6533b7d8fe1ef96bd12697e2

RESEARCH PRODUCT

Packings and stationary phases for biopolymer separations by HPLC

G. JilgeK.k. UngerR. Janzen

subject

ChromatographyResolution (mass spectrometry)ChemistryOrganic ChemistryClinical BiochemistrySize-exclusion chromatographyFractionationengineering.materialBiochemistryHigh-performance liquid chromatographyAnalytical ChemistryHydrophobic effectPhase (matter)Protein purificationengineeringBiopolymer

description

Packings and stationary phases applied to high resolution separations of proteins, enzymes, and nucleic acids must satisfy a series of distinct criteria that are different from those usually required by HPLC of low molecular weight non-biologically active analytes. These requirements have been met through substantial improvements in classical gel media together with novel developments in silica supports, and have led to a family of products with tailor-made and reproducible properties. Supports consisting of cross-linked organic gels, and inorganic materials (mostly silicas) are now available with graduated particle sizes, pore sizes, porosities and surface areas as well as non-porous beads. A whole range of stationary phases, such as reversed phase, hydrophobic interaction, ion exchanger and affinity packings, were designed for application as chemical sensors for biopolymer recognition in adsorptive chromatography. The phase systems are operated in the gradient mode, giving high resolution and high peak capacities. In addition, aqueous liquid-liquid partitioning systems have been developed for the fractionation of proteins and nucleic acids. Size exclusion media complete the set of HPLC variants enabling a discrimination of proteins according to their size and shape in an isocratic elution mode. Basically, protein purification and isolation is a multistage process where-by the HPLC variants are combined in a logistic sequence, utilizing the different selectivities of the phase systems and thus maximising resolution, speed and throughput.

https://doi.org/10.1007/bf02688477