Patents by Inventor Gary Owens
Gary Owens 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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Patent number: 12668818Abstract: The present disclosure encompasses nucleic acid expression constructs that regulate the expression of a heterologous protein specifically in muscle tissues (e.g., skeletal muscle and cardiac muscle tissue). In particular embodiments of the disclosure, muscle-specific expression constructs are described that encode a heterologous protein. These heterologous proteins can be any protein that is desired to be expressed in a muscle cell. In particular embodiments of the disclosure, proteins are described for the treatment of Duchenne Muscular Dystrophy (e.g., engineered nucleases such as engineered meganucleases).Type: GrantFiled: October 10, 2025Date of Patent: June 30, 2026Assignee: Precision BioSciences, Inc.Inventors: Gary Owens, Matt Jordan-Steele
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Publication number: 20260078408Abstract: The present disclosure encompasses nucleic acid expression constructs that regulate the expression of a heterologous protein specifically in muscle tissues (e.g., skeletal muscle and cardiac muscle tissue). In particular embodiments of the disclosure, muscle-specific expression constructs are described that encode a heterologous protein. These heterologous proteins can be any protein that is desired to be expressed in a muscle cell. In particular embodiments of the disclosure, proteins are described for the treatment of Duchenne Muscular Dystrophy (e.g., engineered nucleases such as engineered meganucleases).Type: ApplicationFiled: October 10, 2025Publication date: March 19, 2026Applicant: Precision BioSciences, Inc.Inventors: Gary Owens, Matt Jordan-Steele
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Publication number: 20250304949Abstract: Disclosed are engineered nucleases that bind and cleave a recognition sequence within a hydroxyacid oxidase 1 (HAO1) gene. The present invention also encompasses methods of using such engineered nucleases to make genetically-modified cells. Further, the invention encompasses pharmaceutical compositions comprising engineered nuclease proteins or nucleic acids encoding engineered nucleases of the invention, and the use of such compositions for treatment of primary hyperoxaluria type I.Type: ApplicationFiled: June 9, 2025Publication date: October 2, 2025Applicant: Precision BioSciences, Inc.Inventors: Roshni Davey, Derek Jantz, James Jefferson Smith, Gary Owens
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Publication number: 20250034536Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: ApplicationFiled: April 26, 2024Publication date: January 30, 2025Applicant: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Patent number: 12006522Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: GrantFiled: July 27, 2023Date of Patent: June 11, 2024Assignee: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Patent number: 11993793Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: GrantFiled: July 27, 2023Date of Patent: May 28, 2024Assignee: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Publication number: 20240018495Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: ApplicationFiled: July 27, 2023Publication date: January 18, 2024Applicant: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Publication number: 20240002823Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: ApplicationFiled: July 27, 2023Publication date: January 4, 2024Applicant: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Patent number: 11753630Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: GrantFiled: September 13, 2022Date of Patent: September 12, 2023Assignee: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Publication number: 20230053176Abstract: The present disclosure encompasses engineered meganucleases that bind and cleave recognition sequences within a dystrophin gene. The present disclosure also encompasses methods of using such engineered meganucleases to make genetically modified cells. Further, the disclosure encompasses pharmaceutical compositions comprising engineered meganuclease proteins, or polynucleotides encoding engineered meganucleases of the disclosure, and the use of such compositions for the modification of a dystrophin gene in a subject, or for treatment of Duchenne Muscular Dystrophy.Type: ApplicationFiled: September 13, 2022Publication date: February 16, 2023Applicant: Precision BioSciences, Inc.Inventors: Gary Owens, Janel Lape, James Jefferson Smith, John Morris, Caitlin Turner, Whitney Lewis, Derek Jantz
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Publication number: 20220090047Abstract: Disclosed are engineered nucleases that bind and cleave a recognition sequence within a hydroxyacid oxidase 1 (HAO1) gene. The present invention also encompasses methods of using such engineered nucleases to make genetically-modified cells. Further, the invention encompasses pharmaceutical compositions comprising engineered nuclease proteins or nucleic acids encoding engineered nucleases of the invention, and the use of such compositions for treatment of primary hyperoxaluria type I.Type: ApplicationFiled: December 20, 2019Publication date: March 24, 2022Applicant: Precision BioSciences, Inc.Inventors: Roshni Davey, Derek Jantz, James Jefferson Smith, Gary Owens
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Patent number: 9770349Abstract: The present invention relates generally to medical devices containing nanoporous surfaces and methods for making same. More specifically, the invention relates to implantable vascular stents or other biomedical devices having at least one dealloyed nanoporous layer that promotes improved cellular adhesion properties that promote healing and long term biocompatibility. In the case of stents, the nanoporous layer promotes re-endothelialization at sites of stent implantation vasculature, improves overall healing, and reduces inflammation and intimal disease progression. The nanoporous layer may be optionally loaded with one or more therapeutic agent to further improve the function of the implanted stent and further augment clinical efficacy.Type: GrantFiled: May 24, 2007Date of Patent: September 26, 2017Assignee: University of Virginia Patent FoundationInventors: Gary Owens, Whye-Kei Lye, Michael Reed, Joshua Spradlin, Brian Wamhoff, Matthew Hudson, Kareen Looi
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Patent number: 8124166Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents.Type: GrantFiled: February 23, 2010Date of Patent: February 28, 2012Assignee: Medtronic Vascular, Inc.Inventors: Gary Owens, Brian Wamhoff, Matthew S. Hudson, Whye-Kei Lye, Joshua Spradlin, Michael Reed, Kareen Looi
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Patent number: 7422963Abstract: An apparatus for cleaving a section of a bar of brittle material is provided. The apparatus comprises a support adapted to hold the section of the bar in a position to be cleaved, a blade, an actuator coupled to the blade for driving the blade at least partially through the bar to create a cleaved portion of the bar, and a follower for engaging the end of the bar during cleaving. An method of cleaving a section of a bar of brittle material is also provided. The method comprises initiating a crack in the bar and driving a blade through the bar to remove a portion of the brittle material from the end of the bar. In one embodiment, the blades drives through the bar at a controlled speed.Type: GrantFiled: June 2, 2005Date of Patent: September 9, 2008Assignee: Owens Technology, Inc.Inventor: Gary Owens
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Publication number: 20080086198Abstract: The present invention relates generally to medical devices containing nanoporous surfaces and methods for making same. More specifically, the invention relates to implantable vascular stents or other biomedical devices having at least one nanoporous layer that promotes improved cellular adhesion properties that promote healing and long term biocompatibility. In the case of stents, the nanoporous layer promotes re-endothelialization at sites of stent implantation vasculature, improves overall healing, and reduces inflammation and intimal disease progression. The nanoporous layer may be optionally loaded with one or more therapeutic agent to further improve the function of the implanted stent and further augment clinical efficacy.Type: ApplicationFiled: May 24, 2007Publication date: April 10, 2008Inventors: Gary Owens, Whye-Kei Lye, Michael Reed, Joshua Spradlin, Brian Wamhoff, Matthew Hudson, Kareen Looi
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Publication number: 20060276879Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy.Type: ApplicationFiled: May 11, 2006Publication date: December 7, 2006Inventors: Whye-Kei Lye, Michael Reed, Gary Owens, Brian Wamhoff, Joshua Spradlin, Matthew Hudson
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Publication number: 20060276884Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents.Type: ApplicationFiled: May 10, 2006Publication date: December 7, 2006Inventors: Whye-Kei Lye, Gary Owens, Brian Wamhoff, Michael Reed, Kareen Looi, Joshua Spradlin
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Publication number: 20060276877Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents.Type: ApplicationFiled: May 9, 2006Publication date: December 7, 2006Inventors: Gary Owens, Whye-Kei Lye, Michael Reed, Joshua Spradlin, Brian Wamhoff, Matthew Hudson, Kareen Looi
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Publication number: 20060276878Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents.Type: ApplicationFiled: May 9, 2006Publication date: December 7, 2006Inventors: Gary Owens, Whye-Kei Lye, Michael Reed, Joshua Spradlin, Brian Wamhoff, Matthew Hudson, Kareen Looi
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Publication number: 20060276885Abstract: The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents.Type: ApplicationFiled: May 10, 2006Publication date: December 7, 2006Inventors: Whye-Kei Lye, Gary Owens, Michael Reed, Brian Wamhoff, Kareen Looi, Joshua Spradlin