A new strategy for optimizing sensitivity, speed, and resolution in capillary electrophoretic separation of DNA

Wei Lung Tseng, Huan Tsung Chang*

*Corresponding author for this work

Research output: Contribution to journalJournal Article peer-review

39 Scopus citations

Abstract

DNA separations were performed in poly(ethylene oxide) (PEO) solutions prepared in 100mM Tris-boric acid (TB) buffers using a capillary filled with TB buffers with concentrations up to 2.5 M, pH 10.0. The electroosmotic flow (EOF) increased with increasing the concentration of TB buffers till 1.5 M as a result of decreasing PEO adsorption on the capillary wall. At high TB concentrations (> 1.5 M), the peaks corresponding to small DNA fragments (11 and 8 base pairs) became sharper and were detected. Relative standard deviations of the EOF coefficient and the migration times of the DNA fragments were all less than 1% using a capillary filled with TB buffers at concentrations higher than 1.5 M. When separations were performed at different pH values of PEO solutions and TB buffers, better results in terms of sensivity, speed, and resolution were generally achieved. The fluorescene intensity of the 2176 bp fragment obtained at pH values of TB buffers/PEO solutions 10.0/8.2 was 27-fold of that at pH values 8.2/8.2. The enhancement was related to effects of pH and borate on the fluorescence intensity, DNA conformation, stacking, and interactions with the capillary wall. Using a capillary filled with 400 mM TB buffers, pH 10.0, the separation of DNA (pBR 322/Haelll digest, pBR 328/Bg/l digest and pBR 328/Hinfl digest) in 1.5% PEO solutions prepared in 100 mM TB buffers, pH 9.0, at 375 V/cm was accomplished in less than 18 min.

Original languageEnglish
Pages (from-to)763-770
Number of pages8
JournalElectrophoresis
Volume22
Issue number4
DOIs
StatePublished - 2001
Externally publishedYes

Keywords

  • Capillary electrophoresis
  • DNA
  • Electroosmotic flow
  • Polymer solutions

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