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Current Pharmaceutical Biotechnology|August 3, 2001
Nonviral gene therapy and its delivery systemsH Ma, S L DiamondBiophysical Journal|November 25, 1997
Hydrodynamic effects and receptor interactions of platelets and their aggregates in linear shear flowP Tandon, S L DiamondJournal of Immunology Research|January 27, 2023
Activation of Most Toll-Like Receptors in Whole Human Blood Attenuates Platelet Deposition on Collagen under FlowY Liu, S L DiamondBiochemical and Biophysical Research Communications|October 15, 1993
Fluid shear stress induces synthesis and nuclear localization of c-fos in cultured human endothelial cellsV Ranjan, S L DiamondBiochimica Et Biophysica Acta. General Subjects|December 4, 2020
Thermal shift assay to probe melting of thrombin, fibrinogen, fibrin monomer, and fibrin: Gly-Pro-Arg-Pro induces a fibrin monomer-like state in fibrinogenJ Crossen, S L DiamondBiophysical Journal|August 31, 1999
Monte Carlo simulation of the heterotypic aggregation kinetics of platelets and neutrophilsI J Laurenzi, S L DiamondThe Journal of Cell Biology|May 3, 2000
Direct observation of membrane tethers formed during neutrophil attachment to platelets or P-selectin under physiological flowD W Schmidtke, S L DiamondThe Journal of Clinical Investigation|June 1, 1995
Tissue plasminogen activator (tPA) inhibits plasmin degradation of fibrin. A mechanism that slows tPA-mediated fibrinolysis but does not require alpha 2-antiplasmin or leakage of intrinsic plasminogenJ H Wu, S L DiamondAnalytical Biochemistry|January 1, 1995
A fluorescence quench and dequench assay of fibrinogen polymerization, fibrinogenolysis, or fibrinolysisJ H Wu, S L DiamondJournal of Thrombosis and Haemostasis : JTH|July 17, 2015
Pathological von Willebrand factor fibers resist tissue plasminogen activator and ADAMTS13 while promoting the contact pathway and shear-induced platelet activationB A Herbig, S L DiamondPageof 157