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Review Article

Platelet biomechanics, platelet bioenergetics, and applications to clinical practice and translational research

ORCID Icon, , , , , & show all
Pages 431-439 | Received 04 Dec 2017, Accepted 01 Mar 2018, Published online: 26 Mar 2018
 

Abstract

The purpose of this review is to explore the relationship between platelet bioenergetics and biomechanics and how this relationship affects the clinical interpretation of platelet function devices. Recent experimental and technological advances highlight platelet bioenergetics and biomechanics as alternative avenues for collecting clinically relevant data. Platelet bioenergetics drive energy production for key biomechanical processes like adhesion, spreading, aggregation, and contraction. Platelet function devices like thromboelastography, thromboelastometry, and aggregometry measure these biomechanical processes. Platelet storage, stroke, sepsis, trauma, or the activity of antiplatelet drugs alters measures of platelet function. However, the specific mechanisms governing these alterations in platelet function and how they relate to platelet bioenergetics are still under investigation.

Declaration of interest

The authors report no declaration of interest.

Additional information

Funding

Mitchell George is supported by the NIH T32 grant GM008792-14.

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