BARALE, CRISTINA

BARALE, CRISTINA  

SCIENZE CLINICHE E BIOLOGICHE  

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Risultati 1 - 20 di 54 (tempo di esecuzione: 0.04 secondi).
Titolo Data di pubblicazione Autore(i) File
A diabetic milieu promotes OCT4 and NANOG production in human visceral-derived adipose stem cells. 2013 Dentelli P; Barale C; Togliatto G; Trombetta A; Olgasi C; Gili M; Riganti C; Toppino M; Brizzi MF.
A short-term improvement of blood glucose control increases aspirin sensitivity in aspirin-resistant type 2 diabetic men. 2012 Russo I; Barale C; Chirio M; Secchi M; Viretto M; Doronzo G; Mattiello L; Pagliarino A; Cavalot F; Valle M; Anfossi G; Trovati M.
A short-term incubation with high glucose impairs VASP phosphorylation at serine 239 in response to the nitric oxide/cGMP pathway in vascular smooth muscle cells: role of oxidative stress. 2014 Russo I;Viretto M;Doronzo G;Barale C;Mattiello L;Anfossi G;Trovati M
Aberrant Platelet Aggregation as Initial Presentation of Essential Thrombocythemia: Failure of Entero-Coated Aspirin to Reduce Platelet Hyperactivation 2024 Morotti A.; Barale C.; Sornatale M.; Giugliano E.; Muccio V.E.; Frascaroli C.; Pautasso M.; Fornari A.; Russo I.
Acido oleico e regolazione del VEGF in cellule muscolari lisce vascolari aortiche in condizioni di insulino-sensibilità e insulino-resistenza. 2012 Doronzo G; Viretto M; Russo I; Mattiello L; Barale C; Vaccheris C; Anfossi G; Trovati M.
An intensive control of blood glucose improves platelet sensitivity to aspirin in type 2 diabetes mellitus. 2013 Russo I; Barale C; Chirio M; Secchi M; Viretto M; Doronzo G; Mattiello L; Pagliarino A; Cavalot F; Anfossi G; Trovati M.
Aspirin resistant subjects present a proinflammatory milieu with an increased oxidative stress: in these conditions, high glucose fails to influence platelet responses to agonists. 2011 Russo I; Frascaroli C; Mattiello L; Viretto M; Barale C; Doronzo G; Di Martino L; Trovati M; Anfossi G.
Association between high on-aspirin platelet reactivity and reduced superoxide dismutase activity in patients affected by type 2 diabetes mellitus or primary hypercholesterolemia 2020 Barale C.; Cavalot F.; Frascaroli C.; Bonomo K.; Morotti A.; Guerrasio A.; Russo I.
Cardioprotective properties of human platelets are lost in uncontrolled diabetes mellitus: A study in isolated rat hearts 2018 Russo, Isabella; Femminò, Saveria; Barale, Cristina; Tullio, Francesca; Geuna, Stefano; Cavalot, Franco; Pagliaro, Pasquale; Penna, Claudia
Current Strategies to Guide the Antiplatelet Therapy in Acute Coronary Syndromes 2024 Russo, Isabella; Brookles, Carola Griffith; Barale, Cristina; Melchionda, Elena; Mousavi, Amir Hassan; Biolè, Carloalberto; Chinaglia, Alessandra; Bianco, Matteo
Effects of PCSK9 inhibitors on platelet function in adults with hypercholesterolemia 2017 Barale, Cristina; Bonomo, Katia; Noto, Fabio; Traversa, Monica; Cavalot, Franco; Iozzia, Mirko; Frascaroli, Chiara; Guerrasio, Angelo; Russo, Isabella
Embryonic exposure to estrogenic and androgenic endocrine disrupting chemicals alters male quail sexual behavior and vasotocin system 2005 Panzica G.C.; Mura E.; Barale C.; Quinn M.J.jr; Thompson N.; Viglietti C.; Ottinger M.A.
GLP-1 and liraglutide increase the platelet inhibitory effects of nitric oxide. 2013 Russo I; Barale C; Mattiello L; Cavalot F; Trovati M.
GLP-1 influences the inhibitory effects of nitric oxide on platelets. 2013 Russo I; Barale C; Mattiello L; Cavalot F; Trovati M.
GLP-1 reduces the activation of PI3K and MAPK pathways and of oxidative stress induced by Na-arachidonate in platelets. 2014 Barale C; Mattiello L; Cavalot F; Guerrasio A; Russo I.
Glucagon-Like Peptide 1 reduces platelet activation induced by sodium arachidonate through the inhibition of PI-3K and MAPK pathways. 2014 Barale C; Frascaroli C; Mattiello L; Cavalot F; Guerrasio A; Russo I.
Glucagon-Like Peptide 1 reduces platelet activation: effects on PI-3K and MAPK pathways and oxidative stress in the presence of arachidonic acid. 2014 Barale C; Mattiello L; Cavalot F; Guerrasio A; Russo I.
Glucagon-like peptide 1-related peptides increase nitric oxide effects to reduce platelet activation 2017 Barale, Cristina; Buracco, Simona; Cavalot, Franco; Frascaroli, Chiara; Guerrasio, Angelo; Russo, Isabella
High Glucose Inhibits the Aspirin-Induced Activation of the Nitric Oxide/cGMP/cGMP-Dependent Protein Kinase Pathway and Does Not Affect the Aspirin-Induced Inhibition of Thromboxane Synthesis in Human Platelets. 2012 Russo I; Viretto M; Barale C; Mattiello L; Doronzo G; Pagliarino A; Cavalot F; Trovati M; Anfossi G.
High glucose reduces the anti-aggreganting effect of aspirin by impairing the aspirin-induced activation of the nitric oxide/cGMP/PKG pathway. 2011 Russo I; Barale C; Mattiello L; Viretto M; Doronzo G; Ceraolo E; Trovati M; Anfossi G