Patents by Inventor Robert J. Levy

Robert J. Levy 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: 20130296285
    Abstract: A prodrug according to formula (I) wherein R2 is a residue of a drug, said drug having a hydroxyl group by which the COOR2 group is formed; Z is O or NH; m is 0 or 1; and R3 is an organic moiety comprising a lipophilic group or a residue of a polymer, provided that Z is 0 if the polymer is carboxymethyl dextran. A system includes a plurality of magnetic nanoparticles including a prodrug as described above, a stent and a source of uniform magnetic field capable of producing temporary magnetization of the stent and/or the magnetic nanoparticles. A method of treating a medical condition with a drug includes administering to a patient in need of the drug a prodrug as described above, the prodrug being capable of releasing the drug in the patient after the administration step.
    Type: Application
    Filed: December 28, 2011
    Publication date: November 7, 2013
    Applicant: THE CHILDRENS HOSPITAL OF PHILADELPHIA
    Inventors: Ivan Alferiev, Michael Chorny, Robert J. Levy
  • Patent number: 8562505
    Abstract: Systems and methods for magnetic targeting of therapeutic particles are provided. Therapeutic particles comprise one or more magnetic or magnetizable materials and at least one therapeutic agent. Therapeutic particles are specifically targeted using uniform magnetic fields capable of magnetizing magnetizable materials, and can be targeted to particular locations in the body, or can be targeted for capture, containment, and removal. Also provided are bioresorbable nanoparticles prepared without the use of organic solvents, and methods for therapeutically using such bioresorbable nanoparticles.
    Type: Grant
    Filed: May 1, 2008
    Date of Patent: October 22, 2013
    Assignees: The Children's Hospital of Philadelphia, Drexel University
    Inventors: Robert J. Levy, Boris Polyak, Michael Chorny, Ivan Alferiev, Gennady Friedman, Darryl Williams, Ilia Fishbein
  • Publication number: 20130267762
    Abstract: A treatment system includes a magnetic targeting catheter and a plurality of MNP. The MNP may include one or more magnetic field-responsive agents and one or more therapeutic agents. The catheter may include an inner shaft having at least one lumen and a fluid delivery balloon adapted to administer a fluid from the inner shaft into a space surrounding the catheter. An expandable mesh formed of a magnetizable material may surround the fluid delivery balloon. The catheter may further include one or more occlusion balloons for controlling blood flow through a vessel in which the catheter is placed. A method of treating a medical condition may include advancing a magnetic targeting catheter to a site, deploying an expandable mesh connected to the catheter, applying a magnetic field to the mesh and depositing a plurality of MNP or cells loaded with MNP near the mesh.
    Type: Application
    Filed: October 27, 2011
    Publication date: October 10, 2013
    Applicant: THE CHILDREN'S HOSPITAL OF PHILADELPHIA
    Inventors: Robert J. Levy, Michael Chorny, Ilia Fishbein
  • Publication number: 20130243862
    Abstract: A water-soluble photo-activatable polymer including: a photo-activatable group adapted to be activated by an irradiation source and to form a covalent bond between the water-soluble photo-activatable polymer and a matrix having at least one carbon; a reactive group adapted to covalently react with a biomaterial for subsequent delivery of the biomaterial to a cell; a hydrophilic group; and a polymer precursor. A composition including a monomolecular layer of the water-soluble photo-activatable polymer and a matrix having at least one carbon, wherein the monomolecular layer is covalently attached to the matrix by a covalent bond between the photo-activatable group and the at least one carbon. The composition further includes a biomaterial having a plurality of active groups, wherein the biomaterial is covalently attached to the monomolecular layer by covalent bonding between the active groups and reactive groups. Also provided is a method for delivery of a biomaterial to a cell.
    Type: Application
    Filed: September 7, 2012
    Publication date: September 19, 2013
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Ivan Alferiev, Ilia Fishbein, Michael Chorny, Robert J. Levy, Benjamin Yellen, Darryl Williams
  • Publication number: 20130156792
    Abstract: Systems and methods for magnetic targeting of therapeutic particles are provided. Therapeutic particles comprise one or more magnetic or magnetizable materials and at least one therapeutic agent. Therapeutic particles are specifically targeted using uniform magnetic fields capable of magnetizing magnetizable materials, and can be targeted to particular locations in the body, or can be targeted for capture, containment, and removal. Therapeutic particles can comprise antioxidant enzymes, and can be targeted to cells to protect the cells from oxidative damage.
    Type: Application
    Filed: December 15, 2009
    Publication date: June 20, 2013
    Applicants: The Trustees of the University of Pennsylvania, The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Michael Chorny, Vladimir Muzykantov, Elizabeth Hood
  • Patent number: 8465542
    Abstract: A modified polyurethane including a lipid substituent pendant from at least one urethane nitrogen and/or at least one carbon atom of the modified polyurethane, methods of preparing modified polyurethanes and the use thereof as an implantable biomaterial.
    Type: Grant
    Filed: June 4, 2012
    Date of Patent: June 18, 2013
    Assignee: The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Ivan Alferiev, Stanley J. Stachelek
  • Publication number: 20130096361
    Abstract: Systems and methods for magnetic targeting of therapeutic particles are provided. Therapeutic particles comprise one or more magnetic or magnetizable materials and at least one therapeutic agent. Therapeutic particles are specifically targeted using uniform magnetic fields capable of magnetizing magnetizable materials, and can be targeted to particular locations in the body, or can be targeted for capture, containment, and removal. Also provided are bioresorbable nanoparticles prepared without the use of organic solvents, and methods for therapeutically using such bioresorbable nanoparticles.
    Type: Application
    Filed: May 1, 2008
    Publication date: April 18, 2013
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Boris Polyak, Michael Chorny, Ivan Alferiev, Gennady Friedman, Darryl Williams, Ilia Fishbein
  • Publication number: 20130018454
    Abstract: The present invention relates to a hybrid graft and methods of generating the hybrid graft. The hybrid graft comprises an exterior surface and a luminal surface. The luminal surface comprises a micropattern of grooves to which cells adhere and orient along. The exterior surface comprises electrospun microfibers wherein the microfibers provide mechanical properties to the graft. The hybrid graft is capable supporting endothelial cell attachment, endothelial cell alignment, cell proliferation, and maintaining their in vivo function. The graft of the invention can recapitulate the in vivo morphology and function of natural vascular endothelium.
    Type: Application
    Filed: November 24, 2010
    Publication date: January 17, 2013
    Inventors: Peter I. Lelkes, Mengyan Li, Anat Perets, Pimporn Uttayarat, Robert J. Levy, Russell J. Composto
  • Publication number: 20130011370
    Abstract: Systems and methods for magnetic targeting of therapeutic particles are provided. Therapeutic particles comprise one or more magnetic or magnetizable materials and at least one therapeutic agent. Therapeutic particles are specifically targeted using uniform magnetic fields capable of magnetizing magnetizable materials, and can be targeted to particular locations in the body, or can be targeted for capture, containment, and removal. Also provided are bioresorbable nanoparticles prepared without the use of organic solvents, and methods for therapeutically using such bioresorbable nanoparticles.
    Type: Application
    Filed: September 13, 2012
    Publication date: January 10, 2013
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Boris Polyak, Michael Chorny, Ilia Fishbein, Ivan Alferiev, Gennady Friedman, Darryl Williams
  • Publication number: 20120316295
    Abstract: A modified polyurethane including a lipid substituent pendant from at least one urethane nitrogen and/or at least one carbon atom of the modified polyurethane, methods of preparing modified polyurethanes and the use thereof as an implantable biomaterial.
    Type: Application
    Filed: June 4, 2012
    Publication date: December 13, 2012
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Ivan Alferiev, Stanley J. Stachelek
  • Publication number: 20120251586
    Abstract: Methods for protecting biomaterials comprise attaching CD47 or Ig domain thereof to the surface of the biomaterial, thereby inhibiting or reducing immune cell attachment and/or immune cell-mediated damage to the biomaterial. Also provided are kits for practicing these methods and the protected biomaterials.
    Type: Application
    Filed: April 9, 2010
    Publication date: October 4, 2012
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Stanley J. Stachelek, Dennis Discher, Robert J. Levy, Richard Tsai
  • Patent number: 8263127
    Abstract: A water-soluble photo-activatable polymer including: a photo-activatable group adapted to be activated by an irradiation source and to form a covalent bond between the water-soluble photo-activatable polymer and a matrix having at least one carbon; a reactive group adapted to covalently react with a biomaterial for subsequent delivery of the biomaterial to a cell; a hydrophilic group; and a polymer precursor. A composition including a monomolecular layer of the water-soluble photo-activatable polymer and a matrix having at least one carbon, wherein the monomolecular layer is covalently attached to the matrix by a covalent bond between the photo-activatable group and the at least one carbon. The composition further includes a biomaterial having a plurality of active groups, wherein the biomaterial is covalently attached to the monomolecular layer by covalent bonding between the active groups and reactive groups. Also provided is a method for delivery of a biomaterial to a cell.
    Type: Grant
    Filed: December 8, 2009
    Date of Patent: September 11, 2012
    Assignee: The Children's Hospital of Philadelphia
    Inventors: Ivan Alferiev, Ilia Fishbein, Michael Chorny, Robert J. Levy, Benjamin Yellen, Darryl Williams
  • Publication number: 20120184941
    Abstract: The invention features devices, systems, and methods for targeted delivery of therapeutic agents in magnetic particle carriers to desired locations on tissue in the body. The systems and methods utilize at least one device comprising a source of magnetization, and at least one device comprising a magnetic or magnetizable material, to facilitate close tissue apposition and sealing, and to facilitate site-specific delivery of magnetic particles comprising therapeutic agents.
    Type: Application
    Filed: July 21, 2010
    Publication date: July 19, 2012
    Applicant: The Children's Hosital of Philadelphia
    Inventors: Robert J. Levy, Michael Chorny, Jeanne M. Connolly
  • Publication number: 20120141419
    Abstract: A method and a composition for delivery of a biomaterial to an animal cell or a tissue, the composition includes (a) a biomaterial; (b) a biodegradable cross-linker portion having a hydrolyzable bond, wherein the biodegradable cross-linker portion is covalently bound to the biomaterial; and (c) a substrate, wherein the substrate is covalently bound to the biodegradable cross-linker portion, provided that the biodegradable cross-linker is adapted to hydrolyze by breaking the hydrolyzable bond and thereby release and deliver the biomaterial. A process of making the composition is also provided.
    Type: Application
    Filed: November 29, 2011
    Publication date: June 7, 2012
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Ivan Alferiev, Robert J. Levy, Ilia Fishbein
  • Patent number: 8193290
    Abstract: A modified polyurethane including a lipid substituent from at least one urethane nitrogen and/or at least carbon atom of the modified polyurethane.
    Type: Grant
    Filed: June 20, 2008
    Date of Patent: June 5, 2012
    Assignee: The Children's Hospital of Philadelphia
    Inventors: Robert J. Levy, Ivan Alferiev, Stanley J. Stachelek
  • Publication number: 20120089222
    Abstract: A polymer is provided according to structure (I) wherein Y is a thiol-reactive group selected from one or more of the following moieties and Z is an ionogenic group selected from one or more of the following moieties. The surface of a polymeric substrate is modified by contacting the surface with a polymer according to structure II or structure III and exposing the surface to ultraviolet light.
    Type: Application
    Filed: April 9, 2010
    Publication date: April 12, 2012
    Applicant: THE CHILDREN'S HOSPITAL OF PHILADELPHIA
    Inventors: Robert J. Levy, Ivan Alferiev, Stanley J. Stachelek
  • Patent number: 8084435
    Abstract: A method and a composition for delivery of a biomaterial to an animal cell or a tissue, the composition includes (a) a biomaterial; (b) a biodegradable cross-linker portion having a hydrolyzable bond, wherein the biodegradable cross-linker portion is covalently bound to the biomaterial; and (c) a substrate, wherein the substrate is covalently bound to the biodegradable cross-linker portion, provided that the biodegradable cross-linker is adapted to hydrolyze by breaking the hydrolyzable bond and thereby release and deliver the biomaterial. A process of making the composition is also provided.
    Type: Grant
    Filed: May 3, 2007
    Date of Patent: December 27, 2011
    Assignee: The Children's Hospital of Philadelphia
    Inventors: Ivan Alferiev, Robert J. Levy, Ilia Fishbein
  • Publication number: 20110076767
    Abstract: A particle including a matrix-forming agent and a polyelectrolyte-amphiphilic agent adduct wherein the polyelectrolyte-amphiphilic agent adduct is in physical communication with the matrix-forming agent. The particle further includes a coated magnetic field-responsive agent and a biomaterial. Methods of making the particle are provided. Also provided are methods of delivery of the biomaterial to a target cell or a target tissue including administering the particle having the matrix-forming agent, polyelectrolyte-amphiphilic agent adduct, the coated magnetic field-responsive agent and the biomaterial; providing a magnetic device associated with the target cell or the target tissue; applying a magnetic force to the particle; and guiding the particle toward the magnetic device by the magnetic force.
    Type: Application
    Filed: December 6, 2010
    Publication date: March 31, 2011
    Applicant: The Children's Hospital of Philadelphia
    Inventors: Michael Chrony, Boris Polyak, Ilia Fishbein, Ivan Alferiev, Robert J. Levy
  • Patent number: 7846201
    Abstract: A particle including a matrix-forming agent and a polyelectrolyte-amphiphilic agent adduct wherein the polyelectrolyte-amphiphilic agent adduct is in physical communication with the matrix-forming agent. The particle further includes a coated magnetic field-responsive agent and a biomaterial. Methods of making the particle are provided. Also provided are methods of delivery of the biomaterial to a target cell or a target tissue including administering the particle having the matrix-forming agent, polyelectrolyte-amphiphilic agent adduct, the coated magnetic field-responsive agent and the biomaterial; providing a magnetic device associated with the target cell or the target tissue; applying a magnetic force to the particle; and guiding the particle toward the magnetic device by the magnetic force.
    Type: Grant
    Filed: October 14, 2005
    Date of Patent: December 7, 2010
    Assignee: The Children's Hospital of Philadelphia
    Inventors: Michael Chorny, Boris Polyak, Ilia Fishbein, Ivan Alferiev, Robert J. Levy
  • Publication number: 20100260780
    Abstract: Systems and methods for magnetic targeting of therapeutic particles are provided. Therapeutic particles comprise one or more magnetic or magnetizable materials and at least one therapeutic agent. Therapeutic particles are specifically targeted using uniform magnetic fields capable of magnetizing magnetizable materials, and can be targeted to particular locations in the body, or can be targeted for capture, containment, and removal. Therapeutic particles can comprise antioxidant enzymes, and can be targeted to cells to protect the cells from oxidative damage.
    Type: Application
    Filed: December 15, 2009
    Publication date: October 14, 2010
    Applicants: The Children's Hospital of Philadelphia, The Trustees of the University of Pennsylvania
    Inventors: Robert J. Levy, Michael Chorny, Vladimir Muzykantov, Elizabeth Hood