Abstract
A microbore electrospray (ESI) injection system has been adapted to our 9.4-tesla ESI FT-ICR mass spectrometer, greatly enhancing the stability and sensitivity of the system. Spray was generated from micro-ESI needles made from sharply tapered, polished fused silica capillaries of 25 to 50 microns inner diameter. Micro-ESI permits low-level sample analysis by constant infusion at sub-microL/min flow rate over a wide range of solvent conditions in both positive- and negative-ion mode. The system is flexible and allows rapid conversion to allow routine LC/MS analysis on low-level mixtures presented in biological media. LC/MS analyses were accomplished by replacing micro-ESI needles with capillaries packed with reverse phase retention media to permit analyte concentration and purification prior to analysis (micro-ESI/LC). A unique nano-flow LC pumping system was developed, capable of producing a true unsplit solvent gradient at flow rates below 1 microL/min. The micro-ESI/LC FT-ICR system produces mass spectra from a mixture of three neuroactive peptides at a concentration of 500 amol/microL (5 fmol each total loaded) in biological salts with baseline separation, signal-to-noise ratio of > 10:1 and mass resolving power > 5000. These results represent a reduction in detection limit by a factor of approximately 2 x 10(6) over the best previously published LC/FT-ICR MS data.
MeSH Terms
Endorphins/analysis
Enkephalin, Methionine/analysis
Fourier Analysis
Humans
Mass Spectrometry/instrumentation
Transforming Growth Factor alpha/cerebrospinal fluid
Vasotocin/analysis
Chemicals
Endorphins
Transforming Growth Factor alpha
Enkephalin, Methionine
beta-casomorphins
Vasotocin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Emmett M R
Center for Interdisciplinary Magnetic Resonance, Florida State University, Tallahassee 32310, USA.
White F M
Hendrickson C L
Shi S D
Marshall A G
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