Nova Patents
IL167286A

Genetic analysis and authentication

Abstract

This record has no abstract on file.

IL167286A, drawing sheet 1
Sheet 1 of 19

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

30 claims: 5 independent, 25 dependent

  1. 1
    We claim:1. A composition for analyzing one or more nucleic acid sequences in a patient genomic sample and for identifying said patient providing the sample, said composition comprising a mixture of: a first set of oligonucleotides, wherein members of the first set have different sequences and said members are attached to beads which are associated with an optically distinguishable characteristic that identifies the sequences of the oligonucleotides attached thereto, the first set of oligonucleotides for identifying target nucleic acid sequences in the patient sample;a second set of oligonucleotides wherein members of the second set have different sequences and said members are attached to beads which are associated with an optically distinguishable characteristic that identifies the sequences of the oligonucleotides attached thereto, the second set of oligonucleotides for identifying a number of marker sequences in the patient genomic sample, said marker sequences each including at least one polymorphic marker, the identification of said marker sequences providing for identification of said patient.
  2. 12
    The composition ofclaim 11, wherein the polymorphic site comprises single nucleotide polymorphisms.
  3. 13
    The composition ofclaim 3, wherein the polymorphic site comprises STR.
  4. 16
    The composition ofclaim 15 wherein the nucleic acid sequences are derived by amplification of one or more nucleic acid subsequences within the patient genomic sample.
  5. 22
    The composition ofclaim 1, wherein the target sequence includes a mutation site and the first set of oligonucleotides includes members capable of annealing to subsequences in the target sequence including the mutation site, or within a range of proximity to the mutation site,