Patents by Inventor Hei-Mun Christina Fan

Hei-Mun Christina Fan 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: 20170145508
    Abstract: The invention generally relates to methods for assessing the health of a tissue by characterizing circulating nucleic acids in a biological sample. According to certain embodiments, methods for assessing the health of a tissue include the steps of detecting a sample level of RNA in a biological sample, comparing the sample level of RNA to a reference level of RNA specific to the tissue, determining whether a difference exists between the sample level and the reference level, and characterizing the tissue as abnormal if a difference is detected.
    Type: Application
    Filed: December 13, 2016
    Publication date: May 25, 2017
    Inventors: Lian Chye Winston Koh, Stephen R. Quake, Hei-Mun Christina Fan, Wenying Pan
  • Publication number: 20170029890
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Application
    Filed: June 28, 2016
    Publication date: February 2, 2017
    Applicant: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Publication number: 20160289762
    Abstract: The invention generally relates to methods for assessing a neurological disorder by characterizing circulating nucleic acids in a blood sample. According to certain embodiments, methods for assessing a neurological disorder include obtaining RNA present in a blood sample of a patient suspected of having a neurological disorder, determining a level of RNA present in the sample that is specific to brain tissue, comparing the sample level of RNA to a reference level of RNA specific to brain tissue, determining whether a difference exists between the sample level and the reference level, and indicating a neurological disorder if a difference is determined.
    Type: Application
    Filed: November 6, 2014
    Publication date: October 6, 2016
    Inventors: Lian Chye Winston KOH, Stephen R. QUAKE, Hei-Mun Christina FAN, Wenying PAN
  • Patent number: 9441273
    Abstract: The present methods are exemplified by a process in which maternal blood containing fetal DNA is diluted to a nominal value of approximately 0.5 genome equivalent of DNA per reaction sample. Digital PCR is then be used to detect aneuploidy, such as the trisomy that causes Down Syndrome. Since aneuploidies do not present a mutational change in sequence, and are merely a change in the number of chromosomes, it has not been possible to detect them in a fetus without resorting to invasive techniques such as amniocentesis or chorionic villi sampling. Digital amplification allows the detection of aneuploidy using massively parallel amplification and detection methods, examining, e.g., 10,000 genome equivalents.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: September 13, 2016
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Stephen Quake, Hei-Mun Christina Fan
  • Publication number: 20160228841
    Abstract: The invention relates to methods of tagging analytes in a sample.
    Type: Application
    Filed: March 14, 2014
    Publication date: August 11, 2016
    Inventors: Hei-Mun Christina Fan, Edward A. Hutchins
  • Patent number: 9404157
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Grant
    Filed: June 19, 2013
    Date of Patent: August 2, 2016
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Patent number: 9353414
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Grant
    Filed: January 30, 2014
    Date of Patent: May 31, 2016
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Patent number: 9267174
    Abstract: The invention provides a non-invasive technique for the differential detection of multiple genotypes and/or mutations for a plurality of target genes in a biological sample containing genetic material from different genomic sources. Methods are conducted using multiplex amplification of a plurality of target sequences from the biological sample, and sequencing is used to detect and enumerate genetic mutations and chromosomal abnormalities at the single nucleotide level.
    Type: Grant
    Filed: October 26, 2011
    Date of Patent: February 23, 2016
    Assignee: Stanford University
    Inventors: Stephen R. Quake, Wei Gu, Hei-Mun Christina Fan
  • Publication number: 20160040234
    Abstract: The invention provides a non-invasive technique for the detection and quantification of the immune repertoire, in a biological sample containing a plurality of distinct cell populations. Methods are conducted using sequencing technology to detect and enumerate immune repertoire within a heterogeneous biological sample.
    Type: Application
    Filed: March 14, 2014
    Publication date: February 11, 2016
    Inventors: Edward A. Hutchins, Hei-Mun Christina Fan
  • Publication number: 20160017420
    Abstract: The invention generally relates to methods for assessing the health of a tissue by characterizing circulating nucleic acids in a biological sample. According to certain embodiments, methods for assessing the health of a tissue include the steps of detecting a sample level of RNA in a biological sample, comparing the sample level of RNA to a reference level of RNA specific to the tissue, determining whether a difference exists between the sample level and the reference level, and characterizing the tissue as abnormal if a difference is detected.
    Type: Application
    Filed: September 22, 2015
    Publication date: January 21, 2016
    Inventors: Lian Chye Winston Koh, Stephen R. Quake, Hei-Mun Christina Fan, Wenying Pan
  • Publication number: 20160001248
    Abstract: The invention relates to methods of tagging analytes in a sample.
    Type: Application
    Filed: March 14, 2014
    Publication date: January 7, 2016
    Inventors: Hei-Mun Christina Fan, Edward A. Hutchins
  • Publication number: 20150104793
    Abstract: The present methods are exemplified by a process in which maternal blood containing fetal DNA is diluted to a nominal value of approximately 0.5 genome equivalent of DNA per reaction sample. Digital analysis is then be used to detect aneuploidy, such as the trisomy that causes Down Syndrome. Since aneuploidies do not present a mutational change in sequence, and are merely a change in the number of chromosomes, it has not been possible to detect them in a fetus without resorting to invasive techniques such as amniocentesis or chorionic villi sampling. Digital amplification allows the detection of aneuploidy using massively parallel amplification and detection methods, examining, e.g., 10,000 genome equivalents.
    Type: Application
    Filed: December 23, 2014
    Publication date: April 16, 2015
    Applicant: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
    Inventors: STEPHEN QUAKE, HEI-MUN CHRISTINA FAN
  • Publication number: 20140329691
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Application
    Filed: January 30, 2014
    Publication date: November 6, 2014
    Applicant: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Publication number: 20140134613
    Abstract: Methods and materials for detection of aneuploidy and other chromosomal abnormalities using fetal tissue are disclosed. Results can be obtained rapidly, without cell culture. The method uses digital PCR for amplification and detection of single target sequences, allowing an accurate count of a specific chromosome or chromosomal region. Specific polynucleic acid primers and probes are disclosed for chromosomes 1, 13, 18, 21, X and Y. These polynucleic acid sequences are chosen to be essentially invariant between individuals, so the test is not dependent on sequence differences between fetus and mother.
    Type: Application
    Filed: November 4, 2013
    Publication date: May 15, 2014
    Applicant: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Patent number: 8682594
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Grant
    Filed: May 6, 2011
    Date of Patent: March 25, 2014
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Publication number: 20140051583
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Application
    Filed: June 19, 2013
    Publication date: February 20, 2014
    Applicant: The Board of Trustees of the Leland Stanford Junior Unviersity
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Patent number: 8574842
    Abstract: Methods and materials for detection of aneuploidy and other chromosomal abnormalities using fetal tissue are disclosed. Results can be obtained rapidly, without cell culture. The method uses digital PCR for amplification and detection of single target sequences, allowing an accurate count of a specific chromosome or chromosomal region. Specific polynucleic acid primers and probes are disclosed for chromosomes 1, 13, 18, 21, X and Y. These polynucleic acid sequences are chosen to be essentially invariant between individuals, so the test is not dependent on sequence differences between fetus and mother.
    Type: Grant
    Filed: December 22, 2009
    Date of Patent: November 5, 2013
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Patent number: 8293470
    Abstract: The present methods are exemplified by a process in which maternal blood containing fetal DNA is diluted to a nominal value of approximately 0.5 genome equivalent of DNA per reaction sample. Digital PCR is then be used to detect aneuploidy, such as the trisomy that causes Down Syndrome. Since aneuploidies do not present a mutational change in sequence, and are merely a change in the number of chromosomes, it has not been possible to detect them in a fetus without resorting to invasive techniques such as amniocentesis or chorionic villi sampling. Digital amplification allows the detection of aneuploidy using massively parallel amplification and detection methods, examining, e.g., 10,000 genome equivalents.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: October 23, 2012
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Stephen Quake, Hei-Mun Christina Fan
  • Patent number: 8296076
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Grant
    Filed: April 20, 2012
    Date of Patent: October 23, 2012
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake
  • Publication number: 20120208710
    Abstract: Disclosed is a method to achieve digital quantification of DNA (i.e., counting differences between identical sequences) using direct shotgun sequencing followed by mapping to the chromosome of origin and enumeration of fragments per chromosome. The preferred method uses massively parallel sequencing, which can produce tens of millions of short sequence tags in a single run and enabling a sampling that can be statistically evaluated. By counting the number of sequence tags mapped to a predefined window in each chromosome, the over- or under-representation of any chromosome in maternal plasma DNA contributed by an aneuploid fetus can be detected. This method does not require the differentiation of fetal versus maternal DNA. The median count of autosomal values is used as a normalization constant to account for differences in total number of sequence tags is used for comparison between samples and between chromosomes.
    Type: Application
    Filed: April 20, 2012
    Publication date: August 16, 2012
    Applicant: The Board of Trutees of the Leland Stanford Junior University
    Inventors: Hei-Mun Christina Fan, Stephen R. Quake