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1. Renal function underpins the cyclooxygenase-2: asymmetric dimethylarginine axis in mouse and man

2. Temporal in vivo platelet labeling in mice reveals age-dependent receptor expression and conservation of specific mRNAs

3. A pilot study assessing the implementation of 96-well plate-based aggregometry (Optimul) in Australia

4. Proteome and functional decline as platelets age in the circulation

5. Cyclooxygenases and the cardiovascular system.

6. Proteome and functional decline as platelets age in the circulation

7. A novel genetic variant in PTGS1 affects N-glycosylation of cyclooxygenase-1 causing a dominant-negative effect on platelet function and bleeding diathesis

8. Cyclooxygenases and the cardiovascular system

9. A novel genetic variant in PTGS1 affects N-glycosylation of cyclooxygenase-1 causing a dominant-negative effect on platelet function and bleeding diathesis

10. Profiling the eicosanoid networks that underlie the anti- and pro-thrombotic effects of aspirin.

11. A novel genetic variant in PTGS1 affects N-glycosylation of cyclooxygenase-1 causing a dominant-negative effect on platelet function and bleeding diathesis.

12. Identification of a homozygous recessive variant in PTGS1 resulting in a congenital aspirin-like defect in platelet function

13. Identification of a homozygous recessive variant in PTGS1 resulting in a congenital aspirin-like defect in platelet function

14. Cell-Specific Gene Deletion Reveals the Antithrombotic Function of COX1 and Explains the Vascular COX1/Prostacyclin Paradox.

15. Cell-Specific Gene Deletion Reveals the Antithrombotic Function of COX1 and Explains the Vascular COX1/Prostacyclin Paradox.

16. Eicosanoids in platelets and the effect of their modulation by aspirin in the cardiovascular system (and beyond)

17. Eicosanoids in platelets and the effect of their modulation by aspirin in the cardiovascular system (and beyond)

18. Farnesoid X Receptor and Liver X Receptor Ligands Initiate Formation of Coated Platelets.

19. Trapping of palindromic ligands within native transthyretin prevents amyloid formation.

20. Trapping of palindromic ligands within native transthyretin prevents amyloid formation.

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