Browsing by Author "Guiducci, Serena (6701771669)"
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Publication Microparticles in systemic sclerosis, targets or tools to control fibrosis: This is the question!(2020) ;Čolić, Jelena (55540968700) ;Cerinic, Marco Matucci (7005642558) ;Guiducci, Serena (6701771669)Damjanov, Nemanja (8503557800)Systemic sclerosis is the main systemic fibrotic disease with unknown etiology characterized by peripheral microvascular injury, activation of immune system, and wide-spread progressive fibrosis. Microparticles can be derived from any cell type during normal cellular differentiation, senescence, and apoptosis, and also upon cellular activation. Carrying along a broad range of surface cytoplasmic and nuclear molecules of originating cells, microparticles are closely implicated in inflammation, thrombosis, angiogenesis, and immunopathogenesis. Recently, microparticles have been proposed as biomarkers of endothelial injury, which is the primary event in the genesis of tissue fibrosis. Microparticles may have a role in fostering endothelial to mesenchymal transition, thus giving a significant contribution to the development of myofibroblasts, the most important final effectors responsible for tissue fibrosis and fibroproliferative vasculopathy. Thanks to potent profibrotic mediators, such as transforming growth factor beta, platelet-derived growth factor, high mobility group box 1 protein, nicotinamide adenine dinucleotide phosphate oxidase 4, and antifibrotic agents, such as matrix metalloproteinases, microparticles may play an opposite role in fibrosis. © The Author(s) 2019. - Some of the metrics are blocked by yourconsent settings
Publication Microparticles in systemic sclerosis, targets or tools to control fibrosis: This is the question!(2020) ;Čolić, Jelena (55540968700) ;Cerinic, Marco Matucci (7005642558) ;Guiducci, Serena (6701771669)Damjanov, Nemanja (8503557800)Systemic sclerosis is the main systemic fibrotic disease with unknown etiology characterized by peripheral microvascular injury, activation of immune system, and wide-spread progressive fibrosis. Microparticles can be derived from any cell type during normal cellular differentiation, senescence, and apoptosis, and also upon cellular activation. Carrying along a broad range of surface cytoplasmic and nuclear molecules of originating cells, microparticles are closely implicated in inflammation, thrombosis, angiogenesis, and immunopathogenesis. Recently, microparticles have been proposed as biomarkers of endothelial injury, which is the primary event in the genesis of tissue fibrosis. Microparticles may have a role in fostering endothelial to mesenchymal transition, thus giving a significant contribution to the development of myofibroblasts, the most important final effectors responsible for tissue fibrosis and fibroproliferative vasculopathy. Thanks to potent profibrotic mediators, such as transforming growth factor beta, platelet-derived growth factor, high mobility group box 1 protein, nicotinamide adenine dinucleotide phosphate oxidase 4, and antifibrotic agents, such as matrix metalloproteinases, microparticles may play an opposite role in fibrosis. © The Author(s) 2019. - Some of the metrics are blocked by yourconsent settings
Publication "To be or not to be," ten years after: Evidence for mixed connective tissue disease as a distinct entity(2012) ;Cappelli, Susanna (36096543700) ;Bellando Randone, Silvia (35218795900) ;Martinović, Dušanka (16417426000) ;Tamas, Maria-Magdalena (36817118000) ;Pasalić, Katarina (51864514400) ;Allanore, Yannick (7003519327) ;Mosca, Marta (7006720974) ;Talarico, Rosaria (24330409200) ;Opris, Daniela (15756184400) ;Kiss, Csaba G. (18340304000) ;Tausche, Anne-Kathrin (55915616000) ;Cardarelli, Silvia (57226555478) ;Riccieri, Valeria (7003568453) ;Koneva, Olga (6508032421) ;Cuomo, Giovanna (58021681500) ;Becker, Mike Oliver (57199798838) ;Sulli, Alberto (7003533074) ;Guiducci, Serena (6701771669) ;Radić, Mislav (56277745800) ;Bombardieri, Stefano (7006270830) ;Aringer, Martin (7003332848) ;Cozzi, Franco (35271801400) ;Valesini, Guido (7005133584) ;Ananyeva, Lidia (6603356433) ;Valentini, Gabriele (7102929864) ;Riemekasten, Gabriela (57203073213) ;Cutolo, Maurizio (7103329735) ;Ionescu, Ruxandra (36196636800) ;Czirják, László (7004435091) ;Damjanov, Nemanja (8503557800) ;Rednic, Simona (16417734900)Matucci Cerinic, Marco (7005642558)Objectives: To determine if mixed connective tissue disease (MCTD) can be considered an independent clinical entity, to compare 3 different classification criteria for MCTD (Kasukawa, Alarcón-Segovia, and Sharp), and to define predictors (clinical features and autoantibodies) of potential evolution toward other connective tissue diseases (CTDs). Methods: One hundred sixty-one MCTD patients were evaluated retrospectively at the diagnosis and in 2008. They were classified, at the diagnosis, according to the 3 classification criteria of MCTD (Sharp, Alarcón-Segovia, and Kasukawa) and reclassified in 2008 according to their evolution. Statistical analyses were performed to find out predictors (clinical features and autoantibodies) of evolution into other CTDs. Results: After a mean of 7.9 years of disease, 57.9% of patients still satisfied MCTD classification criteria of Kasukawa; 17.3% evolved into systemic sclerosis, 9.1% into systemic lupus erythematosus, 2.5% into rheumatoid arthritis, 11.5% was reclassified as affected by undifferentiated connective tissue disease, and 1.7% as suffering from overlap syndrome. Kasukawa's criteria were more sensitive (75%) in comparison to those of Alarcón-Segovia (73%) and Sharp (42%). The presence of anti-DNA antibodies (P = 0.012) was associated with evolution into systemic lupus erythematosus; hypomotility or dilation of esophagus (P < 0.001); and sclerodactyly (P = 0.034) with evolution into systemic sclerosis. Conclusions: MCTD is a distinct clinical entity but it is evident that a subgroup of patients may evolve into another CTD during disease progression. Initial clinical features and autoantibodies can be useful to predict disease evolution. © 2012 Elsevier Inc.
