Patents by Inventor Joseph Treadway

Joseph Treadway 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: 20140206096
    Abstract: Nanocrystals having an indium-based core and methods for making them and using them to construct core-shell nanocrystals are described. These core-shell nanocrystals are highly stable and provide higher quantum yields than known nanocrystals of similar composition, and they provide special advantages for certain applications because of their small size.
    Type: Application
    Filed: January 31, 2014
    Publication date: July 24, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Joseph BARTEL, Yongfen Chen, Eric Tulsky, Joseph Treadway
  • Publication number: 20140131631
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of the thus-prepared nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A. The nanoparticles so prepared can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone; this method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Application
    Filed: November 6, 2013
    Publication date: May 15, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Marc D. SCHRIER, Donald ZEHNDER, Joseph TREADWAY, Joseph BARTEL
  • Patent number: 8679543
    Abstract: Nanocrystals having an indium-based core and methods for making them and using them to construct core-shell nanocrystals are described. These core-shell nanocrystals are highly stable and provide higher quantum yields than known nanocrystals of similar composition, and they provide special advantages for certain applications because of their small size.
    Type: Grant
    Filed: July 2, 2009
    Date of Patent: March 25, 2014
    Inventors: Joseph Bartel, Yongfen Chen, Eric Tulsky, Joseph Treadway
  • Patent number: 8637082
    Abstract: Nanocrystals having a ZnTe core and methods for making and using them to construct core-shell nanocrystals are described. These core-shell nanocrystals are highly stable and provide quantum yields and stability suitable for applications such as flow cytometry, cellular imaging, and protein blotting, medical imaging, and other applications where cadmium toxicity is an issue.
    Type: Grant
    Filed: October 2, 2009
    Date of Patent: January 28, 2014
    Assignee: Life Technologies Corporation
    Inventors: Eric Tulsky, Joseph Bartel, Joseph Treadway
  • Publication number: 20140001436
    Abstract: A population of bright and stable nanocrystals is provided. The nanocrystals include a semiconductor core and a thick semiconductor shell and can exhibit high extinction coefficients, high quantum yields, and limited or no detectable blinking.
    Type: Application
    Filed: December 23, 2011
    Publication date: January 2, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Eric Welch, Joseph Bartel, Eric Tulsky, Joseph Treadway, Yongfen Chen
  • Patent number: 8603362
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of these nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A; and can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone. This method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Grant
    Filed: September 10, 2012
    Date of Patent: December 10, 2013
    Assignee: Life Technologies Corporation
    Inventors: Marc Schrier, Donald Zehnder, Joseph Treadway, Joseph Bartel
  • Patent number: 8603792
    Abstract: Disclosed herein are conjugates comprising a biomolecule linked to a label that have biological activity and are useful in a wide variety of biological applications. For example, provided herein are polymerase-nanoparticle conjugates including a polymerase linked to a nanoparticle, wherein the conjugate has polymerase activity. Such conjugates can exhibit reduced aggregation and improved stochiometries wherein the average biomolecule:nanoparticle ratio approaches or equals 1:1. Also disclosed herein are improved methods for preparing such conjugates, and methods and systems for using such conjugates in biological applications such as nucleotide incorporation, primer extension and single molecule sequencing.
    Type: Grant
    Filed: March 26, 2010
    Date of Patent: December 10, 2013
    Assignee: Life Technologies Corporation
    Inventors: Theo Nikiforov, Daniel Mazur, Xinzhan Peng, Tommie Lloyd Lincecum, Jr., Yuri Belosludtsev, Howard Reese, Dmitriy Gremyachinskiy, Roman Rozhkov, John M. Mauro, Joseph Beechem, Eric Tulsky, Imad Naasani, Kari Haley, Joseph A. Treadway
  • Publication number: 20130037762
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of these nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A; and can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone. This method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Application
    Filed: September 10, 2012
    Publication date: February 14, 2013
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Marc D. Schrier, Donald A. Zehnder, Joseph A. Treadway, Joseph A. Bartel
  • Patent number: 8287761
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of the thus-prepared nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A. The nanoparticles so prepared can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone; this method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Grant
    Filed: June 15, 2009
    Date of Patent: October 16, 2012
    Assignee: Life Technologies Corporation
    Inventors: Marc Schrier, Donald Zehnder, Joseph Treadway, Joseph Bartel
  • Publication number: 20120034622
    Abstract: The use of nanostructures to monitor or modulate changes in cellular membrane potentials is disclosed.
    Type: Application
    Filed: July 20, 2011
    Publication date: February 9, 2012
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Michael J. Ignatius, Elena Molokanova, Alexei Savtchenko, Joseph A. Bartel, Weiwen Zhao, Joseph A. Treadway
  • Publication number: 20110315927
    Abstract: Methods for preparing core/shell nanocrystals are provided, using mismatched shell precursors and an electron transfer agent to control the nucleation and growth phases of particle formation.
    Type: Application
    Filed: October 2, 2009
    Publication date: December 29, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Eric Tulsky, Joseph Bartel, Joseph Treadway
  • Publication number: 20110306079
    Abstract: Provided herein are methods for making water-soluble nanoparticles comprising a core/shell nanocrystal that is coated with a surface layer comprising enough hydrophilic ligands to render the nanoparticle water soluble or water dispersable. Methods for crosslinking molecules on the surface of a nanoparticle, which methods can be used on the above water-soluble nanoparticles also are provided. Nanoparticle compositions resulting from these methods are also provided.
    Type: Application
    Filed: August 6, 2009
    Publication date: December 15, 2011
    Inventors: Eric Tulsky, Kari Haley, Imad Naasani, John Mauro, Roman Rozhkow, Joseph A. Treadway
  • Publication number: 20110300076
    Abstract: Nanocrystals having a ZnTe core and methods for making and using them to construct core-shell nanocrystals are described. These core-shell nanocrystals are highly stable and provide quantum yields and stability suitable for applications such as flow cytometry, cellular imaging, and protein blotting, medical imaging, and other applications where cadmium toxicity is an issue.
    Type: Application
    Filed: October 2, 2009
    Publication date: December 8, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Eric Tulsky, Joseph Bartel, Joseph Treadway
  • Publication number: 20110226991
    Abstract: A population of nanoparticles is disclosed. The population is comprised of a plurality of core/shell nanocrystals, each including: a semiconductor core, an intermediate semiconductor shell layer disposed over the semiconductor core, an external semiconductor shell layer disposed over the intermediate semiconductor shell layer, and a hydrophilic organic layer in direct contact with the external semi-conductor shell layer. The population of nanoparticles has a ?on value of less than about 1.4.
    Type: Application
    Filed: October 23, 2009
    Publication date: September 22, 2011
    Applicant: Life Technologies Corporation
    Inventors: Joseph A. Treadway, Eric Tulsky
  • Publication number: 20110223110
    Abstract: Nanocrystals having an indium-based core and methods for making them and using them to construct core-shell nanocrystals are described. These core-shell nanocrystals are highly stable and provide higher quantum yields than known nanocrystals of similar composition, and they provide special advantages for certain applications because of their small size.
    Type: Application
    Filed: July 2, 2009
    Publication date: September 15, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Joseph Bartel, Yongfen Chen, Eric Tulsky, Joseph Treadway
  • Publication number: 20110003343
    Abstract: Disclosed herein are conjugates comprising a biomolecule linked to a label that have biological activity and are useful in a wide variety of biological applications. For example, provided herein are polymerase-nanoparticle conjugates including a polymerase linked to a nanoparticle, wherein the conjugate has polymerase activity. Such conjugates can exhibit reduced aggregation and improved stochiometries wherein the average biomolecule:nanoparticle ratio approaches or equals 1:1. Also disclosed herein are improved methods for preparing such conjugates, and methods and systems for using such conjugates in biological applications such as nucleotide incorporation, primer extension and single molecule sequencing.
    Type: Application
    Filed: March 26, 2010
    Publication date: January 6, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Theo Nikiforov, Daniel Mazur, Xinzhan Peng, Tommie Lloyd Lincecum, JR., Yuri Belosludtsev, Howard Reese, Dmitriy Gremyachinskiy, Roman Rozhkov, John M. Mauro, Joseph Beechem, Eric Tulsky, Imad Naasani, Kari Haley, Joseph A. Treadway
  • Publication number: 20100108530
    Abstract: A method is described for the manufacture of semiconductor nanoparticles. Improved yields are obtained by use of a reducing agent or oxygen reaction promoter.
    Type: Application
    Filed: December 23, 2009
    Publication date: May 6, 2010
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Donald A. ZEHNDER, Joseph A. Treadway
  • Patent number: 7695642
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of the thus-prepared nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A. The nanoparticles so prepared can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone; this method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Grant
    Filed: December 13, 2004
    Date of Patent: April 13, 2010
    Assignee: Life Technologies Corporation
    Inventors: Marc D. Schrier, Donald A. Zehnder, Joseph A. Treadway, Joseph A. Bartel
  • Publication number: 20100059713
    Abstract: A method is provided for preparing luminescent semiconductor nanoparticles composed of a first component X, a second component A, and a third component B, wherein X, A, and B are different, by combining B with X and A in an amount such that the molar ratio B:(A+B) is in the range of approximately 0.001 to 0.20 and the molar ratio X:(A+B) is in the range of approximately 0.5:1.0 to 2:1. The characteristics of the thus-prepared nanoparticles can be substantially similar to those of nanoparticles containing only X and B while maintaining many useful properties characteristic of nanoparticles containing only X and A. The nanoparticles so prepared can additionally exhibit emergent properties such as a peak emission energy less than that characteristic of a particle composed of XA or XB alone; this method is particularly applicable to the preparation of stable, bright nanoparticles that emit in the red to infrared regions of the electromagnetic spectrum.
    Type: Application
    Filed: June 15, 2009
    Publication date: March 11, 2010
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Marc Schrier, Donald A. Zehnder, Joseph A. Treadway, Joseph A. Bartel
  • Patent number: 7559481
    Abstract: Devices, systems, methods, and compositions of matter can track and/or identify a library of elements, particularly for use with fluids, particulates, cells, and the like. Signals from one or more semiconductor nanocrystals may be combined to define spectral codes. Separation of signal wavelengths within dedicated wavelength ranges or windows facilitates differentiation of spectral codes, while calibration signals within the spectral codes can avoid ambiguity. Modeling based on prior testing can help derive libraries of acceptable codes.
    Type: Grant
    Filed: March 23, 2004
    Date of Patent: July 14, 2009
    Assignee: Life Technologies Corporation
    Inventors: Joseph A. Treadway, Stephen A. Empedocles, Andrew R. Watson