• Title/Summary/Keyword: free solution capillary electrophoresis

Search Result 4, Processing Time 0.018 seconds

Recent Advances in DNA Sequencing by End-labeled Free-Solution Electrophoresis (ELFSE)

  • Won, Jong-In
    • Biotechnology and Bioprocess Engineering:BBE
    • /
    • v.11 no.3
    • /
    • pp.179-186
    • /
    • 2006
  • End-Labeled Free-Solution Electrophoresis (ELFSE) is a new technique that is a promising bioconjugate method for DNA sequencing (or separation) and genotyping by both capillary and microfluidic device electrophoresis. Because ELFSE enables high-resolution electrophoretic separation in aqueous buffer alone (i.e., without a polymer matrix), it eliminates the need to load viscous polymer networks into electrophoresis microchannels. To achieve microchannel DNA separations with high performance, ELFSE requires monodisperse perturbing entities (i.e., drag-tags), which create a large amount of frictional drag when pulled behind DNA during free-solution electrophoresis, and which have other properties suitable for microchannel electrophoresis. In this article, the theoretical concepts of ELFSE and the required characteristics of the drag-tag molecules for the ultimate performance of ELFSE are reviewed. Additionally, the merits and limitations of current drag-tags are also discussed in the context of recent experimental data of ELFSE separation (or sequencing).

Determination of Water-Soluble Vitamins by Free Solution Capillary Electrophoresis (모세관전기영동을 이용한 수용성비타민의 분석)

  • Choi, One-Kyun;Jo, Jae-Sun
    • Korean Journal of Food Science and Technology
    • /
    • v.26 no.1
    • /
    • pp.18-22
    • /
    • 1994
  • This study was designed to investigate the method of the simultaneous determination of water-soluble vitamins (thiamine, ascorbic acid, riboflavin, folic acid, cyanocobalamine, pyridoxin, nicotinic acid) by free soloution capillary electrophoresis. Factors affecting on the separation were pH of the buffer, applied voltage and temperature. On-column detection at 254 nm allowed accurate and reproducible determination of these compounds. All these compounds were separated within ca. 8 min with fused silica capillary at 20 kV.

  • PDF

Analysis of cyanide free electroless Au plating solution by capillary elecrophoresis (캐피라리 전기 영동법에 의한 비시안 무전해 Au 도금액의 분석)

  • Han, Jaeho;Kim, DongHyun
    • Journal of the Korean institute of surface engineering
    • /
    • v.55 no.2
    • /
    • pp.120-132
    • /
    • 2022
  • In the non-cyanide-based electroless Au plating solution using thiomalic acid as a complexing agent and aminoethanethiol as a reducing agent, analysis of each component constituting the plating solution is essential for the analysis of the reaction mechanism. And component analysis in the plating solution is important for monitoring component changes in the plating process and optimizing the management method. Capillary Electrophoresis (CE) method is rapid, sensitive and quantitative and could be readily applied to analysis of Aun+ ion, complexing agent and reducing agent in electroless Au plating solution. In this study, the capillary electrophoresis method was used to analyze each component in the electroless Au plating solution in order to elucidate the complex bonding form and the plating mechanism of the non-cyanide-based electroless Au plating bath. The purpose of this study was to establish data for optimizing the monitoring and management method of plating solution components to improve the uniformity of precipitation and stability. As a result, it was confirmed that the analysis of thiomalic acid as a complexing agent and Aun+ ions and the analysis of aminoethanethiol as a reducing agent were possible by capillary electrophoresis. In the newly developed non-cyanide-based electroless Au plating solution, it was confirmed that Aun+ ions exist in the form of Au+ having a charge of +1, and that thiomalic acid and Au+ are combined in a molar ratio of 2 : 1. In addition, it was confirmed that aminoethanethiol can form a complex by combining with Au+ ions depending on conditions as well as acting as a reducing agent.

Production of Repetitive Polypeptides for an Efficient DNA Analysis on a Microchip (Microchip상에서 효율적인 DNA 분석을 위한 반복단위 단백질의 생산)

  • Yi, Hyeon-Jin;Choi, Seok-Jin;Seo, Tae-Seok;Won, Jong-In
    • KSBB Journal
    • /
    • v.25 no.2
    • /
    • pp.199-204
    • /
    • 2010
  • We generated the feasibility of DNA separation in free-solution using genetically engineered repetitive polypeptides as drag-tags. Two different-sized repetitive polypeptides were designed, expressed in E. coli, and purified. They were conjugated to a fluorescently labeled DNA (100 base), and the electrophoretic mobilities of these conjugate molecules were analyzed on a microchip. The results of these studies indicate that genetically engineered repetitive polypeptide is a prominent candidate for rapid and high-throughput genetic mutation detection, such as SNP analysis.