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Circulating Progenitor and Mature Endothelial Cells in Deep Vein Thrombosis
Authors:Aline M Alessio  Miriam P Beltrame  Mariane C Flores Nascimento  Cristina P Vicente  Juliana AP de Godoy  Junia CR Santos Silva  Luis Fernando Bittar  Irene Lorand-Metze  Erich V de Paula  Joyce M Annichino-Bizzacchi
Affiliation:1. Hematology and Hemotherapy Center, University of Campinas, Campinas-SP, Brazil.;2. Department of Anatomy, Cell Biology, Physiology and Biophysics, Institute of Biology, University of Campinas, Campinas - SP, Brazil.;3. Department of Hematology, Federal University of Paraná, Curitiba-PR, Brazil.
Abstract:Introduction: Mature circulating endothelial cells (CEC) and circulating endothelial progenitor cells (EPC) have been described in several conditions associated with endothelial injury. Their role in deep vein thrombosis (DVT) has not been previously evaluated. Patients and Methods: In this pilot study we evaluated the time course of CEC and EPC release after vena cava experimental DVT in mice, using the FeCl3 model. We also evaluated their presence in patients with DVT at different phases of the disease (acute and chronic phase). CEC and EPC were evaluated by Flow Cytometry. Results: In mice, both CEC and EPC were increased 24 hours after DVT induction, peaking 48 hours thereafter. After 72 hours, CEC counts decreased sharply, whereas EPC counts decreased less substantially. In DVT patients we observed a significant increase in CEC counts immediately after DVT compared to healthy individuals. Patients with chronic disease also presented a significant elevation of these cell count. In a subgroup of patients for whom serial samples were available, CEC counts decreased significantly after 9-15 months of the acute event. Conclusions: Our results suggest the participation of these cells in the reparative processes that follows DVT, both at immediate and late time-points. The different kinetics of CEC and EPC release in experimental DVT suggests a heterogeneous role for these cells in the reparative events after DVT.
Keywords:progenitor endothelial cells   mature endothelial cells   flow cytometry   deep vein thrombosis   DVT animal model.
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