Literature DB >> 28083075

Biorheology of platelet activation in the bloodstream distal to thrombus formation.

Jevgenia Zilberman-Rudenko1, Asako Itakura2, Jeevan Maddala3, Sandra M Baker-Groberg1, Ralf Vetter4, Erik I Tucker5, András Gruber6, Christoph Gerdes4, Owen J T McCarty7.   

Abstract

Thrombus growth at the site of vascular injury is mediated by the sequential events of platelet recruitment, activation and aggregation concomitant with the initiation of the coagulation cascade, resulting in local thrombin generation and fibrin formation. While the biorheology of a localized thrombus formation has been well studied, it is unclear whether local sites of thrombin generation propagate platelet activation within the bloodstream. In order to study the physical biology of platelet activation downstream of sites of thrombus formation, we developed a platform to measure platelet activation and microaggregate formation in the bloodstream. Our results show that thrombi formed on collagen and tissue factor promote activation and aggregation of platelets in the bloodstream in a convection-dependent manner. Pharmacological inhibition of the coagulation factors (F) X, XI or thrombin dramatically reduced the degree of distal platelet activation and microaggregate formation in the bloodstream without affecting the degree of local platelet deposition and aggregation on a surface of immobilized collagen. Herein we describe the development and an example of the utility of a platform to study platelet activation and microaggregate formation in the bloodstream (convection-limited regime) relative to the local site of thrombus formation.

Entities:  

Keywords:  biophysics; factor X; factor XI; physical biology; platelets; shear; thrombin

Year:  2016        PMID: 28083075      PMCID: PMC5221751          DOI: 10.1007/s12195-016-0448-5

Source DB:  PubMed          Journal:  Cell Mol Bioeng        ISSN: 1865-5025            Impact factor:   2.321


  23 in total

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5.  Measurement science in the circulatory system.

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8.  Fluid Mechanics of Blood Clot Formation.

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Journal:  Annu Rev Fluid Mech       Date:  2015-01-01       Impact factor: 18.511

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Authors:  Sandra M Baker-Groberg; Flor A Cianchetti; Kevin G Phillips; Owen J T McCarty
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  5 in total

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2.  Dynamics of blood flow and thrombus formation in a multi-bypass microfluidic ladder network.

Authors:  Jevgenia Zilberman-Rudenko; Joanna L Sylman; Hari H S Lakshmanan; Owen J T McCarty; Jeevan Maddala
Journal:  Cell Mol Bioeng       Date:  2016-10-20       Impact factor: 2.321

Review 3.  Utility of microfluidic devices to study the platelet-endothelium interface.

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4.  Factor XII Activation Promotes Platelet Consumption in the Presence of Bacterial-Type Long-Chain Polyphosphate In Vitro and In Vivo.

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5.  Activated Monocytes Enhance Platelet-Driven Contraction of Blood Clots via Tissue Factor Expression.

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  5 in total

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