Title :
Design of a fully-enclosed disposable bio-micro fluidic cartridge with self-contained reagents for infectious diseases diagnostic applications
Author :
Xie, Ling ; Chew, Michelle ; Premachandran, C.S. ; Zhang, Li ; Rafei, Siti R M ; Ji, Hong Miao ; Rajoo, Ranjan ; Tang, Kum Cheong ; Chen, Yu ; Teo, Keng Hwa ; Lau, Kelly Suk Hiang ; Chow, Vincent T K ; Heng, Chew Kiat ; Ong, Kian Leong ; Tan, Rosemary
Author_Institution :
Inst. of Microelectron. (IME), A*STAR, Singapore, Singapore
Abstract :
To meet the requirements of infectious diseases identification, a sealed and fully enclosed cartridge with self-contained reagents was developed. The inlet and outlet ports of the cartridge are self-sealing. The waste produced during the diagnostic process was collected in a waste bag, which is enclosed in the cartridge. Two different types of waste bags were designed to reduce the overall thickness of the cartridge. A silicon chip with filter, binder and mixer components was integrated into the microfluidic cartridge for the extraction of the nucleic acid sample from the infectious virus sample. By using a switch valve the nucleic acid sample and waste were split and collected in a PCR tube and a waste bag respectively. The PCR tube, modified with self-sealing elastomer cap, was used for collecting the nucleic acid. The whole extraction process was carried out automatically in a small table-top actuator system. With the dengue virus as the input sample, RNA (ribonucleic acid) is extracted and subjected to RT-PCR (reverse transcription polymerase chain reaction) which detected the diagnostic size of the target amplicon.
Keywords :
bioMEMS; diseases; macromolecules; microfluidics; microorganisms; molecular biophysics; patient diagnosis; PCR; PCR tube; RNA; RT-PCR; binder component; dengue virus; extraction process; filter component; fully-enclosed disposable biomicrofluidic cartridge; infectious disease diagnostics; microfluidic cartridge; mixer component; reverse transcription polymerase chain reaction; ribonucleic acid; self-contained reagents; self-sealing elastomer cap; silicon chip; table-top actuator system; target amplicon; waste bag; DNA; Diseases; Filters; Humans; Laboratories; Microelectronics; RNA; Silicon; Switches; Testing;
Conference_Titel :
Electronics Packaging Technology Conference, 2009. EPTC '09. 11th
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-5099-2
Electronic_ISBN :
978-1-4244-5100-5
DOI :
10.1109/EPTC.2009.5416555