Automated microfluidic DNA/RNA extraction with both disposable and reusable components

被引:16
|
作者
Kim, Jungkyu [2 ]
Johnson, Michael [1 ]
Hill, Parker [2 ]
Sonkul, Rahul S. [1 ]
Kim, Jongwon [1 ]
Gale, Bruce K. [1 ]
机构
[1] Univ Utah, Dept Mech Engn, Salt Lake City, UT 84112 USA
[2] Univ Utah, Dept Bioengn, Salt Lake City, UT 84112 USA
关键词
SOLID-PHASE; DNA; PURIFICATION; VALVES; BIOPROCESSOR; CHITOSAN; SILICA; PUMPS; RNA;
D O I
10.1088/0960-1317/22/1/015007
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
An automated microfluidic nucleic extraction system was fabricated with a multilayer polydimethylsiloxane (PDMS) structure that consists of sample wells, microvalves, a micropump and a disposable microfluidic silica cartridge. Both the microvalves and micropump structures were fabricated in a single layer and are operated pneumatically using a 100 mu m PDMS membrane. To fabricate the disposable microfluidic silica cartridge, two-cavity structures were made in a PDMS replica to fit the stacked silica membranes. A handheld controller for the microvalves and pumps was developed to enable system automation. With purified ribonucleic acid (RNA), whole blood and E. coli samples, the automated microfluidic nucleic acid extraction system was validated with a guanidine-based solid phase extraction procedure. An extraction efficiency of similar to 90% for deoxyribonucleic acid (DNA) and similar to 54% for RNA was obtained in 12 min from whole blood and E. coli samples, respectively. In addition, the same quantity and quality of extracted DNA was confirmed by polymerase chain reaction (PCR) amplification. The PCR also presented the appropriate amplification and melting profiles. Automated, programmable fluid control and physical separation of the reusable components and the disposable components significantly decrease the assay time and manufacturing cost and increase the flexibility and compatibility of the system with downstream components.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Automated Device for Asynchronous Extraction of RNA, DNA, or Protein Biomarkers from Surrogate Patient Samples
    Bitting, Anna L.
    Bordelon, Hali
    Baglia, Mark L.
    Davis, Keersten M.
    Creecy, Amy E.
    Short, Philip A.
    Albert, Laura E.
    Karhade, Aditya V.
    Wright, David W.
    Haselton, Frederick R.
    Adams, Nicholas M.
    JALA, 2016, 21 (06): : 732 - 742
  • [42] Automated extraction of DNA from clothing
    Stangegaard, Michael
    Hjort, Benjamin B.
    Hansen, Thomas N.
    Hansen, Anders J.
    Morling, Niels
    FORENSIC SCIENCE INTERNATIONAL GENETICS SUPPLEMENT SERIES, 2011, 3 (01) : E403 - E404
  • [43] Evaluation of an Automated DNA Extraction Platform
    Werner, S.
    Hellwig, S.
    Kieckhaefer, J.
    JOURNAL OF MOLECULAR DIAGNOSTICS, 2024, 26 (11): : S148 - S148
  • [44] Sequentially automated extraction of nucleic acids with magnetophoresis in microfluidic chips
    Siddique, M. Kashif
    Lee, Ruizhi
    Li, Songjing
    Sun, Lin
    INSTRUMENTATION SCIENCE & TECHNOLOGY, 2024, 52 (01) : 51 - 66
  • [45] RNA-protein binding kinetics in an automated microfluidic reactor
    Ridgeway, William K.
    Seitaridou, Effrosyni
    Phillips, Rob
    Williamson, James R.
    NUCLEIC ACIDS RESEARCH, 2009, 37 (21) : e142 - e142
  • [46] Microfluidic-based automated chromogenic RNA in situ hybridization
    Procopio, M.
    Murlidhar, V.
    Doolittle, E.
    Zhang, B.
    Dupouy, D. G.
    Ma, X.
    VIRCHOWS ARCHIV, 2020, 477 : S146 - S146
  • [47] Automated, high-throughput DNA extraction protocol for disposable label free, microfluidics integrating DNA biosensor for oil palm pathogen, Ganoderma boninense
    Ayoib, Adilah
    Hashim, Uda
    Gopinath, Subash C. B.
    PROCESS BIOCHEMISTRY, 2020, 92 : 447 - 456
  • [48] Automated Extraction of DNA from Forensic Sample Types Using the PrepFiler Automated Forensic DNA Extraction Kit
    Brevnov, Maxim
    Mundt, Janna
    Benfield, Jacki
    Treat-Clemons, Lynda
    Kalusche, Geert
    Meredith, Jason
    Porter, Gregory
    Furtado, Manohar R.
    Shewale, Jaiprakash G.
    JALA, 2009, 14 (05): : 294 - 302
  • [49] Optimization of a microfluidic cartridge for Lab-on-a-chip (LOC) application and bio-testing for DNA/RNA extraction
    Xie, Ling
    Premachandran, C. S.
    Chew, Michelle
    Chong, Ser Choong
    Wai, Leong Ching
    Lau, John
    58TH ELECTRONIC COMPONENTS & TECHNOLOGY CONFERENCE, PROCEEDINGS, 2008, : 1310 - 1316
  • [50] Preparation of Formalin-fixed Paraffin-embedded Tissue Cores for both RNA and DNA Extraction
    Patel, Palak G.
    Selvarajah, Shamini
    Boursalie, Suzanne
    How, Nathan E.
    Ejdelman, Joshua
    Guerard, Karl-Philippe
    Bartlett, John M.
    Lapointe, Jacques
    Park, Paul C.
    Okello, John B. A.
    Berman, David M.
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2016, (114):