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A Microfluidic Device for Detecting the Deformability of Red Blood Cells
by
Zhang, Ce
, Gong, Xiaobo
, Sun, Dan
, Liu, Wenyan
, Xie, Liqiang
, Yang, Jiangcun
in
Animals
/ Automation
/ Biosensing Techniques
/ Comparative analysis
/ Deformability
/ Deformation
/ Deformation analysis
/ Deformation effects
/ Development and progression
/ Diabetes
/ Diabetes mellitus
/ Diabetes mellitus (non-insulin dependent)
/ Diabetes Mellitus, Type 2 - blood
/ Disease
/ Erythrocyte Deformability
/ Erythrocytes
/ Erythrocytes - cytology
/ Ethylenediaminetetraacetic acid
/ Flow velocity
/ Formability
/ Glass substrates
/ Glucose
/ Humans
/ Hyperglycemia
/ Lab-On-A-Chip Devices
/ Mechanical properties
/ Mice
/ Microchannels
/ microfluidic device
/ Microfluidic devices
/ Microfluidics
/ Microvasculature
/ Physiology
/ Quantitative analysis
/ Real time
/ red blood cell deformability
/ Shear stress
/ single-cell analysis
/ Software
/ Target recognition
/ Type 2 diabetes
/ Viscosity
2025
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A Microfluidic Device for Detecting the Deformability of Red Blood Cells
by
Zhang, Ce
, Gong, Xiaobo
, Sun, Dan
, Liu, Wenyan
, Xie, Liqiang
, Yang, Jiangcun
in
Animals
/ Automation
/ Biosensing Techniques
/ Comparative analysis
/ Deformability
/ Deformation
/ Deformation analysis
/ Deformation effects
/ Development and progression
/ Diabetes
/ Diabetes mellitus
/ Diabetes mellitus (non-insulin dependent)
/ Diabetes Mellitus, Type 2 - blood
/ Disease
/ Erythrocyte Deformability
/ Erythrocytes
/ Erythrocytes - cytology
/ Ethylenediaminetetraacetic acid
/ Flow velocity
/ Formability
/ Glass substrates
/ Glucose
/ Humans
/ Hyperglycemia
/ Lab-On-A-Chip Devices
/ Mechanical properties
/ Mice
/ Microchannels
/ microfluidic device
/ Microfluidic devices
/ Microfluidics
/ Microvasculature
/ Physiology
/ Quantitative analysis
/ Real time
/ red blood cell deformability
/ Shear stress
/ single-cell analysis
/ Software
/ Target recognition
/ Type 2 diabetes
/ Viscosity
2025
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Do you wish to request the book?
A Microfluidic Device for Detecting the Deformability of Red Blood Cells
by
Zhang, Ce
, Gong, Xiaobo
, Sun, Dan
, Liu, Wenyan
, Xie, Liqiang
, Yang, Jiangcun
in
Animals
/ Automation
/ Biosensing Techniques
/ Comparative analysis
/ Deformability
/ Deformation
/ Deformation analysis
/ Deformation effects
/ Development and progression
/ Diabetes
/ Diabetes mellitus
/ Diabetes mellitus (non-insulin dependent)
/ Diabetes Mellitus, Type 2 - blood
/ Disease
/ Erythrocyte Deformability
/ Erythrocytes
/ Erythrocytes - cytology
/ Ethylenediaminetetraacetic acid
/ Flow velocity
/ Formability
/ Glass substrates
/ Glucose
/ Humans
/ Hyperglycemia
/ Lab-On-A-Chip Devices
/ Mechanical properties
/ Mice
/ Microchannels
/ microfluidic device
/ Microfluidic devices
/ Microfluidics
/ Microvasculature
/ Physiology
/ Quantitative analysis
/ Real time
/ red blood cell deformability
/ Shear stress
/ single-cell analysis
/ Software
/ Target recognition
/ Type 2 diabetes
/ Viscosity
2025
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A Microfluidic Device for Detecting the Deformability of Red Blood Cells
Journal Article
A Microfluidic Device for Detecting the Deformability of Red Blood Cells
2025
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Overview
Red blood cell (RBC) deformability is a critical biophysical property that enables effective passage of RBCs through microvasculature and ensures proper oxygen delivery. Impairment of this property is associated with various pathological conditions, including type 2 diabetes mellitus (T2DM). In this study, we developed an automated microfluidic platform for high-throughput and real-time assessment of RBC deformability under controlled flow conditions. The device features a structured microchannel design and integrated imaging to quantify individual cell deformation responses. Comparative analyses of RBCs from healthy individuals and T2DM patients revealed significant reductions in deformability in the diabetic group. In vivo validation using a diabetic mouse model further confirmed the progressive decline in RBC deformability under chronic hyperglycemia. This microfluidic approach provides a robust and efficient tool for characterizing RBC mechanical properties, offering potential for disease monitoring and clinical diagnostic applications.
Publisher
MDPI AG
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