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Towards a "Sample-In, Answer-Out" Point-of-Care Platform for Nucleic Acid Extraction and Amplification: Using an HPV E6/E7 mRNA Model System. | LitMetric

AI Article Synopsis

  • The paper discusses a hands-free diagnostic platform designed to detect HPV E6/E7 mRNA in clinical samples, featuring automated processes for sample preparation and detection.
  • It includes two modular components: one for preparing samples and another for amplification and detection, with plans for future integration into a single unit.
  • Testing results showed a detection rate of 50%-85.7% for HPV in cervical cytology samples, with successful amplification of specific HPV types in some cases.

Article Abstract

The paper presents the development of a "proof-of-principle" hands-free and self-contained diagnostic platform for detection of human papillomavirus (HPV) E6/E7 mRNA in clinical specimens. The automated platform performs chip-based sample preconcentration, nucleic acid extraction, amplification, and real-time fluorescent detection with minimal user interfacing. It consists of two modular prototypes, one for sample preparation and one for amplification and detection; however, a common interface is available to facilitate later integration into one single module. Nucleic acid extracts (n = 28) from cervical cytology specimens extracted on the sample preparation chip were tested using the PreTect HPV-Proofer and achieved an overall detection rate for HPV across all dilutions of 50%-85.7%. A subset of 6 clinical samples extracted on the sample preparation chip module was chosen for complete validation on the NASBA chip module. For 4 of the samples, a 100% amplification for HPV 16 or 33 was obtained at the 1 : 10 dilution for microfluidic channels that filled correctly. The modules of a "sample-in, answer-out" diagnostic platform have been demonstrated from clinical sample input through sample preparation, amplification and final detection.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3253481PMC
http://dx.doi.org/10.1155/2012/905024DOI Listing

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