Publications
2016
Sawaf Matthieu, Dumortier Hélène, Monneaux Fanny
Follicular Helper Ŧ Cells in Systemic Lupus Erythematosus: Why Should They Be Considered as Interesting Therapeutic Targets? Article de journal
Dans: Journal of Immunology Research, vol. 2016, p. 5767106, 2016, ISSN: 2314-7156.
Résumé | Liens | BibTeX | Étiquettes: Adult, Autoantibodies, B-Lymphocytes, Cell Differentiation, Dumortier, Germinal Center, Helper-Inducer, Humans, I2CT, Lupus Erythematosus, Molecular Targeted Therapy, Monneaux, Plasma Cells, Systemic, T-Lymphocytes, Team-Dumortier
@article{sawaf_follicular_2016,
title = {Follicular Helper Ŧ Cells in Systemic Lupus Erythematosus: Why Should They Be Considered as Interesting Therapeutic Targets?},
author = {Matthieu Sawaf and Hélène Dumortier and Fanny Monneaux},
doi = {10.1155/2016/5767106},
issn = {2314-7156},
year = {2016},
date = {2016-01-01},
journal = {Journal of Immunology Research},
volume = {2016},
pages = {5767106},
abstract = {Systemic lupus erythematosus (SLE) is a chronic autoimmune disease characterized by B cell hyperactivity leading to the production of autoantibodies, some of which having a deleterious effect. Reducing autoantibody production thus represents a way of controlling lupus pathogenesis, and a better understanding of the molecular and cellular factors involved in the differentiation of B cells into plasma cells could allow identifying new therapeutic targets. Follicular helper T cells (TFH) represent a distinct subset of CD4(+) T cells specialized in providing help to B cells. They are required for the formation of germinal centers and the generation of long-lived serological memory and, as such, are suspected to play a central role in SLE. Recent advances in the field of TFH biology have allowed the identification of important molecular factors involved in TFH differentiation, regulation, and function. Interestingly, some of these TFH-related molecules have been described to be dysregulated in lupus patients. In the present review, we give an overview of the aberrant expression and/or function of such key players in lupus, and we highlight their potential as therapeutic targets.},
keywords = {Adult, Autoantibodies, B-Lymphocytes, Cell Differentiation, Dumortier, Germinal Center, Helper-Inducer, Humans, I2CT, Lupus Erythematosus, Molecular Targeted Therapy, Monneaux, Plasma Cells, Systemic, T-Lymphocytes, Team-Dumortier},
pubstate = {published},
tppubtype = {article}
}
2013
Lacotte Stéphanie, Decossas Marion, Coz Carole Le, Brun Susana, Muller Sylviane, Dumortier Hélène
Early differentiated CD138(high) MHCII+ IgG+ plasma cells express CXCR3 and localize into inflamed kidneys of lupus mice Article de journal
Dans: PloS One, vol. 8, no. 3, p. e58140, 2013, ISSN: 1932-6203.
Résumé | Liens | BibTeX | Étiquettes: Animals, Autoantibodies, Cell Differentiation, CXCR3, Dumortier, Gene Expression Regulation, Histocompatibility Antigens Class II, I2CT, Immunoglobulin G, Inbred BALB C, Kidney, Leukocyte Common Antigens, Lupus Nephritis, Mice, Plasma Cells, Receptors, Syndecan-1, Team-Dumortier
@article{lacotte_early_2013,
title = {Early differentiated CD138(high) MHCII+ IgG+ plasma cells express CXCR3 and localize into inflamed kidneys of lupus mice},
author = {Stéphanie Lacotte and Marion Decossas and Carole Le Coz and Susana Brun and Sylviane Muller and Hélène Dumortier},
doi = {10.1371/journal.pone.0058140},
issn = {1932-6203},
year = {2013},
date = {2013-01-01},
journal = {PloS One},
volume = {8},
number = {3},
pages = {e58140},
abstract = {Humoral responses are central to the development of chronic autoimmune diseases such as systemic lupus erythematosus. Indeed, autoantibody deposition is responsible for tissue damage, the kidneys being one of the main target organs. As the source of pathogenic antibodies, plasma cells are therefore critical players in this harmful scenario, both at systemic and local levels. The aim of the present study was to analyze plasma cells in NZB/W lupus mice and to get a better understanding of the mechanisms underlying their involvement in the renal inflammation process. Using various techniques (i.e. flow cytometry, quantitative PCR, ELISpot), we identified and extensively characterized three plasma cell intermediates, according to their B220/CD138/MHCII expression levels. Each of these cell subsets displays specific proliferation and antibody secretion capacities. Moreover, we evidenced that the inflammation-related CXCR3 chemokine receptor is uniquely expressed by CD138(high)MHCII(+) plasma cells, which encompass both short- and long-lived cells and mostly produce IgG (auto)antibodies. Expression of CXCR3 allows efficient chemotactic responsiveness of these cells to cognate chemokines, which production is up-regulated in the kidneys of diseased NZB/W mice. Finally, using fluorescence and electron microscopy, we demonstrated the presence of CD138(+)CXCR3(+)IgG(+) cells in inflammatory areas in the kidneys, where they are very likely involved in the injury process. Thus, early differentiated CD138(high)MHCII(+) rather than terminally differentiated CD138(high)MHCII(low) plasma cells may be involved in the renal inflammatory injury in lupus, due to CXCR3 expression and IgG secretion.},
keywords = {Animals, Autoantibodies, Cell Differentiation, CXCR3, Dumortier, Gene Expression Regulation, Histocompatibility Antigens Class II, I2CT, Immunoglobulin G, Inbred BALB C, Kidney, Leukocyte Common Antigens, Lupus Nephritis, Mice, Plasma Cells, Receptors, Syndecan-1, Team-Dumortier},
pubstate = {published},
tppubtype = {article}
}