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1.
Arterioscler Thromb Vasc Biol ; 41(2): 865-877, 2021 02.
Article in English | MEDLINE | ID: mdl-33356391

ABSTRACT

OBJECTIVE: Our aim was to characterize distinctive clinical antiphospholipid syndrome phenotypes and identify novel microRNA (miRNA)-mRNA-intracellular signaling regulatory networks in monocytes linked to cardiovascular disease. Approach and Results: Microarray analysis in antiphospholipid syndrome monocytes revealed 547 differentially expressed genes, mainly involved in inflammatory, cardiovascular, and reproductive disorders. Besides, this approach identified several genes related to inflammatory, renal, and dermatologic diseases. Functional analyses further demonstrated phosphorylation of intracellular kinases related to thrombosis and immune-mediated chronic inflammation. miRNA profiling showed altered expression of 22 miRNAs, enriched in pathways related to immune functions, cardiovascular disease, and autoimmune-associated pathologies. Unbiased integrated mRNA-miRNA analysis identified a signature of 9 miRNAs as potential modulators of 17 interconnected genes related to cardiovascular disease. The altered expression of that miRNA-mRNA signature was proven to be stable along time and distinctive of nonautoimmune thrombotic patients. Transfection studies and luciferase assays established the relationship between specific miRNAs and their identified target genes and proteins, along with their involvement in the regulation of monocytes procoagulant activity and cell adhesion. Correlation analyses showed relationship among altered miRNAs and their interconnected genes with aPL (antiphospholipid antibodies)-titers, along with microvascular endothelial dysfunction. In vitro studies demonstrated modulation in healthy monocytes by IgG-aPLs of several genes/miRNAs, which further intermediated downstream effects on endothelial function. The identified transcriptomic signature allowed the unsupervised division of three clusters of patients with antiphospholipid syndrome showing distinctive clinical profiles, mainly associated with their prothrombotic risk (thrombosis, autoantibody profile, cardiovascular risk factors, and atherosclerosis). CONCLUSIONS: Extensive molecular profiling of monocytes in patients with primary antiphospholipid syndrome might help to identify distinctive clinical phenotypes, thus enabling new patients' tailored treatments.


Subject(s)
Antiphospholipid Syndrome/genetics , Gene Expression Profiling , MicroRNAs/genetics , Monocytes/metabolism , Thrombosis/genetics , Transcriptome , Unsupervised Machine Learning , Adult , Antiphospholipid Syndrome/blood , Antiphospholipid Syndrome/complications , Case-Control Studies , Cells, Cultured , Cluster Analysis , Female , Gene Expression Regulation , Gene Regulatory Networks , Humans , Male , MicroRNAs/blood , Middle Aged , Oligonucleotide Array Sequence Analysis , Protein Interaction Maps , Risk Assessment , Risk Factors , Signal Transduction , Thrombosis/blood , Thrombosis/etiology
2.
FASEB J ; 30(3): 1367-76, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26700731

ABSTRACT

Clinical and epidemiologic studies reveal an association between vitamin D deficiency and increased risk of cardiovascular disease. Because vascular smooth muscle cell (VSMC)-derived tissue factor (TF) is suggested to be critical for arterial thrombosis, we investigated whether the vitamin D molecules calcitriol and paricalcitol could reduce the expression of TF induced by the proinflammatory cytokine TNF-α in human aortic VSMCs. We found that, compared with controls, incubation with TNF-α increased TF expression and procoagulant activity in a NF-κB-dependent manner, as deduced from the increased nuclear translocation of nuclear factor κ-light-chain-enhancer of activated B cells protein 65 (p65-NF-κB) and direct interaction of NF-κB to the TF promoter. This was accompanied by the up-regulation of TF signaling mediator protease-activated receptor 2 (PAR-2) expression and by the down-regulation of vitamin D receptor expression in a miR-346-dependent way. However, addition of calcitriol or paricalcitol blunted the TNF-α-induced TF expression and activity (2.01 ± 0.24 and 1.32 ± 0.14 vs. 3.02 ± 0.39 pmol/mg protein, P < 0.05), which was associated with down-regulation of NF-κB signaling and PAR-2 expression, as well as with restored levels of vitamin D receptor and enhanced expression of TF pathway inhibitor. Our data suggest that inflammation promotes a prothrombotic state through the up-regulation of TF function in VSMCs and that the beneficial cardiovascular effects of vitamin D may be partially due to decreases in TF expression and its activity in VSMCs.


Subject(s)
Muscle, Smooth, Vascular/metabolism , Myocytes, Smooth Muscle/metabolism , Receptor, PAR-2/metabolism , Thromboplastin/metabolism , Vitamin D/metabolism , Calcitriol/pharmacology , Cells, Cultured , Down-Regulation/drug effects , Ergocalciferols/pharmacology , Humans , Inflammation/metabolism , Muscle, Smooth, Vascular/drug effects , Myocytes, Smooth Muscle/drug effects , NF-kappa B/metabolism , Receptors, Calcitriol/metabolism , Signal Transduction/drug effects , Tumor Necrosis Factor-alpha/metabolism , Up-Regulation/drug effects
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