Invention Application
US20060110833A1 Method and apparatus for coupling an analyte supply to an electrodynamic droplet processor 审中-公开
用于将分析物供应物耦合到电动液滴处理器的方法和装置

  • Patent Title: Method and apparatus for coupling an analyte supply to an electrodynamic droplet processor
  • Patent Title (中): 用于将分析物供应物耦合到电动液滴处理器的方法和装置
  • Application No.: US11223456
    Application Date: 2005-09-09
  • Publication No.: US20060110833A1
    Publication Date: 2006-05-25
  • Inventor: George AgnesMichael Bogan
  • Applicant: George AgnesMichael Bogan
  • Main IPC: G01N33/00
  • IPC: G01N33/00 B01D59/44 H01J49/00
Method and apparatus for coupling an analyte supply to an electrodynamic droplet processor
Abstract:
This application relates to a method and apparatus for coupling an analyte supply, such as a biomolecule separator, to an electrodynamic droplet processor. In one embodiment the biomolecule separator is a capillary liquid chromatography column and the droplet processor includes an droplet generator and an electrodynamic balance. The biomolecule separator and the droplet processor may be fluidly coupled to provide a continuous supply of analyte for analysis. The droplets may be controllably ejected from the electrodynamic balance and deposited on a target substrate for use in detecting the analyte by mass spectrometry, such as MALDI time of flight mass spectrometry. Prior to deposition, each of the droplets is levitated in the electrodynamic balance for a period sufficient to enable evaporation of volatile solvents present in the droplet solution, thereby increasing the analyte concentration in the droplet. The solution may include a MALDI liquid matrix and the target substrate may be a MALDI plate. In one embodiment, the method involves depositing a succession of discrete droplets on the target substrate to form one or more microspots having a high density of analytes. The microspots are then irradiated and the ions produced are analyzed by mass spectrometry. The invention improves the sensitivity of analyte detection while consuming a comparatively small volume of test solution.
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