Patents Assigned to The University of Texas Systems
  • Patent number: 11864911
    Abstract: Methods, apparatuses, systems, and implementations for inductive heating of a foreign metallic implant are disclosed. A foreign metallic implant may be heated via AMF pulses to ensure that the surface of the foreign metallic implant heats in a uniform manner. As the surface temperature of the foreign metallic implant rises, acoustic signatures may be detected by acoustic sensors that may indicate that tissue may be heating to an undesirable level approaching a boiling point. Once these acoustic signatures are detected, the AMF pulses may be shut off for a time period to allow the surface temperature of the implant to cool before applying additional AMF pulses. In this manner, the surface temperature of a foreign metallic implant may be uniformly heated to a temperature adequate to treat bacterial biofilm buildup on the surface of the foreign metallic implant without damaging surrounding tissue.
    Type: Grant
    Filed: November 22, 2022
    Date of Patent: January 9, 2024
    Assignee: The Board Of Regents Of The University Of Texas System
    Inventors: Rajiv Chopra, David Greenberg, Yonatan Chatzinoff
  • Publication number: 20240002849
    Abstract: Described are compounds and methods useful in the treatment of Fuchs' Endothelial Corneal Dystrophy (FECD).
    Type: Application
    Filed: November 8, 2022
    Publication date: January 4, 2024
    Applicants: The Board of Regents of The University of Texas System, University of Massachusetts
    Inventors: Venkateswara V. MOOTHA, David R. COREY, Jiaxin HU, Jonathan K. WATTS
  • Patent number: 11858816
    Abstract: Disclosed herein are dendritically porous three-dimensional structures, including hierarchical dendritically porous three-dimensional structures. The structures include metal foams and graphite structures, and are useful in energy storage devices as well as chemical catalysis.
    Type: Grant
    Filed: August 9, 2022
    Date of Patent: January 2, 2024
    Assignee: Board of Regents, The University of Texas System
    Inventors: Weigu Li, Donglei Fan
  • Patent number: 11858956
    Abstract: The present disclosure is concerned with 6-aza-nucleoside prodrugs that are capable of inhibiting a viral infection and methods of treating viral infections such as, for example, human immunodeficiency virus (HIV), human papillomavirus (HPV), chicken pox, infectious mononucleosis, mumps, measles, rubella, shingles, ebola, viral gastroenteritis, viral hepatitis, viral meningitis, human metapneumovirus, human parainfluenza virus type 1, parainfluenza virus type 2, parainfluenza virus type 3, respiratory syncytial virus, viral pneumonia, yellow fever virus, tick-borne encephalitis virus, Chikungunya virus (CHIKV), Venezuelan equine encephalitis (VEEV), Eastern equine encephalitis (EEEV), Western equine encephalitis (WEEV), dengue (DENV), influenza, West Nile virus (WNV), zika (ZIKV), Middle East Respiratory Syndromes (MERS), Severe Acute Respiratory Syndrome (SARS), and coronavirus disease 2019 (COVID-19), using these compounds.
    Type: Grant
    Filed: December 17, 2021
    Date of Patent: January 2, 2024
    Assignees: Southern Research Institute, Oregon Health & Science University, Washington University in St. Louis, Board of Regents, The University of Texas System
    Inventors: Omar Moukha-Chafiq, Ashish Kumar Pathak, Shuklendu D. Karyakarte, Larry D. Bratton, Corinne E. Augelli-Szafran, Michael Diamond, Pei Yong Shi, Alec Jay Hirsch, Jessica Lee Smith, Daniel Streblow, Nicole Haese, Baoling Ying
  • Patent number: 11858884
    Abstract: Disclosed herein are methods for modulating an amount or activity of a gene or a gene product in a cell. The methods herein may comprise contacting a cell with a therapeutic agent assembled with a lipid composition, which lipid composition may comprise a dendrimer or dendron which may comprise one or more degradable diacyl group, in which may result in modulating the amount or activity of the gene or the gene product in the cell. The therapeutic agent modulating a gene or gene product in a cell may be sufficient to treat a disease or disorder in a subject. Further disclosed herein are pharmaceutical compositions, kits, and lipid compositions for modulating an amount or activity of a gene or a gene product in a cell.
    Type: Grant
    Filed: December 30, 2021
    Date of Patent: January 2, 2024
    Assignee: The Board of Regents of The University of Texas System
    Inventors: Daniel J. Siegwart, Kejin Zhou
  • Patent number: 11857701
    Abstract: A non-synthetic, hydrophilic, biodegradable, biocompatible polysaccharide based non-toxic anti-adhesion hydrogel barrier is disclosed herein. The barrier of the present invention is formed by constructing a unique interpenetrating, crosslinked network with a unique porosity. Furthermore, the barrier of the present invention is comprised of tunable biopolymers for controllable mechanical robustness and degradation. The barrier of the present invention effectively reduces unwanted adhesions using non-synthetic components.
    Type: Grant
    Filed: May 22, 2023
    Date of Patent: January 2, 2024
    Assignee: Board Of Regents, The University Of Texas System
    Inventors: Sarah Mayes, Christine E. Schmidt
  • Publication number: 20230416457
    Abstract: The present disclosure relates to polymers which contain a hydrophobic and hydrophilic segment which is sensitive to pH as well as a metal chelating group. In some aspects, the metal chelating group is chelated to a metal ion capable of positron emission. In some aspects, the polymers form a micelle which is sensitive to pH and results in a change in fluorescence based upon the particular pH. In some aspects, the disclosure also provides methods of using the polymers for the imaging of cellular or extracellular environment or delivering a drug.
    Type: Application
    Filed: January 24, 2023
    Publication date: December 28, 2023
    Applicant: The Board of Regents of The University of Texas System
    Inventors: Jinming GAO, Gang HUANG, Tian ZHAO, Baran D. SUMER, Xiankai SUN
  • Publication number: 20230414786
    Abstract: The present methods use gene therapy to confer inducible nitric oxide synthase (iNOS) expression solely in the tumor space, using focused ultrasound targeting. NOS catalyzes the reaction that generates nitric oxide (NO), a potent endogenous vasodilator. Microbubble-mediated non-viral delivery overcomes major barriers associated with non-viral NO gene therapy. The methods increase tumor perfusion and compound the efficacy of a vast array of chemotherapy, radiotherapy, and immune-based treatments.
    Type: Application
    Filed: April 19, 2023
    Publication date: December 28, 2023
    Applicants: Board of Regents, The University of Texas System, The University of Chicago
    Inventors: Shashank R. Sirsi, Aditi Bellary, Chance Nowak, Leonidas Bleris, Sonia L. Hernandez
  • Publication number: 20230416697
    Abstract: Described are nicotine-degrading enzyme variants that exhibit increased nicotine-degrading activity and/or decreased immunogenicity relative to the wild-type NicA2 and NOX enzymes, compositions comprising the variants, and methods using them.
    Type: Application
    Filed: March 2, 2023
    Publication date: December 28, 2023
    Applicants: Antidote Therapeutics, Inc., Board of Regents, The University of Texas System
    Inventors: Matthew W. KALNIK, Thomas THISTED, Everett STONE, Charles C. REED, Max RODNICK-SMITH
  • Patent number: 11850970
    Abstract: Provided, in one aspect, is a battery pack. The battery pack, in accordance with this aspect, includes an enclosure. The battery pack, in accordance with this aspect, further includes an intake port attached to a first section of the enclosure, the intake port coupleable to a source of cooling fluid, a first exhaust port attached to a third section of the enclosure and a second exhaust port coupled to a fourth section of the enclosure. The battery pack of this aspect further includes a first set of battery cells located within the enclosure in the first and third sections, the first set of battery cells separated by one or more first fluid passageways and a second set of battery cells located within the enclosure in a second and the fourth sections, the second set of battery cells separated by one or more second fluid passageways.
    Type: Grant
    Filed: August 18, 2020
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Jie Zhang, Yuanzhi Liu
  • Patent number: 11851464
    Abstract: Certain embodiments are directed to NEIL2 compositions and method of using NEIL2 composition to treat subjects in need of such treatment.
    Type: Grant
    Filed: April 11, 2022
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Tapas Hazra, Sanjiv Sur, Ashok Chopra
  • Patent number: 11852654
    Abstract: Illustrative embodiments provide an apparatus comprising a substrate comprising a cantilever, a bottom electrode on the substrate, a bottom piezoelectric transducer on the bottom electrode such that the bottom electrode is between the substrate and the bottom piezoelectric transducer, a middle electrode on the bottom piezoelectric transducer such that the bottom piezoelectric transducer is between the bottom electrode and the middle electrode, a top piezoelectric transducer on the middle electrode such that the middle electrode is between the bottom piezoelectric transducer and the top piezoelectric transducer, and a top electrode on the top piezoelectric transducer, such that the top piezoelectric transducer is between the middle electrode and the top electrode. Illustrative embodiments also provide a method of making the apparatus and a method of using the apparatus for atomic force microscopy.
    Type: Grant
    Filed: July 17, 2020
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Seyed Omid Reza Moheimani, Mohammad Mahdavi
  • Patent number: 11851712
    Abstract: Methods for increasing immune therapy response and predicting likelihood of cancer metastasis by analyzing the expression of genes associated with replication stress response. In some aspects, cancers are treated with immune checkpoint inhibitors and/or MEK inhibitors. Methods for selecting patients by analyzing the expression of genes associated with a defect in replication stress response are also provided.
    Type: Grant
    Filed: March 6, 2019
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Daniel McGrail, Shiaw-Yih Lin, Patrick Pilie, Eric Jonasch, Curtis Chun-Jen Lin
  • Patent number: 11850184
    Abstract: The present application relates to systems and methods for altering temperature in a mammalian body. Optionally, the systems and methods can be used to lower or raise core body temperature of a mammalian subject. Optionally, the systems and methods can be used to lower or raise the temperature of glabrous skin of a mammalian subject.
    Type: Grant
    Filed: June 16, 2021
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Kenneth R. Diller, Daniel W. Hensley, Timothy T. Diller
  • Patent number: 11851699
    Abstract: Disclosed are methods for isothermal nucleic acid amplification and detection.
    Type: Grant
    Filed: February 5, 2021
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Andrew Ellington, Yu Sherry Jiang, Sanchita Bhadra, Bingling Li, Randy Allen Hughes, Yan Du, Jimmy Gollihar
  • Patent number: 11855411
    Abstract: In one embodiment, a nanobeam cavity device includes an elongated waveguide having a central optical cavity, first and second lateral substrates that are positioned on opposed lateral sides of the waveguide, and carrier-injection beams that extend from the first and second lateral substrates to the central optical cavity of the elongated waveguide.
    Type: Grant
    Filed: July 7, 2021
    Date of Patent: December 26, 2023
    Assignee: Board of Regents, The University of Texas System
    Inventors: Weidong Zhou, Xiaochen Ge
  • Publication number: 20230408499
    Abstract: Disclosed herein are devices, apparatus, systems, methods and kits for performing immunoassay tests on a sample. The A sensing apparatus is provided for detecting a plurality of different target analytes in a sample. The apparatus may comprise an array of sensing devices provided on a substrate, each sensing device in the array comprising a working electrode having (1) semiconducting nanostructures disposed thereon and (2) a capture reagent coupled to the semiconducting nanostructures that selectively binds to a different target analyte in the sample. The apparatus may also comprise sensing circuitry that (1) simultaneously detects changes to electron and ion mobility and charge accumulation in the array of sensing devices when the capture reagents in the array of sensing devices selectively bind to the plurality of different target analytes, and (2) determines the presence and concentrations of the plurality of different target analytes in the sample based on the detected changes.
    Type: Application
    Filed: August 2, 2023
    Publication date: December 21, 2023
    Applicants: EnLiSense LLC, Board of Regents, The University of Texas System
    Inventors: Sriram Muthukumar, Shalini Prasad
  • Publication number: 20230406825
    Abstract: Compounds and methods are disclosed for the treatment and/or amelioration of breast cancer. The compounds and methods may treat and/or ameliorate breast cancer by way of activity on isocitrate dehydrogenase 1 (IDH1). The breast cancer may be estrogen receptor positive (ER+) breast cancer. Also disclosed are compositions, including pharmaceutical compositions, for the treatment and/or amelioration of breast cancer.
    Type: Application
    Filed: November 2, 2021
    Publication date: December 21, 2023
    Applicant: The Board of Regents of The University of Texas System
    Inventors: Murat Can Cobanoglu, Ganesh Raj
  • Publication number: 20230405191
    Abstract: Antimicrobial catheters and medical devices are provided. In some aspects, a low durometer aliphatic polyether polyurethane may be impregnated with a first antimicrobial agent (e.g., minocycline and rifampin) and coated with a second antimicrobial agent (e.g., chlorhexidine, gendine, or gardine). The antimicrobial catheters may display improved flexibility and resistance to kinking. Methods of producing the antimicrobial catheters are also provided.
    Type: Application
    Filed: August 25, 2023
    Publication date: December 21, 2023
    Applicant: Board of Regents, The University of Texas System
    Inventors: Joel ROSENBLATT, Issam RAAD
  • Publication number: 20230407223
    Abstract: A Micro-Well Array Plates (MWAP) assembly for high throughput microfluidic devices for studying cells and method of manufacturing thereof are provided. The MWAP assembly includes a top plate having a plurality of macro-wells arranged in an array within a frame. The MWAP assembly also includes a bottom plate operable to be secured to the bottom surface of the frame, the bottom plate having a plurality of arrays of micro-wells. The MWAP assembly includes a well grid formed when the bottom plate is secured to the top plate via the plurality of macro-wells and the plurality of arrays micro-wells. The well grid with the plurality of macro-wells and the plurality of arrays micro-wells enable visualization of cells via a high throughput.
    Type: Application
    Filed: October 22, 2021
    Publication date: December 21, 2023
    Applicant: The Board of Regents of The University of Texas System
    Inventors: Robert M. BACHOO, Digant P. DAVÉ