Patents by Inventor Klaus-Peter Mobius

Klaus-Peter Mobius 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: 10753927
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Grant
    Filed: October 4, 2012
    Date of Patent: August 25, 2020
    Assignee: ALERE TECHNOLOGIES GMBH
    Inventors: Thomas Kaiser, Klaus-Peter Mobius, Torsten Schulz, Thomas Uhlig, Alexander Von Schenk Zu Schweinsberg, Eugen Ermantraut, Jens Tuchscheerer
  • Publication number: 20170058334
    Abstract: The invention relates to a reaction vessel, a device and a method for detecting specific interactions between molecular target and probe molecules. The present invention especially relates to a reaction vessel which has a shape and size typical of a laboratory reaction vessel and in which a supporting element with probe molecules immobilised thereon on predetermined regions is arranged on its base surfaces.
    Type: Application
    Filed: April 11, 2016
    Publication date: March 2, 2017
    Applicant: Clondiag Chip Technologies GmbH
    Inventors: Torsten Schulz, Eugen Ermantraut, Ralf Ehricht, Klaus- Peter Mobius, Gerd Wagner, Joachim Fischer, Thomas Ellinger
  • Patent number: 9310291
    Abstract: The invention relates to a reaction vessel, a device and a method for detecting specific interactions between molecular target and probe molecules. The present invention especially relates to a reaction vessel which has a shape and size typical of a laboratory reaction vessel and in which a supporting element with probe molecules immobilized thereon on predetermined regions is arranged on its base surfaces.
    Type: Grant
    Filed: July 16, 2004
    Date of Patent: April 12, 2016
    Assignee: CLONDIAG CHIP TECHNOLOGIES GMBH
    Inventors: Torsten Schulz, Eugen Ermantraut, Ralf Ehricht, Klaus-Peter Möbius, Gerd Wagner, Joachim Fischer, Thomas Ellinger
  • Patent number: 9097671
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones are disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Grant
    Filed: November 29, 2012
    Date of Patent: August 4, 2015
    Inventors: Torsten Schulz, Thomas Kaiser, Thomas Uhlig, Klaus Peter Möbius, Alexander von Schenk zu Schweinsberg
  • Publication number: 20150177231
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Application
    Filed: October 4, 2012
    Publication date: June 25, 2015
    Applicant: CLONDIAG GMBH
    Inventors: Thomas Kaiser, Klaus-Peter Möbius, Torsten Schulz, Thomas Uhlig, Alexander Von Schenk Zu Schweinsberg, Eugen Ermantraut, Jens Tuchscheerer
  • Publication number: 20140099731
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Application
    Filed: October 4, 2012
    Publication date: April 10, 2014
    Applicant: CLONDIAG GMBH
    Inventors: Thomas Kaiser, Klaus-Peter Möbius, Torsten Schulz, Thomas Uhlig, Alexander Von Schenk Zu Schweinsberg, Eugen Ermantraut, Jens Tuchscheerer
  • Patent number: 8633013
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Grant
    Filed: May 5, 2008
    Date of Patent: January 21, 2014
    Assignee: Clondiag GmbH
    Inventors: Thomas Kaiser, Klaus-Peter Möbius, Torsten Schulz, Thomas Uhlig, Alexander Von Schenk Zu Schweinsberg, Eugen Ermantraut, Jens Tuchscheerer
  • Patent number: 8349616
    Abstract: A method for assaying a sample for each of multiple analysis is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones are disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone includes a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Grant
    Filed: November 22, 2007
    Date of Patent: January 8, 2013
    Assignee: Clondiag GmbH
    Inventors: Torsten Schulz, Thomas Kaiser, Thomas Uhlig, Klaus Peter Möbius, Alexander Von Schenk Zu Schweinsberg
  • Publication number: 20100179068
    Abstract: A method for assaying a sample for each of multiple analytes is described. The method includes contacting an array of spaced-apart test zones with a liquid sample (e.g., whole blood). The test zones disposed within a channel of a microfluidic device. The channel is defined by at least one flexible wall and a second wall which may or may not be flexible. Each test zone comprising a probe compound specific for a respective target analyte. The microfluidic device is compressed to reduce the thickness of the channel, which is the distance between the inner surfaces of the walls within the channel. The presence of each analyte is determined by optically detecting an interaction at each of multiple test zones for which the distance between the inner surfaces at the corresponding location is reduced. The interaction at each test zone is indicative of the presence in the sample of a target analyte.
    Type: Application
    Filed: May 5, 2008
    Publication date: July 15, 2010
    Applicant: CLONDIAG GMBH
    Inventors: Thomas Kaiser, Klaus Peter Möbius, Torsten Schulz, Thomas Uhlig, Alexander Von Schenk Zu Schweinsberg, Eugen Ermantraut, Jens Tuchscheerer
  • Publication number: 20050064469
    Abstract: The invention relates to a reaction vessel, a device and a method for detecting specific interactions between molecular target and probe molecules. The present invention especially relates to a reaction vessel which has a shape and size typical of a laboratory reaction vessel and in which a supporting element with probe molecules immobilised thereon on predetermined regions is arranged on its base surfaces.
    Type: Application
    Filed: July 16, 2004
    Publication date: March 24, 2005
    Applicant: Clondiag Chip Technologies GmbH
    Inventors: Torsten Schulz, Eugen Ermantraut, Ralf Ehricht, Klaus-Peter Mobius, Gerd Wagner, Joachim Fischer, Thomas Ellinger
  • Publication number: 20050047973
    Abstract: Disclosed are devices for holding a substance library carrier, and which are useful in conducting reactions in which binding between complementary molecules is measured qualitatively or quantitatively. Also disclosed are methods for conducting such reactions in the device.
    Type: Application
    Filed: April 8, 2004
    Publication date: March 3, 2005
    Applicant: Clondiag Chip Technologies GmbH
    Inventors: Torsten Schulz, Eugen Ermantraut, Thomas Ullrich, Thomas Ellinger, Joachim Fischer, Thomas Kaiser, Klaus-Peter Mobius, Siegfried Poser, Jens Tuchscheerer, Martin Zieren
  • Publication number: 20040197807
    Abstract: Disclosed is a method for qualitative and/or quantitative detection of nucleic acid molecules amplified in an amplification reaction such as PCR. The change of the mass of oligonucleotides in an amplification solution, comprising the mass of target DNA and optionally, the mass of oligonucleotide primers, is determined during the amplification reaction. Also disclosed is a device for conducting the method.
    Type: Application
    Filed: January 6, 2004
    Publication date: October 7, 2004
    Applicant: Clondiag Chip Technologies GmbH
    Inventors: Torsten Schulz, Eugen Ermantraut, Seigfried Poser, Thomas Kaiser, Klaus-Peter Mobius, Thomas Ullrich, Karin Adelhelm