Patents by Inventor Sandra ROTHEMUND

Sandra ROTHEMUND 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: 11697795
    Abstract: The method of culturing cells disclosed herein includes printing cells onto a substrate that includes cell adhesive regions and cell repulsive regions. The cells are suspended in a printing medium to create a cell suspension, and a volume of the cell suspension is loaded into a printer. A cell adhesive region of the substrate is aligned beneath the printing channel of the printer, and droplets of the cell suspension are dispensed from the printing channel directly onto the cell adhesive region. Contact of the dispensed droplets with cell repulsive regions of the substrate is limited, either by targeting of the droplets to the cell adhesive regions, by repulsions generated by the cell repulsive areas, or both. The cells adhere to the cell adhesive regions to create a cell pattern, and are maintained thereafter in a physiologically suitable environment.
    Type: Grant
    Filed: August 7, 2019
    Date of Patent: July 11, 2023
    Assignees: University of Central Florida Research Foundation, Inc., Hesperos, Inc.
    Inventors: James J. Hickman, Sandra Rothemund, Megan Aubin, Frank Alexander
  • Patent number: 10815340
    Abstract: The invention relates to a polymer for tissue engineering from biodegradable polyphosphazenes, having photopolymerizable side groups, wherein the side groups of the polyphosphazenes are formed exclusively from amino acids and/or amino acid derivatives, which are bonded to the backbone of the polyphosphazene via the amino group of the amino acid and to a spacer attached to the acid group with a carbon chain of length m, which has a vinyl group at the free end, wherein m=0 to m=10.
    Type: Grant
    Filed: June 16, 2015
    Date of Patent: October 27, 2020
    Assignees: UNIVERSITÄT LINZ, BIOMED-ZET LIFE SCIENCE GmbH
    Inventors: Ian Teasdale, Sandra Rothemund, Tamara Aigner, Aiztiber Iturmendi, Oliver Brueggemann, Klaus Schroeder, Gbenga Olawale, Florian Hildner, Maria Rigau De Llobet
  • Publication number: 20200048602
    Abstract: The method of culturing cells disclosed herein includes printing cells onto a substrate that includes cell adhesive regions and cell repulsive regions. The cells are suspended in a printing medium to create a cell suspension, and a volume of the cell suspension is loaded into a printer. A cell adhesive region of the substrate is aligned beneath the printing channel of the printer, and droplets of the cell suspension are dispensed from the printing channel directly onto the cell adhesive region. Contact of the dispensed droplets with cell repulsive regions of the substrate is limited, either by targeting of the droplets to the cell adhesive regions, by repulsions generated by the cell repulsive areas, or both. The cells adhere to the cell adhesive regions to create a cell pattern, and are maintained thereafter in a physiologically suitable environment.
    Type: Application
    Filed: August 7, 2019
    Publication date: February 13, 2020
    Inventors: James J. Hickman, Sandra Rothemund, Megan Aubin, Frank Alexander
  • Publication number: 20170183453
    Abstract: The invention relates to a polymer for tissue engineering from biodegradable polyphosphazenes, having photopolymerizable side groups, wherein the side groups of the polyphosphazenes are formed exclusively from amino acids and/or amino acid derivatives, which are bonded to the backbone of the polyphosphazene via the amino group of the amino acid and to a spacer attached to the acid group with a carbon chain of length m, which has a vinyl group at the free end, wherein m=0 to m=10.
    Type: Application
    Filed: June 16, 2015
    Publication date: June 29, 2017
    Inventors: Ian TEASDALE, Sandra ROTHEMUND, Tamara AIGNER, Aiztiber ITURMENDI, Oliver BRUEGGEMANN, Klaus SCHROEDER, Gbenga OLAWALE, Florian HILDNER, Maria RIGAU DE LLOBET