IP Library Granted Patent US 7,465,397
Granted Patent B2
US 7,465,397 · App. 11/489,232 · Granted Dec 16, 2008

Process for removing protein aggregates and virus from a protein solution

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Quick Facts
Patent No.
US 7,465,397
App. No.
11/489,232
Granted
Dec 16, 2008
Kind
B2
Abstract

A process is provided for selectively removing protein aggregates from a protein solution in a normal flow (NFF) filtration process. Preferably, it relates to a process for selectively removing protein aggregates from a protein solution in a normal flow (NFF) filtration process and virus particles from a protein solution in a two-step filtration process. In a first step, a protein solution is filtered through one or more layers of adsorptive depth filters, charged or surface modified microporous membranes or a small bed of chromatography media in a normal flow filtration mode of operation, to produce a protein aggregate free stream. The aggregate free protein stream can then be filtered through one or more ultrafiltration membranes to retain virus particles at a retention level of at least 3 LRV and to allow passage therethrough of an aggregate free and virus free protein solution.

Claims (26)

1. A process for viral filtration of a protein containing stream comprising:

(a) providing a filtration system comprising: (i) a pressurized reservoir comprising a solution which comprises one or more protein aggregates and viruses; (ii) a first conduit connecting the reservoir to a first filtration step comprising a device selected from the group consisting of one or more layers of adsorptive depth filters and one or more layers of charged or surface modified microporous membranes; (iii) a second conduit from the first filtration step to a second filtration step comprising one or more ultrafiltration membranes having a molecular weight cut off of between about 200 kD and about 1000 kD to retain virus particles in said one or more ultrafiltration membranes at a level of at least 3 LRV; and (d) an outlet conduit connected to the second filtration step;

(b) pumping the solution from the pressurized reservoir through the first conduit to the first filtration step;

(c) running the first filtration step in a normal flow filtration mode with the one or more protein aggregates and viruses being retained by the first filtration step;

(d) discharging the solution from the first filtration step to the second conduit;

(e) passing the solution from the second conduit through the second filtration step; and

(f) discharging the solution from the second filtration step to the outlet conduit.

2. The process of claim 1 wherein the process is run in a constant pressure mode of operation.

3. The process of claim 1 further comprising the step of flushing retained protein from said one or more ultrafiltration membranes.

4. The process of claim 1 wherein the filtration is through one or more layers of adsorptive depth filters.

5. The process of claim 1 wherein the filtration is through one or more layers of one or more layers of charged or surface modified microporous membranes.

6. The process of claim 1 wherein the filtration is through one or more layers of adsorptive depth filters made of a material selected from the group consisting of cellulosic fibers, synthetic fibers and blends thereof.

7. A process for the viral filtration of a protein containing stream comprising:

(a) providing a filtration system comprising a non-pressurized reservoir comprising a solution which comprises one or more protein aggregates and viruses; (ii) a first conduit connecting the reservoir to a pump, wherein the pump is connected to a second conduit which connects the pump to a first filtration step comprising a device selected from the group consisting of one or more layers of adsorptive depth filters and one or more layers of charged or surface modified microporous membranes; (iii) a third conduit from the first filtration step to a second filtration step comprising one or more ultrafiltration membranes having a molecular weight cut off of between about 200 kD and about 1000 kD to retain virus particles in said one or more ultrafiltration membranes at a level of at least 3 LRV; and (iv) an outlet conduit from the second filtration step;

(b) pumping the solution from the reservoir through the first conduit to the pump and from the pump through the second conduit to the first filtration step;

(c) running the first filtration step in a normal flow filtration mode with the one or more protein aggregates and viruses being retained by the first filtration step;

(d) discharging the solution from the first filtration step to the third conduit;

(e) passing the solution from the third conduit through the second filtration step in a normal flow filtration mode; and

(f) discharging the solution from the second filtration step to the outlet conduit.

8. The process of claim 7 wherein the process is run in a constant flow mode of operation.

9. The process of claim 7 further comprising the step of flushing retained protein from said one or more ultrafiltration membranes.

10. The process of claim 7 wherein filtration with said one or more ultrafiltration membranes is effected by tangential flow filtration.

11. The process of claim 7 wherein filtration with said one or more ultrafiltration membranes is effected in a normal flow filtration mode of operation.

12. The process of claim 7 wherein the first filtration step is through one or more layers of adsorptive depth filters.

13. The process of claim 7 wherein the first filtration step is through one or more layers of charged or surface modified microporous membranes.

14. The process of claim 7 wherein the first filtration step is through one or more layers of adsorptive depth filters made of a material selected from the group consisting of cellulosic fibers, synthetic fibers and blends thereof.

Assignments (2)
CHANGE OF ADDRESS Recorded Feb 15, 2018
From: EMD MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 045341/0166 →
CHANGE OF NAME Recorded Jan 31, 2012
From: MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 027620/0891 →