Patents by Inventor Elisavet A. Papageorgiou

Elisavet A. Papageorgiou 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: 20220106642
    Abstract: The invention provides methods for non-invasive prenatal testing that allow for detecting risk of chromosomal and subchromosomal abnormalities, including but not limited to aneuploidies, microdeletions and microduplications, insertions, translocations, inversions and small-size mutations including point mutations and mutational signatures. The methods of the invention utilize a pool of TArget Capture Sequences (TACS) to enrich for sequences of interest in a mixed sample containing both maternal and fetal DNA, followed by massive parallel sequencing and statistical analysis of the enriched population to thereby detect the risk of a genetic abnormality in the fetal DNA. Kits for carrying out the methods of the invention are also provided.
    Type: Application
    Filed: June 16, 2021
    Publication date: April 7, 2022
    Inventors: George Koumbaris, Elena Kypri, Kyriakos Tsangaras, Achilleas Achilleos, Petros Mina, Elisavet A. Papageorgiou, Philippos C. Patsalis
  • Patent number: 11111538
    Abstract: The invention provides methods for non-invasive prenatal testing that allow for detecting risk of chromosomal and subchromosomal abnormalities, including but not limited to aneuploidies, microdeletions and microduplications, insertions, translocations, inversions and small-size mutations including point mutations and mutational signatures. The methods of the invention utilize a pool of TArget Capture Sequences (TACS) to enrich for sequences of interest in a mixed sample containing both maternal and fetal DNA, followed by massive parallel sequencing and statistical analysis of the enriched population to thereby detect the risk of a genetic abnormality in the fetal DNA. Kits for carrying out the methods of the invention are also provided.
    Type: Grant
    Filed: May 20, 2016
    Date of Patent: September 7, 2021
    Assignee: NIPD GENETICS PUBLIC COMPANY LTD
    Inventors: George Koumbaris, Elena Kypri, Kyriakos Tsangaras, Achilleas Achilleos, Petros Mina, Elisavet A. Papageorgiou, Philippos C. Patsalis
  • Publication number: 20210130900
    Abstract: The invention provides methods for non-invasive prenatal testing that allow for detecting risk of chromosomal and subchromosomal abnormalities, including but not limited to aneuploidies, microdeletions and microduplications, insertions, translocations, inversions and small-size mutations including point mutations and mutational signatures. The methods of the invention utilize a pool of TArget Capture Sequences (TACS) to enrich for sequences of interest in a mixed sample containing both maternal and fetal DNA, followed by massive parallel sequencing and statistical analysis of the enriched population to thereby detect the risk of a genetic abnormality in the fetal DNA. Kits for carrying out the methods of the invention are also provided.
    Type: Application
    Filed: January 13, 2021
    Publication date: May 6, 2021
    Inventors: George KOUMBARIS, Elena KYPRI, Kyriakos TSANGARAS, Achilleas ACHILLEOS, Petros MINA, Elisavet A. PAPAGEORGIOU, Philippos C. PATSALIS
  • Publication number: 20160340733
    Abstract: The invention provides methods for non-invasive prenatal testing that allow for detecting risk of chromosomal and subchromosomal abnormalities, including but not limited to aneuploidies, microdeletions and microduplications, insertions, translocations, inversions and small-size mutations including point mutations and mutational signatures. The methods of the invention utilize a pool of TArget Capture Sequences (TACS) to enrich for sequences of interest in a mixed sample containing both maternal and fetal DNA, followed by massive parallel sequencing and statistical analysis of the enriched population to thereby detect the risk of a genetic abnormality in the fetal DNA. Kits for carrying out the methods of the invention are also provided.
    Type: Application
    Filed: May 20, 2016
    Publication date: November 24, 2016
    Inventors: George KOUMBARIS, Elena KYPRI, Kyriakos TSANGARAS, Achilleas ACHILLEOS, Petros MINA, Elisavet A. PAPAGEORGIOU, Philippos C. PATSALIS
  • Patent number: 9249462
    Abstract: The invention provides methods and compositions for noninvasive prenatal diagnosis of fetal aneuploidies. A large panel of differentially methylated regions (DMRs) have been identified. Certain of these DMRs are hypomethylated in adult female blood DNA and hypermethylated in fetal DNA, whereas others are hypermethylated in adult female blood DNA and hypomethylated in fetal DNA. Moreover, DMRs that are hypomethylated in adult female blood DNA and hypermethylated in fetal DNA have been shown to accurately predict a fetal aneuploidy in fetal DNA present in a maternal blood sample during pregnancy. In the methods of the invention, hypermethylated DNA is physically separated from hypomethylated DNA, preferably by methylated DNA immunoprecipitation.
    Type: Grant
    Filed: January 26, 2011
    Date of Patent: February 2, 2016
    Assignee: NIPD Genetics Ltd
    Inventors: Philippos C. Patsalis, Elisavet A. Papageorgiou
  • Publication number: 20120282613
    Abstract: The invention provides methods and compositions for noninvasive prenatal diagnosis of fetal aneuploidies. A large panel of differentially methylated regions (DMRs) have been identified. Certain of these DMRs are hypomethylated in adult female blood DNA and hypermethylated in fetal DNA, whereas others are hypermethylated in adult female blood DNA and hypomethylated in fetal DNA. Moreover, DMRs that are hypomethylated in adult female blood DNA and hypermethylated in fetal DNA have been shown to accurately predict a fetal aneuploidy in fetal DNA present in a maternal blood sample during pregnancy. In the methods of the invention, hypermethylated DNA is physically separated from hypomethylated DNA, preferably by methylated DNA immunoprecipitation.
    Type: Application
    Filed: January 26, 2011
    Publication date: November 8, 2012
    Applicant: NIPD GENETICS LTD
    Inventors: Philippos C. Patsalis, Elisavet A. Papageorgiou