The microstructure mold fabrication for PDMS microfluidic chip remains complex and time-consuming process requiring special equipment and protocols: photolithography and etching. Thus, a rapid and cost-effective method is highly needed. Comparing with the traditional microfluidic chip fabricating process based on the micro-electromechanical system (MEMS), this method is simple and easy to implement, and the whole fabrication process only requires 1-2 h. Different size of microstructure from 100 to 1000 μm was fabricated, and used to culture four kinds of breast cancer cell lines. Cell viability and morphology was assessed when they were cultured in the micro straight channels, micro square holes and the bonding PDMS-glass microfluidic chip....
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
Using polymer materials to fabricate microfluidic devices provides simple, cost effective, and dispo...
The main focus of this project will be the fabrication and assembly of a working microfluidic device...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
Harnessing the ability to precisely manipulate small volumes of fluids and bioparticles, microfluidi...
The PDMS-based microfluidic organ-on-chip platform represents an exciting paradigm that has enjoyed ...
Compared with polymer-based biochips, such as polydimethylsiloxane (PDMS), glass based chips have dr...
Compared with polymer-based biochips, such as polydimethylsiloxane (PDMS), glass based chips have dr...
[[abstract]]Polydimethylsiloxane (PDMS) materials are substantially exploited to fabricate microflui...
We report a simple method to fabricate PDMS (polydimethylsiloxane) microwell arrays on glass by usin...
The conventional fabrication methods for microfluidic devices require cleanroom processes that are c...
A full PDMS micro-droplet chip for 3D cell culture was prepared by using SLA light-curing 3D printin...
提出了一种微流控芯片模具的快速批量制作方法。应用光刻与湿法腐蚀技术制作玻璃母模,然后采用热压成形技术批量制作聚甲基丙烯酸甲酯(PMMA)阳模,再利用阳模浇模、键合批量制作聚二甲基硅氧烷(PDMS)微流...
GULER, MUSTAFA TAHSIN/0000-0002-0478-3183; Elbuken, Caglar/0000-0001-8359-6871WOS: 000375230700008Th...
Using polymer materials to fabricate microfluidic devices provides simple, cost effective, and dispo...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
Using polymer materials to fabricate microfluidic devices provides simple, cost effective, and dispo...
The main focus of this project will be the fabrication and assembly of a working microfluidic device...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
Harnessing the ability to precisely manipulate small volumes of fluids and bioparticles, microfluidi...
The PDMS-based microfluidic organ-on-chip platform represents an exciting paradigm that has enjoyed ...
Compared with polymer-based biochips, such as polydimethylsiloxane (PDMS), glass based chips have dr...
Compared with polymer-based biochips, such as polydimethylsiloxane (PDMS), glass based chips have dr...
[[abstract]]Polydimethylsiloxane (PDMS) materials are substantially exploited to fabricate microflui...
We report a simple method to fabricate PDMS (polydimethylsiloxane) microwell arrays on glass by usin...
The conventional fabrication methods for microfluidic devices require cleanroom processes that are c...
A full PDMS micro-droplet chip for 3D cell culture was prepared by using SLA light-curing 3D printin...
提出了一种微流控芯片模具的快速批量制作方法。应用光刻与湿法腐蚀技术制作玻璃母模,然后采用热压成形技术批量制作聚甲基丙烯酸甲酯(PMMA)阳模,再利用阳模浇模、键合批量制作聚二甲基硅氧烷(PDMS)微流...
GULER, MUSTAFA TAHSIN/0000-0002-0478-3183; Elbuken, Caglar/0000-0001-8359-6871WOS: 000375230700008Th...
Using polymer materials to fabricate microfluidic devices provides simple, cost effective, and dispo...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
Using polymer materials to fabricate microfluidic devices provides simple, cost effective, and dispo...
The main focus of this project will be the fabrication and assembly of a working microfluidic device...