Patents Examined by Christopher A Hixson
  • Patent number: 8367417
    Abstract: The discovery that alterations in methylation, which can cause one or more genes on the single X chromosome in males to be partially silenced or overexpressed, constitute a predisposition to autism spectrum disorders is generally disclosed herein. These alterations provide the rationale and basis for methods to diagnose autism spectrum disorders.
    Type: Grant
    Filed: June 28, 2011
    Date of Patent: February 5, 2013
    Assignee: Greenwood Genetic Center, Inc.
    Inventors: Roger E. Stevenson, Julie R. Jones, Cindy D. Skinner, Michael J. Friez
  • Patent number: 8343425
    Abstract: A user-friendly multi-layer micro/nanofluidic flow device and micro/nano fabrication process are provided for numerous uses. The multi-layer micro/nanofluidic flow device can comprise: a substrate, such as indium tin oxide coated glass (ITO glass); a conductive layer of ferroelectric material, preferably comprising a PZT layer of lead zirconate titanate (PZT) positioned on the substrate; electrodes connected to the conductive layer; a nanofluidics layer positioned on the conductive layer and defining nanochannels; a microfluidics layer positioned upon the nanofluidics layer and defining microchannels; and biomolecular nanovalves providing bio-nanovalves which are moveable from a closed position to an open position to control fluid flow at a nanoscale.
    Type: Grant
    Filed: February 24, 2009
    Date of Patent: January 1, 2013
    Assignee: UChicago Argonne, LLC
    Inventors: Hao Li, Leonidas E. Ocola, Orlando H. Auciello, Millicent A. Firestone
  • Patent number: 8329473
    Abstract: Column which includes a first column with an upper layer of H2SO4 silica gel and a lower layer AgNO3 silica gel and a second column packed with alumina, connected detachably to a lower end of the first column. An oily liquid containing polychlorinated biphenyls, is added to the upper layer and heated. An aliphatic hydrocarbon solvent is supplied to the upper layer, whereby polychlorinated biphenyls captured by the first column are dissolved in the aliphatic hydrocarbon and then flow to the second column. The polychlorinated biphenyls are captured by the alumina which is located near the inlet of the second column, which is then detached from the first column. A hydrophobic solvent is passed through the second column in a direction opposite to the direction in which the aliphatic hydrocarbon was passed, providing an extract containing the polychlorinated biphenyls dissolved in a small amount of the hydrophobic solvent.
    Type: Grant
    Filed: March 21, 2008
    Date of Patent: December 11, 2012
    Assignees: Ehime University, Miura Co., Ltd.
    Inventors: Katsuhisa Honda, Tomofumi Takahashi
  • Patent number: 8323977
    Abstract: A method for identifying the redox activity of a subject compound is disclosed. The method can be performed aerobically and can include forming a mixture comprising a free-radical precursor and a compound to be tested, and converting the free-radical precursor into a free-radical anion and a free-radical cation. After the free radical cation and the free radical anion have been formed, the relative redox activity of the subject compound may cause a difference in the rate of photo-bleaching of the mixture and/or the rate of superoxide generation. These differences can be quantified and used to identify the redox activity of the subject compound. This sensitive technique for measuring redox activity can be used to screen compounds for various biological applications. Drugs also can be developed based on the relationship between redox activity and biological activity for particular biological applications.
    Type: Grant
    Filed: August 9, 2011
    Date of Patent: December 4, 2012
    Assignee: State of Oregon acting by and through the State Board of Higher Education on behalf of Portland State University
    Inventors: Jonathan J. Abramson, Benjamin S. Marinov
  • Patent number: 8318503
    Abstract: The invention relates to a method for determining the amount of conjugated taxane, in particular paclitaxel, in a PGA-taxane conjugate said method comprising: a) reacting the PGA-taxane conjugate with a compound formula (I): R1R2N—NH2 (I), wherein R1 and R2 are as defined in the description; to give a unbound taxane and a PGA hydrazide and b) determining the amount of unbound taxane.
    Type: Grant
    Filed: March 5, 2008
    Date of Patent: November 27, 2012
    Assignee: Cell Therapeutics, Inc.
    Inventors: Stefano Fazioni, Keith Hovda, Valeria Livi, Marc McKennon, Luigi Siviero, Holly Spoonemore
  • Patent number: 8318014
    Abstract: A reactor includes a tubular-shaped housing in which a stack of filter plates can be rotationally arranged. The cross-sectional area of the reactor container is, in the region of the stack of filter plates, a maximum of 40% greater than the cross-sectional area of the stack of filter plates. The longitudinal extension of the reactor housing is a multiple of the longitudinal extension of the stack of filter plates, such that inside the reactor, adjacent to the stack of filter plates, additional processing devices can be arranged. The rotating stack of filter plates ensures that the entire reactor is cross-flown in an intensive manner.
    Type: Grant
    Filed: May 2, 2007
    Date of Patent: November 27, 2012
    Assignee: Grundfos Management a/s
    Inventors: Finn Beldring, Christian Rasmussen
  • Patent number: 8318508
    Abstract: Better patterning methods, including for better methods for forming biomolecular arrays, including a method comprising: providing a tip and a substrate surface, disposing a patterning composition at the end of the tip, depositing at least some of the patterning composition from the tip to the substrate surface to form a deposit disposed on the substrate surface, wherein the patterning composition comprises at least one lipid, optionally at least one solvent, and at least one patterning species different from the lipid and the optional solvent. The lipid can be a phospholipid such as DOPC. The patterning species can be an oligonucleotide or a protein. Microarrays and nanoarrays can be prepared including nanoscale resolution of deposits. The lipid can activate patterning or increase the rate of patterning. Simplified tip preparation can be achieved. Nanoscopic, SPM, and AFM tips can be used.
    Type: Grant
    Filed: June 17, 2008
    Date of Patent: November 27, 2012
    Assignees: Northwestern University, Karlsruhe Institute of Technology
    Inventors: Chad A. Mirkin, Ling Huang, Rafael Vega, Steven Lenhert
  • Patent number: 8304250
    Abstract: A multi-dimensional chromatographic method for the separation of N-glycans. The method comprises providing a glycan preparation that includes at least one negatively charged N-glycan. The glycan preparation is then separated by anion-exchange chromatography and at least one secondary chromatographic technique.
    Type: Grant
    Filed: April 15, 2008
    Date of Patent: November 6, 2012
    Assignee: Momenta Pharmaceuticals, Inc.
    Inventors: Ian Christopher Parsons, Ting Zheng, Nur Sibel Gunay, Carlos J. Bosques
  • Patent number: 8304253
    Abstract: A refill droplet facilitates the extraction of a droplet laterally from a channel in a microfluidic apparatus. Such extraction allows a discrete band of separated particles or solute molecules to be excised from a fluid stream and processed and analyzed separately. An extraction point is located along the length of the channel and includes an EWOD surface or similar microfluidic technology to extract a droplet. An opening in the channel opposite the extraction means is equipped with microfluidic technology to transport a refill droplet to the opening. The refill droplet is moved into the channel or column to occupy the area previously occupied by the extracted droplet. This prevents distortion or mixing of the bands of particles or molecules within the channel and prevents the draining of any portion of the fluidic system.
    Type: Grant
    Filed: October 19, 2006
    Date of Patent: November 6, 2012
    Assignee: Advanced Liquid Logic Inc
    Inventors: Uichong Brandon Yi, Peter Patrick De Guzman, Wayne Liu, Chang-Jin Kim
  • Patent number: 8273577
    Abstract: The present invention provides a phenothiazine-derivative color-measuring method that can detect a phenothiazine-derivative color even at a wavelength longer than the wavelength that exhibits maximum absorption.
    Type: Grant
    Filed: January 30, 2008
    Date of Patent: September 25, 2012
    Assignee: ARKRAY, Inc.
    Inventors: Satoshi Yonehara, Norio Inamura
  • Patent number: 8268634
    Abstract: A spongy swab (16) is mounted against the distal face (15) of a piston (14) at the end of a push-rod (12). Once humected with a sample fluid, the swab and piston assembly is inserted into a tubular body (30) like the plunger of a syringe. As the swab is pushed and squeezed against the distal end (20) of the body up to a trippable stop, part of the fluid is excreted into a chromatographic immunoassay testing device (21) through a first aperture (19) in a distal section of the body. The remainder of the sample is kept in a sealed chamber (7) between the piston and the end wall of the tubular body until it is excreted through a second aperture (23) for a secondary test by pushing the piston beyond the trippable stop. That preserves the sample within the spongy swab that has been used to collect it; thus preventing the adsorption of the analytes on the surfaces of the sealed chamber, and to provide a convenient and rapid way to extract the remainder of the specimen in a syringe-like manner.
    Type: Grant
    Filed: November 28, 2008
    Date of Patent: September 18, 2012
    Assignee: Ameditech, Inc.
    Inventors: John Wu, Waiping Ng
  • Patent number: 8268630
    Abstract: Sensor devices and sensing methods are provided. A sensor device is provided two flow channels, each comprising a sensor, and analyte flow is alternated between the two channels such that the sensors alternately serve as a sensor and a reference, thereby increasing accuracy of the sensors. The device is useful, for example, in chemical sensing using a variety of sensor types including without limitation: chemiresistors, gravimetric sensors, optical sensors, among others. Related sensing methods also are provided.
    Type: Grant
    Filed: July 7, 2010
    Date of Patent: September 18, 2012
    Assignee: Carnegie Mellon University
    Inventors: Gary Keith Fedder, Nathan Scott Lazarus
  • Patent number: 8268264
    Abstract: A method and device for separating from samples magnetic particles that contain capture compounds on their surfaces. The device includes a sheath including a magnet and including orienting pin adapted to concentrate or direct a magnetic field of the magnet; and a magnetizable plate with lid holes for receiving a vessel lid of a vessel, the magnetizable plate configured to receive the sheath and position the orienting pin over the vessel lid. In one method, magnetic beads with attached molecules are collected in the lids of the reaction vessel by the magnetic separator device provided herein and the separated magnetic particles, which carry the molecules of interest through affinity-based attachment chemistry and are held in the lid by the magnet of the device, are released into a new vessel containing a solution by removal of the separator device without the need for pipettes or liquid handling devices.
    Type: Grant
    Filed: February 5, 2010
    Date of Patent: September 18, 2012
    Assignee: Caprotec Bioanalytics GmbH
    Inventor: Thomas Lenz
  • Patent number: 8252244
    Abstract: A waste treatment system processes waste upon the application of energy. The system includes a vessel that has an open space that receives waste feedstock. At least two plasma electrodes are mounted to the vessel. An electrode movement control system may position the plasma electrodes to facilitate a pryolysis process to treat the waste feedstock.
    Type: Grant
    Filed: February 3, 2009
    Date of Patent: August 28, 2012
    Assignee: PEAT International, Inc.
    Inventors: Jose A. Capote, Deepak Shah, Parameswaran Venugopal, Hsien E. Wu, Daniel Ripes, Joseph A. Rosin
  • Patent number: 8232111
    Abstract: There is provided a micropipette, a micropipette system, and a method for using a micropipette system capable of accurately sucking a desired quantitative volume of liquid for measurement. A micropipette system comprises a micropipette 1 including a liquid-holding chamber 12 that holds a liquid for measurement sucked in by capillary action through an opening 11 provided at an end of the liquid-holding chamber 12, the liquid-holding chamber 12 having an inner surface on which a photocatalyst layer 13 exhibiting a hydrophilic property at the time of light irradiation is formed, irradiation means 2 for emitting light toward the photocatalyst layer 13, and control means 3 for controlling the range of the area irradiated with the light from the irradiation means 2 in accordance with a desired quantitative volume of the liquid for measurement.
    Type: Grant
    Filed: January 29, 2009
    Date of Patent: July 31, 2012
    Assignee: Empire Technology Development LLC
    Inventor: Takahisa Kusuura
  • Patent number: 8227257
    Abstract: A method for acoustically reorienting a fluid in a channel includes introducing into a channel a first fluid having a first acoustic contrast, introducing into the channel a second fluid having a second acoustic contrast that is different from the first acoustic contrast, applying acoustic radiation pressure to the channel, and acoustically reorienting the second fluid based upon the difference between the first acoustic contrast and the second acoustic contrast.
    Type: Grant
    Filed: September 26, 2008
    Date of Patent: July 24, 2012
    Assignee: Life Technologies Corporation
    Inventors: Michael D. Ward, Carleton C. Stewart, Gregory Kaduchak
  • Patent number: 8222039
    Abstract: A process for purification of water soluble polymers is provided. A polymer of interest can be separated from a mixture of polymers, provided the polymer of interest differs from other polymers in the mixture in the number of reactive terminal groups. The process involves derivatizing polymers at the reactive terminal groups with a derivatizing molecule, bearing either (i) two or three cationic or anionic ionizable groups, and a group capable of covalent bonding to the reactive terminal groups or (ii) three or four ionizable groups, at least one of which is capable of covalent bonding to the reactive terminal groups; followed by ion exchange. The process allows removal of PEG from MPEG, and can be used for polymers having an average size greater than 9,000 Da Derivatization may be reversible in order to allow re-use of recovered contaminant polymers.
    Type: Grant
    Filed: February 22, 2007
    Date of Patent: July 17, 2012
    Assignee: Biovectra Inc.
    Inventors: James F. Monthony, Li Yang, Kurt E. Kershaw, Christopher D. Winslow, John G. Riley
  • Patent number: 8221593
    Abstract: A reactor, a plant, and a continuous, industrial process carried out therein for preparing high-purity silicon tetrachloride or high-purity germanium tetrachloride by treating the silicon tetrachloride or germanium tetrachloride to be purified, which is contaminated by at least one hydrogen-containing compound, by a cold plasma and isolating purified high-purity silicon tetrachloride or germanium tetrachloride from the resulting treated phase by fractional distillation. The treatment is carried out in a plasma reactor in which longitudinal axes of a dielectric, of a high-voltage electrode, and of a grounded, metallic heat exchanger are oriented parallel to one another and at the same time parallel to the force vector of gravity.
    Type: Grant
    Filed: June 6, 2006
    Date of Patent: July 17, 2012
    Assignee: Evonik Degussa GmbH
    Inventors: Juergen Erwin Lang, Rainer Nicolai, Hartwig Rauleder
  • Patent number: 8221699
    Abstract: A liquid applicator for applying a liquid sample to a liquid receiving surface is disclosed. The liquid applicator comprises a bibulous line to hold a first predetermined volume of liquid for application to a liquid receiving surface. A second predetermined volume less than or equal to the first predetermined volume is applied to the liquid receiving surface in a substantially uniform and consistent pattern. Systems and methods for using embodiments of the liquid applicators are also disclosed.
    Type: Grant
    Filed: July 8, 2010
    Date of Patent: July 17, 2012
    Assignee: Scripps Laboratories, Inc.
    Inventors: Lowry Jonathan Messenger, Simon Charles Khoury
  • Patent number: 8206990
    Abstract: The present invention is related to a method for isolating a target nucleic acid from a sample comprising said target nucleic acid, comprising the steps of mixing a sample containing said target nucleic acid with a binding solution and a nucleic acid binding matrix, binding at least part of said target nucleic acid to said nucleic acid binding matrix, wherein said nucleic acid binding matrix is treated simultaneously or has been previously treated with at least one compound comprising a metal substance selected from the group consisting of metals of the main groups 13 to 16, semimetals and transition metals for reducing non-target nucleic acid contaminations or wherein said nucleic acid binding matrix is modified with hydrophobic groups. Furthermore, respective kits and reagents are provided with the teaching of the present invention.
    Type: Grant
    Filed: October 10, 2007
    Date of Patent: June 26, 2012
    Assignee: Qiagen GmbH
    Inventors: Christoph Ritt, Christoph Erbacher, Patrick Baumhof