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Special Report

New trends in bioanalytical microdevices to assess platelet function

, &
Pages 869-874 | Published online: 09 Jan 2014

References

  • Michelson AD. Antiplatelet therapies for the treatment of cardiovascular disease. Nat. Rev. Drug Discov.9(2), 154–169 (2010).
  • Lawler K, Meade G, O’Sullivan G, Kenny D. Shear stress modulates the interaction of platelet-secreted matrix proteins with tumor cells through the integrin αvβ3. Am. J. Physiol. Cell Physiol.287(5), C1320–C1327 (2004).
  • Mac Mullan PA, Peace AJ, Madigan AM et al. Platelet hyper-reactivity in active inflammatory arthritis is unique to the adenosine diphosphate pathway: a novel finding and potential therapeutic target. Rheumatology49(2), 240–245 (2010).
  • Harrison P. Assessment of platelet function in the laboratory. Hamostaseologie29(1), 25–31 (2009).
  • Harrison P, Mumford A. Screening tests of platelet function: update on their appropriate uses for diagnostic testing. Semin. Thromb. Hemost.35(2), 150–157 (2009).
  • Jackson SP. The growing complexity of platelet aggregation. Blood109(12), 5087–5095 (2007).
  • Isis-2 (Second International Study of Infarct Survival). Randomised trial of intravenous streptokinase, oral asprin, both, or neither among 17,187 cases of suspected acute myocardial infarction. Lancet2, 349–360 (1988).
  • Gorog DA, Sweeny JM, Fuster V. Antiplatelet drug ‘resistance’. Part 2: laboratory resistance to antiplatelet drugs-fact or artifact? Nat. Rev. Cardiol.6(5), 365–373 (2009).
  • Sweeny JM, Gorog DA, Fuster V. Antiplatelet drug ‘resistance’. Part 1: mechanisms and clinical measurements. Nat. Rev. Cardiol.6(4), 273–282 (2009).
  • Gurbel PA, Becker RC, Mann KG, Steinhubl SR, Michelson AD. Platelet function monitoring in patients with coronary artery disease. J. Am. Coll. Cardiol.50(19), 1822–1834 (2007).
  • Breet NJ, van Werkum JW, Bouman HJ et al. Comparison of platelet function tests in predicting clinical outcome in patients undergoing coronary stent implantation. JAMA303(8), 754–762 (2010).
  • Cattaneo M, Hayward CPM, Moffat KA et al. Results of a worldwide survey on the assessment of platelet function by light transmission aggregometry: a report from the platelet physiology subcommittee of the SSC of the ISTH. J. Thromb. Haemost.7(6), 1029 (2009).
  • Davies MJ, Thomas AC, Knapman PA, Hangartner JR. Intramyocardial platelet-aggregation in patients with unstable angina suffering sudden ischemic cardiac death. Circulation73(3), 418–427 (1986).
  • Dewood MA, Spores J, Notske R et al. Prevalence of total coronary-occlusion during the early hours of transmural myocardial-infarction. N. Engl. J. Med.303(16), 897–902 (1980).
  • Elwood PC, Renaud S, Sharp DS et al. Ischemic-heart-disease and platelet-aggregation – the Caerphilly collaborative heart-disease study. Circulation83(1), 38–44 (1991).
  • Flores NA, Sheridan DJ. The pathophysiological role of platelets during myocardial-ischemia. Cardiovasc. Res.28(3), 295–302 (1994).
  • Aarts PA, Heethaar RM, Sixma JJ. Red blood cell deformability influences platelets – vessel wall interaction in flowing blood. Blood64(6), 1228–1233 (1984).
  • Aarts PA, van den Broek SA, Prins GW et al. Blood platelets are concentrated near the wall and red blood cells, in the center in flowing blood. Arteriosclerosis8(6), 819–824 (1988).
  • Jackson SP, Nesbitt WS, Westein E. Dynamics of platelet thrombus formation. J. Thromb. Haemost.7, 17–20 (2009).
  • Nesbitt WS, Westein E, Tovar-Lopez FJ et al. A shear gradient-dependent platelet aggregation mechanism drives thrombus formation. Nat. Med.15(6), 665–673 (2009).
  • Tovar-Lopez FJ, Rosengarten G, Westein E et al. A microfluidics device to monitor platelet aggregation dynamics in response to strain rate micro-gradients in flowing blood. Lab Chip10(3), 291–302 (2009).
  • Giorgio TD, Hellums JD. A cone and plate viscometer for the continuous measurement of blood platelet activation. Biorheology25(4), 605–624 (1988).
  • Frojmovic MM. From in vitro blood rheology to useful bedside instrumentation for cardiovascular diseases: history and challenges. Ann. Biomed. Eng.36(4), 528–533 (2008).
  • Sakariassen KS, Aarts PA, de Groot PG, Houdijk WP, Sixma JJ. A perfusion chamber developed to investigate platelet interaction in flowing blood with human vessel wall cells, their extracellular matrix, and purified components. J. Lab. Clin. Med.102(4), 522–535 (1983).
  • Wu YP, de Groot PG, Sixma JJ. Shear-stress-induced detachment of blood platelets from various surfaces. Arterioscler. Thromb. Vasc. Biol.17(11), 3202–3207 (1997).
  • Baumgartner HR. The role of blood flow in platelet adhesion, fibrin deposition, and formation of mural thrombi. Microvasc. Res.5(2), 167–179 (1973).
  • Hanson SR, Reidy MA, Hattori A, Harker LA. Pharmacologic modification of acute vascular graft thrombosis. Scan. Electron Microsc. (Pt 2), 773–779 (1982).
  • Zwaginga JJ, Nash G, King MR et al. Flow-based assays for global assessment of hemostasis. Part 1: biorheologic considerations. J. Thromb. Haemost.4(11), 2486–2487 (2006).
  • Zwaginga JJ, Sakariassen KS, Nash G et al. Flow-based assays for global assessment of hemostasis. Part 2: current methods and considerations for the future. J. Thromb. Haemost.4(12), 2716–2717 (2006).
  • Zwaginga JJ, Sakariassen KS, King MR et al. Can blood flow assays help to identify clinically relevant differences in von Willebrand factor functionality in von Willebrand disease types 1–3? J. Thromb. Haemost.5(12), 2547–2549 (2007).
  • Sarvepalli DP, Schmidtke DW, Nollert MU. Design considerations for a microfluidic device to quantify the platelet adhesion to collagen at physiological shear rates. Ann. Biomed. Eng.37(7), 1331–1341 (2009).
  • Neeves KB, Maloney SF, Fong KP et al. Microfluidic focal thrombosis model for measuring murine platelet deposition and stability: Par4 signaling enhances shear-resistance of platelet aggregates. J. Thromb. Haemost.6(12), 2193–2201 (2008).
  • Neeves KB, Diamond SL. A membrane-based microfluidic device for controlling the flux of platelet agonists into flowing blood. Lab Chip8(5), 701–709 (2008).
  • Gutierrez E, Petrich BG, Shattil SJ et al. Microfluidic devices for studies of shear-dependent platelet adhesion. Lab Chip8(9), 1486–1495 (2008).
  • Goerge T, Kleineruschkamp F, Barg A et al. Microfluidic reveals generation of platelet-strings on tumor-activated endothelium. Thromb. Haemost.98(2), 283–286 (2007).
  • Italiano JE, Bergmeier W, Tiwari S et al. Mechanisms and implications of platelet discoid shape. Blood101(12), 4789–4796 (2003).
  • Lincoln B, Ricco AJ, Kent NJ et al. Integrated system investigating shear-mediated platelet interactions with von Willebrand factor using microliters of whole-blood. Anal. Biochem.405(2), 174–183 (2010).
  • Nalayanda DD, Kalukanimuttam M, Schmidtke DW. Micropatterned surfaces for controlling cell adhesion and rolling under flow. Biomed. Microdev.9(2), 207–214 (2007).
  • Basabe-Desmonts L, Ramstrom S, Meade G et al. Single-step separation of platelets from whole blood coupled with digital quantification by interfacial platelet cytometry (IPC). Langmuir26(18), 14700–14706 (2010).

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