IP Library Patent Application 18319350
Patent Application
App. No. 18/319,350

METHODS OF PREPARING GENE THERAPIES

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Patent No.
US None
App. No.
18/319,350
Abstract

The disclosure provides methods for purifying gene therapy compositions using anion exchange chromatography.

Claims (49)

1 . A method, comprising:

a) providing a mixture comprising a plurality of recombinant adeno-associated (rAAV) vector particles and one or more impurities, wherein rAAV vector particles of said plurality of rAAV vector particles each include a therapeutic nucleic acid molecule, and wherein said one or more impurities comprise rAAV vector particle aggregates, rAAV vector particles that do not include said therapeutic nucleic acid molecule, and aggregates of rAAV vector particles and rAAV vector particles that do not include said therapeutic nucleic acid molecule;

b) contacting an anion exchange column with said mixture; and

c) contacting said anion exchange column with a first elution buffer and a second elution buffer to provide an eluate, wherein said eluate comprises rAAV vector particles of said plurality of rAAV vector particles,

wherein said first elution buffer comprises magnesium sulfate; and

wherein said second elution buffer comprises magnesium sulfate and magnesium chloride.

2 . The method of claim 1 , wherein the first elution buffer comprises between about 0 millimolar (mM) to about 10 mM magnesium sulfate.

3 . (canceled)

4 . The method of claim 1 , wherein said second elution buffer comprises between about 10 millimolar (mM) to about 50 mM magnesium sulfate.

5 . (canceled)

6 . The method of claim 1 , wherein said second elution buffer comprises between about 10 millimolar (mM) to about 50 mM magnesium chloride.

7 . (canceled)

8 . A method, comprising:

a) providing a mixture comprising a plurality of recombinant adeno-associated (rAAV) vector particles and one or more impurities, wherein rAAV vector particles of said plurality of rAAV vector particles each include a therapeutic nucleic acid molecule, and wherein said one or more impurities comprise rAAV vector particle aggregates, rAAV vector particles that do not include said therapeutic nucleic acid molecule, and aggregates of rAAV vector particles and rAAV vector particles that do not include said therapeutic nucleic acid molecule;

b) contacting an anion exchange column with said mixture; and

c) contacting said anion exchange column with a first elution buffer and a second elution buffer to provide an eluate, wherein said eluate comprises rAAV vector particles of said plurality of rAAV vector particles,

wherein said first elution buffer comprises a sulfate salt; and

wherein said second elution buffer comprises a sulfate salt and a chloride salt.

9 . A method, comprising:

a) providing a mixture comprising a plurality of recombinant adeno-associated (rAAV) vector particles and one or more impurities, wherein rAAV vector particles of said plurality of rAAV vector particles each include a therapeutic nucleic acid molecule, and wherein said one or more impurities comprise rAAV vector particle aggregates, rAAV vector particles that do not include said therapeutic nucleic acid molecule, and aggregates of rAAV vector particles and rAAV vector particles that do not include said therapeutic nucleic acid molecule;

b) contacting an anion exchange column with said mixture; and

c) contacting said anion exchange column with a first elution buffer and a second elution buffer to provide an eluate, wherein said eluate comprises rAAV vector particles of said plurality of rAAV vector particles,

wherein said first elution buffer comprises a first salt; and

wherein said second elution buffer comprises a second salt and a third salt, wherein the total salt concentration of said second elution buffer is between about 40-250 millimolar (mM).

10 . (canceled)

11 . The method of claim 9 , wherein the first elution buffer comprises between about 0 millimolar (mM) to about 10 mM magnesium sulfate.

12 .- 13 . (canceled)

14 . The method of claim 9 , wherein said second elution buffer comprises between about 10 millimolar (mM) to about 50 mM magnesium sulfate.

15 .- 16 . (canceled)

17 . The method of claim 9 , wherein said second elution buffer comprises between about 10 millimolar (mM) to about 50 mM magnesium chloride.

18 . (canceled)

19 . The method of claim 1 , wherein said first elution buffer and/or said second elution buffer further comprises bis-tris propane.

20 . (canceled)

21 . The method of claim 1 , wherein said first elution buffer and/or said second elution buffer further comprises a poloxamer.

22 .- 23 . (canceled)

24 . The method of claim 1 , wherein said first elution buffer and/or said second elution buffer further comprises sucrose.

25 . (canceled)

26 . The method of claim 1 , wherein said first elution buffer and/or said second elution buffer have a pH of about 9.0.

27 . The method of claim 1 , wherein c) comprises initially contacting said anion exchange column with an eluant comprising 100% of said first elution buffer and 0% of said second elution buffer and then linearly decreasing the amount of said first elution buffer in said eluant to 0% and linearly increasing the amount of said second elution buffer in said eluant to 100%.

28 .- 33 . (canceled)

34 . The method of claim 1 , wherein said anion exchange column comprises a strong anion exchange resin.

35 .- 36 . (canceled)

37 . The method of claim 1 , wherein said anion exchange column is functionalized with quaternary amines.

38 . (canceled)

39 . The method of claim 1 , further comprising, prior to a), (i) providing a solution comprising cells and said plurality of rAAV vector particles; (ii) lysing said cells of said solution to produce a lysate; (iii) filtering said lysate to produce a clarified lysate; and (iv) subjecting said clarified lysate to an affinity chromatography step to provide said mixture.

40 .- 47 . (canceled)

48 . The method of claim 1 , wherein the rAAV of said rAAV vector particles are of serotype AAV1, AAV2, AAV3, AAV4, AAV5, AAV6, AAV7, AAV8, AAV9, AAV10, AAV11, AAV12, AAV13, AAVrh32.33, AAVrh8, AAVrh10, AAVrh74, AAVhu.68, avian AAV, bovine AAV, canine AAV, equine AAV, ovine AAV, snake AAV, bearded dragon AAV, AAV2i8, AAV2g9, AAV-LK03, AAV7m8, AAV Anc80, or AAV PHP.B.

49 . The method of claim 48 , wherein the rAAV of said rAAV vector particles are of serotype AAV5.

50 .- 62 . (canceled)

Assignments (4)
RELEASE OF SECURITY INTEREST IN PATENT COLLATERAL Recorded Mar 5, 2025
From: BLUE OWL CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT
To: BRIDGEBIO PHARMA, INC.; QED THERAPEUTICS, INC.; EIDOS THERAPEUTICS, INC.; ML BIO SOLUTIONS INC.; CALCILYTIX THERAPEUTICS INC.; ADRENAS THERAPEUTICS INC.; PHOENIX TISSUE REPAIR, INC.; NAVIRE PHARMA, INC.; VENTHERA, INC.; MOLECULAR SKIN THERAPEUTICS, INC.; CANTERO THERAPEUTICS, INC.; COA THERAPEUTICS, INC.; PORTAL THERAPEUTICS, INC.; BRIDGEBIO GENE THERAPY RESEARCH, INC.; FERRO THERAPEUTICS, INC.
Reel/Frame 070551/0095 →
SECURITY INTEREST Recorded Jan 19, 2024
From: BRIDGEBIO PHARMA, INC.; QED THERAPEUTICS, INC.; EIDOS THERAPEUTICS, INC.; THERAS, INC.; ML BIO SOLUTIONS INC.; CALCILYTIX THERAPEUTICS INC.; ADRENAS THERAPEUTICS INC.; PHOENIX TISSUE REPAIR, INC.; NAVIRE PHARMA, INC.; VENTHERA, INC.; MOLECULAR SKIN THERAPEUTICS, INC.; CANTERO THERAPEUTICS, INC.; COA THERAPEUTICS, INC.; PORTAL THERAPEUTICS, INC.; BRIDGEBIO GENE THERAPY RESEARCH, INC.; FERRO THERAPEUTICS, INC.; SUB21, INC.
To: BLUE OWL CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT
Reel/Frame 066355/0126 →
SECURITY INTEREST Recorded Jan 17, 2024
From: CALCILYTIX THERAPEUTICS INC.; ADRENAS THERAPEUTICS INC.; PHOENIX TISSUE REPAIR, INC.; NAVIRE PHARMA, INC.; VENTHERA, INC.; MOLECULAR SKIN THERAPEUTICS, INC.; CANTERO THERAPEUTICS, INC.; COA THERAPEUTICS, INC.; PORTAL THERAPEUTICS, INC.; BRIDGEBIO GENE THERAPY RESEARCH, INC.; FERRO THERAPEUTICS, INC.; SUB21, INC.
To: BLUE OWL CAPITAL CORPORATION, AS ADMINISTRATIVE AGENT
Reel/Frame 066342/0154 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2023
From: LAVOIE, ASHTON; ZUGATES, JEFFREY
To: BRIDGEBIO SERVICES INC.
Reel/Frame 064979/0614 →