Patents by Inventor Larry Gold

Larry Gold 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: 20160324927
    Abstract: The present disclosure relates to customized therapy for disease. The present disclosure also relates to aptamer-based compositions and methods for identifying, modulating and monitoring drug targets in muscular disease (e.g., Duchenne muscular dystrophy).
    Type: Application
    Filed: May 2, 2016
    Publication date: November 10, 2016
    Inventors: Larry Gold, Kirk DeLisle, David Sterling, Edward Brody, Britta Singer, Robert Mehler
  • Publication number: 20160273033
    Abstract: Techniques, methods, devices, and compositions are disclosed that are useful in identifying and sequencing natural and synthetic, and modified and unmodified DNA, RNA, PNA, DNA/RNA nucleotides. The disclosed techniques, methods, devices, and compositions are useful in identifying various modifications, DNA/RNA damage, and nucleotide structure, using nanoelectronic quantum tunneling spectroscopy, which may be referred to as QM-Seq. The methods and compositions can include the use of a charged, smooth substrate for deposition of single stranded nucleotides and polynucleotide macromolecules, scanning the modified or unmodified DNA/RNA/PNA, comparing the electronic signatures of an unknown nucleobase against a database of electronic fingerprints of known nucleobases, including natural and synthetic, modified and unmodified nucleobases, and secondary/tertiary structure, obtained under the same or similar conditions, for example where the nucleobase is in an acidic environment.
    Type: Application
    Filed: March 16, 2016
    Publication date: September 22, 2016
    Inventor: Larry Gold
  • Publication number: 20160265038
    Abstract: A nucleic acid ligand “biochip” is disclosed, consisting of a solid support to which one or more specific nucleic acid ligands is attached in a spatially defined manner. Each nucleic acid ligand binds specifically and avidly to a particular target molecule contained within a test mixture, such as a bodily fluid. The target molecules include, but are not limited to, proteins (cellular, viral, bacterial, etc.) hormones, sugars, metabolic byproducts, cofactor, and intermediates, drugs, and toxins. Contacting the test mixture with the biochip leads to the binding of a target molecule to its cognate nucleic acid ligand. The biochip may then be contacted with a reagent(s) that reacts covalently with proteins and not with nucleic acids. Each protein target in the test mixture may then detected by detecting the presence of the reagent at the appropriate address on the biochip.
    Type: Application
    Filed: May 3, 2016
    Publication date: September 15, 2016
    Inventors: Larry Gold, Dominic Zichi
  • Publication number: 20160237435
    Abstract: Described herein are compositions comprising a first aptamer, second aptamer and a target that are capable of forming a ternary complex, and wherein the first aptamer and the second aptamer comprise C-5 pyrimidine modification schemes that are different, and methods of making and using such compositions.
    Type: Application
    Filed: September 24, 2014
    Publication date: August 18, 2016
    Inventors: Urs A. Ochsner, Louis S. Green, Larry Gold, Nebojsa Janjic
  • Patent number: 9404919
    Abstract: The present disclosure describes methods, devices, reagents, and kits for the detection of one or more target molecules that may be present in a test sample. The described methods, devices, kits, and reagents facilitate the detection and quantification of a non-nucleic acid target (e.g., a protein target) in a test sample by detecting and quantifying a nucleic acid (i.e., an aptamer). The methods described create a nucleic acid surrogate for a non-nucleic acid target, thus allowing the wide variety of nucleic acid technologies, including amplification, to be applied to a broader range of desired targets, especially protein targets. The disclosure further describes aptamer constructs that facilitate the use of aptamers in a variety of analytical detection applications.
    Type: Grant
    Filed: February 10, 2014
    Date of Patent: August 2, 2016
    Assignee: SOMALOGIC, INC.
    Inventors: Daniel J. Schneider, Dan Nieuwlandt, Bruce Eaton, Martin Stanton, Shashi Gupta, Stephan Kraemer, Dominic Zichi, Larry Gold
  • Patent number: 9382533
    Abstract: The present disclosure describes the identification and use of aptamers and photoaptamers having slower dissociation rate constants than those obtained using previously described methods. Specifically, the present disclosure describes methods for the identification and use of aptamers to one or more targets within a histological or cytological sample, which have slow rates of dissociation. The aptamers may be used to assess localization, relative density, and presence or absence of one or more targets in cytological and histological samples. Targets may be selected that are specific and diagnostic of a given disease state for which the sample was collected. The aptamers may also be used to introduce target specific signal moieties. In addition to target identification, the aptamers may be used to amplify signal generation through a variety of methods.
    Type: Grant
    Filed: January 27, 2015
    Date of Patent: July 5, 2016
    Assignee: SomaLogic, Inc.
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold, Thale C. Jarvis, Jeffrey D. Carter
  • Publication number: 20150197753
    Abstract: The present disclosure describes improved SELEX methods for producing aptamers that are capable of binding to target molecules and improved photoSELEX methods for producing photoreactive aptamers that are capable of both binding and covalently crosslinking to target molecules. Specifically, the present disclosure describes methods for producing aptamers and photoaptamers having slower dissociation rate constants than are obtained using prior SELEX and photoSELEX methods. The disclosure further describes aptamers and photoaptamers having slower dissociation rate constants than those obtained using prior methods. In addition, the disclosure describes aptamer constructs that include a variety of functionalities, including a cleavable element, a detection element, and a capture or immobilization element.
    Type: Application
    Filed: January 30, 2015
    Publication date: July 16, 2015
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold
  • Publication number: 20150168388
    Abstract: The present disclosure describes methods, devices, reagents, and kits for the detection of one or more target molecules that may be present in a test sample. In one embodiment, a test sample is contacted with an aptamer that includes a tag and has a specific affinity for a target molecule. An aptamer affinity complex that includes an aptamer bound to its target molecule is allowed to form. If the test sample contains the target molecule, an aptamer affinity complex will generally form in the test sample. The aptamer affinity complex is optionally converted to an aptamer covalent complex that includes an aptamer covalently bound to its target molecule. The aptamer affinity complex (or optional aptamer covalent complex) can then be detected and/or quantified using any of a variety of methods known to one skilled in the art, including using a solid support, using mass spectrometry, and using quantitative polymerase chain reaction (Q-PCR).
    Type: Application
    Filed: December 12, 2014
    Publication date: June 18, 2015
    Inventors: James R. Heil, Daniel J. Schneider, Daniel T. Nieuwlandt, Sheri K. Wilcox, Dominic Zichi, Todd Gander, Bruce Eaton, Larry Gold
  • Publication number: 20150148237
    Abstract: The present disclosure describes the identification and use of aptamers and photoaptamers having slower dissociation rate constants than those obtained using previously described methods. Specifically, the present disclosure describes methods for the identification and use of aptamers to one or more targets within a histological or cytological sample, which have slow rates of dissociation. The aptamers may be used to assess localization, relative density, and presence or absence of one or more targets in cytological and histological samples. Targets may be selected that are specific and diagnostic of a given disease state for which the sample was collected. The aptamers may also be used to introduce target specific signal moieties. In addition to target identification, the aptamers may be used to amplify signal generation through a variety of methods.
    Type: Application
    Filed: January 27, 2015
    Publication date: May 28, 2015
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold, Thale C. Jarvis, Jeffrey D. Carter
  • Patent number: 8975026
    Abstract: The present disclosure describes the identification and use of aptamers and photoaptamers having slower dissociation rate constants than those obtained using previously described methods. Specifically, the present disclosure describes methods for the identification and use of aptamers to one or more targets within a histological or cytological sample, which have slow rates of dissociation. The aptamers may be used to assess localization, relative density, and presence or absence of one or more targets in cytological and histological samples. Targets may be selected that are specific and diagnostic of a given disease state for which the sample was collected. The aptamers may also be used to introduce target specific signal moieties. In addition to target identification, the aptamers may be used to amplify signal generation through a variety of methods.
    Type: Grant
    Filed: July 9, 2010
    Date of Patent: March 10, 2015
    Assignee: SomaLogic, Inc.
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold, Thale C. Jarvis, Jeffrey D. Carter
  • Patent number: 8975388
    Abstract: The present disclosure describes improved SELEX methods for producing aptamers that are capable of binding to target molecules and improved photoSELEX methods for producing photoreactive aptamers that are capable of both binding and covalently crosslinking to target molecules. Specifically, the present disclosure describes methods for producing aptamers and photoaptamers having slower dissociation rate constants than are obtained using prior SELEX and photoSELEX methods. The disclosure further describes aptamers and photoaptamers having slower dissociation rate constants than those obtained using prior methods. In addition, the disclosure describes aptamer constructs that include a variety of functionalities, including a cleavable element, a detection element, and a capture or immobilization element.
    Type: Grant
    Filed: May 23, 2011
    Date of Patent: March 10, 2015
    Assignee: Somalogic, Inc.
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold
  • Patent number: 8945830
    Abstract: The present disclosure describes methods, devices, reagents, and kits for the detection of one or more target molecules that may be present in a test sample. In one embodiment, a test sample is contacted with an aptamer that includes a tag and has a specific affinity for a target molecule. An aptamer affinity complex that includes an aptamer bound to its target molecule is allowed to form. If the test sample contains the target molecule, an aptamer affinity complex will generally form in the test sample. The aptamer affinity complex is optionally converted to an aptamer covalent complex that includes an aptamer covalently bound to its target molecule. The aptamer affinity complex (or optional aptamer covalent complex) can then be detected and/or quantified using any of a variety of methods known to one skilled in the art, including using a solid support, using mass spectrometry, and using quantitative polymerase chain reaction (Q-PCR).
    Type: Grant
    Filed: August 20, 2010
    Date of Patent: February 3, 2015
    Assignee: SomaLogic, Inc.
    Inventors: James R. Heil, Daniel J. Schneider, Daniel T. Nieuwlandt, Sheri K. Wilcox, Dominic Zichi, Todd Gander, Bruce Eaton, Larry Gold
  • Publication number: 20150031585
    Abstract: Described herein are compositions comprising a first aptamer, second aptamer and a target that are capable of forming a ternary complex, and wherein the first aptamer and the second aptamer comprise C-5 pyrimidine modification schemes that are different, and methods of making and using such compositions.
    Type: Application
    Filed: September 24, 2014
    Publication date: January 29, 2015
    Inventors: Urs A. Ochsner, Louis S. Green, Larry Gold, Nebojsa Janjic, Evaldas Katilius
  • Publication number: 20140296102
    Abstract: A nucleic acid ligand “biochip” is disclosed, consisting of a solid support to which one or more specific nucleic acid ligands is attached in a spatially defined manner. Each nucleic acid ligand binds specifically and avidly to a particular target molecule contained within a test mixture, such as a bodily fluid. The target molecules include, but are not limited to, proteins (cellular, viral, bacterial, etc.) hormones, sugars, metabolic byproducts, cofactor, and intermediates, drugs, and toxins. Contacting the test mixture with the biochip leads to the binding of a target molecule to its cognate nucleic acid ligand. The biochip may then be contacted with a reagent(s) that reacts covalently with proteins and not with nucleic acids. Each protein target in the test mixture may then detected by detecting the presence of the reagent at the appropriate address on the biochip.
    Type: Application
    Filed: June 16, 2014
    Publication date: October 2, 2014
    Inventors: Larry Gold, Dominic Zichi
  • Publication number: 20140249043
    Abstract: The present disclosure describes methods, devices, reagents, and kits for the detection of one or more target molecules that may be present in a test sample. The described methods, devices, kits, and reagents facilitate the detection and quantification of a non-nucleic acid target (e.g., a protein target) in a test sample by detecting and quantifying a nucleic acid (i.e., an aptamer). The methods described create a nucleic acid surrogate for a non-nucleic acid target, thus allowing the wide variety of nucleic acid technologies, including amplification, to be applied to a broader range of desired targets, especially protein targets. The disclosure further describes aptamer constructs that facilitate the use of aptamers in a variety of analytical detection applications.
    Type: Application
    Filed: February 10, 2014
    Publication date: September 4, 2014
    Applicant: SOMALOGIC, INC.
    Inventors: Daniel J. Schneider, Dan Nieuwlandt, Bruce Eaton, Martin Stanton, Shashi Gupta, Stephan Kraemer, Dominic Zichi, Larry Gold
  • Patent number: 8703416
    Abstract: The present disclosure describes the isolation, identification and purification of aptamers having sufficiently high affinity and specificity to capture and immobilize intact sperm cells in the presence of female epithelial cells and other non-sperm semen components. The present disclosure also describes affinity-based methods for the detection of sperm cells in samples, including from forensic sample surrogates consisting of swab eluates containing a mixture of HeLa cells and sperm cells. The present disclosure describes methods for eluting sperm cell samples from swabs; methods for purifying sperm cells and methods for amplification and analysis of male DNA. The affinity-based system described herein is inexpensive, simple to use and easily implemented in forensic laboratories.
    Type: Grant
    Filed: June 15, 2012
    Date of Patent: April 22, 2014
    Assignee: SomaLogic, Inc.
    Inventors: Glenn Sanders, Evaldas Katilius, Larry Gold
  • Publication number: 20130116150
    Abstract: The present application includes biomarkers, methods, devices, reagents, systems, and kits for the detection and diagnosis of lung cancer. In one aspect, the application provides biomarkers that can be used alone or in various combinations to diagnose lung cancer or permit the differential diagnosis of pulmonary nodules as benign or malignant. In another aspect, methods are provided for diagnosing lung cancer in an individual, where the methods include detecting, in a biological sample from an individual, at least one biomarker value corresponding to at least one biomarker selected from the group of biomarkers provided in Table 18, Table 20, or Table 21, wherein the individual is classified as having lung cancer, or the likelihood of the individual having lung cancer is determined, based on the at least one biomarker value.
    Type: Application
    Filed: July 11, 2011
    Publication date: May 9, 2013
    Applicant: SOMALOGIC, INC.
    Inventors: Sheri Wilcox, Deborah Ayers, Nebojsa Janjic, Larry Gold, Michael Riel-Mehan, Thale Jarvis
  • Patent number: 8409795
    Abstract: The present disclosure describes improved SELEX methods for generating nucleic acid ligands that are capable of binding to target molecules and improved photoSELEX methods for generating photoreactive nucleic acid ligands that are capable of both binding and covalently crosslinking to target molecules. The disclosure further describes nucleic acid libraries having expanded physical and chemical properties and their use in SELEX and photoSELEX; methods for increasing the crosslinking efficiencies of photoaptamers; methods for producing photoaptamers having selective modifications that enhance functionality and minimize non-specific photoreactions; and methods for generating truncated nucleic acid ligands from nucleic acid ligands of longer length. The disclosure further describes aptamers and photoaptamers obtained by using any of the foregoing.
    Type: Grant
    Filed: July 17, 2008
    Date of Patent: April 2, 2013
    Assignee: Somalogic, Inc.
    Inventors: Daniel J. Schneider, Sheri K. Wilcox, Dominic Zichi, Dan Nieuwlandt, Jeff Carter, Larry Gold
  • Patent number: 8404830
    Abstract: The present disclosure is directed to the field of nucleic acid chemistry, specifically to 5-position modified uridines, as well as, oligonucleotides comprising said 5-position modified uridines. The present disclosure describes methods for producing aptamers comprising said 5-position modified uridines that are capable of binding to target molecules.
    Type: Grant
    Filed: December 15, 2010
    Date of Patent: March 26, 2013
    Assignee: SomaLogic, Inc.
    Inventors: Dominic Zichi, Sheri K. Wilcox, Chris Bock, Daniel J. Schneider, Bruce Eaton, Larry Gold
  • Publication number: 20120264117
    Abstract: The present disclosure describes the isolation, identification and purification of aptamers having sufficiently high affinity and specificity to capture and immobilize intact sperm cells in the presence of female epithelial cells and other non-sperm semen components. The present disclosure also describes affinity-based methods for the detection of sperm cells in samples, including from forensic sample surrogates consisting of swab eluates containing a mixture of HeLa cells and sperm cells. The present disclosure describes methods for eluting sperm cell samples from swabs; methods for purifying sperm cells and methods for amplification and analysis of male DNA. The affinity-based system described herein is inexpensive, simple to use and easily implemented in forensic laboratories.
    Type: Application
    Filed: June 15, 2012
    Publication date: October 18, 2012
    Applicant: SOMALOGIC, INC.
    Inventors: Glenn Sanders, Evaldas Katilius, Larry Gold