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  1. 1.   Acute physiological changes caused by complement activators and amphotericin B-containing liposomes in mice
  2. Orfi, Erik; Meszaros, Tamas; Hennies, Mark; Fulop, Tamas; Dezsi, Laszlo; Nardocci, Alexander; Rosivall, Laszlo; Hamar, Peter; Neun, Barry; Dobrovolskaia, Marina; Szebeni, Janos; Szenasi, Gabor
  3. International journal of nanomedicine. 2019, Feb 26; 14: 1563-1573.
  1. 2.   Platelets Promote Metastasis via Binding Tumor CD97 Leading to Bidirectional Signaling that Coordinates Transendothelial Migration
  2. Ward, Yvona; Lake, Ross; Faraji, Farhoud; Sperger, Jamie; Martin, Philip; Gilliard, Cameron; Ku, Kimberly P; Rodems, Tamara; Niles, David; Tillman, Heather; Yin, JuanJuan; Hunter, Kent; Sowalsky, Adam G; Lang, Joshua; Kelly, Kathleen
  3. Cell Reports. 2018, Apr 17; 23(3): 808-822.
  1. 3.   Soluble TLT-1 modulates platelet-endothelial cell interactions and actin polymerization
  2. Morales, J.; Villa, K.; Gattis, J.; Castro, W.; Colon, K.; Lubkowski, J.; Sanabria, P.; Hunter, R.; Washington, A. V.
  3. Blood Coagulation & Fibrinolysis. 2010, Apr; 21(3): 229-236.
  1. 4.   The structure of the extracellular domain of triggering receptor expressed on myeloid cells like transcript-1 and evidence for a naturally occurring soluble fragment
  2. Gattis, J. L.; Washington, A. V.; Chisholm, M. M.; Quigley, L.; Szyk, A.; McVicar, D. W.; Lubkowski, J.
  3. Journal of Biological Chemistry. 2006, May; 281(19): 13396-13403.
  1. 5.   Identification of neutrophil granule protein cathepsin G as a novel chemotactic agonist for the G protein-coupled formyl peptide receptor
  2. Sun, R. H.; Iribarren, P.; Zhang, N.; Zhou, Y.; Gong, W. H.; Cho, E. H.; Lockett, S.; Chertov, O.; Bednar, F.; Rogers, T. J.; Oppenheim, J. J.; Wang, J. M.
  3. Journal of Immunology. 2004 173(1): 428-436.
  1. 6.   TREM family member, TLT-1, is expressed exclusively on peripheral blood platelets and megakaryocytes
  2. Washington, A. V.; Quigley, L.; McVicar, D. W.
  3. Blood. 2003 102(11, Part 1): 292A-292A.
  1. 7.   The regulation of platelet-dense granules by Rab27a in the ashen mouse, a model of Hermansky-Pudlak and Griscelli syndromes, is granule-specific and dependent on genetic background
  2. Novak, E. K.; Gautam, R.; Reddington, M.; Collinson, L. M.; Copeland, N. G.; Jenkins, N. A.; McGarry, M. P.; Swank, R. T.
  3. Blood. 2002 100(1): 128-135.
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