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NCJRS Celebrates National Library Week April 12-18

National Library Week

Started in 1958, National Library Week is a nationwide observance celebrated by all types of libraries - including the NCJRS Virtual Library. NCJRS invites you to explore the breadth and scope of the NCJRS Virtual Library collection and services. With more than 220,000 collection documents and 60,000 online resources, including all known Office of Justice Programs works, it is one of the world’s largest criminal justice special collections.

We encourage your Feedback. Tell us how you use the NCJRS Virtual Library and Abstracts Database, how you access the collection, and any ways we can improve our services.

NCJRS Abstract

The document referenced below is part of the NCJRS Library collection.
To conduct further searches of the collection, visit the NCJRS Abstracts Database.

How to Obtain Documents
 
NCJ Number: NCJ 236435   Add to Shopping cart   Find in a Library
Title: Microfabricated Capillary Array Electrophoresis Genetic Analyzers for Forensic Short Tandem Repeat DNA Profiling
  Document URL: PDF 
Author(s): Richard A. Mathies
Date Published: 2011
Page Count: 67
  Annotation: This project’s ultimate goal was to improve forensic STR identification by developing faster, more reliable, higher throughput, more sensitive, and more integrated technologies.
Abstract: This project achieved five objectives in the pursuit of this goal. First, it optimized a portable microsystem that includes PCR amplification, sample and standard injection, separation, and fluorescence detection in a single integrated microchip. At a mock crime scene, this device conducted real-time STR analyses using a 9-plex STR kit, including sample collection, DNA extraction, STR analyses, and CODIS database search. Second, the project developed an integrated STR sample cleanup, a concentration method that uses a photopolymerized streptavidin-gel capture chemistry coupled to a simple, improved direct injector geometry to achieve high fluorescence signals (-19-fold) and sensitivity (25 copies of DNA) for STR typing. Third, the project integrated this inline capture injector into the researchers’ previous mCAE microsystem in developing a 12-lane capture-CAE microsystem with automated operation for high-throughput and high-sensitivity STR sample analysis. Fourth, the project demonstrated the integration of sequence-specific DNA extraction using a magnetic bead capture structure and the improved post-PCR capture inline injector into the PCR-CE system to form a fully integrated microdevice for rapid forensic STR analysis. Fifth, the project constructed the second-generation bench-top rotary mCAE scanner, the Multi-channel Capillary Array Electrophoresis Portable Analyzer (McCAEPS), with reduced size and operational complexity for integrated STR analysis. The motivation for this project stemmed from technologies developed over the past 15 years as part of the human genome project, as well as through the NIJ (National Institute of Justice) grant awarded in 2004. These technologies include the use of more sensitive energy-transfer fluorescent dye labels, the development of microfabricated capillary array electrophoresis (CAE) separation and fluorescence detection systems, and the integration of sample clean-up and PCR amplification with the separation structures. Extensive figures and 57 references
Main Term(s): Forensics/Forensic Sciences
Index Term(s): Victim identification ; Suspect identification ; Investigative techniques ; DNA fingerprinting ; Parentage determination ; NIJ final report
Sponsoring Agency: National Institute of Justice (NIJ)
US Department of Justice
Office of Justice Programs
United States of America
Grant Number: 2007-DN-BX-K142
Sale Source: National Institute of Justice/NCJRS
Box 6000
Rockville, MD 20849
United States of America

NCJRS Photocopy Services
Box 6000
Rockville, MD 20849-6000
United States of America
Type: Report (Study/Research)
Country: United States of America
Language: English
   
  To cite this abstract, use the following link:
https://www.ncjrs.gov/App/Publications/abstract.aspx?ID=258440

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