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1.
Mol Immunol ; 170: 46-56, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38615627

ABSTRACT

Peritoneal B cells can be divided into B1 cells (CD11b+CD19+) and B2 cells (CD11b-CD19+) based on CD11b expression. B1 cells play a crucial role in the innate immune response by producing natural antibodies and cytokines. B2 cells share similar traits with B1 cells, influenced by the peritoneal environment. However, the response of both B1 and B2 cells to the same stimuli in the peritoneum remains uncertain. We isolated peritoneal B1 and B2 cells from mice and assessed differences in Interleukin-10(IL-10) secretion, apoptosis, and surface molecule expression following exposure to LPS and Interleukin-21(IL-21). Our findings indicate that B1 cells are potent IL-10 producers, possessing surface molecules with an IgMhiCD43+CD21low profile, and exhibit a propensity for apoptosis in vitro. Conversely, B2 cells exhibit lower IL-10 production and surface markers characterized as IgMlowCD43-CD21hi, indicative of some resistance to apoptosis. LPS stimulates MAPK phosphorylation in B1 and B2 cells, causing IL-10 production. Furthermore, LPS inhibits peritoneal B2 cell apoptosis by enhancing Bcl-xL expression. Conversely, IL-21 has no impact on IL-10 production in these cells. Nevertheless, impeding STAT3 phosphorylation permits IL-21 to increase IL-10 production in peritoneal B cells. Moreover, IL-21 significantly raises apoptosis levels in these cells, a process independent of STAT3 phosphorylation and possibly linked to reduced Bcl-xL expression. This study elucidates the distinct functional and response profiles of B1 and B2 cells in the peritoneum to stimuli like LPS and IL-21, highlighting their differential roles in immunological responses and B cell diversity.


Subject(s)
Apoptosis , B-Lymphocyte Subsets , Interleukin-10 , Interleukins , Lipopolysaccharides , Peritoneum , Animals , Mice , Antigens, CD19/immunology , Antigens, CD19/metabolism , Apoptosis/drug effects , Apoptosis/immunology , B-Lymphocyte Subsets/drug effects , B-Lymphocyte Subsets/immunology , B-Lymphocytes/drug effects , B-Lymphocytes/immunology , bcl-X Protein/metabolism , bcl-X Protein/immunology , CD11b Antigen/metabolism , CD11b Antigen/immunology , Interleukin-10/immunology , Interleukin-10/metabolism , Interleukins/immunology , Interleukins/pharmacology , Lipopolysaccharides/pharmacology , Lipopolysaccharides/immunology , Mice, Inbred C57BL , Peritoneum/immunology , Peritoneum/cytology , Phosphorylation/drug effects , STAT3 Transcription Factor/metabolism , STAT3 Transcription Factor/immunology
2.
FASEB J ; 38(1): e23327, 2024 01.
Article in English | MEDLINE | ID: mdl-38019178

ABSTRACT

Upon injury to Glisson's capsule, mesothelial cells covering the liver surface differentiate into myofibroblasts and participate in capsular fibrosis. In the fibrotic area, infiltrating macrophages are present, but their origin and role in capsular fibrosis remain elusive. In the present study, we examined whether macrophages in the peritoneal cavity migrate to the liver and participate in capsular fibrosis. Capsular fibrosis was induced by intraperitoneal injection of chlorhexidine gluconate. Chlorhexidine gluconate treatment induced disappearance of CD11bHigh F4/80High large peritoneal macrophages from the peritoneal cavity. Transplantation of TIMD4+ large peritoneal macrophages to the mouse peritoneal cavity resulted in their recruitment to the fibrotic area of the liver. Bone marrow-derived monocytes were also recruited to the chlorhexidine gluconate-induced fibrotic area upon their transplantation to the peritoneal cavity. However, bone marrow-derived macrophages, Kupffer cells, peritoneal B cells, and small peritoneal macrophages prepared from chlorhexidine gluconate-treated mice did not exhibit such potential. In the hepatic fibrotic area, peritoneal macrophages lost expression of unique markers (Gata6, Timd4) and increased expression of genes involved in inflammation (Il1b, Il6, Tnf) and extracellular matrix remodeling (Mmp13, Timp1). Depletion of peritoneal macrophages by clodronate liposomes reduced capsular fibrosis. Our data indicate that large peritoneal macrophages are recruited to the injured liver surface and promote capsular fibrosis by inducing inflammation and extracellular matrix remodeling. Modulating the function of peritoneal macrophages might be a new approach for suppressing capsular fibrosis.


Subject(s)
Liver Cirrhosis , Macrophages, Peritoneal , Animals , Mice , Inflammation
3.
Int J Mol Sci ; 22(7)2021 Mar 27.
Article in English | MEDLINE | ID: mdl-33801658

ABSTRACT

BACKGROUND: Gram-negative infections of the peritoneal cavity result in profound modifications of peritoneal B cell populations and induce the migration of peritoneal B cells to distant secondary lymphoid organs. However, mechanisms controlling the egress of peritoneal B cells from the peritoneal cavity and their subsequent trafficking remain incompletely understood. Sphingosine-1-phosphate (S1P)-mediated signaling controls migratory processes in numerous immune cells. The present work investigates the role of S1P-mediated signaling in peritoneal B cell trafficking under inflammatory conditions. METHODS: Differential S1P receptor expression after peritoneal B cell activation was assessed semi­quantitatively using RT-PCR in vitro. The functional implications of differential S1P1 and S1P4 expression were assessed by transwell migration in vitro, by adoptive peritoneal B cell transfer in a model of sterile lipopolysaccharide (LPS)­induced peritonitis and in the polymicrobial colon ascendens stent peritonitis (CASP) model. RESULTS: The two sphingosine-1-phosphate receptors (S1PRs) expressed in peritoneal B cell subsets S1P1 and S1P4 are differentially regulated upon stimulation with the TLR4 agonist LPS, but not upon PMA/ionomycin or B cell receptor (BCR) crosslinking. S1P4 deficiency affects both the trafficking of activated peritoneal B cells to secondary lymphoid organs and the positioning of these cells within the functional compartments of the targeted organ. S1P4 deficiency in LPS-activated peritoneal B cells results in significantly reduced numbers of splenic innate response activator B cells. CONCLUSIONS: The S1P-S1PR system is implicated in the trafficking of LPS-activated peritoneal B cells. Given the protective role of peritoneal B1a B cells in peritoneal sepsis, further experiments to investigate the impact of S1P4-mediated signaling on the severity and mortality of peritoneal sepsis are warranted.


Subject(s)
Gene Expression Regulation , Inflammation , Sphingosine-1-Phosphate Receptors/metabolism , Spleen/metabolism , Toll-Like Receptor 4/metabolism , Animals , B-Lymphocytes/metabolism , Cell Movement , Female , Immunity, Innate , Lipopolysaccharides/chemistry , Lipopolysaccharides/metabolism , Lymphocyte Activation , Mice , Mice, Inbred C57BL , Peritoneum/immunology , Peritoneum/metabolism , Peritoneum/pathology , Sepsis/physiopathology , Signal Transduction
4.
Ann Lab Med ; 40(1): 48-56, 2020 Jan.
Article in English | MEDLINE | ID: mdl-31432639

ABSTRACT

BACKGROUND: Anti-carbohydrate antibody responses, including those of anti-blood group ABO antibodies, are yet to be thoroughly studied in humans. Because anti-ABO antibody-mediated rejection is a key hurdle in ABO-incompatible transplantation, it is important to understand the cellular mechanism of anti-ABO responses. We aimed to identify the main human B cell subsets that produce anti-ABO antibodies by analyzing the correlation between B cell subsets and anti-ABO antibody titers. METHODS: Blood group A-binding B cells were analyzed in peritoneal fluid and peripheral blood samples from 43 patients undergoing peritoneal dialysis and 18 healthy volunteers with blood group B or O. The correlation between each blood group A-specific B cell subset and anti-A antibody titer was then analyzed using Pearson's correlation analysis. RESULTS: Blood group A-binding B cells were enriched in CD27+CD43+CD1c- B1, CD5+ B1, CD11b+ B1, and CD27+CD43+CD1c+ marginal zone-B1 cells in peripheral blood. Blood group A-specific B1 cells (P=0.029 and R=0.356 for IgM; P=0.049 and R=0.325 for IgG) and marginal zone-B1 cells (P=0.011 and R=0.410 for IgM) were positively correlated with anti-A antibody titer. Further analysis of peritoneal B cells confirmed B1 cell enrichment in the peritoneal cavity but showed no difference in blood group A-specific B1 cell enrichment between the peritoneal cavity and peripheral blood. CONCLUSIONS: Human B1 cells are the key blood group A-specific B cells that have a moderate correlation with anti-A antibody titer and therefore constitute a potential therapeutic target for successful ABO-incompatible transplantation.


Subject(s)
Antibodies/blood , B-Lymphocytes/metabolism , ABO Blood-Group System/immunology , Adult , Antigens, CD1/metabolism , B-Lymphocyte Subsets/cytology , B-Lymphocyte Subsets/metabolism , B-Lymphocytes/cytology , Female , Glycoproteins/metabolism , Humans , Kidney Failure, Chronic/immunology , Kidney Failure, Chronic/pathology , Leukosialin/metabolism , Male , Middle Aged , Peritoneal Dialysis , Prospective Studies
5.
J Virol ; 93(6)2019 03 15.
Article in English | MEDLINE | ID: mdl-30602604

ABSTRACT

Gammaherpesviruses are ubiquitous viruses that establish lifelong infections. Importantly, these viruses are associated with numerous cancers and lymphoproliferative diseases. While risk factors for developing gammaherpesvirus-driven cancers are poorly understood, it is clear that elevated viral reactivation from latency often precedes oncogenesis. Here, we demonstrate that the liver X receptor alpha isoform (LXRα) restricts gammaherpesvirus reactivation in an anatomic-site-specific manner. We have previously demonstrated that deficiency of both LXR isoforms (α and ß) leads to an increase in fatty acid and cholesterol synthesis in primary macrophage cultures, with a corresponding increase in gammaherpesvirus replication. Interestingly, expression of fatty acid synthesis genes was not derepressed in LXRα-deficient hosts, indicating that the antiviral effects of LXRα are independent of lipogenesis. Additionally, the critical host defenses against gammaherpesvirus reactivation, virus-specific CD8+ T cells and interferon (IFN) signaling, remained intact in the absence of LXRα. Remarkably, using a murine gammaherpesvirus 68 (MHV68) reporter virus, we discovered that LXRα expression dictates the cellular tropism of MHV68 in the peritoneal cavity. Specifically, LXRα-/- mice exhibit reduced latency within the peritoneal B cell compartment and elevated latency within F4/80+ cells. Thus, LXRα restricts gammaherpesvirus reactivation through a novel mechanism that is independent of the known CD8+ T cell-based antiviral responses or changes in lipid synthesis and likely involves changes in the tropism of MHV68 in the peritoneal cavity.IMPORTANCE Liver X receptors (LXRs) are nuclear receptors that mediate cholesterol and fatty acid homeostasis. Importantly, as ligand-activated transcription factors, LXRs represent potential targets for the treatment of hypercholesterolemia and atherosclerosis. Here, we demonstrate that LXRα, one of the two LXR isoforms, restricts reactivation of latent gammaherpesvirus from peritoneal cells. As gammaherpesviruses are ubiquitous oncogenic agents, LXRs may represent a targetable host factor for the treatment of poorly controlled gammaherpesvirus infection and associated lymphomagenesis.


Subject(s)
B-Lymphocytes/virology , Gammaherpesvirinae/immunology , Gammaherpesvirinae/physiology , Herpesviridae Infections/immunology , Liver X Receptors/immunology , Peritoneal Cavity/virology , Virus Latency/immunology , Animals , B-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/virology , Female , Herpesviridae Infections/virology , Host-Pathogen Interactions/immunology , Interferons/immunology , Lipogenesis/immunology , Male , Mice , Mice, Inbred C57BL , Peritoneum/immunology , Peritoneum/virology , Signal Transduction/immunology , Tropism/immunology , Virus Activation/immunology , Virus Replication/immunology
6.
Int J Mol Sci ; 19(2)2018 Jan 29.
Article in English | MEDLINE | ID: mdl-29382132

ABSTRACT

Introduction: Sphingosine-1-phosphate (S1P) regulates the migration of follicular B cells (B2 cells) and directs the positioning of Marginal zone B cells (MZ B cells) within the spleen. The function of S1P signalling in the third B cell lineage, B1 B cells, mainly present in the pleural and peritoneal cavity, has not yet been determined. Methods: S1P receptor expression was analysed in peritoneal B cells by real-time polymerase chain reaction (qPCR). The chemotactic response to S1P was studied in vitro. The role of S1P signalling was further explored in a s1p4-/- mouse strain. Results: Peritoneal B cells expressed considerable amounts of the S1P receptors 1 and 4 (S1P1 and S1P4, respectively). S1P1 showed differential expression between the distinct peritoneal B cell lineages. While B2 cells showed no chemotactic response to S1P, B1 B cells showed a migration response to S1P. s1p4-/- mice displayed significant alterations in the composition of peritoneal B cell populations, as well as a significant reduction of mucosal immunoglobulin A (IgA) in the gut. Discussion: S1P signalling influences peritoneal B1 B cell migration. S1P4 deficiency alters the composition of peritoneal B cell populations and reduces secretory IgA levels. These findings suggest that S1P signalling may be a target to modulate B cell function in inflammatory intestinal pathologies.


Subject(s)
B-Lymphocytes/metabolism , Chemotaxis , Immunoglobulin A/metabolism , Lysophospholipids/metabolism , Sphingosine/analogs & derivatives , Animals , Ascitic Fluid/cytology , B-Lymphocytes/physiology , Cells, Cultured , Immunoglobulin A/genetics , Intestinal Mucosa/metabolism , Mice , Mice, Inbred C57BL , Receptors, Lysosphingolipid/genetics , Receptors, Lysosphingolipid/metabolism , Signal Transduction , Sphingosine/metabolism
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