Literature DB >> 22662036

A self-contained polymeric cartridge for automated biological sample preparation.

Guolin Xu1, Daniel Yoke San Lee, Hong Xie, Deon Chiew, Tseng-Ming Hsieh, Emril Mohamed Ali, Xing Lun Looi, Mo-Huang Li, Jackie Y Ying.   

Abstract

Sample preparation is one of the most crucial processes for nucleic acids based disease diagnosis. Several steps are required for nucleic acids extraction, impurity washes, and DNA/RNA elution. Careful sample preparation is vital to the obtaining of reliable diagnosis, especially with low copies of pathogens and cells. This paper describes a low-cost, disposable lab cartridge for automatic sample preparation, which is capable of handling flexible sample volumes of 10 μl to 1 ml. This plastic cartridge contains all the necessary reagents for pathogen and cell lysis, DNA/RNA extraction, impurity washes, DNA/RNA elution and waste processing in a completely sealed cartridge. The entire sample preparation processes are automatically conducted within the cartridge on a desktop unit using a pneumatic fluid manipulation approach. Reagents transportation is achieved with a combination of push and pull forces (with compressed air and vacuum, respectively), which are connected to the pneumatic inlets at the bottom of the cartridge. These pneumatic forces are regulated by pinch valve manifold and two pneumatic syringe pumps within the desktop unit. The performance of this pneumatic reagent delivery method was examined. We have demonstrated the capability of the on-cartridge RNA extraction and cancer-specific gene amplification from 10 copies of MCF-7 breast cancer cells. The on-cartridge DNA recovery efficiency was 54-63%, which was comparable to or better than the conventional manual approach using silica spin column. The lab cartridge would be suitable for integration with lab-chip real-time polymerase chain reaction devices in providing a portable system for decentralized disease diagnosis.

Entities:  

Year:  2011        PMID: 22662036      PMCID: PMC3364824          DOI: 10.1063/1.3614441

Source DB:  PubMed          Journal:  Biomicrofluidics        ISSN: 1932-1058            Impact factor:   2.800


  26 in total

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9.  Multilaboratory comparison of hepatitis C virus viral load assays.

Authors:  A M Caliendo; A Valsamakis; Y Zhou; B Yen-Lieberman; J Andersen; S Young; A Ferreira-Gonzalez; G J Tsongalis; R Pyles; J W Bremer; N S Lurain
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