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Protease-activated receptor 4 activity promotes platelet granule release and platelet-leukocyte interactions.
Rigg, Rachel A; Healy, Laura D; Chu, Tiffany T; Ngo, Anh T P; Mitrugno, Annachiara; Zilberman-Rudenko, Jevgenia; Aslan, Joseph E; Hinds, Monica T; Vecchiarelli, Lisa Dirling; Morgan, Terry K; Gruber, András; Temple, Kayla J; Lindsley, Craig W; Duvernay, Matthew T; Hamm, Heidi E; McCarty, Owen J T.
Afiliação
  • Rigg RA; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Healy LD; b Department of Cell, Developmental & Cancer Biology , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Chu TT; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Ngo ATP; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Mitrugno A; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Zilberman-Rudenko J; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Aslan JE; d Department of Biochemistry and Molecular Biology , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Hinds MT; e Knight Cardiovascular Institute , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Vecchiarelli LD; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Morgan TK; f Department of Pathology , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Gruber A; f Department of Pathology , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Temple KJ; a Department of Biomedical Engineering , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Lindsley CW; c Division of Hematology & Medical Oncology , School of Medicine, Oregon Health & Science University , Portland , OR , USA.
  • Duvernay MT; g Department of Pharmacology , Vanderbilt University School of Medicine , Nashville , TN , USA.
  • Hamm HE; h Vanderbilt Center for Neuroscience Drug Discovery , Nashville , TN , USA.
  • McCarty OJT; g Department of Pharmacology , Vanderbilt University School of Medicine , Nashville , TN , USA.
Platelets ; 30(1): 126-135, 2019.
Article em En | MEDLINE | ID: mdl-30560697
ABSTRACT
Human platelets express two protease-activated receptors (PARs), PAR1 (F2R) and PAR4 (F2RL3), which are activated by a number of serine proteases that are generated during pathological events and cause platelet activation. Recent interest has focused on PAR4 as a therapeutic target, given PAR4 seems to promote experimental thrombosis and procoagulant microparticle formation, without a broadly apparent role in hemostasis. However, it is not yet known whether PAR4 activity plays a role in platelet-leukocyte interactions, which are thought to contribute to both thrombosis and acute or chronic thrombo-inflammatory processes. We sought to determine whether PAR4 activity contributes to granule secretion from activated platelets and platelet-leukocyte interactions. We performed in vitro and ex vivo studies of platelet granule release and platelet-leukocyte interactions in the presence of PAR4 agonists including PAR4 activating peptide, thrombin, cathepsin G, and plasmin in combination with small-molecule PAR4 antagonists. Activation of human platelets with thrombin, cathepsin G, or plasmin potentiated platelet dense granule secretion that was specifically impaired by PAR4 inhibitors. Platelet-leukocyte interactions and platelet P-selectin exposure the following stimulation with PAR4 agonists were also impaired by activated PAR4 inhibition in either a purified system or in whole blood. These results indicate PAR4-specific promotion of platelet granule release and platelet-leukocyte aggregate formation and suggest that pharmacological control of PAR4 activity could potentially attenuate platelet granule release or platelet-leukocyte interaction-mediated pathological processes.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Plaquetas / Comunicação Celular / Receptores de Trombina / Grânulos Citoplasmáticos / Leucócitos Limite: Animals / Humans / Male Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Plaquetas / Comunicação Celular / Receptores de Trombina / Grânulos Citoplasmáticos / Leucócitos Limite: Animals / Humans / Male Idioma: En Ano de publicação: 2019 Tipo de documento: Article