases alveolar macrophages (AM) are activated and release pro- inflammatory cytokines. We asked whether IL-15 is released ex vivo by AM and peripheral blood mononuclear cells (PBMC) from patients with inactive sarcoidosis (PSi), active sarcoidosis (PSa), tuberculosis (TB), hypersensitivity pneumonitis (HSP), cryptogenic fibrosing alveolitis (CFA) and pneumonia (PN). Additionally, we examined the kinetics of the IL-15 release of these cells. During 24 hours of culture, AM from controls (CO) released 3.8 +/- 1.9 pg/ml (mean +/- SD) of IL-15, which was significantly lower than in most of the patient groups (PSa: 8.7 +/- 3.9 pg/ml, TB: 8.4 +/- 1.9 pg/ml, CFA: 5.7 +/- 1.5 pg/ml, and PN: 7. 8 +/- 2.6 pg/ml) except PSi (4.0 +/- 2.6 pg/ml) and HSP (9.3 +/- 9.5 pg/ml). PBMC from patients with PSa released significantly more IL-15 than PBMC from CO (10.8 +/- 8.9 pg/ml versus 6.9 +/- 2.2 pg/ml) whereas PBMC IL-15 release of the other groups did not differ from CO (TB: 5.7 +/- 1.4 pg/ml; CFA: 4.6 +/- 1.6 pg/ml; HSP: 4.9 +/- 3.8 pg/ml). Kinetic studies revealed a minor peak after 5 hours and a major peak from 12 hours to 35 hours for AM and PBMC. In summary, AM from all patient groups but the PSi and the HSP group released increased levels of IL-15, although the total amount of this cytokine is very low.

Alveolitis, Extrinsic Allergic↗

Effect of proinflammatory cytokines on interleukin-8 mRNA expression and protein production by isolated human alveolar epithelial cells type II in primary culture.

Alveolar epithelial cells type II (AEC-II) are ideally situated to regulate the recruitment and activation of different types of cells through the production of chemokines in response to inflammatory stimulation from the alveolar space. We hypothesized that these cells are important producers of interleukin-8 (IL-8) in the lung. This lead us to investigate the capacity of isolated human AEC-II cells to release IL-8 and whether this IL-8 release is regulated by proinflammatory cytokines, i.e. IL-1 beta, TNF-alpha and IFN-gamma. We isolated AEC-II from tumor-free sections of human lungs obtained by pneumectomy and purified the cells by magnetic activated cell sorting. For control experiments the AEC-II-like cell line A549 was used. IL-8 concentration was measured by ELISA in supernatants of unstimulated and LPS-, IL-1 beta-, TNF-alpha- and IFN-gamma- stimulated cells. IL-8 mRNA expression was evaluated by RT-PCR. Spontaneous IL-8 mRNA expression and protein secretion by AEC-II were significantly higher in comparison with A549 cells. TNF-alpha increased both IL-8 mRNA expression and protein production, whereas IL-1 beta slightly increased IL-8 release but did not change mRNA expression in AEC-II. LPS and IFN-gamma did not influence IL-8 expression in AEC-II and A549 cells. These results show considerable differences between A549 cell and AEC-II. The latter are capable of producing IL-8 under the control of proinflammatory cytokines. Our findings demonstrate that the modulation of IL-8 release in AEC-II may have an important impact on the immunoreactivity of these cells during pulmonary inflammation in vivo.

Cells, Cultured↗

Lymphocyte transformation test for the evaluation of adverse effects of antituberculous drugs.

The usefulness of the lymphocyte transformation test (LTT) for the analysis of adverse reactions to antituberculous drugs was evaluated. - The LTT was performed with isoniazid and rifampicin in 15 tuberculosis and 2 MOTT (Mycobacteria other than tuberculosis)-infection patients who suffered drug reactions, in 23 patients without any adverse reactions, in 7 controls previously exposed to antituberculous drugs, and in 14 controls who had never been exposed. 4/15 of the hepatotoxic reactions only showed a positive LTT with rifampicin, 3/15 only with isoniazid, and in 8/15 the LTT was negative. In an anaphylactoid shock reaction the LTT was extremely exaggerated for both rifampicin and isoniazid. In patients without any side effects only one slightly increased LTT due to isoniazid was observed. Two healthy controls with previous contact to these drugs showed a positive LTT for isoniazid, one of those with both rifampicin and isoniazid. The LTT was negative in all control persons without any former contact to antituberculous medications. In most cases hepatotoxicity seems to be a pure toxic reaction without the participation of cellular immune mechanisms. LTT can be useful for identifying the drug responsible for immunological side effects.

Adult↗

Expression of tumour necrosis factor receptors (CD120a and CD120b) on bronchoalveolar cells.

It is generally accepted that physiological modulators for tumour necrosis factor (TNF) are present in a variety of body fluids including serum. Among these modulators are soluble TNF receptors (TNF-R) that are cleaved from the extracellular domain of the TNF-Rs. Two receptors of different structures with molecular weights of 55 kDa (CD120a) and 75 kDa (CD120b) are known to be expressed on monocytes, lymphocytes, granulocytes and other cells of peripheral blood. The aim of our study was to determine the expression of CD120a and CD120b on bronchoalveolar lavage cells (BAL cells). BAL cells of 14 patients with different pulmonary disorders were stained with anti-CD120a and anti-CD120b monoclonal antibodies and were differentiated by FACS analysis. Both TNF-Rs are expressed on monocytes, macrophages, lymphocytes and granulocytes of the BAL. Although the relation of CD120a to CD120b is individual for a given cell type and an individual patient, strict correlations between both receptors were observed for BAL monocytes and alveolar macrophages. CD120a are expressed on 29.7% of alveolar macrophages; similar data were obtained for CD120b. 24.3% of the BAL monocytes were positive for CD120a and 25.5% for CD120b. 4.1% of the BAL lymphocytes were positive for CD120a whereas the percentage of CD120b positive BAL lymphocytes was approximately six times greater. Analysis of BAL granulocytes revealed 21.2% cells positive for CD120a and 11.6% for CD120b. In contrast to the BAL cells named above there was no positive correlation between CD120a and CD120b expression on BAL lymphocytes and granulocytes. We were able to show that TNF-Rs of BAL cells, like those of blood cells, are shedded in vitro after incubation with or without lipopolysaccharide (LPS), detected as TNFalpha-inhibitor activity in cell culture supernatant. In conclusion, BAL cells express and shed TNF-Rs, as is known for cells of other body compartments.

Antibodies, Monoclonal↗