Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Direct contact of platelets and their released products exert different effects on human dendritic cell maturation

View through CrossRef
AbstractBackgroundDendritic cells (DCs) are antigen presenting cells capable of inducing innate and adaptive immune responses. According to the stimulus and their maturation state, DCs induce immunogenic or tolerogenic responses. Platelets (PLTs), which are involved in haemostasis and inflammation, can also interact with DCs. In this study, we examined the effect of PLTs on DC maturationin vitro. Human monocyte-derived DCs were co-cultured for 2 days with homologous PLTs either in the same well or in 0.4 μm-pore size filter-separated compartments.ResultsConfocal microscopy showed the attachment of PLTs to DC membranes. The DC receptor involved in this interactions was found to be CD162. In addition, we observed that DCs co-cultured with PLTs in filter-separated compartments acquired a mature phenotype (high CD80, CD86, and intermediate CD83 expression; IL-12(p70) production; efficient stimulation of autologous CD4+ T cell proliferation), while DCs co-cultured with PLTs in the same compartment did not undergo phenotypic maturation, did not secrete IL-12(p70) or IL-1β, but instead induced moderate Th2-polarized T cell proliferation.ConclusionThese data indicate that (i) PLTs secrete a soluble DC-activating factor that was demonstrated not to be soluble CD40-Ligand (CD154; as could have been expected fromin vivoand previousin vitrowork) but to be nucleotide, and (ii) that cell-to-cell contact did not induce DC maturation, possibly because nucleotide release by PLTs was prevented by direct contact with DCs. This work demonstrates that PLTs are active elements of the immune system that might play a role in balancing the ability of DCs to polarize T cell responses, therefore making them critical factors in transfusion processes.
Title: Direct contact of platelets and their released products exert different effects on human dendritic cell maturation
Description:
AbstractBackgroundDendritic cells (DCs) are antigen presenting cells capable of inducing innate and adaptive immune responses.
According to the stimulus and their maturation state, DCs induce immunogenic or tolerogenic responses.
Platelets (PLTs), which are involved in haemostasis and inflammation, can also interact with DCs.
In this study, we examined the effect of PLTs on DC maturationin vitro.
Human monocyte-derived DCs were co-cultured for 2 days with homologous PLTs either in the same well or in 0.
4 μm-pore size filter-separated compartments.
ResultsConfocal microscopy showed the attachment of PLTs to DC membranes.
The DC receptor involved in this interactions was found to be CD162.
In addition, we observed that DCs co-cultured with PLTs in filter-separated compartments acquired a mature phenotype (high CD80, CD86, and intermediate CD83 expression; IL-12(p70) production; efficient stimulation of autologous CD4+ T cell proliferation), while DCs co-cultured with PLTs in the same compartment did not undergo phenotypic maturation, did not secrete IL-12(p70) or IL-1β, but instead induced moderate Th2-polarized T cell proliferation.
ConclusionThese data indicate that (i) PLTs secrete a soluble DC-activating factor that was demonstrated not to be soluble CD40-Ligand (CD154; as could have been expected fromin vivoand previousin vitrowork) but to be nucleotide, and (ii) that cell-to-cell contact did not induce DC maturation, possibly because nucleotide release by PLTs was prevented by direct contact with DCs.
This work demonstrates that PLTs are active elements of the immune system that might play a role in balancing the ability of DCs to polarize T cell responses, therefore making them critical factors in transfusion processes.

Related Results

Rhog Regulates GPVI/FcRγ-Mediated Platelet Activation and Thrombus Formation
Rhog Regulates GPVI/FcRγ-Mediated Platelet Activation and Thrombus Formation
Abstract We investigated the mechanism of activation and functional role of a hitherto uncharacterized signaling molecule, RhoG, in platelets. RhoG is a ubiquitously...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Loss of 12-Lipoxygenase Improves the Post-Transfusion Function of Stored Platelets
Loss of 12-Lipoxygenase Improves the Post-Transfusion Function of Stored Platelets
Objective Platelets for transfusion are stored for 5-7 days. During storage, platelets undergo numerous detrimental functional changes. Previous studies have shown that HETE levels...
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
In vitro binding of an IgE protein to human platelets.
In vitro binding of an IgE protein to human platelets.
Abstract Bronchoconstriction in extrinsic asthma is initiated by mediators released from IgE-sensitized leukocytes after contact with polyvalent antigen. Because pla...
Loss of 12-Lipoxygenase Improves the Post-Transfusion Function of Stored Platelets
Loss of 12-Lipoxygenase Improves the Post-Transfusion Function of Stored Platelets
BACKGROUND: Platelets for transfusion are stored for 5 to 7 days. Previous studies have shown that HETE levels in the storage bag negatively correlate with platelet per...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...

Back to Top