Understanding how platelets can sense and respond to hemodynamic forces in disturbed blood flow and complexed vasculature is crucial to the development of more effective and safer antithrombotic therapeutics. By incorporating diverse structural and functional designs, microfluidic technologies have emerged to mimic microvascular anatomies and hemodynamic microenvironments, which open the floodgates for fascinating platelet mechanobiology investigations. The latest endothelialized microfluidics can even recapitulate the crosstalk between platelets and the circulatory system, including the vessel walls and plasma proteins such as von Willebrand factor. Hereby, we highlight these exciting microfluidic applications to platelet mechanobiology an...
Hemostasis encompasses an ensemble of interactions among platelets, coagulation factors, blood cells...
Current ex vivo models of thrombosis either fail to accurately recreate the hemodynamics and focal n...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Platelet aggregation plays a central role in pathological thrombosis, preventing healthy physiologic...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Platelet function tests are essential to profile platelet dysfunction and dysregulation in hemostasi...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Cardiovascular disease is a major cause of mortality globally and is subject to ongoing research to ...
Platelet aggregation plays a central role in pathological thrombosis, preventing healthy physiologic...
In vitro studies of cardiovascular biology have often relied on static assays using plasma or isolat...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Blood platelets prepared for transfusion gradually lose hemostatic function during storage. Platelet...
In vitro studies of cardiovascular biology have often relied on static assays using plasma or isolat...
A microfluidic flow-based platform (μFP), able to stimulate platelets via exposure of shear stress p...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Hemostasis encompasses an ensemble of interactions among platelets, coagulation factors, blood cells...
Current ex vivo models of thrombosis either fail to accurately recreate the hemodynamics and focal n...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...
Platelet aggregation plays a central role in pathological thrombosis, preventing healthy physiologic...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Platelet function tests are essential to profile platelet dysfunction and dysregulation in hemostasi...
Microfluidic devices provide a powerful platform for the study of blood biology due to their control...
Cardiovascular disease is a major cause of mortality globally and is subject to ongoing research to ...
Platelet aggregation plays a central role in pathological thrombosis, preventing healthy physiologic...
In vitro studies of cardiovascular biology have often relied on static assays using plasma or isolat...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Blood platelets prepared for transfusion gradually lose hemostatic function during storage. Platelet...
In vitro studies of cardiovascular biology have often relied on static assays using plasma or isolat...
A microfluidic flow-based platform (μFP), able to stimulate platelets via exposure of shear stress p...
Current in vitro or ex vivo models of hemostasis and thrombosis fail to recapitulate the hemodynamic...
Hemostasis encompasses an ensemble of interactions among platelets, coagulation factors, blood cells...
Current ex vivo models of thrombosis either fail to accurately recreate the hemodynamics and focal n...
Biological and physical factors interact to modulate blood response in a wounded vessel, resulting i...