Techniques . | |
---|---|
CD | Circular dichroism |
COSY | Correlated spectroscopy |
CZE | Capillary zone electrophoresis |
ELISA | Enzyme-linked immunosorbent assay |
ESI | Electrospray ionization |
ESR | Electron spin resonance |
FAB | Fast atom bombardment |
FT | Fourier transform |
GLC | Gas liquid chromatography |
hplc | High performance liquid chromatography |
IR | Infra red |
MALDI | Matrix-assisted laser desorption ionization |
MS | Mass spectrometry |
NMR | Nuclear magnetic resonance |
nOe | Nuclear Overhauser effect |
NOESY | Nuclear Overhauser enhanced spectroscopy |
ORD | Optical rotatory dispersion |
PAGE | Polyacrylamide gel electrophoresis |
RIA | Radioimmunoassay |
ROESY | Rotating frame nuclear Overhauser enhanced spectroscopy |
RP | Reversed phase |
SPPS | Solid phase peptide synthesis |
TLC | Thin layer chromatography |
TOCSY | Total correlation spectroscopy |
TOF | Time of flight |
UV | Ultraviolet |
Techniques . | |
---|---|
CD | Circular dichroism |
COSY | Correlated spectroscopy |
CZE | Capillary zone electrophoresis |
ELISA | Enzyme-linked immunosorbent assay |
ESI | Electrospray ionization |
ESR | Electron spin resonance |
FAB | Fast atom bombardment |
FT | Fourier transform |
GLC | Gas liquid chromatography |
hplc | High performance liquid chromatography |
IR | Infra red |
MALDI | Matrix-assisted laser desorption ionization |
MS | Mass spectrometry |
NMR | Nuclear magnetic resonance |
nOe | Nuclear Overhauser effect |
NOESY | Nuclear Overhauser enhanced spectroscopy |
ORD | Optical rotatory dispersion |
PAGE | Polyacrylamide gel electrophoresis |
RIA | Radioimmunoassay |
ROESY | Rotating frame nuclear Overhauser enhanced spectroscopy |
RP | Reversed phase |
SPPS | Solid phase peptide synthesis |
TLC | Thin layer chromatography |
TOCSY | Total correlation spectroscopy |
TOF | Time of flight |
UV | Ultraviolet |