Perfusion process for producing erythropoietin
The invention relates to a process for producing erythropoietin (EPO) in which eukaryotic cells, which are suitable for expressing EPO, are adapted to SMIF7 medium in a suitable bioreactor, the resulting cells are transferred to a larger bioreactor and further expanded with SMIF7 medium and, while constantly bleeding and constantly perfusing, the expressed EPO is isolated from the larger bioreactor and purified.
1 . A process for producing erythropoietin (EPO) which comprises
a. adapting eukaryotic cells, which are capable of expressing EPO, to SMIF7 medium in a bioreactor and expanding them to a cell density of from 5×10 5 to 5×10 6 ml −1 ,
b. transferring the cells obtained in step (a) to a larger bioreactor and diluting them with SMIF7 medium to a cell density of from 1×10 5 ml −1 to 1×10 6 ml −1 ,
c. expanding the cells cultured in the larger bioreactor to a cell density of from 5×10 5 to 5×10 6 ml −1 ,
d. bleeding culture supernatant from the cells from step (c) while perfusing with SMIF7 medium, and
e. isolating and purifying the expressed EPO from the bled culture supernatant.
2 . The process as claimed in claim 1 , wherein the step of adapting eukaryotic cells comprises revitalizing eukaryotic cells from a frozen form in DMEM/F12 1:1 medium before transferring the revitalized cells to the SMIF7 medium for expansion to a cell density of from 5×10 5 to 5×10 6 ml −1 .
3 . The process as claimed in claim 2 , wherein the medium for the revitalization and the SMIF7 medium are supplemented, per liter, with from 1.5 to 2.5 g of NaHCO 3 ; from 0.2 to 5 g of BSA; from 0.2 to 5 mg of human transferrin; from 1 to 30 mg of human insulin; from 1 to 3 mg of hydrocortisone; from 0.01 to 0.1 mg of dexamethasone; from 0.08 to 3 mg of putrescine, from 40 to 100 mg of ethanolamine; from 200 to 500 mg of glutamine and from 50 to 100 mg of serine.
4 . The process as claimed in claim 2 , wherein the medium for the revitalization and the SMIF7 medium are supplemented, per liter, with from 2.0 to 2.3 g of NaHCO 3 ; from 0.5 to 2 g of BSA; from 0.5 to 2 mg of human transferrin; from 5 to 15 mg of human insulin; from 1 to 3 mg of hydrocortisone; from 0.025 to 0.045 mg of dexamethasone; from 1.5 to 3 mg of putrescine, from 50 to 80 mg of ethanolamine; from 250 to 400 mg of glutamine and from 70 to 90 mg of serine.
5 . The process as claimed in claim 2 , wherein the medium for the revitalization and the SMIF7 medium are supplemented, per liter, with 2.16 g of NaHCO 3 ; 1 g of BSA; 1 mg of human transferrin; 10 mg of human insulin; 2 mg of hydrocortisone; 0.039 mg of dexamethasone; 2 mg of putrescine, 60 mg of ethanolamine; 292 mg of glutamine and 80 mg of serine.
6 . The process as claimed in one of the preceding claims, wherein the volume of the bioreactor in step (a) is from 5 to 50 liters.
7 . The process as claimed in one of the preceding claims, wherein the volume of the larger bioreactor in step (b) is from 70 to 200 liters.
8 . The process as claimed in one of the preceding claims, wherein the eukaryotic cells in step (a) and/or step (c) are expanded to a cell density of from 8×10 5 to 2×10 6 ml −1 , preferably of 1×10 6 ml −1 .
9 . The process as claimed in one of the preceding claims, wherein the eukaryotic cells are GA-EPO HT 1080 cells.