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Role of thromboxane receptor in c-reactive protein-induced thrombosis
Etty Grad
, Rachel M. Pachino
, Garret A. Fitzgerald
, Haim D. Danenberg
Hadassah University Medical Centre
University of Pennsylvania
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
Overview
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Dive into the research topics of 'Role of thromboxane receptor in c-reactive protein-induced thrombosis'. Together they form a unique fingerprint.
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Keyphrases
Thrombosis
100%
C-reactive Protein
100%
Thromboxane Receptor
100%
Transgenic
44%
Platelets
33%
Endothelial Cells
22%
Small Interfering RNA (siRNA)
22%
Potentiation
11%
Prostacyclin
11%
Prostaglandins
11%
Protein Expression
11%
Genetic Approach
11%
C57BL
11%
Mouse Strain
11%
Thromboxane A2 (TXA2)
11%
Thromboxane
11%
Vascular Injury
11%
Arterial Occlusion
11%
Genetically Engineered Mice
11%
Transgenic Cells
11%
Photochemical Injury
11%
Medicine and Dentistry
Thrombosis
100%
C Reactive Protein
100%
Thromboxane Receptor
100%
Platelet
33%
Endothelial Cell
22%
Small Interfering RNA
22%
Injury
11%
Artery Occlusion
11%
Protein Expression
11%
C57BL/6
11%
Blood Vessel Injury
11%
Prostaglandin
11%
Prostacyclin
11%
Thromboxane A2
11%
Thromboxane
11%
Pharmacology, Toxicology and Pharmaceutical Science
C Reactive Protein
100%
Thrombosis
100%
Thromboxane Receptor
100%
Small Interfering RNA
22%
Mouse
11%
Genetically Engineered Mouse Strain
11%
Injury
11%
Blood Vessel Injury
11%
Artery Occlusion
11%
Prostaglandin
11%
Prostacyclin
11%
Thromboxane
11%
Thromboxane A2
11%
Immunology and Microbiology
C-Reactive Protein
100%
Thromboxane
100%
Transgenics
55%
Platelet
33%
Mouse
11%
Protein Expression
11%
Genetically Engineered Mouse Strain
11%
Wild Type
11%
Prostaglandin
11%
Prostacyclin
11%
Thromboxane A2
11%