Patents by Inventor Anthony Atala

Anthony Atala 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).

  • Publication number: 20260185044
    Abstract: A method of providing a culture of oogonia stem cells comprising oogonia stem cells is provided. The method may further include culturing the oogonia stem cells with granulosa and theca cells to differentiate the oogonia stem cells into oocytes. In some embodiments, the culturing comprises including the oogonia stem cells in an in vitro follicle construct or a microcapsule comprising said granulosa and theca cells. Further described herein is a method of forming a bioengineered follicle construct capable of releasing a mature oocyte. An in vitro fertilization method using the mature oocyte is also provided.
    Type: Application
    Filed: February 25, 2026
    Publication date: July 2, 2026
    Inventors: Sittadjody Sivanandane, Russel C. Sequeira, John D. Jackson, Anthony Atala, James J. Yoo
  • Publication number: 20260166093
    Abstract: Methods and compositions are disclosed for repair of shoulder injuries by employing disaggregated muscle fiber fragments to regenerate functional shoulder muscle tissue. In some embodiments, the fragments retain functional satellite cells but exhibit cell wall rupture and have an average size of less than 150 ?m. The methods include the preparation and implantation of compositions by extracting muscle tissue from a donor site, disaggregating muscle fibers from the extracted tissue, and fragmenting disaggregated muscle fibers into fiber fragments that exhibit cell wall rupture and preferably have an average size of less than 150 microns, more preferable less than about 100 microns, while retaining functional satellite cells. Upon injection, e.g., into the supraspinatus or other rotator cuff muscles, the muscle fiber fragment compositions are capable of reconstituting or reconstructing elongated muscle fibers from the fragments and orienting in alignment with native shoulder muscle fibers.
    Type: Application
    Filed: January 29, 2026
    Publication date: June 18, 2026
    Applicant: Wake Forest University Health Sciences
    Inventors: Anthony ATALA, James J. YOO, Gary G. POEHLING, Brian Robert WATERMAN
  • Patent number: 12648967
    Abstract: Disclosed herein are method of treating hemophilia A in a subject comprising injecting the subject with mesenchymal stromal/stem cells (MSC) modified to express high levels of Factor VIII protein. The MSC are isolated prenatally, at birth, or after the subject's birth. The modified MSC may also express high levels von Willebrand factor protein.
    Type: Grant
    Filed: March 31, 2023
    Date of Patent: June 9, 2026
    Assignees: Wake Forest University Health Sciences, Emory University, Children's Healthcare of Atlanta, Inc.
    Inventors: Maria Graca N.D. Almeida-Porada, Christopher D. Porada, Anthony Atala, Christopher B. Doering, H. Trent Spencer
  • Patent number: 12584104
    Abstract: A method of providing a culture of oogonia stem cells comprising oogonia stem cells is provided. The method may further include culturing the oogonia stem cells with granulosa and theca cells to differentiate the oogonia stem cells into oocytes. In some embodiments, the culturing comprises including the oogonia stem cells in an in vitro follicle construct or a microcapsule comprising said granulosa and theca cells. Further described herein is a method of forming a bioengineered follicle construct capable of releasing a mature oocyte. An in vitro fertilization method using the mature oocyte is also provided.
    Type: Grant
    Filed: September 27, 2021
    Date of Patent: March 24, 2026
    Assignee: Wake Forest University Health Sciences
    Inventors: Sittadjody Sivanandane, Russel C. Sequeira, John D. Jackson, Anthony Atala, James J. Yoo
  • Patent number: 12576113
    Abstract: Methods and compositions are disclosed for repair of shoulder injuries by employing disaggregated muscle fiber fragments to regenerate functional shoulder muscle tissue. In some embodiments, the fragments retain functional satellite cells but exhibit cell wall rupture and have an average size of less than 150 ?m. The methods include the preparation and implantation of compositions by extracting muscle tissue from a donor site, disaggregating muscle fibers from the extracted tissue, and fragmenting disaggregated muscle fibers into fiber fragments that exhibit cell wall rupture and preferably have an average size of less than 150 microns, more preferable less than about 100 microns, while retaining functional satellite cells. Upon injection, e.g., into the supraspinatus or other rotator cuff muscles, the muscle fiber fragment compositions are capable of reconstituting or reconstructing elongated muscle fibers from the fragments and orienting in alignment with native shoulder muscle fibers.
    Type: Grant
    Filed: October 26, 2020
    Date of Patent: March 17, 2026
    Assignee: Wake Forest University Health Sciences
    Inventors: Anthony Atala, James Yoo, Gary G. Poehling, Brian Robert Waterman
  • Publication number: 20260009164
    Abstract: The invention is directed to products and methods for preparing self-seeding vascular constructs generated as a bi-layered electrospun matrices, conjugated with EPC-specific antibodies and anti-thrombogenic agents on the inner surfaces of their lumens.
    Type: Application
    Filed: May 24, 2024
    Publication date: January 8, 2026
    Applicant: Wake Forest University Health Sciences
    Inventors: Sang Jin LEE, James J. YOO, Young Min JU, Anthony ATALA
  • Publication number: 20250345480
    Abstract: Compositions and methods for bioprinting a transplantable vascularized tissue construct that allows for direct surgical anastomosis to a host, to achieve immediate blood perfusion with host vasculature for long-term cell survival and function.
    Type: Application
    Filed: April 17, 2025
    Publication date: November 13, 2025
    Inventors: Ji Hyun KIM, Sang Jin LEE, James J. YOO, Anthony ATALA
  • Publication number: 20250340600
    Abstract: Provided are compositions, systems, and methods useful for effecting gene editing in eukaryotic cells. Compositions include plasmids that encode one or more viral fusion proteins in which one or more viral proteins are fused with an aptamer-binding protein. Compositions also include plasmids that encode a non-viral nucleic acid sequence, wherein the non-viral nucleic acid sequence encodes a CRISPR system component. In some instances, the non-viral nucleic acid sequence also includes an aptamer sequence. The plasmids can be used to generate viral particles, including lentivirus-like particles that contain a viral fusion protein and a non-viral RNA sequence. Systems of producing such viral particles are provided. Also provided are methods of using the viral particles of the disclosure to effect gene editing in eukaryotic cells.
    Type: Application
    Filed: July 15, 2025
    Publication date: November 6, 2025
    Applicant: Wake Forest University Health Sciences
    Inventors: Baisong Lu, Anthony Atala
  • Patent number: 12398182
    Abstract: Provided are compositions, systems, and methods useful for effecting gene editing in eukaryotic cells. Compositions include plasmids that encode one or more viral fusion proteins in which one or more viral proteins are fused with an aptamer-binding protein. Compositions also include plasmids that encode a non-viral nucleic acid sequence, wherein the non-viral nucleic acid sequence encodes a CRISPR system component. In some instances, the non-viral nucleic acid sequence also includes an aptamer sequence. The plasmids can be used to generate viral particles, including lentivirus-like particles that contain a viral fusion protein and a non-viral RNA sequence. Systems of producing such viral particles are provided. Also provided are methods of using the viral particles of the disclosure to effect gene editing in eukaryotic cells.
    Type: Grant
    Filed: May 1, 2019
    Date of Patent: August 26, 2025
    Assignee: Wake Forest University Health Sciences
    Inventors: Baisong Lu, Anthony Atala
  • Patent number: 12391926
    Abstract: Provided herein are artificial lung organoids. The artificial lung organoids may include an epithelial cell layer comprising mammalian lung epithelial cells, a stromal cell layer comprising mammalian lung fibroblast cells and an endothelial cell layer comprising mammalian endothelial cells. The artificial lung organoids may optionally include a porous membrane between said epithelial cell layer and said stromal cell layer and/or between said stromal cell layer and said endothelial lung cell layer.
    Type: Grant
    Filed: April 7, 2021
    Date of Patent: August 19, 2025
    Assignee: Wake Forest University Health Sciences
    Inventors: Sean V. Murphy, Anthony Atala
  • Publication number: 20250213747
    Abstract: The present invention includes compositions and methods for wound healing and tissue regeneration. The compositions of the present invention comprise amniotic membrane powder. The compositions of the present invention comprise amniotic membrane powder and a scaffold. The methods of the present invention comprises applying a composition of the present invention to a subject to induce wound healing and tissue regeneration.
    Type: Application
    Filed: August 5, 2024
    Publication date: July 3, 2025
    Inventors: Sean V. Murphy, Aleksander Skardal, Anthony Atala
  • Publication number: 20250154471
    Abstract: Provided herein are isolated populations of kidney cells harvested from differentiated cells of the kidney, wherein cells have been expanded in vitro. The kidney cells may include peritubular interstitial cells of the kidney, and preferably produce erythropoietin (EPO). The kidney cells may also be selected based upon EPO production. Methods of producing an isolated population of EPO producing cells are also provided, and methods of treating a kidney disease resulting in decreased EPO production in a patient in need thereof are provided, including administering the population to the patient, whereby the cells produce EPO in vivo.
    Type: Application
    Filed: June 13, 2024
    Publication date: May 15, 2025
    Inventors: Anthony Atala, James J. Yoo
  • Patent number: 12268467
    Abstract: Provided herein is a delivery system, including: (a) an optical sensor configured to detect data useful to create a map of a bodily surface; and (b) a printer operatively associated with the optical sensor and configured to deliver compositions (optionally including cells) to the bodily surface based upon the data or map. Methods of forming a tissue on a bodily surface of a patient in need thereof are also provided, as are methods, systems and computer program products useful for processing bodily surface data.
    Type: Grant
    Filed: November 25, 2019
    Date of Patent: April 8, 2025
    Assignee: Wake Forest University Health Sciences
    Inventors: James J. Yoo, Anthony Atala, Kyle W. Binder, Weixin Zhao, Dennis Dice, Tao Xu
  • Publication number: 20250009936
    Abstract: A composition comprising a co-culture of: a) activated peripheral blood mononuclear cells (PBMC); and b) stem or progenitor cells, is provided. The composition is useful for the regeneration of tissue in a subject in need thereof, and for forming of a tissue in vitro.
    Type: Application
    Filed: November 15, 2022
    Publication date: January 9, 2025
    Inventors: Johanna BOLANDER, Gustavo MOVIGLIA, Anthony ATALA
  • Publication number: 20240398873
    Abstract: The present invention provides compositions and methods for wound healing and tissue regeneration. The compositions of the present invention comprise amniotic membrane of the placenta. In certain embodiments, the composition comprises amniotic membrane powder or solubilized amniotic membrane (SAM). In some aspects, the composition is cell-free and rich in cytokines, extracellular matrix proteins, and other components that improve tissue regeneration. In one aspect, the composition is a hydrogel scaffold that comprises amniotic membrane. The present invention reduces contraction and improves blood vessel development in regenerating tissue.
    Type: Application
    Filed: May 31, 2024
    Publication date: December 5, 2024
    Inventors: Sean V. Murphy, Aleksander Skardal, Anthony Atala
  • Patent number: 12083245
    Abstract: The present invention includes compositions and methods for wound healing and tissue regeneration. The compositions of the present invention comprise amniotic membrane powder. The compositions of the present invention comprise amniotic membrane powder and a scaffold. The methods of the present invention comprises applying a composition of the present invention to a subject to induce wound healing and tissue regeneration.
    Type: Grant
    Filed: October 1, 2015
    Date of Patent: September 10, 2024
    Assignee: Wake Forest University Health Sciences
    Inventors: Sean V. Murphy, Aleksander Skardal, Anthony Atala
  • Publication number: 20240285694
    Abstract: Methods and compositions are disclosed for repair of shoulder injuries by employing disaggregated muscle fiber fragments to regenerate functional shoulder muscle tissue. In some embodiments, the fragments retain functional satellite cells but exhibit cell wall rupture and have an average size of less than 150 ?m. The methods include the preparation and implantation of compositions by extracting muscle tissue from a donor site, disaggregating muscle fibers from the extracted tissue, and fragmenting disaggregated muscle fibers into fiber fragments that exhibit cell wall rupture and preferably have an average size of less than 150 microns, more preferable less than about 100 microns, while retaining functional satellite cells. Upon injection, e.g., into the supraspinatus or other rotator cuff muscles, the muscle fiber fragment compositions are capable of reconstituting or reconstructing elongated muscle fibers from the fragments and orienting in alignment with native shoulder muscle fibers.
    Type: Application
    Filed: April 25, 2024
    Publication date: August 29, 2024
    Applicant: Wake Forest University Health Sciences
    Inventors: Ji Hyun KIM, Anthony ATALA, James J. YOO
  • Patent number: 12006592
    Abstract: The invention is directed to products and methods for preparing self-seeding vascular constructs generated as a bi-layered electrospun matrices, conjugated with EPC-specific antibodies and anti-thrombogenic agents on the inner surfaces of their lumens.
    Type: Grant
    Filed: May 10, 2021
    Date of Patent: June 11, 2024
    Assignee: Wake Forest University Health Sciences
    Inventors: Sang Jin Lee, James J. Yoo, Young Min Ju, Anthony Atala
  • Publication number: 20240158808
    Abstract: The present invention includes methods and compositions useful for the treatment of Dent's disease in a subject in need thereof. The invention of the present disclosure also includes a mouse model useful for the study of Dent's disease.
    Type: Application
    Filed: May 20, 2022
    Publication date: May 16, 2024
    Inventors: Baisong Lu, Anthony Atala
  • Publication number: 20240139253
    Abstract: Disclosed herein are method of treating hemophilia A in a subject comprising injecting the subject with mesenchymal stromal/stem cells (MSC) modified to express high levels of Factor VIII protein. The MSC are isolated prenatally, at birth, or after the subject's birth. The modified MSC may also express high levels von Willebrand factor protein.
    Type: Application
    Filed: March 31, 2023
    Publication date: May 2, 2024
    Inventors: Maria Graca N.D. Almeida-Porada, Christopher D. Porada, Anthony Atala, Christopher B. Doering, H. Trent Spencer