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1.
J Thromb Haemost ; 16(10): 2083-2096, 2018 10.
Artículo en Inglés | MEDLINE | ID: mdl-30007118

RESUMEN

Essentials Reactive oxygen species (ROS) generation by NOX2 plays a critical role in platelet activation. Rac1 regulation of NOX2 is important for ROS generation. Small molecule inhibitor of the Rac1-p67phox interaction prevents platelet activation. Pharmacologic targeting of Rac1-NOX2 axis can be a viable approach for antithrombotic therapy. SUMMARY: Background Platelets from patients with X-linked chronic granulomatous disease or mice deficient in nicotinamide adenine dinucleotide (phosphate) (NAD(P)H) oxidase isoform NOX2 exhibit diminished reactive oxygen species (ROS) generation and platelet activation. Binding of Rac1 GTPase to p67phox plays a critical role in NOX2 activation by facilitating the assembly of the NOX2 enzyme complex. Objective We tested the hypothesis that Phox-I, a rationally designed small molecule inhibitor of Rac-p67phox interaction, may serve as an antithrombosis agent by suppressing ROS production and platelet activation. Results Collagen-related peptide (CRP) induced ROS generation in a time-dependent manner. Platelets from Rac1-/- mice or human platelets treated with NSC23766, a specific Rac inhibitor, produced significantly less ROS in response to CRP. Treatment of platelets with Phox-I inhibited diverse CRP-induced responses, including: (i) ROS generation; (ii) release of P-selectin; (iii) secretion of ATP; (iv) platelet aggregation; and (v) phosphorylation of Akt. Similarly, incubation of platelets with Phox-I inhibited thrombin-induced: (i) secretion of ATP; (ii) platelet aggregation; (iii) rise in cytosolic calcium; and (iv) phosphorylation of Akt. In mouse models, intraperitoneal administration of Phox-I inhibited: (i) collagen-induced platelet aggregation without affecting the tail bleeding time and (ii) in vivo platelet adhesion/accumulation at the laser injury sites on the saphenous vein without affecting the time for complete cessation of blood loss. Conclusions Small molecule targeting of the Rac1-p67phox interaction may present an antithrombosis regimen by preventing GPVI- and non-GPVI-mediated NOX2 activation, ROS generation and platelet function without affecting the bleeding time.


Asunto(s)
Plaquetas/efectos de los fármacos , Inhibidores Enzimáticos/farmacología , Fibrinolíticos/farmacología , NADPH Oxidasa 2/antagonistas & inhibidores , Neuropéptidos/antagonistas & inhibidores , Inhibidores de Agregación Plaquetaria/farmacología , Agregación Plaquetaria/efectos de los fármacos , Especies Reactivas de Oxígeno/sangre , Proteína de Unión al GTP rac1/antagonistas & inhibidores , Animales , Plaquetas/enzimología , Señalización del Calcio/efectos de los fármacos , Proteínas Portadoras/farmacología , Humanos , Ratones Noqueados , NADPH Oxidasa 2/sangre , Neuropéptidos/sangre , Neuropéptidos/genética , Péptidos/farmacología , Glicoproteínas de Membrana Plaquetaria/metabolismo , Trombina/farmacología , Proteína de Unión al GTP rac1/sangre , Proteína de Unión al GTP rac1/genética
2.
J Thromb Haemost ; 13(3): 417-25, 2015 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-25442192

RESUMEN

INTRODUCTION: Hemostasis is a rapid response by the body to stop bleeding at sites of vessel injury. Both platelets and fibrin are important for the formation of a hemostatic plug. Mice have been used to uncover the molecular mechanisms that regulate the activation of platelets and coagulation under physiologic conditions. However, measurements of hemostasis in mice are quite variable, and current methods do not quantify platelet adhesion or fibrin formation at the site of injury. METHODS: We describe a novel hemostasis model that uses intravital fluorescence microscopy to quantify platelet adhesion, fibrin formation and time to hemostatic plug formation in real time. Repeated vessel injuries of ~ 50-100 µm in diameter were induced with laser ablation technology in the saphenous vein of mice. RESULTS: Hemostasis in this model was strongly impaired in mice deficient in glycoprotein Ibα or talin-1, which are important regulators of platelet adhesiveness. In contrast, the time to hemostatic plug formation was only minimally affected in mice deficient in the extrinsic tissue factor (TF(low)) or the intrinsic factor IX coagulation pathways, even though platelet adhesion was significantly reduced. A partial reduction in platelet adhesiveness obtained with clopidogrel led to instability within the hemostatic plug, especially when combined with impaired coagulation in TF(low) mice. CONCLUSIONS: In summary, we present a novel, highly sensitive method to quantify hemostatic plug formation in mice. On the basis of its sensitivity to platelet adhesion defects and its real-time imaging capability, we propose this model as an ideal tool with which to study the efficacy and safety of antiplatelet agents.


Asunto(s)
Tiempo de Sangría , Plaquetas/metabolismo , Hemostasis , Vena Safena/metabolismo , Lesiones del Sistema Vascular/sangre , Animales , Coagulación Sanguínea , Plaquetas/efectos de los fármacos , Clopidogrel , Modelos Animales de Enfermedad , Factor IX/genética , Factor IX/metabolismo , Fibrina/metabolismo , Hemostasis/genética , Microscopía Intravital , Terapia por Láser , Ratones Endogámicos C57BL , Ratones Noqueados , Microscopía Fluorescente , Microscopía por Video , Adhesividad Plaquetaria , Inhibidores de Agregación Plaquetaria/farmacología , Complejo GPIb-IX de Glicoproteína Plaquetaria/genética , Complejo GPIb-IX de Glicoproteína Plaquetaria/metabolismo , Vena Safena/cirugía , Talina/deficiencia , Talina/genética , Tromboplastina/deficiencia , Tromboplastina/genética , Ticlopidina/análogos & derivados , Ticlopidina/farmacología , Factores de Tiempo , Lesiones del Sistema Vascular/etiología , Lesiones del Sistema Vascular/genética
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