Javascript must be enabled to continue!
In-house polydimethylsiloxane microfluidic device on single cell trapping and culturing of Leukemia cell line: comparison between conventional and conventional with centrifugal methods
View through CrossRef
To develop a suitable model to study biological and characterization of Cancer stem cells (CSCs), single cell trapping and culturing using microfluidic techniques have become a high-through put system that can manage and control microenvironment and practical intracellular analysis. The aim of this study was to develop and validate a microfluidic device for single cell trapping and culturing using the leukemia cell line as a cell model. Comparison between conventional and conventional with centrifugal methods was also analyzed. To compare trapping efficacy between these 2 methods, leukemia cell concentration of 1.5×106 cells/ml was loaded with a flow rate of 0.25 ml/h. In the conventional with centrifugal method, the chip was centrifuged twice with 1,000 rpm/rcf for 2 mins. From the results, the conventional method with centrifugal method showed significantly higher numbers of trapping microwells than the conventional method in all trapping manners. To examine culture efficacy, the cells were cultured in microfluidic devices and stained with trypan blue dye at 24, 48 and 72 h for cell viability study. The results showed that the conventional with centrifugal method showed a higher percentage than the conventional method at 48 h and significantly at 72 h. Both methods showed a high percentage of viable cells at 24 h. However, percentages at 48 and 72 h were significantly decreased. In summary, our developed microfluidic device was successful in trapping single cell pattern and short-term culture of single cell of the leukemia cell line. In addition, administration of an additional centrifugal method could be used to increase cell trapping efficacy when compared to the conventional method.
Office of Academic Resources, Chulalongkorn University - DIGITAL COMMONS JOURNALS
Alongkorn Pimpin
Sudchaya Bhanpattanakul
Tepparit Wongpakham
Chomkwan Tawatcharaporn
Thanawit Siha-umphai
Mookdapa Sinsiriphan
Atikan Chalermchuang
Tewan Tongmanee
Attawut Thanomsridetchai
Thammawit Suwannaphan
Witsaroot Sripumkhaie
Pattaraluck Pattamang
Mayuree Chanasakulniyom
Praprudee Piyaviriyakul
Wutthinun Jeamsaksiri
Achariya Sailasuta
Theerawat Tharasanit
Theerayuth Kaewamatawong
Title: In-house polydimethylsiloxane microfluidic device on single cell trapping and culturing of Leukemia cell line: comparison between conventional and conventional with centrifugal methods
Description:
To develop a suitable model to study biological and characterization of Cancer stem cells (CSCs), single cell trapping and culturing using microfluidic techniques have become a high-through put system that can manage and control microenvironment and practical intracellular analysis.
The aim of this study was to develop and validate a microfluidic device for single cell trapping and culturing using the leukemia cell line as a cell model.
Comparison between conventional and conventional with centrifugal methods was also analyzed.
To compare trapping efficacy between these 2 methods, leukemia cell concentration of 1.
5×106 cells/ml was loaded with a flow rate of 0.
25 ml/h.
In the conventional with centrifugal method, the chip was centrifuged twice with 1,000 rpm/rcf for 2 mins.
From the results, the conventional method with centrifugal method showed significantly higher numbers of trapping microwells than the conventional method in all trapping manners.
To examine culture efficacy, the cells were cultured in microfluidic devices and stained with trypan blue dye at 24, 48 and 72 h for cell viability study.
The results showed that the conventional with centrifugal method showed a higher percentage than the conventional method at 48 h and significantly at 72 h.
Both methods showed a high percentage of viable cells at 24 h.
However, percentages at 48 and 72 h were significantly decreased.
In summary, our developed microfluidic device was successful in trapping single cell pattern and short-term culture of single cell of the leukemia cell line.
In addition, administration of an additional centrifugal method could be used to increase cell trapping efficacy when compared to the conventional method.
Related Results
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Myosin-IIa Is Required for Leukemia Cell Extravasation and Its Inhibition Reduces Leukemia Dissemination and Prolongs Survival in a Mouse Model of Acute Lymphoblastic Leukemia
Myosin-IIa Is Required for Leukemia Cell Extravasation and Its Inhibition Reduces Leukemia Dissemination and Prolongs Survival in a Mouse Model of Acute Lymphoblastic Leukemia
Abstract
Background: Leukemia affects approximately 45,000 people each year in the USA with more than 20,000 fatalities. Many leukemia patients experience initial re...
STAT3 Mutations in Large Granular Lymphocytic Leukemia
STAT3 Mutations in Large Granular Lymphocytic Leukemia
Abstract
Abstract 1606
Introduction:
Large granular lymphocytic leukemia (LGL leukemia) is a rare lymphoprolifera...
ROR1 Expression Accelerates Leukemia Development in RORxTCL1 Transgenic Mice,
ROR1 Expression Accelerates Leukemia Development in RORxTCL1 Transgenic Mice,
Abstract
Abstract 3905
ROR1 is a receptor tyrosine kinase-like orphan receptor and an oncofetal protein that is expressed on chronic lymphocytic leuke...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Nature Products Enhance NKG2D Ligands Expression of CD123+CD34+CD38− Leukemia Stem Cells for Stimulating Cytotoxicity of NKG2D+ Cells to Themselves
Abstract
CD123+CD34+CD38− leukemia cells regarded as leukemia stem cells, not only refractory to chemotherapeutics but also resistant to immune response such as cyto...
Comparison of Chemical and Hysteresis CO2 Trapping in the Nugget Formation
Comparison of Chemical and Hysteresis CO2 Trapping in the Nugget Formation
Abstract
The Moxa Arch Anticline is a regional-scale northwest-trending uplift in western Wyoming and it has been chosen for CO2 capture and storage. The Nugget Sand...
A Microfluidic Device for Hydrodynamic Trapping and Manipulation Platform of a Single Biological Cell
A Microfluidic Device for Hydrodynamic Trapping and Manipulation Platform of a Single Biological Cell
To perform specific analysis for the single cell, individual cells have to be captured and separated from each other before further treatments and analysis can be carried out. This...

