A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.

Cytosolic free calcium ions represent important second-messengers in platelets. Therefore, quantitative measurement of intraplatelet calcium provides a popular and very sensitive tool to evaluate platelet activation and reactivity. Current protocols for determination of intracellular calcium concent...

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Main Authors: Alice Assinger, Ivo Volf, Diethart Schmid
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4388375?pdf=render
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spelling doaj-e205c143c4a74f1dbfaae12aefe225122020-11-24T21:24:25ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012252710.1371/journal.pone.0122527A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.Alice AssingerIvo VolfDiethart SchmidCytosolic free calcium ions represent important second-messengers in platelets. Therefore, quantitative measurement of intraplatelet calcium provides a popular and very sensitive tool to evaluate platelet activation and reactivity. Current protocols for determination of intracellular calcium concentrations in platelets have a number of limitations. Cuvette-based methods do not allow measurement of calcium flux in complex systems, such as whole blood, and therefore require isolation steps that potentially interfere with platelet activation. Flow cytometry has the potential to overcome this limitation, but to date the application of calibrated, quantitative readout of calcium kinetics has only been described for Indo-1. As excitation of Indo-1 requires a laser in the ultraviolet range, such measurements cannot be performed with a standard flow cytometer. Here, we describe a novel, rapid calibration method for ratiometric calcium measurement in platelets using both Ar(+)-laser excited fluorescence dyes Fluo-4 and Fura Red. We provide appropriate equations that allow rapid quantification of intraplatelet calcium fluxes by measurement of only two standardisation buffers. We demonstrate that this method allows quantitative calcium measurement in platelet rich plasma as well as in whole blood. Further, we show that this method prevents artefacts due to platelet aggregate formation and is therefore an ideal tool to determine basal and agonist induced calcium kinetics.http://europepmc.org/articles/PMC4388375?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Alice Assinger
Ivo Volf
Diethart Schmid
spellingShingle Alice Assinger
Ivo Volf
Diethart Schmid
A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
PLoS ONE
author_facet Alice Assinger
Ivo Volf
Diethart Schmid
author_sort Alice Assinger
title A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
title_short A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
title_full A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
title_fullStr A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
title_full_unstemmed A novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
title_sort novel, rapid method to quantify intraplatelet calcium dynamics by ratiometric flow cytometry.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Cytosolic free calcium ions represent important second-messengers in platelets. Therefore, quantitative measurement of intraplatelet calcium provides a popular and very sensitive tool to evaluate platelet activation and reactivity. Current protocols for determination of intracellular calcium concentrations in platelets have a number of limitations. Cuvette-based methods do not allow measurement of calcium flux in complex systems, such as whole blood, and therefore require isolation steps that potentially interfere with platelet activation. Flow cytometry has the potential to overcome this limitation, but to date the application of calibrated, quantitative readout of calcium kinetics has only been described for Indo-1. As excitation of Indo-1 requires a laser in the ultraviolet range, such measurements cannot be performed with a standard flow cytometer. Here, we describe a novel, rapid calibration method for ratiometric calcium measurement in platelets using both Ar(+)-laser excited fluorescence dyes Fluo-4 and Fura Red. We provide appropriate equations that allow rapid quantification of intraplatelet calcium fluxes by measurement of only two standardisation buffers. We demonstrate that this method allows quantitative calcium measurement in platelet rich plasma as well as in whole blood. Further, we show that this method prevents artefacts due to platelet aggregate formation and is therefore an ideal tool to determine basal and agonist induced calcium kinetics.
url http://europepmc.org/articles/PMC4388375?pdf=render
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