Shang-Hung Lin 1 2 3, Chung-Yuan Hsu 2 3 4, Sung-Chou Li 5 6 7
Tag: CD14+
Evidencia científica
Increased Circulating CD14+ Monocytes in Patients with Psoriatic Arthritis Presenting Impaired Apoptosis Activity
Biomedicines. 2024 Apr 1;12(4):775. doi: 10.3390/biomedicines12040775.
Psoriatic arthritis (PsA) is a chronic inflammatory arthritis primarily affecting peripheral and axial joints. The osteolytic effect in the damaged joint is mediated by osteoclast activation. We aimed to investigate differential gene expression in peripheral CD14+ monocytes between patients with psoriatic arthritis (n = 15) and healthy controls (HCs; n = 15). Circulating CD14+ monocytes were isolated from peripheral blood mononuclear cells using CD14+ magnetic beads. Cell apoptosis was measured via Annexin V using flow cytometry. The gene expression profiling was analyzed via microarray (available in the NCBI GEO database; accession number GSE261765), and the candidate genes were validated using PCR. The results showed a higher number of peripheral CD14+ monocytes in patients with PsA than in the HCs. By analyzing the microarray data, identifying the differentially expressed genes, and conducting pathway enrichment analysis, we found that the apoptosis signaling pathway in CD14+ cells was significantly impaired in patients with PsA compared to the HCs. Among the candidate genes in the apoptotic signaling pathway, the relative expression level of cathepsin L was confirmed to be significantly lower in the PsAs than in the HCs. We concluded that the numbers of peripheral CD14+ monocytes increased, and their apoptosis activity was impaired in patients with PsA, which could lead to enhanced macrophage maturation and osteoclast activation. The resistance of apoptotic death in peripheral CD14+ monocytes may contribute to active joint inflammation in PsA.
Evidencia científica
PP0485 NEW INSIGHTS INTO THE MECHANISM OF ACTION OFGRANULOCYTE-MONOCYTE APHERESIS REVEALED BY SINGLE-CELL TRANSCRIPTOMIC ANALYSIS
D. Kioroglu1 , J.L. Cabriada2, U. M. Marigorta1,3, I. Rodríguez-Lago Ueg journal
Volume11, Issue S8 Supplement: 31st United European Gastroenterology Week 2023 October 2023 Pages 799
Introduction: Granulocyte–monocyte apheresis (GMA) is a non-pharmacological therapy approved for the treatment of ulcerative colitis (UC), mainly in steroid-dependent cases. Its mechanism of action is based onthe removal of activated leukocytes, but its exact immunological changes have not been fully described yet. Aims & Methods: Our aim was to characterize the response in the transcriptome at the single-cell resolution level and cell population effects of GMA device. We analysed scRNASeq data from peripheral blood mono-nuclear cells (PBMC) of two UC patients undergoing their first GMA session. Their gene expression profile was compared before (PRE) and one month after (POST) the GMA treatment, from the inflow and outflow lines, respectively. The analytical pipeline included quality control and filtering, cell-type annotation, differential gene expression and pathway enrichment analysis. Results: Two patients with UC (mean age 59 years; both E2) were included.Overall, the cell populations that appear to have been affected by the GMA treatment were natural killer cells and monocytes with both populations being reduced after the treatment. The distribution of the annotated cell-types was 2,369 B cells (PRE:50%, POST:49%), 11,462 CD4+ (PRE:49%,POST:50%) and 8,845 CD8+ T-cells (PRE:51%, POST:48%), 47 dendritic cells (PRE:40%, POST:59%), 3,773 natural killer cells (PRE:54%, POST:45%) and 2,352 monocytes (PRE:59%, POST:40%). Annotation at higher resolution identified 27 cell-types with monocytes being subannotated as 1,972 CD14 (PRE:62%, POST:37%) and 380 CD16 (PRE:48%, POST:51%) monocytes. Differential gene expression analysis identified in total 86 significant genes across six cell-types (CD4+ naive and central memory T-cells, natural killer cells, B intermediate cells, double-negative T-cells and CD14monocytes) with 63% of these genes being downregulated after the GMA treatment. Pathway enrichment analysis identified higher contribution of the double-negative T-cells to the enriching genes. More specifically, after the treatment the double-negative T-cells exhibited upregulation of the NEFL that is associated with the MAPK cascade and downregulation of genes related to immune response and signalling pathways. Regarding the CD14 monocytes, after the GMA treatment we observed significant downregulation of the genes LINC02315, IGHEP1 and IGHE, with the latter being linked to innate immune response pathways. Conclusion: GMA induces a range of modifications in the gene expression profile across different cell types that change the immunological environment of UC patients.
Evidencia científica
HLA-DR(hi) and CCR9 Define a Pro-Inflammatory Monocyte Subset in IBD.
Ludvig Linton 1, Mats Karlsson, Jeanette Grundström, Eric Hjalmarsson, Annelie Lindberg, Emma Lindh, Hans Glise, Ragnar Befrits, Izabella Janczewska, Per Karlén, Ola Winqvist, Michael Eberhardson, Clin Transl Gastroenterol. 2012 Dec 20;3(12):e29.
CD14(+)HLA-DR(hi) blood monocytes were increased in patients with active IBD. These monocytes exhibit a pro-inflammatory, gut-homing phenotype with regard to their TNF-α production and expression of CCR9. Our results suggest that these monocytes are important in mediating intestinal inflammation, and provide potential therapeutic targets in IBD.
Evidencia científica
Adsorptive depletion of α4 integrin(hi)- and CX3CR1(hi)-expressing proinflammatory monocytes in patients with ulcerative colitis
Shin-ichiro Takeda 1, Toru Sato, Tatsuro Katsuno, Tomoo Nakagawa, Yoshiko Noguchi, Osamu Yokosuka, Yasushi Saito, Dig Dis Sci. 2010 Jul;55(7):1886-95.
We found high expressions of alpha4 integrin and CX(3)CR1 on monocytes in patients with active UC, known to promote the extravasation of CD14(+)CD16(+) monocytes into the mucosa. GMA effectively depletes CD14(+)CD16(+) monocytes and concomitantly increases CD14(hi)CD16(-)CCR2(low) «immature» monocytes; thus GMA was associated with the emergence of less inflammatory monocyte phenotype in circulation.
Evidencia científica
Granulocyte and Monocyte Adsorption Apheresis Therapy Modulates Monocyte-Derived Dendritic Cell Function in Patients With Ulcerative Colitis
Yuko Iwakami,Atsushi Sakuraba,Toshiro Sato,Yasuhiro Takada,Motoko Izumiya,Hitoshi Ichikawa,Toshifumi Hibi Ther Apher Dial 13, 2 (2009); 138-146
The aim of this study was to elucidate the molecular mechanisms responsible for the therapeutic effects of granulocyte and monocyte adsorption apheresis (GMA). We investigated the alterations in circulating monocyte subsets and monocyte-derived dendritic cell (moDC) function after GMA therapy in ulcerative colitis (UC) patients. Eighteen patients with UC were enrolled: 14 patients were responders, and 4 patients were non-responders. Peripheral venous blood was obtained within 5 min before and 5 min after GMA therapy. Flow cytometric analysis for monocyte markers (CD14/CD16) was then performed. Monocyte-derived dendritic cells were obtained and alterations in their phenotype were analyzed by flow cytometry. Their function was also analyzed in a mixed lymphocyte reaction assay between allo-naïve T lymphocytes. Flow cytometric analysis for intracellular interferon (IFN)-γ (T-helper 1 cells) and interleukin (IL)-4 (T-helper 2 cells) was then performed for the stimulated T lymphocytes. In patients who responded to GMA, the average numbers of monocytes, especially CD16+ monocytes, were significantly decreased after therapy (P < 0.05). In responders, post-GMA moDCs expressed significantly lower CD80 and B7-DC, which are one of the stimulation and maturation markers of dendritic cells, compared to pre-GMA moDCs. CD83, CD86 and human leukocytcde antigen-DR also showed a tendency to decrease. In responders, naïve T lymphocytes stimulated with post-GMA moDCs produced significantly less IFN-γ and IL-4 compared to those stimulated with pre-GMA moDCs. The results of our study show that some of the immunosuppressive effects of GMA therapy may be associated with the modulation of monocyte subsets and moDC function.
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