Patents by Inventor Anna Wysinski

Anna Wysinski 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: 12624333
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more sugar alcohols, humic acids and/or fulvic acids and one or more maltodextrins, monosaccharides, disaccharides, oxidation control components and/or UV protectants.
    Type: Grant
    Filed: December 18, 2017
    Date of Patent: May 12, 2026
    Assignee: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Megan Fruchte, Mike Jerry Schweiner, Jarrod Leland, Anna Wysinski, Emily Looze, Kimberley Clarke, William Pasutti
  • Publication number: 20250092278
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more maltodextrins having a dextrose equivalent value of about 15 to about 20.
    Type: Application
    Filed: November 7, 2024
    Publication date: March 20, 2025
    Applicant: NOVONESIS PLANT BIOSOLUTIONS A/S
    Inventors: Kenneth Edmund KELLAR, Yaowei KANG, Claire PELLIGRA, Emily BARNETT, Caitlin BURKLEW, Anna WYSINSKI, Jarrod E. LELAND, Ben DOUGHAN, Michael Harrison FETHE, Ashley Delanie TRAHAN, David GREENSHIELDS, Kristi WOODS
  • Patent number: 12173167
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more maltodextrins having a dextrose equivalent value of about 15 to about 20.
    Type: Grant
    Filed: June 2, 2022
    Date of Patent: December 24, 2024
    Assignee: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Patent number: 12116488
    Abstract: The present disclosure provides non-aqueous inoculant compositions and methods for enhancing the survival and/or stability of microbial spores in an inoculant composition. In some embodiments, inoculant compositions of the present disclosure comprise microbial spores, one or more dispersants, one or more dust suppressants and a solid non-aqueous carrier.
    Type: Grant
    Filed: October 26, 2020
    Date of Patent: October 15, 2024
    Assignee: Novonesis Plant Biosolutions A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, Dave Greenshields, Kristi Woods
  • Publication number: 20220380620
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more maltodextrins having a dextrose equivalent value of about 15 to about 20.
    Type: Application
    Filed: June 2, 2022
    Publication date: December 1, 2022
    Applicant: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Patent number: 11472981
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more maltodextrins having a dextrose equivalent value of about 15 to about 20.
    Type: Grant
    Filed: September 7, 2016
    Date of Patent: October 18, 2022
    Assignee: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Publication number: 20210037831
    Abstract: The present disclosure provides non-aqueous inoculant compositions and methods for enhancing the survival and/or stability of microbial spores in an inoculant composition. In some embodiments, inoculant compositions of the present disclosure comprise microbial spores, one or more dispersants, one or more dust suppressants and a solid non-aqueous carrier.
    Type: Application
    Filed: October 26, 2020
    Publication date: February 11, 2021
    Applicant: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Patent number: 10820594
    Abstract: The present disclosure provides non-aqueous inoculant compositions and methods for enhancing the survival and/or stability of microbial spores in an inoculant composition. In some embodiments, inoculant compositions of the present disclosure comprise microbial spores, one or more dispersants, one or more dust suppressants and a solid non-aqueous carrier.
    Type: Grant
    Filed: September 8, 2016
    Date of Patent: November 3, 2020
    Assignee: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Publication number: 20200085065
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition.
    Type: Application
    Filed: December 18, 2017
    Publication date: March 19, 2020
    Applicant: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Megan Fruchte, Mike Jerry Schweiner, Jarrod Leland, Anna Wysinski, Emily Looze, Kimberley Clarke, William Pasutti
  • Publication number: 20190029262
    Abstract: The present disclosure provides stable inoculant compositions and methods for enhancing the survival and/or stability of microorganisms in an inoculant composition. In some embodiments, the microorganisms in an inoculant compositions are stabilized by the presence of one or more maltodextrins having a dextrose equivalent value of about 15 to about 20.
    Type: Application
    Filed: September 7, 2016
    Publication date: January 31, 2019
    Applicant: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods
  • Publication number: 20180279624
    Abstract: The present disclosure provides non-aqueous inoculant compositions and methods for enhancing the survival and/or stability of microbial spores in an inoculant composition. In some embodiments, inoculant compositions of the present disclosure comprise microbial spores, one or more dispersants, one or more dust suppressants and a solid non-aqueous carrier.
    Type: Application
    Filed: September 8, 2016
    Publication date: October 4, 2018
    Applicant: NOVOZYMES BIOAG A/S
    Inventors: Kenneth Edmund Kellar, Yaowei Kang, Claire Pelligra, Emily Barnett, Caitlin Burklew, Anna Wysinski, Jarrod E. Leland, Ben Doughan, Michael Harrison Fethe, Ashley Delanie Trahan, David Greenshields, Kristi Woods