Patents by Inventor Juan Dominguez-Bendala

Juan Dominguez-Bendala 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).

  • Patent number: 11723987
    Abstract: Provided herein are recombinant expression vector systems for expression by stem cells that allow for selective elimination of stem cell-derived tumorigenic cells, while preserving stem cell-derived therapeutic cells. The systems provided herein provide a means by which modified stem cells can be safely transplanted into subjects. In exemplary embodiments, the system comprises at least two suicide genes, one of which is specifically inactivated in cells exhibiting the desired phenotype and one of which is activated when the cell comprising the recombinant expression vector system behaves similarly to or the same as a tumor cell.
    Type: Grant
    Filed: September 15, 2017
    Date of Patent: August 15, 2023
    Assignee: UNIVERSITY OF MIAMI
    Inventor: Juan Dominguez-Bendala
  • Patent number: 11466255
    Abstract: Compositions and methods are provided for generating islet-like cell clusters. The methods include culturing a whole non-islet pancreatic cell discard or cells sorted therefrom with an effective amount of a molecule having Bone Morphogenetic Protein (BMP) activity (e.g., a BMP polypeptide). The effective amount of said molecule having BMP activity (e.g., BMP polypeptide) is sufficient to induce the formation of islet-like cell clusters. The methods further include treating or attenuating insulin-deficiency disorders, including type 1 diabetes. In one non-limiting embodiment, an insulin-deficiency disorder in a subject is treated or attenuated by culturing a whole non-islet pancreatic cell discard or cells sorted therefrom with an effective amount of a molecule having BMP activity (e.g., a BMP polypeptide) such that tho formation of islet-like cell clusters occurs.
    Type: Grant
    Filed: May 2, 2016
    Date of Patent: October 11, 2022
    Assignee: UNIVERSITY OF MIAMI
    Inventors: Juan Dominguez-Bendala, Luca Inverardi, Ricardo L. Pastori, Camillo Ricordi
  • Publication number: 20190247518
    Abstract: Provided herein are recombinant expression vector systems for expression by stem cells that allow for selective elimination of stem cell-derived tumorigenic cells, while preserving stem cell-derived therapeutic cells. The systems provided herein provide a means by which modified stem cells can be safely transplanted into subjects. In exemplary embodiments, the system comprises at least two suicide genes, one of which is specifically inactivated in cells exhibiting the desired phenotype and one of which is activated when the cell comprising the recombinant expression vector system behaves similarly to or the same as a tumor cell.
    Type: Application
    Filed: September 15, 2017
    Publication date: August 15, 2019
    Inventor: Juan Dominguez-Bendala
  • Publication number: 20180155692
    Abstract: Compositions and methods are provided for generating islet-like cell clusters. The methods include culturing a whole non-islet pancreatic cell discard or cells sorted therefrom with an effective amount of a molecule having Bone Morphogenetic Protein (BMP) activity (e.g., a BMP polypeptide). The effective amount of said molecule having BMP activity (e.g., BMP polypeptide) is sufficient to induce the formation of islet-like cell clusters. The methods further include treating or attenuating insulin-deficiency disorders, including type 1 diabetes. In one non-limiting embodiment, an insulin-deficiency disorder in a subject is treated or attenuated by culturing a whole non-islet pancreatic cell discard or cells sorted therefrom with an effective amount of a molecule having BMP activity (e.g., a BMP polypeptide) such that tho formation of islet-like cell clusters occurs.
    Type: Application
    Filed: May 2, 2016
    Publication date: June 7, 2018
    Applicant: UNIVERSITY OF MIAMI
    Inventor: Juan Dominguez-Bendala
  • Patent number: 9750770
    Abstract: A method of repairing diseased or dysfunctional pancreas or liver is provided. The method involves preparation of a suspension of stem cells and/or progenitor cells such as biliary tree stem cells, hepatic stem cells, pancreatic stem cells or their descendants, committed progenitor cells, from healthy tissue of the patient or of the biliary tree of a non-autologous donor and engrafting the cells into the wall of bile ducts near to the organ to be treated. The graft consists of stem cells or progenitors that are admixed with biomaterials and, optionally, with cytokines and/or native epithelial-mesenchymal cells appropriate for the maturational lineage stage of the cells to be engrafted.
    Type: Grant
    Filed: November 9, 2015
    Date of Patent: September 5, 2017
    Assignees: The University of North Carolina at Chapel Hill, University of Miami-Diabetes Research Institute, Sapienza Università Di Roma
    Inventors: Lola M. Reid, Yunfang Wang, David A. Gerber, Giacomo Lanzoni, Luca Inverardi, Juan Dominguez-Bendala, Domenico Alvaro, Vincenzo Cardinale, Eugenio Gaudio, Guido Carpino
  • Patent number: 9533013
    Abstract: A method of repairing diseased or dysfunctional pancreas or liver is provided. The method involves preparation of a suspension of stem cells and/or progenitor cells such as biliary tree stem cells, hepatic stem cells, pancreatic stem cells or their descendants, committed progenitor cells, from healthy tissue of the patient or of the biliary tree of a non-autologous donor and engrafting the cells into the wall of bile ducts near to the organ to be treated. The graft consists of stem cells or progenitors that are admixed with biomaterials and, optionally, with cytokines and/or native epithelial-mesenchymal cells appropriate for the maturational lineage stage of the cells to be engrafted.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: January 3, 2017
    Assignees: University of North Carolina at Chapel Hill, Sapienza Università Di Roma, University of Miami—Diabetes Research Institute
    Inventors: Lola M. Reid, Yunfang Wang, David A. Gerber, Giacomo Lanzoni, Luca Inverardi, Juan Dominguez-Bendala, Domenico Alvaro, Vincenzo Cardinale, Eugenio Gaudio, Guido Carpino
  • Publication number: 20160058798
    Abstract: A method of repairing diseased or dysfunctional pancreas or liver is provided. The method involves preparation of a suspension of stem cells and/or progenitor cells such as biliary tree stem cells, hepatic stem cells, pancreatic stem cells or their descendants, committed progenitor cells, from healthy tissue of the patient or of the biliary tree of a non-autologous donor and engrafting the cells into the wall of bile ducts near to the organ to be treated. The graft consists of stem cells or progenitors that are admixed with biomaterials and, optionally, with cytokines and/or native epithelial-mesenchymal cells appropriate for the maturational lineage stage of the cells to be engrafted.
    Type: Application
    Filed: November 9, 2015
    Publication date: March 3, 2016
    Applicants: University of North Carolina at Chapel Hill, Sapienza Università di Roma, University of Miami
    Inventors: Lola M. REID, Yunfang WANG, David A. GERBER, Giacomo LANZONI, Luca INVERARDI, Juan DOMINGUEZ-BENDALA, Domenico ALVARO, Vincenzo CARDINALE, Eugenio GAUDIO, Guido CARPINO
  • Patent number: 9175254
    Abstract: Provided is a cell culture apparatus for culturing cells, that provides enhanced oxygen delivery and supply to cells without the need for stirring or sparging. Oxygen diffusion occurs on both sides of the culture vessel, top and bottom. A gas-permeable membrane that includes perfluorocarbons or fluorocarbon derivatives (e.g., fluorinated silane, partially fluorinated silane) in its composition allows for the rapid, enhanced and uniform transfer of oxygen between the environment of cells or tissues contained in the cell culture container apparatus and the atmosphere of the incubator in which the cell culture apparatus is incubated.
    Type: Grant
    Filed: October 7, 2013
    Date of Patent: November 3, 2015
    Assignee: University of Miami
    Inventors: Christopher A. Fraker, Juan Dominguez-Bendala, Camillo Ricordi, Luca Inverardi
  • Publication number: 20140301985
    Abstract: A method of repairing diseased or dysfunctional pancreas or liver is provided. The method involves preparation of a suspension of stem cells and/or progenitor cells such as biliary tree stem cells, hepatic stem cells, pancreatic stem cells or their descendants, committed progenitor cells, from healthy tissue of the patient or of the biliary tree of a non-autologous donor and engrafting the cells into the wall of bile ducts near to the organ to be treated. The graft consists of stem cells or progenitors that are admixed with biomaterials and, optionally, with cytokines and/or native epithelial-mesenchymal cells appropriate for the maturational lineage stage of the cells to be engrafted.
    Type: Application
    Filed: March 12, 2014
    Publication date: October 9, 2014
    Applicants: University of North Carolina at Chapel Hill, Sapienza Università di Roma, Diabetes Research Institute
    Inventors: Lola M. REID, Yunfang WANG, David A. GERBER, Giacomo LANZONI, Luca INVERARDI, Juan DOMINGUEZ-BENDALA, Domenico ALVARO, Vincenzo CARDINALE, Eugenio GAUDIO, Guido CARPINO
  • Publication number: 20140099717
    Abstract: Provided is a cell culture apparatus for culturing cells, that provides enhanced oxygen delivery and supply to cells without the need for stirring or sparging. Oxygen diffusion occurs on both sides of the culture vessel, top and bottom. A gas-permeable membrane that includes perfluorocarbons or fluorocarbon derivatives (e.g., fluorinated silane, partially fluorinated silane) in its composition allows for the rapid, enhanced and uniform transfer of oxygen between the environment of cells or tissues contained in the cell culture container apparatus and the atmosphere of the incubator in which the cell culture apparatus is incubated.
    Type: Application
    Filed: October 7, 2013
    Publication date: April 10, 2014
    Inventors: Christopher A. Fraker, Juan Dominguez-Bendala, Camillo Ricordi, Luca Inverardi
  • Patent number: 8551770
    Abstract: Provided is a cell culture apparatus for culturing cells, that provides enhanced oxygen delivery and supply to cells without the need for stirring or sparging. Oxygen diffusion occurs on both sides of the culture vessel, top and bottom. A gas-permeable membrane that includes perfluorocarbons in its composition allows for the rapid, enhanced and uniform transfer of oxygen between the environment of cells or tissues contained in the cell culture container apparatus and the atmosphere of the incubator in which the cell culture apparatus is incubated.
    Type: Grant
    Filed: July 9, 2007
    Date of Patent: October 8, 2013
    Assignee: University of Miami
    Inventors: Christopher A. Fraker, Juan Dominguez-Bendala, Ricordi Camillo, Luca Inverardi
  • Publication number: 20080009027
    Abstract: Provided is a cell culture apparatus for culturing cells, that provides enhanced oxygen delivery and supply to cells without the need for stirring or sparging. Oxygen diffusion occurs on both sides of the culture vessel, top and bottom. A gas-permeable membrane that includes perfluorocarbons in its composition allows for the rapid, enhanced and uniform transfer of oxygen between the environment of cells or tissues contained in the cell culture container apparatus and the atmosphere of the incubator in which the cell culture apparatus is incubated.
    Type: Application
    Filed: July 9, 2007
    Publication date: January 10, 2008
    Applicant: UNIVERSITY OF MIAMI
    Inventors: Christopher Fraker, Juan Dominguez-Bendala, Ricordi Camillo, Luca Inverardi