摘要:
The present invention provides methods for enhancing chemical reactions of molecules, e.g., biomolecules, with destructible surfactants. The chemical reactions may involve and/or be associate with analysis, e.g., solubilizing, separating, purifying and/or characterizing the molecules. In one aspect, the anionic surfactants of the present invention may be selectively broken up at relatively low pH. The resulting breakdown products of the surfactants may be removed from the molecule/sample with relative ease. The invention has applicability in a variety of analytical techniques.
摘要:
A method for extracting at least one target compound from a sample includes injecting an overloaded amount of the sample into a chromatographic conduit (110), and flowing a solvent having a time-varying composition through the conduit (110). An apparatus for extracting at least one target compound from a sample includes a chromatography module, a mass-spectrometry module in fluid communication with the chromatography module to receive a portion of an eluent from the chromatography module, and a control unit in communication with the chromatography module and the mass-spectrometry module.
摘要:
A method for extracting at least one target compound from a sample includes injecting an overloaded amount of the sample into a chromatographic conduit (110), and flowing a solvent having a time-varying composition through the conduit (110). An apparatus for extracting at least one target compound from a sample includes a chromatography module, a mass-spectrometry module in fluid communication with the chromatography module to receive a portion of an eluent from the chromatography module, and a control unit in communication with the chromatography module and the mass-spectrometry module.
摘要:
Disclosed herein is a sample preparation plate used to prepare a sample for mass spectrometry. In particular, a sample plate used to concentrate a sample as well as remove contaminants from the sample while providing easy manipulation of small liquid droplets on a surface with minimal sample loss.