Patents by Inventor Wolfgang Hinz

Wolfgang Hinz 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: 20190257693
    Abstract: Disclosed herein are methods and systems for spectrometric analysis of samples. In some cases, the spectrometric analysis is Raman spectrometry. The methods and systems may be used to identify one or more characteristics of a sample, such as the identity of and the quantity of a molecule within the sample. In some embodiments, the methods and devices provide for rapid sample analysis that is more accurate, precise and cost-effective than traditional methods.
    Type: Application
    Filed: June 15, 2017
    Publication date: August 22, 2019
    Applicant: Valisure LLC
    Inventors: Adam Daniel CLARK-JOSEPH, David LIGHT, Wolfgang HINZ
  • Publication number: 20190233558
    Abstract: A method of forming a particle includes, in a disperse phase within an aqueous suspension, polymerizing a plurality of mer units of a hydrophilic monomer having a hydrophobic protection group, thereby forming a polymeric particle including a plurality of the hydrophobic protection groups. The method further includes converting the polymeric particle to a hydrophilic particle.
    Type: Application
    Filed: January 28, 2019
    Publication date: August 1, 2019
    Applicant: LIFE TECHNOLOGIES AS
    Inventors: Geir FONNUM, Grete Irene MODAHL, Nini KJUS, Astrid Evenroed MOLTEBERG, Diem Thuy Thi TRAN, Jo AASERUD, Muhammed GOKMEN, Steven M. MENCHEN, Carl FULLER, Luisa ANDRUZZI, Wolfgang HINZ
  • Publication number: 20190204293
    Abstract: A chemical sensor for analyte solutions utilizes AC excitation of a sample distributed in one or more micro-wells of a measurement device. The sensors utilize narrowband filtering of the measured signal(s), resulting in a large reduction in noise. Synchronous detection is utilized to provide high discrimination of the desired signal from noise or interfering sources. Conductance and by extension impedance is measured by applying a constant alternating current (AC) voltage across the electrodes of each micro-well and measuring the resulting current.
    Type: Application
    Filed: December 21, 2018
    Publication date: July 4, 2019
    Inventors: John DONOHUE, Phil WAGGONER, Scott PARKER, Wolfgang HINZ, Chiu Tai Andrew WONG
  • Publication number: 20190194744
    Abstract: The disclosure relates to novel particle compositions and methods of making said compositions having applications in nucleic acid analysis, as well as apparatuses and systems for the same.
    Type: Application
    Filed: March 4, 2019
    Publication date: June 27, 2019
    Inventors: Wolfgang HINZ, David LIGHT, Todd REARICK, James A. BALL
  • Patent number: 10329544
    Abstract: In some embodiments, the present teachings provide methods for nucleic acid amplification, comprising forming a reaction mixture, and subjecting the reaction mixture to conditions suitable for nucleic acid amplification. In some embodiments, methods for nucleic acid amplification include subjecting the nucleic acid to be amplified to partially denaturing conditions. In some embodiments, methods for nucleic acid amplification include amplifying without fully denaturing the nucleic acid that is amplified. In some embodiments, the methods for nucleic acid amplification employ an enzyme that catalyzes homologous recombination and a polymerase. In some embodiments, methods for nucleic acid amplification can be conducted in a single reaction vessel. In some embodiments, methods for nucleic acid amplification can be conducted in a single continuous liquid phase of a reaction mixture, without need for compartmentalization of the reaction mixture or immobilization of reaction components.
    Type: Grant
    Filed: April 6, 2016
    Date of Patent: June 25, 2019
    Assignee: LIFE TECHNOLOGIES CORPORATION
    Inventors: Chieh-Yuan Li, David Ruff, Shiaw-Min Chen, Jennifer O'Neil, Rachel Kasinskas, Jonathan Rothberg, Bin Li, Kai Qin Lao, Wolfgang Hinz
  • Patent number: 10246533
    Abstract: A method of forming a particle includes, in a disperse phase within an aqueous suspension, polymerizing a plurality of monomer units of a hydrophilic monomer having a hydrophobic protection group, thereby forming a polymeric particle including a plurality of the hydrophobic protection groups. The method further includes converting the polymeric particle to a hydrophilic particle.
    Type: Grant
    Filed: December 15, 2015
    Date of Patent: April 2, 2019
    Assignees: LIFE TECHNOLOGIES AS, LIFE TECHNOLOGIES Corporation
    Inventors: Geir Fonnum, Grete Irene Modahl, Nini Hofslokken Kjus, Astrid Evenroed Molteberg, Diem Tran, Jo Aaserud, M. Talha Gokmen, Steven M. Menchen, Carl Fuller, Luisa Andruzzi, Wolfgang Hinz
  • Publication number: 20190079047
    Abstract: Methods and apparatus relating to FET arrays for monitoring chemical and/or biological reactions such as nucleic acid sequencing-by-synthesis reactions. Some methods provided herein relate to improving signal (and also signal to noise ratio) from released hydrogen ions during nucleic acid sequencing reactions.
    Type: Application
    Filed: August 10, 2018
    Publication date: March 14, 2019
    Inventors: Jonathan M. Rothberg, Wolfgang Hinz, John F. Davidson, Antoine M. van Oijen, John Leamon, Martin Huber
  • Publication number: 20190071667
    Abstract: The invention provides particle compositions having applications in nucleic acid analysis. Nucleic acid polymer particles of the invention allow polynucleotides to be attached throughout their volumes for higher loading capacities than those achievable solely with surface attachment. In one aspect, nucleic acid polymer particles of the invention comprise polyacrylamide particles with uniform size distributions having low coefficients of variations, which result in reduced particle-to-particle variation in analytical assays. Such particle compositions are used in various amplification reactions to make amplicon libraries from nucleic acid fragment libraries.
    Type: Application
    Filed: September 4, 2018
    Publication date: March 7, 2019
    Inventors: Wolfgang HINZ, John LEAMON, David LIGHT, Jonathan M. ROTHBERG
  • Publication number: 20190071723
    Abstract: A sensor apparatus includes a substrate, a semiconductor device disposed over the substrate, the semiconductor device having a surface electrode structure, and a saccharide coating formed over the surface electrode structure. The saccharide coating can be removed prior to use. The semiconductor device can further include a well and optionally a bead disposed in the well.
    Type: Application
    Filed: November 6, 2018
    Publication date: March 7, 2019
    Inventors: Phil WAGGONER, James A. BALL, Wolfgang HINZ, Michael L. MINTO, Scott PARKER, David M. COX, Alexander MASTROIANNI, Jeremy GRAY, Marc GLAZER, Kimberly GORRELL
  • Patent number: 10221451
    Abstract: The disclosure relates to novel particle compositions and methods of making said compositions having applications in nucleic acid analysis, as well as apparatuses and systems for the same.
    Type: Grant
    Filed: June 29, 2015
    Date of Patent: March 5, 2019
    Assignee: LIFE TECHNOLOGIES CORPORATION
    Inventors: Wolfgang Hinz, David Light, Todd Rearick, James A. Ball
  • Patent number: 10203300
    Abstract: Methods and apparatus relating to very large scale FET arrays for analyte measurements. ChemFET (e.g., ISFET) arrays may be fabricated using conventional CMOS processing techniques based on improved FET pixel and array designs that increase measurement sensitivity and accuracy, and at the same time facilitate significantly small pixel sizes and dense arrays. Improved array control techniques provide for rapid data acquisition from large and dense arrays. Such arrays may be employed to detect a presence and/or concentration changes of various analyte types in a wide variety of chemical and/or biological processes. In one example, chemFET arrays facilitate DNA sequencing techniques based on monitoring changes in hydrogen ion concentration (pH), changes in other analyte concentration, and/or binding events associated with chemical processes relating to DNA synthesis.
    Type: Grant
    Filed: February 22, 2016
    Date of Patent: February 12, 2019
    Assignee: LIFE TECHNOLOGIES CORPORATION
    Inventors: Jonathan M. Rothberg, Wolfgang Hinz, Kim L. Johnson, James Bustillo
  • Patent number: 10202473
    Abstract: A method of forming a particle includes, in a disperse phase within an aqueous suspension, polymerizing a plurality of mer units of a hydrophilic monomer having a hydrophobic protection group, thereby forming a polymeric particle including a plurality of the hydrophobic protection groups. The method further includes converting the polymeric particle to a hydrophilic particle.
    Type: Grant
    Filed: January 25, 2016
    Date of Patent: February 12, 2019
    Assignees: LIFE TECHNOLOGIES AS, LIFE TECHNOLOGIES CORPORATION
    Inventors: Geir Fonnum, Grete Irene Modahl, Nini Hofsloekken Kjus, Astrid Evenroed Molteberg, Diem Thuy Thi Tran, Jo Aaserud, M. Talha Gokmen, Steven M. Menchen, Carl Fuller, Luisa Andruzzi, Wolfgang Hinz
  • Patent number: 10189956
    Abstract: A polymer substrate, such as a polymer particle, is formed from a carboxyl functional monomer. In an example, the carboxyl functional monomer has a protection group in place of the OH of the carboxyl group. Once the monomer is polymerized, such a protection group can be removed, providing a polymer network with carboxyl functional sites. Such sites can be used to attach other functionality to the polymer substrate.
    Type: Grant
    Filed: January 15, 2018
    Date of Patent: January 29, 2019
    Assignees: LIFE TECHNOLOGIES AS, LIFE TECHNOLOGIES CORPORATION
    Inventors: Geir Fonnum, Steven M. Menchen, M. Talha Gokmen, Pontus Lundberg, Prasanna Krishnan Thwar, Alfred Lui, Lily Lu, Wolfgang Hinz, Lene Husaboe, Elisabeth Breivold, Astrid Evenroed Molteberg, Synne Larsen
  • Publication number: 20190017959
    Abstract: Methods and apparatus relating to very large scale FET arrays for analyte measurements. ChemFET (e.g., ISFET) arrays may be fabricated using conventional CMOS processing techniques based on improved FET pixel and array designs that increase measurement sensitivity and accuracy, and at the same time facilitate significantly small pixel sizes and dense arrays. Improved array control techniques provide for rapid data acquisition from large and dense arrays. Such arrays may be employed to detect a presence and/or concentration changes of various analyte types in a wide variety of chemical and/or biological processes. In one example, chemFET arrays facilitate DNA sequencing techniques based on monitoring changes in hydrogen ion concentration (pH), changes in other analyte concentration, and/or binding events associated with chemical processes relating to DNA synthesis.
    Type: Application
    Filed: May 30, 2018
    Publication date: January 17, 2019
    Inventors: Jonathan ROTHBERG, Wolfgang HINZ, Kim JOHNSON, James BUSTILLO
  • Publication number: 20190017107
    Abstract: A method of forming a polymer matrix array includes applying an aqueous solution into wells of a well array. The aqueous solution includes polymer precursors. The method further includes applying an immiscible fluid over the well array to isolate the aqueous solution within the wells of the well array and polymerizing the polymer precursors isolated in the wells of the well array to form the polymer matrix array. An apparatus includes a sensor array, a well array corresponding to the sensor array, and an array of polymer matrices disposed in the well array.
    Type: Application
    Filed: August 31, 2018
    Publication date: January 17, 2019
    Inventors: David LIGHT, Wolfgang HINZ, Ronald CICERO, Christina INMAN, Paul KENNEY, Alexander MASTROIANNI, Roman ROZHKOV, Yufang WANG, Jeremy GRAY, Marc GLAZER, Dmitriy GREMYACHINSKIY
  • Publication number: 20180355350
    Abstract: The present invention provides novel microfluidic devices and methods that are useful for performing high-throughput screening assays and combinatorial chemistry. The invention provides for aqueous based emulsions containing uniquely labeled cells, enzymes, nucleic acids, etc., wherein the emulsions further comprise primers, labels, probes, and other reactants. An oil based carrier-fluid envelopes the emulsion library on a microfluidic device, such that a continuous channel provides for flow of the immiscible fluids, to accomplish pooling, coalescing, mixing, sorting, detection, etc., of the emulsion library.
    Type: Application
    Filed: June 1, 2018
    Publication date: December 13, 2018
    Inventors: Darren Roy Link, Laurent Boitard, Jeffrey Branciforte, Yves Charles, Gilbert Feke, John Q. Lu, David Marran, Ahmadali Tabatabai, Michael Weiner, Wolfgang Hinz, Jonathan M. Rothberg
  • Publication number: 20180334708
    Abstract: Methods and apparatus relating to very large scale FET arrays for analyte measurements. ChemFET (e.g., ISFET) arrays may be fabricated using conventional CMOS processing techniques based on improved FET pixel and array designs that increase measurement sensitivity and accuracy, and at the same time facilitate significantly small pixel sizes and dense arrays. Improved array control techniques provide for rapid data acquisition from large and dense arrays. Such arrays may be employed to detect a presence and/or concentration changes of various analyte types in a wide variety of chemical and/or biological processes. In one example, chemFET arrays facilitate DNA sequencing techniques based on monitoring changes in hydrogen ion concentration (pH), changes in other analyte concentration, and/or binding events associated with chemical processes relating to DNA synthesis.
    Type: Application
    Filed: April 10, 2018
    Publication date: November 22, 2018
    Inventors: Jonathan ROTHBERG, Wolfgang HINZ, Kim JOHNSON, James BUSTILLO
  • Patent number: 10066260
    Abstract: A method of forming a polymer matrix array includes applying an aqueous solution into wells of a well array. The aqueous solution includes polymer precursors. The method further includes applying an immiscible fluid over the well array to isolate the aqueous solution within the wells of the well array and polymerizing the polymer precursors isolated in the wells of the well array to form the polymer matrix array. An apparatus includes a sensor array, a well array corresponding to the sensor array, and an array of polymer matrices disposed in the well array.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: September 4, 2018
    Assignee: LIFE TECHNOLOGIES CORPORATION
    Inventors: David Light, Wolfgang Hinz, Ronald L. Cicero, Christina E. Inman, Paul M. Kenney, Alexander Mastroianni, Roman Rozhkov, Yufang Wang, Jeremy Gray, Marc Glazer, Dmitriy Gremyachinskiy
  • Patent number: 10059987
    Abstract: Methods, compositions, systems, apparatuses and kits comprising modified proteins, particularly modified nucleic acid-binding proteins with altered buffering properties are provided. For example, in some embodiments, methods of forming modified proteins including one or more amino acid modifications to achieve desired pKa values are described. Furthermore, the invention provides methods for using such modified proteins in ion-producing reactions, such as ion-based nucleic acid sequencing reactions.
    Type: Grant
    Filed: June 16, 2017
    Date of Patent: August 28, 2018
    Assignee: Life Technologies Corporation
    Inventors: John Davidson, Wolfgang Hinz, Jonathan Rothberg, Richard Whitaker
  • Publication number: 20180237595
    Abstract: A polymer substrate, such as a polymer particle, is formed from a carboxyl functional monomer. In an example, the carboxyl functional monomer has a protection group in place of the OH of the carboxyl group. Once the monomer is polymerized, such a protection group can be removed, providing a polymer network with carboxyl functional sites. Such sites can be used to attach other functionality to the polymer substrate.
    Type: Application
    Filed: January 15, 2018
    Publication date: August 23, 2018
    Inventors: Geir FONNUM, Steven M. MENCHEN, M. Talha GOKMEN, Pontus LUNDBERG, Prasanna Krishnan THWAR, Alfred LUI, Lily LU, Wolfgang HINZ, Lene Husaboe, Elisabeth BREIVOLD, Astrid Evenroed MOLTEBERG, Synne LARSEN