Publications
2019
Camara Abdouramane, Cordeiro Olga G, Alloush Farouk, Sponsel Janina, Chypre Mélanie, Onder Lucas, Asano Kenichi, Tanaka Masato, Yagita Hideo, Ludewig Burkhard, Flacher Vincent, Mueller Christopher G
Lymph Node Mesenchymal and Endothelial Stromal Cells Cooperate via the RANK-RANKL Cytokine Axis to Shape the Sinusoidal Macrophage Niche Article de journal
Dans: Immunity, vol. 50, no. 6, p. 1467–1481.e6, 2019, ISSN: 1097-4180.
Résumé | Liens | BibTeX | Étiquettes: Activation, Animals, Biomarkers, Cell Differentiation, Cells, Cellular, Cellular Microenvironment, cytokine, Cytokines, deficiency, Differentiation, Endothelial Cells, ENDOTHELIAL-CELLS, environment, Expression, immune regulation, Immunology, Immunophenotyping, inflammation, LYMPH, LYMPH NODE, Lymph Nodes, lymphatic endothelial cells, Lymphoid Tissue, Macrophage, Macrophages, Mesenchymal Stem Cells, mesenchymal stromal cells, Mice, rank, RANK ligand, Receptor Activator of Nuclear Factor-kappa B, Regulation, Signal Transduction, Stromal Cells, Team-Mueller, transgenic
@article{camara_lymph_2019,
title = {Lymph Node Mesenchymal and Endothelial Stromal Cells Cooperate via the RANK-RANKL Cytokine Axis to Shape the Sinusoidal Macrophage Niche},
author = {Abdouramane Camara and Olga G Cordeiro and Farouk Alloush and Janina Sponsel and Mélanie Chypre and Lucas Onder and Kenichi Asano and Masato Tanaka and Hideo Yagita and Burkhard Ludewig and Vincent Flacher and Christopher G Mueller},
doi = {10.1016/j.immuni.2019.05.008},
issn = {1097-4180},
year = {2019},
date = {2019-01-01},
journal = {Immunity},
volume = {50},
number = {6},
pages = {1467--1481.e6},
abstract = {Tissue-resident macrophages are receptive to specific signals concentrated in cellular niches that direct their cell differentiation and maintenance genetic programs. Here, we found that deficiency of the cytokine RANKL in lymphoid tissue organizers and marginal reticular stromal cells of lymph nodes resulted in the loss of the CD169+ sinusoidal macrophages (SMs) comprising the subcapsular and the medullary subtypes. Subcapsular SM differentiation was impaired in mice with targeted RANK deficiency in SMs. Temporally controlled RANK removal in lymphatic endothelial cells (LECs) revealed that lymphatic RANK activation during embryogenesis and shortly after birth was required for the differentiation of both SM subtypes. Moreover, RANK expression by LECs was necessary for SM restoration after inflammation-induced cell loss. Thus, cooperation between mesenchymal cells and LECs shapes a niche environment that supports SM differentiation and reconstitution after inflammation.},
keywords = {Activation, Animals, Biomarkers, Cell Differentiation, Cells, Cellular, Cellular Microenvironment, cytokine, Cytokines, deficiency, Differentiation, Endothelial Cells, ENDOTHELIAL-CELLS, environment, Expression, immune regulation, Immunology, Immunophenotyping, inflammation, LYMPH, LYMPH NODE, Lymph Nodes, lymphatic endothelial cells, Lymphoid Tissue, Macrophage, Macrophages, Mesenchymal Stem Cells, mesenchymal stromal cells, Mice, rank, RANK ligand, Receptor Activator of Nuclear Factor-kappa B, Regulation, Signal Transduction, Stromal Cells, Team-Mueller, transgenic},
pubstate = {published},
tppubtype = {article}
}
2018
Mueller Christopher George, Nayar Saba, Gardner David, Barone Francesca
Cellular and Vascular Components of Tertiary Lymphoid Structures Article de journal
Dans: Methods in Molecular Biology (Clifton, N.J.), vol. 1845, p. 17–30, 2018, ISSN: 1940-6029.
Résumé | Liens | BibTeX | Étiquettes: Animals, Biomarkers, CCL21, Cell Survival, Cellular Microenvironment, CXCL13, Cytokines, Humans, Immunity, inflammation, Innate, LYMPHATIC VESSEL, Lymphocyte, Lymphocyte Subsets, Lymphotoxin, Multigene Family, Neovascularization, Pathologic, Receptors, Signal Transduction, Sjögren’s syndrome, Stromal cell, Team-Mueller, Tertiary lymphoid organ, Tertiary lymphoid structures, TNF-α, Tumor Necrosis Factor
@article{mueller_cellular_2018,
title = {Cellular and Vascular Components of Tertiary Lymphoid Structures},
author = {Christopher George Mueller and Saba Nayar and David Gardner and Francesca Barone},
doi = {10.1007/978-1-4939-8709-2_2},
issn = {1940-6029},
year = {2018},
date = {2018-01-01},
journal = {Methods in Molecular Biology (Clifton, N.J.)},
volume = {1845},
pages = {17--30},
abstract = {Inflammatory immune cells recruited at the site of chronic inflammation form structures that resemble secondary lymphoid organs (SLO). These are characterized by segregated areas of prevalent T- or B-cell aggregation, differentiation of high endothelial venules, and local activation of resident stromal cells, including lymphatic endothelial cells. B-cell proliferation and affinity maturation toward locally displayed autoantigens have been demonstrated at these sites, known as tertiary lymphoid structures (TLS). TLS formation during chronic inflammation has been associated with local disease persistence and progression, as well as increased systemic manifestations. While bearing a similar histological structure to SLO, the signals that regulate TLS and SLO formation can diverge and a series of pro-inflammatory cytokines have been ascribed as responsible for TLS formation at different anatomical sites. Moreover, for a long time the structural compartment that regulates TLS homeostasis, including survival and recirculation of leucocytes has been neglected. In this chapter, we summarize the novel data available on TLS formation, structural organization, and the functional and anatomical links connecting TLS and SLOs.},
keywords = {Animals, Biomarkers, CCL21, Cell Survival, Cellular Microenvironment, CXCL13, Cytokines, Humans, Immunity, inflammation, Innate, LYMPHATIC VESSEL, Lymphocyte, Lymphocyte Subsets, Lymphotoxin, Multigene Family, Neovascularization, Pathologic, Receptors, Signal Transduction, Sjögren’s syndrome, Stromal cell, Team-Mueller, Tertiary lymphoid organ, Tertiary lymphoid structures, TNF-α, Tumor Necrosis Factor},
pubstate = {published},
tppubtype = {article}
}
2017
Gies Vincent, Wagner Alain, Seifert Cécile, Guffroy Aurélien, Fauny Jean-D., Knapp Anne-M., Pasquali Jean-L., Martin Thierry, Dumortier Hélène, Korganow Anne-S., Soulas-Sprauel Pauline
Identification of autoreactive B cells with labeled nucleosomes Article de journal
Dans: Scientific Reports, vol. 7, no. 1, p. 602, 2017, ISSN: 2045-2322.
Résumé | Liens | BibTeX | Étiquettes: Animals, Autoantibodies, Autoantigens, Autoimmunity, B-Lymphocytes, Biomarkers, Cell Line, Dumortier, Female, Flow Cytometry, Humans, I2CT, Lupus Erythematosus, Mice, Nucleosomes, Staining and Labeling, Systemic, Team-Dumortier
@article{gies_identification_2017b,
title = {Identification of autoreactive B cells with labeled nucleosomes},
author = {Vincent Gies and Alain Wagner and Cécile Seifert and Aurélien Guffroy and Jean-D. Fauny and Anne-M. Knapp and Jean-L. Pasquali and Thierry Martin and Hélène Dumortier and Anne-S. Korganow and Pauline Soulas-Sprauel},
doi = {10.1038/s41598-017-00664-0},
issn = {2045-2322},
year = {2017},
date = {2017-01-01},
journal = {Scientific Reports},
volume = {7},
number = {1},
pages = {602},
abstract = {The pathogenesis of autoimmune diseases has not been completely elucidated yet, and only a few specific treatments have been developed so far. In autoimmune diseases mediated by pathogenic autoantibodies, such as systemic lupus erythematosus, the specific detection and analysis of autoreactive B cells is crucial for a better understanding of the physiopathology. Biological characterization of these cells may help to define new therapeutic targets. Very few techniques allowing the precise detection of autoreactive B cells have been described so far. Herein we propose a new flow cytometry technique for specific detection of anti-nucleosome B cells, which secrete autoantibodies in systemic lupus erythematosus, using labeled nucleosomes. We produced different fluorochrome-labeled nucleosomes, characterized them, and finally tested them in flow cytometry. Nucleosomes labeled via the cysteines present in H3 histone specifically bind to autoreactive B cells in the anti-DNA transgenic B6.56R mice model. The present work validates the use of fluorochrome-labeled nucleosomes via cysteines to identify anti-nucleosome B cells and offers new opportunities for the description of autoreactive B cell phenotype.},
keywords = {Animals, Autoantibodies, Autoantigens, Autoimmunity, B-Lymphocytes, Biomarkers, Cell Line, Dumortier, Female, Flow Cytometry, Humans, I2CT, Lupus Erythematosus, Mice, Nucleosomes, Staining and Labeling, Systemic, Team-Dumortier},
pubstate = {published},
tppubtype = {article}
}
2009
Hamrita Bechr, Chahed Karim, Trimeche Mounir, Guillier Christelle Lemaitre, Hammann Philippe, Chaïeb Anouar, Korbi Sadok, Chouchane Lotfi
Proteomics-based identification of alpha1-antitrypsin and haptoglobin precursors as novel serum markers in infiltrating ductal breast carcinomas. Article de journal
Dans: Clinica chimica acta; international journal of clinical chemistry, vol. 404, no. 2, p. 111–118, 2009, ISSN: 1873-3492 0009-8981, (Place: Netherlands).
Résumé | Liens | BibTeX | Étiquettes: 80 and over, Adult, Aged, alpha 1-Antitrypsin/*blood, Amino Acid Sequence, Biomarkers, Breast Neoplasms/blood/*pathology, Carcinoma, Ductal/blood/*pathology, Electrophoresis, Female, Gel, Haptoglobins/*analysis, Humans, Mass, Matrix-Assisted Laser Desorption-Ionization, Middle Aged, Molecular Sequence Data, PPSE, Protein Isoforms/blood, proteomics, Spectrometry, Tumor/*blood, Two-Dimensional
@article{hamrita_proteomics-based_2009,
title = {Proteomics-based identification of alpha1-antitrypsin and haptoglobin precursors as novel serum markers in infiltrating ductal breast carcinomas.},
author = {Bechr Hamrita and Karim Chahed and Mounir Trimeche and Christelle Lemaitre Guillier and Philippe Hammann and Anouar Chaïeb and Sadok Korbi and Lotfi Chouchane},
doi = {10.1016/j.cca.2009.03.033},
issn = {1873-3492 0009-8981},
year = {2009},
date = {2009-06-01},
journal = {Clinica chimica acta; international journal of clinical chemistry},
volume = {404},
number = {2},
pages = {111--118},
abstract = {BACKGROUND: The identification of pathological markers of breast cancer for either diagnosis, treatment response or for survival is of critical importance. METHODS: Serum protein profiling using 2-DE separations coupled to matrix-assisted laser desorption ionization mass spectrometry has been used to explore protein alterations in patients with infiltrating ductal breast carcinomas (IDCA). Sera from 39 breast cancer patients and 40 healthy controls were selected for screening study using 2-DE combined with MS. The protein expression patterns obtained after the depletion of high abundance proteins was determined by coomassie blue G-250 stain after 2-DE electrophoresis. RESULTS: Six proteins that expressed differentially in the IDCA group were found. The expression levels of four isoforms corresponding to haptoglobin precursor and two isoforms of alpha1-antitrypsin precursor (alpha1-AT) were upregulated in sera from breast cancer patients. There was an increased expression of both proteins in the sera of patients with various tumor stages (I, II, III) in comparison to healthy women. Applying immunohistochemistry, we further validated alpha1-AT immunoreactivity in 51 formalin-fixed paraffin-embedded sections of breast tumors. Enhanced expression of alpha1-AT like activity has been found in IDCA breast tumors, as well as, in different histological types of breast cancer. No significant association has been found with lymph node occurrence, while in high tumor categories a tendency to an increased expression of alpha1-AT has been found, thereby suggesting a possible role of this protein in tumor growth. CONCLUSIONS: These proteins may constitute new and useful markers of breast cancer that offer a clue to a better understanding of inflammatory pathways and carcinogenesis events linked to breast cancer progression.},
note = {Place: Netherlands},
keywords = {80 and over, Adult, Aged, alpha 1-Antitrypsin/*blood, Amino Acid Sequence, Biomarkers, Breast Neoplasms/blood/*pathology, Carcinoma, Ductal/blood/*pathology, Electrophoresis, Female, Gel, Haptoglobins/*analysis, Humans, Mass, Matrix-Assisted Laser Desorption-Ionization, Middle Aged, Molecular Sequence Data, PPSE, Protein Isoforms/blood, proteomics, Spectrometry, Tumor/*blood, Two-Dimensional},
pubstate = {published},
tppubtype = {article}
}
Schett G, Dumortier H, Hoefler E, Muller S, Steiner G
B cell epitopes of the heterogeneous nuclear ribonucleoprotein A2: identification of a new specific antibody marker for active lupus disease Article de journal
Dans: Annals of the Rheumatic Diseases, vol. 68, no. 5, p. 729–735, 2009, ISSN: 1468-2060.
Résumé | Liens | BibTeX | Étiquettes: Autoantibodies, B-Lymphocyte, Biomarkers, Dumortier, Enzyme-Linked Immunosorbent Assay, Epitopes, Female, Follow-Up Studies, Heterogeneous-Nuclear Ribonucleoprotein Group A-B, Humans, I2CT, Lupus Erythematosus, Male, Rheumatic Diseases, Severity of Illness Index, Systemic, Team-Dumortier
@article{schett_b_2009,
title = {B cell epitopes of the heterogeneous nuclear ribonucleoprotein A2: identification of a new specific antibody marker for active lupus disease},
author = {G Schett and H Dumortier and E Hoefler and S Muller and G Steiner},
doi = {10.1136/ard.2007.087502},
issn = {1468-2060},
year = {2009},
date = {2009-05-01},
journal = {Annals of the Rheumatic Diseases},
volume = {68},
number = {5},
pages = {729--735},
abstract = {OBJECTIVES: Autoantibody formation and T cell reactivity against the heterogeneous nuclear ribonucleoprotein A2 (hnRNP-A2) has been observed in patients with rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE). Since no differences in epitope recognition were reported and the usefulness of anti-hnRNP-A2 antibodies as diagnostic markers of SLE is unknown, it was our objective to characterise linear B cell epitopes of hnRNP-A2 and to relate the anti-hnRNP-A2 antibody responses to disease activity and clinical features of SLE.
METHODS: Sequential serum samples from 15 patients with SLE and sera from patients with other rheumatic diseases and healthy subjects were investigated by ELISA for autoantibody reactivities against a set of 13 overlapping peptides spanning the RNA-binding region of hnRNP-A2. Antibody reactivity against the complete protein was determined by western immunoblotting and ELISA. SLE disease activity was assessed by European Consensus Lupus Activity Measure scores, by SLE Index scores and the British Isles Lupus Assessment index.
RESULTS: Anti-peptide antibody reactivities were found in 60% of SLE sera but in only 5% of control samples, and were mainly directed to four peptides, one of which (p155-175) appeared to be immunodominant. Antibodies to p155-175 were exclusively seen in patients with SLE and correlated with clinical disease activity as well as kidney and skin involvement. No correlations were found for the other anti-peptide antibody responses.
CONCLUSION: Peptide p155-175 encompasses a disease-specific immunodominant epitope of hnRNP-A2. Since antibodies to p155-175 correlate with disease activity and nephritis, they may be useful as markers for active SLE.},
keywords = {Autoantibodies, B-Lymphocyte, Biomarkers, Dumortier, Enzyme-Linked Immunosorbent Assay, Epitopes, Female, Follow-Up Studies, Heterogeneous-Nuclear Ribonucleoprotein Group A-B, Humans, I2CT, Lupus Erythematosus, Male, Rheumatic Diseases, Severity of Illness Index, Systemic, Team-Dumortier},
pubstate = {published},
tppubtype = {article}
}
METHODS: Sequential serum samples from 15 patients with SLE and sera from patients with other rheumatic diseases and healthy subjects were investigated by ELISA for autoantibody reactivities against a set of 13 overlapping peptides spanning the RNA-binding region of hnRNP-A2. Antibody reactivity against the complete protein was determined by western immunoblotting and ELISA. SLE disease activity was assessed by European Consensus Lupus Activity Measure scores, by SLE Index scores and the British Isles Lupus Assessment index.
RESULTS: Anti-peptide antibody reactivities were found in 60% of SLE sera but in only 5% of control samples, and were mainly directed to four peptides, one of which (p155-175) appeared to be immunodominant. Antibodies to p155-175 were exclusively seen in patients with SLE and correlated with clinical disease activity as well as kidney and skin involvement. No correlations were found for the other anti-peptide antibody responses.
CONCLUSION: Peptide p155-175 encompasses a disease-specific immunodominant epitope of hnRNP-A2. Since antibodies to p155-175 correlate with disease activity and nephritis, they may be useful as markers for active SLE.