Patents by Inventor Nicole Faust
Nicole Faust 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: 20250011813Abstract: The present invention relates to host cells comprising a nucleic acid encoding Adeno-associated virus (AAV) Rep proteins Rep78 and Rep68, wherein the internal AAV promoter p19 has been inactivated by one or more mutations that maintain the functionality of said Rep78 and Rep68 proteins. The present invention further relates to respective nucleic acids and vectors comprising the same, as well as respective methods for the production of AAV.Type: ApplicationFiled: July 16, 2024Publication date: January 9, 2025Inventors: Kerstin Hein, Nicole Faust, Silke Wissing
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Publication number: 20250002923Abstract: The present invention relates to methods for the selection of a stable producer cell line expressing one or more protein(s) of interest (POIs), comprising the stable transfection of cells with a gene encoding a constitutively active variant of a growth factor receptor, respective methods for the expression of one or more POIs in such stable producer cell lines, and uses of a constitutively active variant of a growth factor receptor as selection marker in the cultivation of cells.Type: ApplicationFiled: July 10, 2024Publication date: January 2, 2025Inventors: Nicole Faust, Silke Wissing, Nikola Strempel
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Patent number: 12060569Abstract: The present invention relates to host cells comprising a nucleic acid encoding Adeno-associated virus (AAV) Rep proteins Rep78 and Rep68, wherein the internal AAV promoter p19 has been inactivated by one or more mutations that maintain the functionality of said Rep78 and Rep68 proteins. The present invention further relates to respective nucleic acids and vectors comprising the same, as well as respective methods for the production of AAV.Type: GrantFiled: April 17, 2023Date of Patent: August 13, 2024Assignee: Cevec Pharmaceuticals, GmbHInventors: Kerstin Hein, Nicole Faust, Silke Wissing
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Patent number: 12060561Abstract: The present invention relates to methods for the selection of a stable producer cell line expressing one or more protein(s) of interest (POIs), comprising the stable transfection of cells with a gene encoding a constitutively active variant of a growth factor receptor, respective methods for the expression of one or more POIs in such stable producer cell lines, and uses of a constitutively active variant of a growth factor receptor as selection marker in the cultivation of cells.Type: GrantFiled: August 1, 2018Date of Patent: August 13, 2024Assignee: CEVEC Pharmaceuticals GmbHInventors: Nicole Faust, Silke Wissing, Nikola Strempel
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Publication number: 20230348936Abstract: The present invention relates to host cells comprising a nucleic acid encoding Adeno-associated virus (AAV) Rep proteins Rep78 and Rep68, wherein the internal AAV promoter p19 has been inactivated by one or more mutations that maintain the functionality of said Rep78 and Rep68 proteins. The present invention further relates to respective nucleic acids and vectors comprising the same, as well as respective methods for the production of AAV.Type: ApplicationFiled: April 17, 2023Publication date: November 2, 2023Applicant: Cevec Pharmaceuticals, GmbHInventors: Kerstin Hein, Nicole Faust, Silke Wissing
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Patent number: 11685932Abstract: The present invention relates to host cells comprising a nucleic acid encoding Adeno-associated virus (AAV) Rep proteins Rep78 and Rep68, wherein the internal AAV promoter p19 has been inactivated by one or more mutations that maintain the functionality of said Rep78 and Rep68 proteins. The present invention further relates to respective nucleic acids and vectors comprising the same, as well as respective methods for the production of AAV.Type: GrantFiled: September 18, 2018Date of Patent: June 27, 2023Assignee: Cevec Pharmaceuticals, GmbHInventors: Kerstin Hein, Nicole Faust, Silke Wissing
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Publication number: 20200377895Abstract: The present invention relates to methods for the selection of a stable producer cell line expressing one or more protein(s) of interest (POIs), comprising the stable transfection of cells with a gene encoding a constitutively active variant of a growth factor receptor, respective methods for the expression of one or more POIs in such stable producer cell lines, and uses of a constitutively active variant of a growth factor receptor as selection marker in the cultivation of cells.Type: ApplicationFiled: August 1, 2018Publication date: December 3, 2020Applicant: CEVEC Pharmaceuticals GmbHInventors: Nicole Faust, Silke Wissing, Nikola Strempel
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Patent number: 10793839Abstract: The present invention relates to cell lines that are genetically modified to overexpress a ?-galactoside ?-2,3-sialyltransferase 1 (ST3Gal1), preferably human ST3Gal1, which can be used for the production of recombinant glycoproteins having highly or fully sialylated O-linked GalNAc glycans (GalNAc O-glycans), preferably core 1 GalNAc O-glycans, as well as to respective recombinant glycoproteins. Further, the present invention relates to respective methods of expressing recombinant glycoproteins, methods of increasing the degree of sialylation of recombinant glycoproteins, and methods of decreasing the micro-heterogeneity of GalNAc O-glycans. Finally, the present invention relates to respective uses of the above cell lines for the production of recombinant glycoproteins, for increasing the degree of sialylation of recombinant glycoproteins, and for decreasing the micro-heterogeneity of O-linked GalNAc glycans of recombinant glycoproteins.Type: GrantFiled: August 21, 2018Date of Patent: October 6, 2020Assignee: Cevec Pharmaceuticals GmbHInventors: Silke Wissing, Jens Wölfel, Nicole Faust
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Publication number: 20200277628Abstract: The present invention relates to host cells comprising a nucleic acid encoding Adeno-associated virus (AAV) Rep proteins Rep78 and Rep68, wherein the internal AAV promoter p19 has been inactivated by one or more mutations that maintain the functionality of said Rep78 and Rep68 proteins. The present invention further relates to respective nucleic acids and vectors comprising the same, as well as respective methods for the production of AAV.Type: ApplicationFiled: September 18, 2018Publication date: September 3, 2020Applicant: Cevec Pharmaceuticals, GmbHInventors: Kerstin Hein, Nicole Faust, Silke Wissing
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Publication number: 20200095562Abstract: The present invention relates to cell lines that are genetically modified to overexpress a ?-galactoside ?-2,3-sialyltransferase 1 (ST3Gal1), preferably human ST3Gal1, which can be used for the production of recombinant glycoproteins having highly or fully sialylated O-linked GalNAc glycans (GalNAc O-glycans), preferably core 1 GalNAc O-glycans, as well as to respective recombinant glycoproteins. Further, the present invention relates to respective methods of expressing recombinant glycoproteins, methods of increasing the degree of sialylation of recombinant glycoproteins, and methods of decreasing the micro-heterogeneity of GalNAc O-glycans. Finally, the present invention relates to respective uses of the above cell lines for the production of recombinant glycoproteins, for increasing the degree of sialylation of recombinant glycoproteins, and for decreasing the micro-heterogeneity of O-linked GalNAc glycans of recombinant glycoproteins.Type: ApplicationFiled: August 21, 2018Publication date: March 26, 2020Applicant: Cevec Pharmaceuticals GmbHInventors: Silke Wissing, Jens Wölfel, Nicole Faust
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Publication number: 20190367890Abstract: The present invention relates to a genetically modified cell line with reduced expression of GnTIVa/b and/or GnTV, a method for the production of glycoproteins having N-glycans with a reduced number of tri- and/or tetra-antennary N-glcyans using said cell line, and respective glycoproteins.Type: ApplicationFiled: January 18, 2017Publication date: December 5, 2019Applicant: Cevec Pharmaceuticals GmbHInventors: Silke Wissing, Jens Wölfel, Nicole Faust, Helmut Kewes
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Patent number: 10081798Abstract: The present invention relates to cell lines that are genetically modified to overexpress a ?-galactoside ?-2,3-sialyltransferase 1 (ST3Gal1), preferably human ST3Gal1, which can be used for the production of recombinant glycoproteins having highly or fully sialylated O-linked GalNAc glycans (GalNAc O-glycans), preferably core 1 GalNAc O-glycans, as well as to respective recombinant glycoproteins. Further, the present invention relates to respective methods of expressing recombinant glycoproteins, methods of increasing the degree of sialylation of recombinant glycoproteins, and methods of decreasing the micro-heterogeneity of GalNAc O-glycans. Finally, the present invention relates to respective uses of the above cell lines for the production of recombinant glycoproteins, for increasing the degree of sialylation of recombinant glycoproteins, and for decreasing the micro-heterogeneity of O-linked GalNAc glycans of recombinant glycoproteins.Type: GrantFiled: December 15, 2015Date of Patent: September 25, 2018Assignee: Cevec Pharmaceuticals GmbHInventors: Silke Wissing, Jens Wölfel, Nicole Faust
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Publication number: 20170342390Abstract: The present invention relates to cell lines that are genetically modified to overexpress a ?-galactoside ?-2,3-sialyltransferase 1 (ST3Gal1), preferably human ST3Gal1, which can be used for the production of recombinant glycoproteins having highly or fully sialylated O-linked GalNAc glycans (GalNAc O-glycans), preferably core 1 GalNAc O-glycans, as well as to respective recombinant glycoproteins. Further, the present invention relates to respective methods of expressing recombinant glycoproteins, methods of increasing the degree of sialylation of recombinant glycoproteins, and methods of decreasing the micro-heterogeneity of GalNAc O-glycans. Finally, the present invention relates to respective uses of the above cell lines for the production of recombinant glycoproteins, for increasing the degree of sialylation of recombinant glycoproteins, and for decreasing the micro-heterogeneity of O-linked GalNAc glycans of recombinant glycoproteins.Type: ApplicationFiled: December 15, 2015Publication date: November 30, 2017Applicant: Cevec Pharmaceutical GmbHInventors: Silke Wissing, Jens Wölfel, Nicole Faust
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Patent number: 8212105Abstract: The present invention relates to transgenic non-human animals, tissues or cells derived therefrom and methods of producing them. The transgenic non-human animals or tissues or cells derived therefrom provide a system capable of expressing human proteins responsible for drug metabolism in place of the homologous endogenous non-human animal proteins and for the controlled expression of human genes introduced into the animal so that the expression of the human genes is regulated in a manner more closely analogous to that seen in vivo in humans.Type: GrantFiled: May 26, 2010Date of Patent: July 3, 2012Assignee: ITI Life SciencesInventors: Charles Roland Wolf, Nico Scheer, Nicole Faust
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Publication number: 20100235928Abstract: The present invention relates to transgenic non-human animals, tissues or cells derived therefrom and methods of producing them. The transgenic non-human animals or tissues or cells derived therefrom provide a system capable of expressing human proteins responsible for drug metabolism in place of the homologous endogenous non-human animal proteins and for the controlled expression of human genes introduced into the animal so that the expression of the human genes is regulated in a manner more closely analogous to that seen in vivo in humans.Type: ApplicationFiled: May 26, 2010Publication date: September 16, 2010Applicant: ITI LIFE SCIENCESInventors: Charles Roland Wolf, Nico Scheer, Nicole Faust
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Patent number: 7759541Abstract: The present invention relates to transgenic non-human animals, tissues or cells derived therefrom and methods of producing them. The transgenic non-human animals or tissues or cells derived therefrom provide a system capable of expressing human proteins responsible for drug metabolism in place of the homologous endogenous non-human animal proteins and for the controlled expression of human genes introduced into the animal so that the expression of the human genes is regulated in a manner more closely analogous to that seen in vivo in humans.Type: GrantFiled: June 4, 2007Date of Patent: July 20, 2010Assignee: ITI Life SciencesInventors: Charles Roland Wolf, Nico Scheer, Nicole Faust
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Publication number: 20080148416Abstract: The present invention relates to transgenic non-human animals, tissues or cells derived therefrom and methods of producing them. The transgenic non-human animals or tissues or cells derived therefrom provide a system capable of expressing human proteins responsible for drug metabolism in place of the homologous endogenous non-human animal proteins and for the controlled expression of human genes introduced into the animal so that the expression of the human genes is regulated in a manner more closely analogous to that seen in vivo in humans.Type: ApplicationFiled: June 4, 2007Publication date: June 19, 2008Inventors: Charles Roland Wolf, Nico Scheer, Nicole Faust
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Publication number: 20060205077Abstract: The invention provides a method for targeted transgenesis using the Rosa26 locus. Suitable nucleotide acid sequences and vectors for the targeted transgenesis and recombinase mediated transgenesis are provided. The Rosa26 locus proved to be a suitable integration site allowing strong and predictable expression of inserted transgenes carrying exogenous promoters.Type: ApplicationFiled: January 8, 2004Publication date: September 14, 2006Applicant: Artemis Pharmaceuticals GmbHInventors: Frieder Schwenk, Jost Seibler, Nicole Faust, Ralf Kuhn
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Publication number: 20040003420Abstract: The present invention concerns a fusion protein comprising a recombinase protein, preferably the site-specific DNA recombinase C31-Int of phage &phgr;C31, and a peptide sequence which directs the nuclear uptake of the fusion protein in eucaryotic cells, and the use of this fusion protein to recombine, invert or delete DNA molecules containing recognition sequences for said recombinase in eucaryotic cells at high efficiency. In addition the invention relates to a cell, preferably a mammalian cell which contains recognition sequences for said recombinase in its genome and wherein the genome is recombined by the action of said fusion protein. Moreover, the invention relates to the use of said cell to study the function of genes and for the creation of transgenic organisms to study gene function at various developmental stages, including the adult.Type: ApplicationFiled: November 12, 2001Publication date: January 1, 2004Inventors: Ralf Kuhn, Susanne Felder, Frieder Schwenk, Birgit Kuter-Luks, Nicole Faust
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Publication number: 20030186291Abstract: Genetically engineered nucleic acid molecules encoding phiC31-integrase are described. These nucleic acid molecules, referred to as C31-Int genes, comprise sequences optimized for expression in eukaryotic host cells. Vectors, microorganisms, vertebrate cells, and transgenic organisms comprising optimized C31-Int genes are also described. PhiC31 integrase proteins encoded by the optimized C31-Int genes, as well as methods of recombining a DNA molecules containing phiC31 integrase recognition sequences are provided.Type: ApplicationFiled: February 5, 2003Publication date: October 2, 2003Inventors: Nicole Faust, Susanne Andreas