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The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer

As key cellular elements of hemostasis, platelets represent a primary target for thrombosis and bleeding management. Currently, therapeutic manipulations of platelet function (antithrombotic drugs) and count (platelet transfusion) are performed with limited or no real-time monitoring of the desired...

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Autores principales: Roka-Moiia, Yana, Bozzi, Silvia, Ferrari, Chiara, Mantica, Gabriele, Dimasi, Annalisa, Rasponi, Marco, Santoleri, Andrea, Scavone, Mariangela, Consolo, Filippo, Cattaneo, Marco, Slepian, Marvin J., Redaelli, Alberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072796/
https://www.ncbi.nlm.nih.gov/pubmed/32053940
http://dx.doi.org/10.3390/ijms21041174
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author Roka-Moiia, Yana
Bozzi, Silvia
Ferrari, Chiara
Mantica, Gabriele
Dimasi, Annalisa
Rasponi, Marco
Santoleri, Andrea
Scavone, Mariangela
Consolo, Filippo
Cattaneo, Marco
Slepian, Marvin J.
Redaelli, Alberto
author_facet Roka-Moiia, Yana
Bozzi, Silvia
Ferrari, Chiara
Mantica, Gabriele
Dimasi, Annalisa
Rasponi, Marco
Santoleri, Andrea
Scavone, Mariangela
Consolo, Filippo
Cattaneo, Marco
Slepian, Marvin J.
Redaelli, Alberto
author_sort Roka-Moiia, Yana
collection PubMed
description As key cellular elements of hemostasis, platelets represent a primary target for thrombosis and bleeding management. Currently, therapeutic manipulations of platelet function (antithrombotic drugs) and count (platelet transfusion) are performed with limited or no real-time monitoring of the desired outcome at the point-of-care. To address the need, we have designed and fabricated an easy-to-use, accurate, and portable impedance aggregometer called “MICELI” (MICrofluidic, ELectrical, Impedance). It improves on current platelet aggregation technology by decreasing footprint, assay complexity, and time to obtain results. The current study aimed to optimize the MICELI protocol; validate sensitivity to aggregation agonists and key blood parameters, i.e., platelet count and hematocrit; and verify the MICELI operational performance as compared to commercial impedance aggregometry. We demonstrated that the MICELI aggregometer could detect platelet aggregation in 250 μL of whole blood or platelet-rich plasma, stimulated by ADP, TRAP-6, collagen, epinephrine, and calcium ionophore. Using hirudin as blood anticoagulant allowed higher aggregation values. Aggregation values obtained by the MICELI strongly correlated with platelet count and were not affected by hematocrit. The operational performance comparison of the MICELI and the Multiplate(®) Analyzer demonstrated strong correlation and similar interdonor distribution of aggregation values obtained between these devices. With the proven reliability of the data obtained by the MICELI aggregometer, it can be further translated into a point-of-care diagnostic device aimed at monitoring platelet function in order to guide pharmacological hemostasis management and platelet transfusions.
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spelling pubmed-70727962020-03-19 The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer Roka-Moiia, Yana Bozzi, Silvia Ferrari, Chiara Mantica, Gabriele Dimasi, Annalisa Rasponi, Marco Santoleri, Andrea Scavone, Mariangela Consolo, Filippo Cattaneo, Marco Slepian, Marvin J. Redaelli, Alberto Int J Mol Sci Article As key cellular elements of hemostasis, platelets represent a primary target for thrombosis and bleeding management. Currently, therapeutic manipulations of platelet function (antithrombotic drugs) and count (platelet transfusion) are performed with limited or no real-time monitoring of the desired outcome at the point-of-care. To address the need, we have designed and fabricated an easy-to-use, accurate, and portable impedance aggregometer called “MICELI” (MICrofluidic, ELectrical, Impedance). It improves on current platelet aggregation technology by decreasing footprint, assay complexity, and time to obtain results. The current study aimed to optimize the MICELI protocol; validate sensitivity to aggregation agonists and key blood parameters, i.e., platelet count and hematocrit; and verify the MICELI operational performance as compared to commercial impedance aggregometry. We demonstrated that the MICELI aggregometer could detect platelet aggregation in 250 μL of whole blood or platelet-rich plasma, stimulated by ADP, TRAP-6, collagen, epinephrine, and calcium ionophore. Using hirudin as blood anticoagulant allowed higher aggregation values. Aggregation values obtained by the MICELI strongly correlated with platelet count and were not affected by hematocrit. The operational performance comparison of the MICELI and the Multiplate(®) Analyzer demonstrated strong correlation and similar interdonor distribution of aggregation values obtained between these devices. With the proven reliability of the data obtained by the MICELI aggregometer, it can be further translated into a point-of-care diagnostic device aimed at monitoring platelet function in order to guide pharmacological hemostasis management and platelet transfusions. MDPI 2020-02-11 /pmc/articles/PMC7072796/ /pubmed/32053940 http://dx.doi.org/10.3390/ijms21041174 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Roka-Moiia, Yana
Bozzi, Silvia
Ferrari, Chiara
Mantica, Gabriele
Dimasi, Annalisa
Rasponi, Marco
Santoleri, Andrea
Scavone, Mariangela
Consolo, Filippo
Cattaneo, Marco
Slepian, Marvin J.
Redaelli, Alberto
The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title_full The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title_fullStr The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title_full_unstemmed The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title_short The MICELI (MICrofluidic, ELectrical, Impedance): Prototyping a Point-of-Care Impedance Platelet Aggregometer
title_sort miceli (microfluidic, electrical, impedance): prototyping a point-of-care impedance platelet aggregometer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072796/
https://www.ncbi.nlm.nih.gov/pubmed/32053940
http://dx.doi.org/10.3390/ijms21041174
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