Patents by Inventor Ryan Scott Cormier

Ryan Scott Cormier 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: 20250155413
    Abstract: Disclosed herein are methods, systems, and kits for determining the total amount of a coating polymer in a dosage form. The coating polymer may be a polydisperse polymer having a plurality of molecular weights. The instant disclosure enables to accurately, reliably, and efficiently determine the total amount of a polydisperse polymer in a dosage form that includes one or more other constituents that have a molecular weight range that overlap with at least some of the polydisperse polymer's molecular weight.
    Type: Application
    Filed: January 14, 2025
    Publication date: May 15, 2025
    Inventors: William Derek Bush, Ryan Scott Cormier, Karunakar Sukuru
  • Patent number: 12241877
    Abstract: Disclosed herein are methods, systems, and kits for determining the total amount of a coating polymer in a dosage form. The coating polymer may be a polydisperse polymer having a plurality of molecular weights. The instant disclosure enables to accurately, reliably, and efficiently determine the total amount of a polydisperse polymer in a dosage form that includes one or more other constituents that have a molecular weight range that overlap with at least some of the polydisperse polymer's molecular weight.
    Type: Grant
    Filed: April 7, 2020
    Date of Patent: March 4, 2025
    Assignee: R.P. Scherer Technologies, LLC
    Inventors: William Derek Bush, Ryan Scott Cormier, Karunakar Sukuru
  • Publication number: 20220178886
    Abstract: Disclosed herein are methods, systems, and kits for determining the total amount of a coating polymer in a dosage form. The coating polymer may be a polydisperse polymer having a plurality of molecular weights. The instant disclosure enables to accurately, reliably, and efficiently determine the total amount of a polydisperse polymer in a dosage form that includes one or more other constituents that have a molecular weight range that overlap with at least some of the polydisperse polymer's molecular weight.
    Type: Application
    Filed: April 7, 2020
    Publication date: June 9, 2022
    Inventors: William Derek Bush, Ryan Scott Cormier, Karunakar Sukuru
  • Patent number: 10588860
    Abstract: The present invention comprises poly(vinyl benzoate) nanoparticle suspensions as molecular carriers. These nanoparticles can be formed by nanoprecipitation of poly(vinyl benzoate) in water using Pluronic F68 as surfactant, to create spherical nanostructures measuring about 200-250 nm in diameter which are stable in phosphate buffer and blood serum, and only slowly degrade in the presence of esterases. Kinetics experiments in phosphate buffer indicate that 78% of the coumarin-6 was encapsulated within the polymer matrix of the nanoparticle, and the residual 22% of coumarin-6 was surface-bound and quickly released. The nanoparticles are non-toxic in vitro towards human epithelial cells (IC50>1000 ?g/mL) and primary bovine primary aortic endothelial cells (IC50>500 ?g/mL), and exert non-observable bactericidal activity against a selection of representative test microbes (MIC>250 ?g/mL).
    Type: Grant
    Filed: August 4, 2016
    Date of Patent: March 17, 2020
    Assignee: University of South Florida
    Inventors: Edward Turos, Raphael Labruere, Ryan Scott Cormier, Renaud Sicard
  • Publication number: 20160338962
    Abstract: The present invention comprises poly(vinyl benzoate) nanoparticle suspensions as molecular carriers. These nanoparticles can be formed by nanoprecipitation of poly(vinyl benzoate) in water using Pluronic F68 as surfactant, to create spherical nanostructures measuring about 200-250 nm in diameter which are stable in phosphate buffer and blood serum, and only slowly degrade in the presence of esterases. Kinetics experiments in phosphate buffer indicate that 78% of the coumarin-6 was encapsulated within the polymer matrix of the nanoparticle, and the residual 22% of coumarin-6 was surface-bound and quickly released. The nanoparticles are non-toxic in vitro towards human epithelial cells (IC50>1000 ?g/mL) and primary bovine primary aortic endothelial cells (IC50>500 ?g/mL), and exert non-observable bactericidal activity against a selection of representative test microbes (MIC>250 ?g/mL).
    Type: Application
    Filed: August 4, 2016
    Publication date: November 24, 2016
    Applicant: University of South Florida
    Inventors: Edward Turos, Raphael Labruere, Ryan Scott Cormier, Renaud Sicard
  • Patent number: 9433581
    Abstract: The present invention comprises poly(vinyl benzoate) nanoparticle suspensions as molecular carriers. These nanoparticles can be formed by nanoprecipitation of poly(vinyl benzoate) in water using Pluronic F68 as surfactant, to create spherical nanostructures measuring about 200-250 nm in diameter which are stable in phosphate buffer and blood serum, and only slowly degrade in the presence of esterases. Kinetics experiments in phosphate buffer indicate that 78% of the coumarin-6 was encapsulated within the polymer matrix of the nanoparticle, and the residual 22% of coumarin-6 was surface-bound and quickly released. The nanoparticles are non-toxic in vitro towards human epithelial cells (IC50>1000 ?g/mL) and primary bovine primary aortic endothelial cells (IC50>500 ?g/mL), and exert non-observable bactericidal activity against a selection of representative test microbes (MIC>250 ?g/mL).
    Type: Grant
    Filed: May 20, 2013
    Date of Patent: September 6, 2016
    Assignee: University of South Florida
    Inventors: Edward Turos, Raphael Labruere, Ryan Scott Cormier, Renaud Sicard
  • Publication number: 20130243832
    Abstract: The present invention comprises poly(vinyl benzoate) nanoparticle suspensions as molecular carriers. These nanoparticles can be formed by nanoprecipitation of poly(vinyl benzoate) in water using Pluronic F68 as surfactant, to create spherical nanostructures measuring about 200-250 nm in diameter which are stable in phosphate buffer and blood serum, and only slowly degrade in the presence of esterases. Kinetics experiments in phosphate buffer indicate that 78% of the coumarin-6 was encapsulated within the polymer matrix of the nanoparticle, and the residual 22% of coumarin-6 was surface-bound and quickly released. The nanoparticles are non-toxic in vitro towards human epithelial cells (IC50>1000 ?g/mL) and primary bovine primary aortic endothelial cells (IC50>500 ?g/mL), and exert non-observable bactericidal activity against a selection of representative test microbes (MIC >250 ?g/mL).
    Type: Application
    Filed: May 20, 2013
    Publication date: September 19, 2013
    Applicant: University of South Florida
    Inventors: Edward Turos, Raphael Labruere, Ryan Scott Cormier, Renaud Sicard
  • Patent number: 8143398
    Abstract: Bartonella species are facultative intracellular pathogens responsible for a range of diseases in animals and in humans. A selection of N-acyl ciprofloxacin analogues, chemically synthesized from ciprofloxacin, have been tested in vitro for activity against Bartonella species as models for therapeutic development. Nine Bartonella strains, including five of B. henselae, two of B. quintana, and one each of B. elizabethae and B. vinsonii, have been tested for susceptibility to different N-acyl ciprofloxacin derivatives. Several techniques have been used to test the in vitro antibacterial activity of the derivatives. Seven of them, labeled RC4-125, RC4-143, RC4-147, RC5-28, RC5-29, RC5-32 and RC5-69 showed significant intracellular anti-Bartonella activity. These synthetically derived N-acyl ciprofloxacin derivatives may be useful in the therapeutic treatment of infections caused by Bartonella.
    Type: Grant
    Filed: February 22, 2011
    Date of Patent: March 27, 2012
    Assignee: University of South Florida
    Inventors: Edward Turos, Burt E. Anderson, Ryan Scott Cormier, John C. Thomas, Rebecca J. Kapolka, Glenn Roma