Abstract: The present invention provides pharmaceutical formulations comprising a human antibody that specifically binds to human proprotein convertase subtilisin/kexin type 9 (PCSK9). The formulations may contain, in addition to an anti-PCSK9 antibody, at least one amino acid, at least one sugar, or at least one non-ionic surfactant. The pharmaceutical formulations of the present invention exhibit a substantial degree of antibody stability after storage for several months.
Abstract: A genetically modified mouse is provided that comprises a conditional Acvr1 allele that comprises a mutated exon that, upon induction, converts to a mutant exon phenotype, wherein the mutant exon phenotype includes ectopic bone formation. Mice comprising a mutant Acvr1 exon 5 in antisense orientation, flanked by site-specific recombinase recognition sites, are provided, wherein the mice further comprise a site-specific recombinase that recognizes the site-specific recombinase recognitions sites, wherein the recombinase is induced upon exposure of the mouse to tamoxifen. Upon exposure to tamoxifen, the recombinase is expressed and acts on the RRS-flanked mutant exon 5 and places the mutant exon 5 in sense orientation and deletes the wild-type exon.
Abstract: Embodiments of the present disclosure include methods and systems for detecting the presence of endotoxins in filters. For example, embodiments of the present disclosure are directed to methods and systems for improving in-process controls by detecting undesirable quantities of endotoxins in filters containing naturally-sourced materials prior to using those filters in the production of formulated drug substances.
Type:
Application
Filed:
April 26, 2019
Publication date:
November 7, 2019
Applicant:
Regeneron Pharmaceuticals, Inc.
Inventors:
Nathan MAO, Annamarie CRUZ, Bernhard SCHILLING, Scott CARVER
Abstract: Ophthalmic formulations of a vascular endothelial growth factor (VEGF)-specific fusion protein antagonist are provided suitable for intravitreal administration to the eye. The ophthalmic formulations include a stable liquid formulation and a lyophilizable formulation. Preferably, the protein antagonist has an amino acid sequence of SEQ ID NO: 4.
Type:
Grant
Filed:
October 12, 2018
Date of Patent:
November 5, 2019
Assignee:
REGENERON PHARMACEUTICALS, INC.
Inventors:
Eric Furfine, Daniel Dix, Kenneth Graham, Kelly Frye
Abstract: This disclosure relates to a rodent model of Steel Syndrome. Disclosed herein are genetically modified rodent animals that carry a mutation in an endogenous rodent Col27a1 gene, equivalent to a mutation in humans causing Steel Syndrome.
Type:
Grant
Filed:
June 7, 2018
Date of Patent:
November 5, 2019
Assignee:
REGENERON PHARMACEUTICALS, INC.
Inventors:
Claudia Gonzaga-Jauregui, Chia-Jen Siao, Harikiran Nistala, Kalyan C. Nannuru
Abstract: The present invention provides antibodies that bind to Staphylococcus aureus Hemolysin A toxin, and methods of use. According to certain embodiments of the invention, the antibodies are fully human antibodies that bind to Hemolysin A. The antibodies of the invention are useful for inhibiting or neutralizing Hemolysin A activity, thus providing a means of preventing or treating a Hemolysin A-related disease or disorder such as S. aureus infection. In some embodiments, the antibodies of the present invention are used in treating at least one symptom or complication of a S. aureus infection.
Type:
Grant
Filed:
January 2, 2018
Date of Patent:
November 5, 2019
Assignee:
Regeneron Pharmaceuticals, Inc.
Inventors:
Alida Coppi, Peter Mason, William Olson
Abstract: Genetically modified non-human animals expressing human EPO from the animal genome are provided. Also provided are methods for making non-human animals expressing human EPO from the non-human animal genome, and methods for using non-human animals expressing human EPO from the non-human animal genome. These animals and methods find many uses in the art, including, for example, in modeling human erythropoiesis and erythrocyte function; in modeling human pathogen infection of erythrocytes; in in vivo screens for agents that modulate erythropoiesis and/or erythrocyte function, e.g. in a healthy or a diseased state; in in vivo screens for agents that are toxic to erythrocytes or erythrocyte progenitors; in in vivo screens for agents that prevent against, mitigate, or reverse the toxic effects of toxic agents on erythrocytes or erythrocyte progenitors; in in vivo screens of erythrocytes or erythrocyte progenitors from an individual to predict the responsiveness of an individual to a disease therapy.
Type:
Grant
Filed:
May 18, 2015
Date of Patent:
November 5, 2019
Assignees:
Regeneron Pharmaceuticals, Inc., Yale University, Institute for Research in Biomedicine (IRB)
Inventors:
Andrew J. Murphy, Sean Stevens, Richard Flavell, Markus Gabriel Manz, Liang Shan
Abstract: Provided herein are maytansinoid compounds, derivatives thereof, conjugates thereof, and methods of treating or preventing proliferative diseases with the same.
Abstract: The present invention provides methods for treating, reducing the severity, or inhibiting the growth of cancer (e.g., skin cancer). The methods of the present invention comprise administering to a subject in need thereof a therapeutically effective amount of a programmed death 1 (PD-1) antagonist (e.g., an anti-PD-1 antibody). In certain embodiments, the skin cancer is cutaneous squamous cell carcinoma or basal cell carcinoma.
Abstract: Compositions and methods are provided for creating and promoting biallelic targeted modifications to genomes within cells and for producing non-human animals comprising the modified genomes. Also provided are compositions and methods for modifying a genome within a cell that is heterozygous for an allele to become homozygous for that allele. The methods make use of Cas proteins and two or more guide RNAs that target different locations within the same genomic target locus. Also provided are methods of identifying cells with modified genomes.
Type:
Grant
Filed:
November 20, 2015
Date of Patent:
October 29, 2019
Assignee:
Regeneron Pharmaceuticals, Inc.
Inventors:
David Frendewey, Ka-Man Venus Lai, Wojtek Auerbach, Gustavo Droguett, Anthony Gagliardi, David M. Valenzuela, Vera Voronina, Lynn Macdonald, Andrew J. Murphy, George D. Yancopoulos
Abstract: The invention provides a new expression system comprising a mammalian selectable marker that promotes desirable post-translational modifications of glycoproteins. In particular, the invention includes methods and compositions for optimal recombinant protein expression in mammalian cells by employing a selection marker system based on GPT genes of mammalian origin. The invention includes methods that facilitate selectivity and enhanced expression copies as well as protein yield of recombinant proteins in mammalian cells, and methods of using GPT expression systems.
Type:
Grant
Filed:
July 31, 2017
Date of Patent:
October 29, 2019
Assignee:
REGENERON PHARMACEUTICALS, INC.
Inventors:
Dipali Deshpande, Darya Burakov, Gang Chen, James Fandl
Abstract: Non-human animals, and methods and compositions for making and using the same, are provided, wherein the non-human animals comprise a humanization of a Lymphocyte activation gene 3 (Lag3). The non-human animals may be described, in some embodiments, as having a genetic modification to an endogenous Lag3 locus so that the non-human animals express a Lag3 polypeptide that includes a human portion and an endogenous portion (e.g., a non-human portion).
Type:
Application
Filed:
April 18, 2019
Publication date:
October 24, 2019
Applicant:
Regeneron Pharmaceuticals, Inc.
Inventors:
Alexander O. Mujica, Elena Burova, Andrew J. Murphy
Abstract: Compositions and methods are provided for modifying a rat genomic locus of interest using a large targeting vector (LTVEC) comprising various endogenous or exogenous nucleic acid sequences as described herein. Compositions and methods for generating a genetically modified rat comprising one or more targeted genetic modifications in their germline are also provided. Compositions and methods are provided which comprise a genetically modified rat or rat cell comprising a targeted genetic modification in the rat interleukin-2 receptor gamma locus, the rat ApoE locus, the rat Rag2 locus, the rat Rag1 locus and/or the rat Rag2/Rag1 locus. The various methods and compositions provided herein allows for these modified loci to be transmitted through the germline.
Type:
Application
Filed:
June 25, 2019
Publication date:
October 24, 2019
Applicant:
Regeneron Pharmaceuticals, Inc.
Inventors:
Jeffrey D. Lee, Alexander O. Mujica, Wojtek Auerbach, Ka-Man Venus Lai, David M. Valenzuela, George D. Yancopoulos
Abstract: A genetically modified mouse is provided that comprises a conditional Acvr1 allele that comprises a mutated exon that, upon induction, converts to a mutant exon phenotype, wherein the mutant exon phenotype includes ectopic bone formation. Mice comprising a mutant Acvr1 exon 5 in antisense orientation, flanked by site-specific recombinase recognition sites, are provided, wherein the mice further comprise a site-specific recombinase that recognizes the site-specific recombinase recognitions sites, wherein the recombinase is induced upon exposure of the mouse to tamoxifen. Upon exposure to tamoxifen, the recombinase is expressed and acts on the RRS-flanked mutant exon 5 and places the mutant exon 5 in sense orientation and deletes the wild-type exon.
Abstract: Compositions and methods are provided for making rat pluripotent and totipotent cells, including rat embryonic stem (ES) cells. Compositions and methods for improving efficiency or frequency of germline transmission of genetic modifications in rats are provided. Such methods and compositions comprise an in vitro culture comprising a feeder cell layer and a population of rat ES cells or a rat ES cell line, wherein the in vitro culture conditions maintain pluripotency of the ES cell and comprises a media having mouse leukemia inhibitory factor (LIF) or an active variant or fragment thereof. Various methods of establishing such rat ES cell lines are further provided. Methods of selecting genetically modified rat ES cells are also provided, along with various methods to generate a transgenic rat from the genetically modified rat ES cells provided herein. Various kits and articles of manufacture are further provided.
Type:
Application
Filed:
May 2, 2019
Publication date:
October 17, 2019
Applicant:
Regeneron Pharmaceuticals, Inc.
Inventors:
Jeffrey D. Lee, Wojtek Auerbach, David Heslin, David Frendewey, Ka-Man Venus Lai, David M. Valenzuela
Abstract: The present invention provides antibodies that bind to Tie2 and methods of using same. According to certain embodiments of the invention, the antibodies are fully human antibodies that bind to human Tie2 and block the interaction between Tie2 and one or more Tie2 ligands such as angiopoietin 1 (Ang1), angiopoietin 2 (Ang2), angiopoietin 3 (Ang3) and/or angiopoietin 4 (Ang4). The antibodies of the invention are useful, inter alia, for the treatment of diseases and disorders associated with one or more Tie2 biological activities including angiogenesis.
Abstract: The present invention provides antibodies that bind to ANGPTL8 and methods of using the same. According to certain embodiments, the invention includes methods of using anti-ANGPTL8 antibodies that bind human ANGPTL8 with high affinity to treat obesity, reduce body fat, reduce body weight, increase energy expenditure, and increase HDL-C, in a subject.
Type:
Grant
Filed:
November 17, 2017
Date of Patent:
October 15, 2019
Assignee:
Regeneron Pharmaceuticals, Inc.
Inventors:
Viktoria Gusarova, Jesper Gromada, Andrew J. Murphy
Abstract: Mice that comprise a replacement of endogenous mouse IL-6 and/or IL-6 receptor genes are described, and methods for making and using the mice. Mice comprising a replacement at an endogenous IL-6R? locus of mouse ectodomain-encoding sequence with human ectodomain-encoding sequence is provided. Mice comprising a human IL-6 gene under control of mouse IL-6 regulatory elements is also provided, including mice that have a replacement of mouse IL-6-encoding sequence with human IL-6-encoding sequence at an endogenous mouse IL-6 locus.
Type:
Grant
Filed:
June 6, 2018
Date of Patent:
October 8, 2019
Assignee:
REGENERON PHARMACEUTICALS, INC.
Inventors:
Li-Hsien Wang, Anthony T. Dore, Jr., Sean Stevens, Andrew J. Murphy
Abstract: The present invention provides pharmaceutical formulations comprising a human antibody that specifically binds to human interleukin-4 receptor (hIL-4R). The formulations may contain, in addition to an anti-hIL-4R antibody, at least one amino acid, at least one sugar, or at least one non-ionic surfactant. The pharmaceutical formulations of the present invention exhibit a substantial degree of antibody stability after storage for several months.