Method of separation by adsorption
View Patent ↗A method of separating a selected ionic component from a sample, comprises contacting the sample with an ionic adsorbent whose charge density is such that the component is bound selectively in the absence of added ionic component that competitively binds the adsorbent.
1. A method of separating immunoglobulin G, an ionic protein compound of interest, from a protein sample comprising protein A using a selective cation-exchange adsorbent having a sufficiently low ionic charge density to ionically bind to immunoglobulin G consisting essentially of the following steps;
(a) contacting a protein sample having a conductivity between 2-6 mSi/cm and containing immunoglobulin G and protein A, with a selective cation-exchange adsorbent consisting of agarose beads having sulphopropyl groups attached thereto and having an ionic charge density from 10 to 100 μmol/ml;
(b) ionically binding the immunoglobulin G to the agarose beads having sulphopropyl groups attached thereto,
(c) washing the agarose beads having sulphopropyl groups attached thereto with a buffered solution to remove unbound protein A,
(d) applying a salt gradient of increasing conductivity to the agarose beads having sulphopropyl groups attached thereto, and
(e) eluting the ionically bound immunoglobulin G from the agarose beads having sulphopropyl groups attached thereto.
2. The method according to claim 1 , wherein the selective cation-exchange adsorbent has an ionic charge density from 20 to 90 μmol/ml.
3. The method according to claim 1 , wherein the selective cation-exchange adsorbent has an ionic charge density from 30 to 80 μmol/ml.
4. The method according to claim 1 , wherein the pH of protein sample solution is 4.0-5.5.
5. A method of separating protein A from immunoglobulin G in a buffered protein sample solution having a pH 4:0-5.5 using a selective cation-exchange adsorbent having sulphopropyl groups, consisting essentially of the following steps:
(a) contacting the buffered protein sample solution having a pH 4.0-5.5 and a conductivity 2-6 mSi/cm, protein A and immunoglobulin G with a selective cation-exchange adsorbent having sulphopropyl groups attached thereto and an ionic charge density from 10 to 100 μmol/ml to ionically bind to the immunoglobulin G, and
(b) washing the selective cation-exchange adsorbent with a buffered solution to remove unbound protein A.
6. The method according to claim 5 , which further comprises
(c) applying a salt gradient of increasing conductivity to the selective cation-exchange adsorbent, and eluting the bound immunoglobulin G from the selective cation-exchange adsorbent.
7. The method according to claim 5 , wherein the selective cation-exchange adsorbent has an ionic charge density from 20 to 90 μmol/ml.
8. The method according to claim 5 , wherein the selective cation-exchange adsorbent has an ionic charge density from 30 to 80 μmol/ml.
9. The method according to claim 5 , wherein the selective cation-exchange adsorbent comprises agarose beads.