Laser mass spectrometry for DNA sequencing, disease diagnosis, and fingerprinting
Author(s) -
C. H. Winston Chen,
N. I. Taranenko,
Yifei Zhu,
C. N. Chung,
S. L. Allman
Publication year - 1997
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/446348
Subject(s) - dna sequencing , dna profiling , dna , mass spectrometry , typing , dna nanoball sequencing , computational biology , biology , chemistry , genetics , chromatography , base sequence , genomic library
Since laser mass spectrometry has the potential for achieving very fast DNA analysis, the authors recently applied it to DNA sequencing, DNA typing for fingerprinting, and DNA screening for disease diagnosis. Two different approaches for sequencing DNA have been successfully demonstrated. One is to sequence DNA with DNA ladders produced from Snager`s enzymatic method. The other is to do direct sequencing without DNA ladders. The need for quick DNA typing for identification purposes is critical for forensic application. The preliminary results indicate laser mass spectrometry can possibly be used for rapid DNA fingerprinting applications at a much lower cost than gel electrophoresis. Population screening for certain genetic disease can be a very efficient step to reducing medical costs through prevention. Since laser mass spectrometry can provide very fast DNA analysis, the authors applied laser mass spectrometry to disease diagnosis. Clinical samples with both base deletion and point mutation have been tested with complete success
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