Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective

Hemorheological alterations in the majority of metabolic diseases are always connected with blood rheology disturbances, such as the increase of blood and plasma viscosity, cell aggregation enhancement, and reduction of the red blood cells (RBCs) deformability. Thus, the visualizations and measureme...

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Main Authors: Diana Pinho, Violeta Carvalho, Inês M. Gonçalves, Senhorinha Teixeira, Rui Lima
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Journal of Personalized Medicine
Subjects:
Online Access:https://www.mdpi.com/2075-4426/10/4/249
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spelling doaj-6e18770bd5174aa89f3eb69c616d48a42020-11-27T08:10:58ZengMDPI AGJournal of Personalized Medicine2075-44262020-11-011024924910.3390/jpm10040249Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine PerspectiveDiana Pinho0Violeta Carvalho1Inês M. Gonçalves2Senhorinha Teixeira3Rui Lima4Center for MicroElectromechanical Systems (CMEMS-UMinho), Campus de Azurém, University of Minho, 4800-058 Guimarães, PortugalMEtRICs, Mechanical Engineering Department, Campus de Azurém, University of Minho, 4800-058 Guimarães, PortugalInstituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, PortugalALGORITMI Center (CAlg), University of Minho, 4800-058 Guimarães, PortugalMEtRICs, Mechanical Engineering Department, Campus de Azurém, University of Minho, 4800-058 Guimarães, PortugalHemorheological alterations in the majority of metabolic diseases are always connected with blood rheology disturbances, such as the increase of blood and plasma viscosity, cell aggregation enhancement, and reduction of the red blood cells (RBCs) deformability. Thus, the visualizations and measurements of blood cells deformability flowing in microfluidic devices (point-of-care devices) can provide vital information to diagnose early symptoms of blood diseases and consequently to be used as a fast clinical tool for early detection of biomarkers. For instance, RBCs rigidity has been correlated with myocardial infarction, diabetes mellitus, hypertension, among other blood diseases. In order to better understand the blood cells behavior in microfluidic devices, rheological properties analysis is gaining interest by the biomedical committee, since it is strongly dependent on the interactions and mechanical cells proprieties. In addition, the development of blood analogue fluids capable of reproducing the rheological properties of blood and mimic the RBCs behavior at in vitro conditions is crucial for the design, performance and optimization of the microfluidic devices frequently used for personalized medicine. By combining the unique features of the hemorheology and microfluidic technology for single-cell analysis, valuable advances in personalized medicine for new treatments and diagnosis approach can be achieved.https://www.mdpi.com/2075-4426/10/4/249hemorheologyblood diseasesmicrofluidicssingle-cell analysisred blood cells deformabilityblood analogues
collection DOAJ
language English
format Article
sources DOAJ
author Diana Pinho
Violeta Carvalho
Inês M. Gonçalves
Senhorinha Teixeira
Rui Lima
spellingShingle Diana Pinho
Violeta Carvalho
Inês M. Gonçalves
Senhorinha Teixeira
Rui Lima
Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
Journal of Personalized Medicine
hemorheology
blood diseases
microfluidics
single-cell analysis
red blood cells deformability
blood analogues
author_facet Diana Pinho
Violeta Carvalho
Inês M. Gonçalves
Senhorinha Teixeira
Rui Lima
author_sort Diana Pinho
title Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
title_short Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
title_full Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
title_fullStr Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
title_full_unstemmed Visualization and Measurements of Blood Cells Flowing in Microfluidic Systems and Blood Rheology: A Personalized Medicine Perspective
title_sort visualization and measurements of blood cells flowing in microfluidic systems and blood rheology: a personalized medicine perspective
publisher MDPI AG
series Journal of Personalized Medicine
issn 2075-4426
publishDate 2020-11-01
description Hemorheological alterations in the majority of metabolic diseases are always connected with blood rheology disturbances, such as the increase of blood and plasma viscosity, cell aggregation enhancement, and reduction of the red blood cells (RBCs) deformability. Thus, the visualizations and measurements of blood cells deformability flowing in microfluidic devices (point-of-care devices) can provide vital information to diagnose early symptoms of blood diseases and consequently to be used as a fast clinical tool for early detection of biomarkers. For instance, RBCs rigidity has been correlated with myocardial infarction, diabetes mellitus, hypertension, among other blood diseases. In order to better understand the blood cells behavior in microfluidic devices, rheological properties analysis is gaining interest by the biomedical committee, since it is strongly dependent on the interactions and mechanical cells proprieties. In addition, the development of blood analogue fluids capable of reproducing the rheological properties of blood and mimic the RBCs behavior at in vitro conditions is crucial for the design, performance and optimization of the microfluidic devices frequently used for personalized medicine. By combining the unique features of the hemorheology and microfluidic technology for single-cell analysis, valuable advances in personalized medicine for new treatments and diagnosis approach can be achieved.
topic hemorheology
blood diseases
microfluidics
single-cell analysis
red blood cells deformability
blood analogues
url https://www.mdpi.com/2075-4426/10/4/249
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