Live-cell imaging of platelet degranulation and secretion under flow

Publication date

2017-07-10

Authors

Barendrecht, Arjan DISNI 0000000393138377
Verhoef, Johan J F
Pignatelli, Silvia
Pasterkamp, GerardISNI 0000000397161080
Heijnen, H.ISNI 0000000387490470
Maas, CoenORCID 0000-0003-4593-0976

Editors

Advisors

Supervisors

Document Type

Article

Collections

License

Abstract

Blood platelets are essential players in hemostasis, the formation of thrombi to seal vascular breaches. They are also involved in thrombosis, the formation of thrombi that occlude the vasculature and injure organs, with life-threatening consequences. This motivates scientific research on platelet function and the development of methods to track cell-biological processes as they occur under flow conditions. A variety of flow models are available for the study of platelet adhesion and aggregation, two key phenomena in platelet biology. This work describes a method to study real-time platelet degranulation under flow during activation. The method makes use of a flow chamber coupled to a syringe-pump setup that is placed under a wide-field, inverted, LED-based fluorescence microscope. The setup described here allows for the simultaneous excitation of multiple fluorophores that are delivered by fluorescently labeled antibodies or fluorescent dyes. After live-cell imaging experiments, the cover glasses can be further processed and analyzed using static microscopy (i.e., confocal microscopy or scanning electron microscopy).

Keywords

Adhesion, Cellular Biology, Hemostasis, Issue 125, Microscopy, Platelets, Secretion, Thrombosis, General Neuroscience, General Chemical Engineering, General Immunology and Microbiology, General Biochemistry,Genetics and Molecular Biology, Journal Article

Citation

Barendrecht, A D, Verhoef, J J F, Pignatelli, S, Pasterkamp, G, Heijnen, H F G & Maas, C 2017, 'Live-cell imaging of platelet degranulation and secretion under flow', JoVE, vol. 2017, no. 125, e55658. https://doi.org/10.3791/55658