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Routine Screening Method for Microparticles in Platelet Transfusions
Published on: January 31, 2018
Potential Involvement of Platelet-Derived Microparticles and Microparticles Forming Immune Complexes during Monocyte
Catalina Burbano1,2, Juan Villar-Vesga1, Janine Orejuela1
1Grupo de Inmunología Celular e Inmunogenética, Instituto de Investigaciones Médicas, Facultad de Medicina, Universidad de Antioquia UdeA, Medellín, Colombia.
Abstract:
Microparticles (MPs) are vesicles derived from the plasma membrane of different cells, are considered a source of circulating autoantigens, and can form immune complexes (MPs-ICs). The number of MPs and MPs-ICs increases in patients with systemic lupus erythematosus (SLE). MPs activate myeloid cells by inducing IL-6 and TNF-α in both SLE and other diseases. Therefore, we propose that the recognition of MPs-ICs by monocytes rather that MPs may define their phenotype and contribute to the inflammatory process in patients with SLE. Thus, the aims of this study were to evaluate the association among circulating MPs-ICs from different cell sources, alterations observed in monocyte subsets, and disease activity in patients with SLE and to establish whether monocytes bind and respond to MPs-ICs in vitro. Circulating MPs and monocyte subsets were characterized in 60 patients with SLE and 60 healthy controls (HCs) using multiparametric flow cytometry. Patients had higher MP counts and frequencies of MPs-CD41a + (platelet-derived) compared with HCs, regardless of disease activity. MPs from patients with SLE were C1q + and formed ICs with IgM and IgG. MPs-IgG + were positively correlated with active SLE (aSLE), whereas MPs-IgM + were negatively correlated. Most of the circulating total ICs-IgG + were located on MPs. The proportion and number of non-classical monocytes were significantly decreased in patients with SLE compared with HCs and in patients with aSLE compared with patients with the inactive disease. Non-classical monocytes obtained from patients with SLE exhibited increased levels of CD64 associated with MPs-IgG +, MPs-C1q +, total circulating ICs-IgG +, and disease activity. The direct effects of MPs and MPs-IgG + on monocytes were evaluated in cell culture. Monocytes from both HCs and patients bound to and internalized MPs and MPs-IgG + independent of CD64. These vesicles derived from platelets (PMPs), mainly PMPs-IgG +, activated monocytes in vitro and increased the expression of CD69, CD64, and pro-inflammatory cytokines such as IL-1β, TNF-α, and IFN-α. Therefore, MPs are one of the most representative sources of the total amount of circulating ICs-IgG + in patients with SLE. MPs-IgG + are associated with SLE activity, and PMPs-IgG + stimulate monocytes, changing their phenotype and promoting pro-inflammatory responses related to disease activity.
Insights
Microparticles immune complexes (MPs-ICs) are elevated in systemic lupus erythematosus (SLE). Platelet-derived MPs-IgG activate monocytes, driving inflammation and disease activity in SLE patients.
Area of Science:
- Immunology
- Rheumatology
- Cell Biology
Background:
- Microparticles (MPs) are cell-derived vesicles implicated in immune responses.
- Elevated MPs and MPs-immune complexes (MPs-ICs) are observed in systemic lupus erythematosus (SLE).
- MPs activate myeloid cells, contributing to inflammation in various diseases.
Purpose of the Study:
- To investigate the association between circulating MPs-ICs, monocyte subset alterations, and SLE disease activity.
- To determine if monocytes interact with and respond to MPs-ICs in vitro.
- To explore the role of MPs-ICs in SLE pathogenesis.
Main Methods:
- Multiparametric flow cytometry to analyze MPs and monocyte subsets in 60 SLE patients and 60 healthy controls.
- Characterization of MPs for C1q, IgM, and IgG binding.
- In vitro cell culture experiments to assess monocyte-MP-IC interactions and activation.
Main Results:
- SLE patients exhibited higher MP counts, particularly platelet-derived MPs (MPs-CD41a+).
- MPs from SLE patients were C1q+, and formed IgM and IgG immune complexes (MPs-ICs).
- MPs-IgG+ correlated positively with active SLE (aSLE), while MPs-IgM+ correlated negatively.
- Non-classical monocytes were reduced in SLE patients, especially those with aSLE.
- Non-classical monocytes from SLE patients showed increased CD64 associated with MPs-IgG+, MPs-C1q+, and total circulating ICs-IgG+.
- Platelet-derived MPs-IgG+ activated monocytes in vitro, increasing CD69, CD64, and pro-inflammatory cytokine (IL-1β, TNF-α, IFN-α) expression.
Conclusions:
- MPs are a major source of circulating IgG immune complexes in SLE.
- MPs-IgG+ are linked to SLE disease activity.
- Platelet-derived MPs-IgG+ stimulate monocytes, altering their phenotype and promoting pro-inflammatory responses crucial to SLE pathogenesis.
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