Patents by Inventor Nancy Parenteau

Nancy Parenteau 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: 20210278407
    Abstract: A method for identifying T-cell epitopes which can be used to elicit T cells targeting cells capable of regenerating cancers is disclosed. The method identifies T-cell epitopes with a high curative potential, high potency and high probability of T cell recognition (HP). The method includes: (i) identifying high curative potential tumor protein target i.e., identifying HP-TP; (ii) identifying peptide sequences within the protein sequence of an HP-TP that have a high probability of eliciting T cell killing; and (iii) qualifying the sequence specificity based on the fold difference between the specific target and non-targets. The identified T-cell epitopes include a core sequence of 9 amino acids homologous to a sequence expressed within a qualified HP-TP. The T-cell epitopes can be used in a method for reprograming T cells to selectively attack tumor cells capable of perpetuating a tumor and treating patients, for example, cancer patients.
    Type: Application
    Filed: May 24, 2021
    Publication date: September 9, 2021
    Inventors: Nancy Parenteau, Joseph Laning, Janet Young
  • Patent number: 11016091
    Abstract: A method for identifying T-cell epitopes which can be used to elicit T cells targeting cells capable of regenerating cancers is disclosed. The method identifies T-cell epitopes with a high curative potential, high potency and high probability of T cell recognition (HP). The method includes: (i) identifying high curative potential tumor protein target i.e., identifying HP-TP; (ii) identifying peptide sequences within the protein sequence of an HP-TP that have a high probability of eliciting T cell killing; and (iii) qualifying the sequence specificity based on the fold difference between the specific target and non-targets. The identified T-cell epitopes include a core sequence of 9 amino acids homologous to a sequence expressed within a qualified HP-TP. The T-cell epitopes can be used in a method for reprograming T cells to selectively attack tumor cells capable of perpetuating a tumor and treating patients, for example, cancer patients.
    Type: Grant
    Filed: June 10, 2019
    Date of Patent: May 25, 2021
    Assignee: VERIK BIO, INC.
    Inventors: Nancy Parenteau, Joseph Laning, Janet Young
  • Publication number: 20190353655
    Abstract: A method for identifying T-cell epitopes which can be used to elicit T cells targeting cells capable of regenerating cancers is disclosed. The method identifies T-cell epitopes with a high curative potential, high potency and high probability of T cell recognition (HP). The method includes: (i) identifying high curative potential tumor protein target i.e., identifying HP-TP; (ii) identifying peptide sequences within the protein sequence of an HP-TP that have a high probability of eliciting T cell killing; and (iii) qualifying the sequence specificity based on the fold difference between the specific target and non-targets. The identified T-cell epitopes include a core sequence of 9 amino acids homologous to a sequence expressed within a qualified HP-TP. The T-cell epitopes can be used in a method for reprograming T cells to selectively attack tumor cells capable of perpetuating a tumor and treating patients, for example, cancer patients.
    Type: Application
    Filed: June 10, 2019
    Publication date: November 21, 2019
    Inventors: Nancy Parenteau, Joseph Laning, Janet Young
  • Patent number: 10317402
    Abstract: A method for identifying T-cell epitopes which can be used to elicit T cells targeting cells capable of regenerating cancers is disclosed. The method identifies T-cell epitopes with a high curative potential, high potency and high probability of T cell recognition (HP). The method includes: (i) identifying high curative potential tumor protein target i.e., identifying HP-TP; (ii) identifying peptide sequences within the protein sequence of an HP-TP that have a high probability of eliciting T cell killing; and (iii) qualifying the sequence specificity based on the fold difference between the specific target and non-targets. The identified T-cell epitopes include a core sequence of 9 amino acids homologous to a sequence expressed within a qualified HP-TP. The T-cell epitopes can be used in a method for reprogramming T cells to selectively attack tumor cells capable of perpetuating a tumor and treating patients, for example, cancer patients.
    Type: Grant
    Filed: December 3, 2015
    Date of Patent: June 11, 2019
    Assignee: Verik Bio, Inc.
    Inventors: Nancy Parenteau, Joseph Laning, Janet Young
  • Publication number: 20160161486
    Abstract: A method for identifying T-cell epitopes which can be used to elicit T cells targeting cells capable of regenerating cancers is disclosed. The method identifies T-cell epitopes with a high curative potential, high potency and high probability of T cell recognition (HP). The method includes: (i) identifying high curative potential tumor protein target i.e., identifying HP-TP; (ii) identifying peptide sequences within the protein sequence of an HP-TP that have a high probability of eliciting T cell killing; and (iii) qualifying the sequence specificity based on the fold difference between the specific target and non-targets. The identified T-cell epitopes include a core sequence of 9 amino acids homologous to a sequence expressed within a qualified HP-TP. The T-cell epitopes can be used in a method for reprogramming T cells to selectively attack tumor cells capable of perpetuating a tumor and treating patients, for example, cancer patients.
    Type: Application
    Filed: December 3, 2015
    Publication date: June 9, 2016
    Inventors: Nancy Parenteau, Joseph Laning, Janet Young
  • Publication number: 20060121512
    Abstract: The disclosure relates to methods of identifying biological processes associated with non-fetal progenitor cells, and of identifying molecules and factors that regulate or modulate these processes, and is useful in fields including regenerative medicine (tissue regeneration), transplantation, and cancer research.
    Type: Application
    Filed: December 2, 2005
    Publication date: June 8, 2006
    Applicant: ORGAN RECOVERY SYSTEMS, INC.
    Inventor: Nancy Parenteau
  • Publication number: 20060121605
    Abstract: The invention relates to a population of progenitor cells and methods for obtaining and culturing the progenitor cells. Methods and compositions of the present invention can be useful in fields including regenerative medicine (tissue regeneration), transplantation, and cancer research.
    Type: Application
    Filed: June 3, 2004
    Publication date: June 8, 2006
    Applicant: Organ Recovery Systems, Inc
    Inventor: Nancy Parenteau