In this article, we present a novel nitrocellulose-based microfluidic chip with 3-dimensional (3D) printing technology to study the effect of oxygen gradient on cells. Compared with conventional polydimethylsiloxane (PDMS) chips of oxygen gradient for cell cultures that can only rely on fluorescence microscope analysis, this hybrid nitrocellulose-based microfluidic platform can provide a variety of analysis methods for cells, including flow cytometry, western blot and RT-PCR, because the nitrocellulose-based chips with cells can be taken out from the growth chambers of 3D printed microfluidic chip and then used for cell collection or lysis. These advantages allow researchers to acquire more information and data on the basic biochemical and ...
Cell-based testing is a key step in drug screening for cancer treatments. A microfluidic platform c...
Microfluidic devices have been successfully used to recreate in vitro biological microenvironments, ...
Microfluidic-based cell culture systems are getting more and more important in biotechnology especia...
In this article, we present a novel nitrocellulose-based microfluidic chip with 3-dimensional (3D) p...
A simple and low-cost dissolved oxygen gradient platform of three dimensionally (3D) printed microfl...
Low oxygen tensions experienced in various pathological and physiological conditions are a major sti...
Cell-based screening of cancer treatments is used early in the drug development process to test the ...
Traditional cell culture is experiencing a revolution moving toward physiomimetic approaches aiming ...
A hypoxic (low oxygen level) microenvironment and nitric oxide paracrine signaling play important ro...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
A hypoxic (low oxygen level) microenvironment and nitric oxide paracrine signaling play important ro...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
In this paper, we first proposed a novel hybrid three-dimensional (3D) printed and paper-based micro...
3D printing has emerged as a method for directly printing complete microfluidic devices, although pr...
Cell-based testing is a key step in drug screening for cancer treatments. A microfluidic platform c...
Microfluidic devices have been successfully used to recreate in vitro biological microenvironments, ...
Microfluidic-based cell culture systems are getting more and more important in biotechnology especia...
In this article, we present a novel nitrocellulose-based microfluidic chip with 3-dimensional (3D) p...
A simple and low-cost dissolved oxygen gradient platform of three dimensionally (3D) printed microfl...
Low oxygen tensions experienced in various pathological and physiological conditions are a major sti...
Cell-based screening of cancer treatments is used early in the drug development process to test the ...
Traditional cell culture is experiencing a revolution moving toward physiomimetic approaches aiming ...
A hypoxic (low oxygen level) microenvironment and nitric oxide paracrine signaling play important ro...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
A hypoxic (low oxygen level) microenvironment and nitric oxide paracrine signaling play important ro...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
In this paper, we first proposed a novel hybrid three-dimensional (3D) printed and paper-based micro...
3D printing has emerged as a method for directly printing complete microfluidic devices, although pr...
Cell-based testing is a key step in drug screening for cancer treatments. A microfluidic platform c...
Microfluidic devices have been successfully used to recreate in vitro biological microenvironments, ...
Microfluidic-based cell culture systems are getting more and more important in biotechnology especia...