Patents by Inventor Danielle SWAIN
Danielle SWAIN has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20260250634Abstract: The present disclosure relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived immune cells, e.g., NK or T cells, or NK cells or T cells”) comprising a disrupted B2M gene, a disrupted CIITA gene, an inserted polynucleotide encoding HLA-E, an inserted polynucleotide encoding a fusion of IL15 and IL15R?, an inserted polynucleotide encoding SERPINB9, and a polynucleotide encoding a CAR, e.g., an anti-GPC3 CAR or an anti-GPR87 CAR. The engineered cell may further comprise a disrupted FAS gene, a disrupted CISH gene, a disrupted CD38 gene, a disrupted FLI1 gene, a disrupted TGFBR1 gene, a disrupted TGFBR2 gene, an inserted polynucleotide encoding CD16, an inserted polynucleotide encoding CD64, and/or an inserted polynucleotide encoding an NKG2D CAR. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described.Type: ApplicationFiled: June 1, 2023Publication date: August 27, 2026Inventors: Valentin SLUCH, Alireza REZANIA, Tiansu WANG, Viktoriia KYRYCHENKO, Danielle SWAIN, Meichen LIAO
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Patent number: 12344655Abstract: The present invention relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived NK, or NK cell) comprising a disrupted B2M gene and an inserted polynucleotide encoding one or more of SERPINB9, a fusion of IL15 and IL15R?, and/or HLA-E. The engineered cell can further comprise a disrupted CIITA gene and an inserted polynucleotide encoding a CAR, wherein the CAR can be an anti-BCMA CAR or an anti-CD30 CAR. The engineered cell may further comprise a disrupted ADAM17 gene, a disrupted FAS gene, a disrupted CISH gene, and/or a disrupted REGNASE-1 gene. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described. Guide RNA sequences targeting described target sequences are also described.Type: GrantFiled: December 19, 2022Date of Patent: July 1, 2025Assignee: CRISPR THERAPEUTICS AGInventors: Valentin Sluch, Alireza Rezania, Jason Sagert, Danielle Swain
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Publication number: 20230227532Abstract: The present invention relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived NK, or NK cell) comprising a disrupted B2M gene and an inserted polynucleotide encoding one or more of SERPINB9, a fusion of IL15 and IL15R?, and/or HLA-E. The engineered cell can further comprise a disrupted CIITA gene and an inserted polynucleotide encoding a CAR, wherein the CAR can be an anti-BCMA CAR or an anti-CD30 CAR. The engineered cell may further comprise a disrupted ADAM17 gene, a disrupted FAS gene, a disrupted CISH gene, and/or a disrupted REGNASE-1 gene. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described. Guide RNA sequences targeting described target sequences are also described.Type: ApplicationFiled: December 19, 2022Publication date: July 20, 2023Inventors: Valentin SLUCH, Alireza REZANIA, Jason SAGERT, Danielle SWAIN
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Patent number: 11591381Abstract: The present invention relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived NK, or NK cell) comprising a disrupted B2M gene and an inserted polynucleotide encoding one or more of SERPINB9, a fusion of IL15 and IL15R?, and/or HLA-E. The engineered cell can further comprise a disrupted CIITA gene and an inserted polynucleotide encoding a CAR, wherein the CAR can be an anti-BCMA CAR or an anti-CD30 CAR. The engineered cell may further comprise a disrupted ADAM17 gene, a disrupted FAS gene, a disrupted CISH gene, and/or a disrupted REGNASE-1 gene. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described. Guide RNA sequences targeting described target sequences are also described.Type: GrantFiled: November 30, 2021Date of Patent: February 28, 2023Assignee: CRISPR THERAPEUTICS AGInventors: Valentin Sluch, Alireza Rezania, Jason Sagert, Danielle Swain
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Publication number: 20230014010Abstract: Provided herein are cells engineered to have improved protection against natural killer cell killing. The cells are engineered to comprise an insertion of a polynucleotide encoding SERPINB9. Also provided herein are methods of making the engineered cells and therapeutic uses of the engineered cells. The engineered cells can also comprise at least one genetic modification within or near at least one gene that encodes one or more MHC-I or MHC-II human leukocyte antigens or component or transcriptional regulator of the MHC-I or MHC-II complex, at least one genetic modification that increases the expression of at least one polynucleotide that encodes a tolerogenic factor, and optionally at least one genetic modification that increases or decreases the expression of at least one gene that encodes a survival factor. The engineered cells can be stem cells and the engineered stem cells can be differentiated into various lineages having protection against NK cell killing.Type: ApplicationFiled: June 1, 2022Publication date: January 19, 2023Applicant: CRISPR THERAPEUTICS AGInventors: Valentin SLUCH, Danielle SWAIN, Alireza REZANIA
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Publication number: 20230016422Abstract: Provided herein are cells engineered to have improved protection against natural killer cell killing. The cells are engineered to comprise an insertion of a polynucleotide encoding SERPINB9. Also provided herein are methods of making the engineered cells and therapeutic uses of the engineered cells. The engineered cells can also comprise at least one genetic modification within or near at least one gene that encodes one or more MHC-I or MHC-II human leukocyte antigens or component or transcriptional regulator of the MHC-I or MHC-II complex, at least one genetic modification that increases the expression of at least one polynucleotide that encodes a tolerogenic factor, and optionally at least one genetic modification that increases or decreases the expression of at least one gene that encodes a survival factor. The engineered cells can be stem cells and the engineered stem cells can be differentiated into various lineages having protection against NK cell killing.Type: ApplicationFiled: June 1, 2022Publication date: January 19, 2023Applicant: CRISPR THERAPEUTICS AGInventors: Valentin SLUCH, Danielle SWAIN, Alireza REZANIA
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Publication number: 20220169700Abstract: The present invention relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived NK, or NK cell) comprising a disrupted B2M gene and an inserted polynucleotide encoding one or more of SERPINB9, a fusion of IL15 and IL15R?, and/or HLA-E. The engineered cell can further comprise a disrupted CIITA gene and an inserted polynucleotide encoding a CAR, wherein the CAR can be an anti-BCMA CAR or an anti-CD30 CAR. The engineered cell may further comprise a disrupted ADAM17 gene, a disrupted FAS gene, a disrupted CISH gene, and/or a disrupted REGNASE-1 gene. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described. Guide RNA sequences targeting described target sequences are also described.Type: ApplicationFiled: November 30, 2021Publication date: June 2, 2022Inventors: Viktoriia KYRYCHENKO, Wai Lun LEUNG, Alireza REZANIA, Valentin SLUCH, Danielle SWAIN, Patrick Claudio OVANDO ROCHE
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Publication number: 20220169988Abstract: The present invention relates to, inter alia, an engineered cell (e.g., iPSC, IPS-derived NK, or NK cell) comprising a disrupted B2M gene and an inserted polynucleotide encoding one or more of SERPINB9, a fusion of IL15 and IL15R?, and/or HLA-E. The engineered cell can further comprise a disrupted CIITA gene and an inserted polynucleotide encoding a CAR, wherein the CAR can be an anti-BCMA CAR or an anti-CD30 CAR. The engineered cell may further comprise a disrupted ADAM17 gene, a disrupted FAS gene, a disrupted CISH gene, and/or a disrupted REGNASE-1 gene. Methods for producing the engineered cells are also provided, and therapeutic uses of the engineered cells are also described. Guide RNA sequences targeting described target sequences are also described.Type: ApplicationFiled: November 30, 2021Publication date: June 2, 2022Inventors: Viktoriia KYRYCHENKO, Wai Lun LEUNG, Alireza REZANIA, Valentin SLUCH, Danielle SWAIN, Patrick Claudio OVANDO ROCHE