Patents by Inventor Steven T. Brentano

Steven T. Brentano 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: 11862299
    Abstract: The invention provides methods of determining a consensus sequence from multiple raw sequencing reads of a nucleic acid target. The nucleic acid target includes an anchor segment of known sequence and an adjacent segment of unknown sequence. The anchor segment provides a means to assess the quality of a raw target sequencing read. Raw target sequencing reads meeting or exceeding a threshold are assigned to an accepted class. The consensus sequence of the adjacent segment can be determined from raw target sequencing reads in the accepted class. Successive polling steps determine successive consensus nucleobases in a nascent sequence of the adjacent segment. Raw target sequencing reads can be removed or reintroduced from the accepted class depending on their correspondence to the most recently determined consensus nucleobase and/or the nascent sequence.
    Type: Grant
    Filed: October 30, 2018
    Date of Patent: January 2, 2024
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Tongjia Yin, Steven T. Brentano, Jennifer Bungo, Xianqun Wang, Michael Hadjisavas
  • Patent number: 11732291
    Abstract: The invention provides an improved stem-loop target capture oligomer and methods of use. Such a target capture oligomer has a target-binding segment forming a loop flanked by stem segments forming a stem. The stem segments are of unequal length. Such probes show little or no binding to immobilized probes in the absence of a target nucleic acid but offer good target sensitivity. The probes are particularly useful in multiplex methods of detection in which multiple target capture oligomers are present for detecting of multiple target nucleic acids (for example, detecting multiple polymorphic forms of a target gene).
    Type: Grant
    Filed: April 15, 2020
    Date of Patent: August 22, 2023
    Assignee: GEN-PROBE INCORPORATED
    Inventors: James Carlson, Reinhold Pollner, Steven T. Brentano
  • Patent number: 11136622
    Abstract: Nucleic acid oligomeric sequences and in vitro nucleic acid amplification and detection methods for detecting the presence of HAV RNA sequences in samples are disclosed. Kits comprising nucleic acid oligomers for amplifying and detecting HAV nucleic acid sequences are disclosed.
    Type: Grant
    Filed: August 21, 2019
    Date of Patent: October 5, 2021
    Assignee: GEN-PROBE INCORPORATED
    Inventors: James D. Carlson, Steven T. Brentano
  • Patent number: 10767208
    Abstract: The invention provides compositions and methods for making closed nucleic acid structures in which one or both strands are continuous. The closed nucleic acid structures can be used as sequencing templates among other applications.
    Type: Grant
    Filed: September 6, 2012
    Date of Patent: September 8, 2020
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Norman C. Nelson, Jijumon Chelliserry, Steven T. Brentano, Dmitry Lyakhov, Matthew C. Friedenberg, Anne-Laure Shapiro
  • Patent number: 10752944
    Abstract: The invention provides methods of forming a circular template for sequencing a target nucleic acid. The circular template is generated by amplification of a segment of the target nucleic acid with chimeric primers with complementary 5? ends. The circular template has a single nick or gap providing a site for initiation of template-directed extension for sequence analysis. Sequencing of a single template generates reads of alternating segments of the same strand of the target nucleic spaced by primer segments. The different reads of the same strand of the target nucleic acid can be compiled to generate a consensus sequence. Because only one strand of the target nucleic acid is sequenced per reaction, the present method avoids errors introduced by unwittingly combining sequences of both strands of a heteroduplex PCR product.
    Type: Grant
    Filed: September 6, 2012
    Date of Patent: August 25, 2020
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Steven T. Brentano, Dmitry Lyakhov, Matthew C. Friedenberg, Anne-Laure Shapiro
  • Publication number: 20200248246
    Abstract: The invention provides an improved stem-loop target capture oligomer and methods of use. Such a target capture oligomer has a target-binding segment forming a loop flanked by stem segments forming a stem. The stem segments are of unequal length. Such probes show little or no binding to immobilized probes in the absence of a target nucleic acid but offer good target sensitivity. The probes are particularly useful in multiplex methods of detection in which multiple target capture oligomers are present for detecting of multiple target nucleic acids (for example, detecting multiple polymorphic forms of a target gene).
    Type: Application
    Filed: April 15, 2020
    Publication date: August 6, 2020
    Applicant: GEN-PROBE INCORPORATED
    Inventors: James Carlson, Reinhold Pollner, Steven T. Brentano
  • Patent number: 10724085
    Abstract: Compositions, reaction mixtures, and methods for performing an amplification reaction, including multiplex amplification reaction, wherein the method comprises using one or more amplification oligomer complexes comprising linked first and second amplification oligomer members. In one aspect, the amplification oligomer complex is hybridized to a target nucleic acid, the target nucleic acid with hybridized amplification oligomer complex is then captured, and other components are washed away. Target sequences of the target nucleic acids are pre-amplified to generate a first amplification product. The first amplification product is amplified in one or more secondary amplification reactions to generate second amplification products.
    Type: Grant
    Filed: February 22, 2018
    Date of Patent: July 28, 2020
    Inventors: Steven T. Brentano, Dmitry Lyakhov, Norman C. Nelson, James D. Carlson, Michael M. Becker, Lyle J. Arnold, Jr.
  • Patent number: 10655165
    Abstract: The invention provides an improved stem-loop target capture oligomer and methods of use. Such a target capture oligomer has a target-binding segment forming a loop flanked by stem segments forming a stem. The stem segments are of unequal length. Such probes show little or no binding to immobilized probes in the absence of a target nucleic acid but offer good target sensitivity. The probes are particularly useful in multiplex methods of detection in which multiple target capture oligomers are present for detecting of multiple target nucleic acids (for example, detecting multiple polymorphic forms of a target gene).
    Type: Grant
    Filed: February 1, 2013
    Date of Patent: May 19, 2020
    Assignee: GEN-PROBE INCORPORATED
    Inventors: James Carlson, Reinhold Pollner, Steven T. Brentano
  • Publication number: 20190376131
    Abstract: Nucleic acid oligomeric sequences and in vitro nucleic acid amplification and detection methods for detecting the presence of HAV RNA sequences in samples are disclosed. Kits comprising nucleic acid oligomers for amplifying and detecting HAV nucleic acid sequences are disclosed.
    Type: Application
    Filed: August 21, 2019
    Publication date: December 12, 2019
    Inventors: James D. CARLSON, Steven T. BRENTANO
  • Patent number: 10415092
    Abstract: Compositions that are used in nucleic acid amplification in vitro are disclosed, which include a target specific universal (TSU) promoter primer or promoter provider oligonucleotide that includes a target specific (TS) sequence that hybridizes specifically to a target sequence that is amplified and a universal (U) sequence that is introduced into the sequence that is amplified, by using a primer for the universal sequence. Methods of nucleic acid amplification in vitro are disclosed that use one or more TSU oligonucleotides to attached a U sequence to a target nucleic acid in a target capture step and then use a primer for a U sequence in subsequent amplification steps performed in substantially isothermal conditions to make amplification products that contain a U sequence that indicates the presence of the target nucleic acid in a sample.
    Type: Grant
    Filed: January 27, 2017
    Date of Patent: September 17, 2019
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Steven T. Brentano, Dmitry Lyakhov, James D. Carlson, Norman C. Nelson, Lyle J. Arnold, Michael M. Becker
  • Patent number: 10407723
    Abstract: Compositions that are used in nucleic acid amplification in vitro are disclosed, which include a target specific universal (TSU) promoter primer or promoter provider oligonucleotide that includes a target specific (TS) sequence that hybridizes specifically to a target sequence that is amplified and a universal (U) sequence that is introduced into the sequence that is amplified, by using a primer for the universal sequence. Methods of nucleic acid amplification in vitro are disclosed that use one or more TSU oligonucleotides to attached a U sequence to a target nucleic acid in a target capture step and then use a primer for a U sequence in subsequent amplification steps performed in substantially isothermal conditions to make amplification products that contain a U sequence that indicates the presence of the target nucleic acid in a sample.
    Type: Grant
    Filed: May 15, 2017
    Date of Patent: September 10, 2019
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Steven T. Brentano, Dmitry Lyakhov, James D. Carlson, Norman C. Nelson, Lyle J. Arnold, Michael M. Becker
  • Patent number: 10392656
    Abstract: Nucleic acid oligomeric sequences and in vitro nucleic acid amplification and detection methods for detecting the presence of HAV RNA sequences in samples are disclosed. Kits comprising nucleic acid oligomers for amplifying and detecting HAV nucleic acid sequences are disclosed.
    Type: Grant
    Filed: September 27, 2016
    Date of Patent: August 27, 2019
    Assignee: GEN-PROBE INCORPORATED
    Inventors: James D. Carlson, Steven T. Brentano
  • Patent number: 10119163
    Abstract: Compositions, reaction mixtures, and methods for performing an amplification reaction, including multiplex amplification reaction, wherein the method comprises using one or more amplification oligomer complexes comprising linked first and second amplification oligomer members. In one aspect, the amplification oligomer complex is hybridized to a target nucleic acid, the target nucleic acid with hybridized amplification oligomer complex is then captured, and other components are washed away. Target sequences of the target nucleic acids are pre-amplified to generate a first amplification product. The first amplification product is amplified in one or more secondary amplification reactions to generate second amplification products.
    Type: Grant
    Filed: March 2, 2016
    Date of Patent: November 6, 2018
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Steven T. Brentano, Dmitry Lyakhov, Norman C. Nelson, James D. Carlson, Michael M. Becker, Lyle J. Arnold, Jr.
  • Publication number: 20180208981
    Abstract: Compositions, reaction mixtures, and methods for performing an amplification reaction, including multiplex amplification reaction, wherein the method comprises using one or more amplification oligomer complexes comprising linked first and second amplification oligomer members. In one aspect, the amplification oligomer complex is hybridized to a target nucleic acid, the target nucleic acid with hybridized amplification oligomer complex is then captured, and other components are washed away. Target sequences of the target nucleic acids are pre-amplified to generate a first amplification product. The first amplification product is amplified in one or more secondary amplification reactions to generate second amplification products.
    Type: Application
    Filed: February 22, 2018
    Publication date: July 26, 2018
    Inventors: Steven T. BRENTANO, Dmitry LYAKHOV, Norman C. NELSON, James D. CARLSON, Michael M. BECKER, Lyle J. ARNOLD, JR.
  • Publication number: 20170342491
    Abstract: Compositions that are used in nucleic acid amplification in vitro are disclosed, which include a target specific universal (TSU) promoter primer or promoter provider oligonucleotide that includes a target specific (TS) sequence that hybridizes specifically to a target sequence that is amplified and a universal (U) sequence that is introduced into the sequence that is amplified, by using a primer for the universal sequence. Methods of nucleic acid amplification in vitro are disclosed that use one or more TSU oligonucleotides to attached a U sequence to a target nucleic acid in a target capture step and then use a primer for a U sequence in subsequent amplification steps performed in substantially isothermal conditions to make amplification products that contain a U sequence that indicates the presence of the target nucleic acid in a sample.
    Type: Application
    Filed: May 15, 2017
    Publication date: November 30, 2017
    Inventors: Steven T. BRENTANO, Dmitry LYAKHOV, James D. CARLSON, Norman C. NELSON, Lyle J. ARNOLD, Michael M. BECKER
  • Publication number: 20170321273
    Abstract: Compositions that are used in nucleic acid amplification in vitro are disclosed, which include a target specific universal (TSU) promoter primer or promoter provider oligonucleotide that includes a target specific (TS) sequence that hybridizes specifically to a target sequence that is amplified and a universal (U) sequence that is introduced into the sequence that is amplified, by using a primer for the universal sequence. Methods of nucleic acid amplification in vitro are disclosed that use one or more TSU oligonucleotides to attached a U sequence to a target nucleic acid in a target capture step and then use a primer for a U sequence in subsequent amplification steps performed in substantially isothermal conditions to make amplification products that contain a U sequence that indicates the presence of the target nucleic acid in a sample.
    Type: Application
    Filed: January 27, 2017
    Publication date: November 9, 2017
    Inventors: Steven T. BRENTANO, Dmitry LYAKHOV, James D. CARLSON, Norman C. NELSON, Lyle J. ARNOLD, Michael M. BECKER
  • Patent number: 9677135
    Abstract: Compositions that are used in nucleic acid amplification in vitro are disclosed, which include a target specific universal (TSU) promoter primer or promoter provider oligonucleotide that includes a target specific (TS) sequence that hybridizes specifically to a target sequence that is amplified and a universal (U) sequence that is introduced into the sequence that is amplified, by using a primer for the universal sequence. Methods of nucleic acid amplification in vitro are disclosed that use one or more TSU oligonucleotides to attached a U sequence to a target nucleic acid in a target capture step and then use a primer for a U sequence in subsequent amplification steps performed in substantially isothermal conditions to make amplification products that contain a U sequence that indicates the presence of the target nucleic acid in a sample.
    Type: Grant
    Filed: December 17, 2013
    Date of Patent: June 13, 2017
    Assignee: GEN-PROBE INCORPORATED
    Inventors: Steven T. Brentano, Dmitry Lyakhov, James D. Carlson, Norman C. Nelson, Lyle J. Arnold, Jr., Michael M. Becker
  • Publication number: 20170009284
    Abstract: Nucleic acid oligomeric sequences and in vitro nucleic acid amplification and detection methods for detecting the presence of HAV RNA sequences in samples are disclosed. Kits comprising nucleic acid oligomers for amplifying and detecting HAV nucleic acid sequences are disclosed.
    Type: Application
    Filed: September 27, 2016
    Publication date: January 12, 2017
    Inventors: James D. CARLSON, Steven T. BRENTANO
  • Publication number: 20160348162
    Abstract: Compositions, reaction mixtures, and methods for performing an amplification reaction, including multiplex amplification reaction, wherein the method comprises using one or more amplification oligomer complexes comprising linked first and second amplification oligomer members. In one aspect, the amplification oligomer complex is hybridized to a target nucleic acid, the target nucleic acid with hybridized amplification oligomer complex is then captured, and other components are washed away. Target sequences of the target nucleic acids are pre-amplified to generate a first amplification product. The first amplification product is amplified in one or more secondary amplification reactions to generate second amplification products.
    Type: Application
    Filed: March 2, 2016
    Publication date: December 1, 2016
    Inventors: Steven T. BRENTANO, Dmitry LYAKHOV, Norman C. NELSON, James D. CARLSON, Michael M. BECKER, Lyle J. ARNOLD, Jr.
  • Patent number: 9469881
    Abstract: Nucleic acid oligomeric sequences and in vitro nucleic acid amplification and detection methods for detecting the presence of HAV RNA sequences in samples are disclosed. Kits comprising nucleic acid oligomers for amplifying and detecting HAV nucleic acid sequences are disclosed.
    Type: Grant
    Filed: September 19, 2013
    Date of Patent: October 18, 2016
    Assignee: GEN-PROBE INCORPORATED
    Inventors: James D. Carlson, Steven T. Brentano