Patents by Inventor Ryan J. White

Ryan J. White 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: 20100038243
    Abstract: Nanopore based ion-selective electrodes and methods of their manufacture as well as methods for their use are disclosed and described. The nanopore based ion-selective electrode can include a pore being present in a solid material and having a nanosize opening in the solid material, a metal conductor disposed inside the pore opposite the opening in the solid material, a reference electrode material contacting said metal conductor and disposed inside the pore, a conductive composition in contact with the reference electrode and disposed in the pore, and an ion-selective membrane. The ion-selective membrane can be configured to isolate the metal conductor, reference electrode material, and conductive composition together within the pore.
    Type: Application
    Filed: September 7, 2007
    Publication date: February 18, 2010
    Inventors: Henry S. White, Ryan J. White, Richard B. Brown, Hakhyun Nam, Jun Ho Shim
  • Publication number: 20100025263
    Abstract: Provided are the preparation, characterization, and application of a nanopore membrane device. The nanopore device comprises a thin membrane prepared from glass, fused silica, ceramics or quartz, containing one or more nanopores ranging from about 2 nm to about 500 nm. The nanopore is prepared by a template method using sharpened metal wires and the size of the pore opening can be controlled during fabrication by an electrical feedback circuit. The nanopore device is particularly useful for counting and analyzing nanoparticles of radius less than 400 nm.
    Type: Application
    Filed: May 2, 2007
    Publication date: February 4, 2010
    Applicant: UNIVERSITY OF UTAH RESEARCH FOUNDATION
    Inventors: Henry S. White, Bo Zhang, Ryan J. White, Eric N. Ervin
  • Publication number: 20090175765
    Abstract: A method of preventing non-specific adsorption of proteins onto a surface can include providing a substrate that has a surface on which surface groups are attached. A solution can be applied to the surface that includes a protective reagent having a terminal functional group exhibiting a dipole moment. A monolayer comprising the protective reagent is assembled on the surface by reacting the protective reagent with the surface groups, thereby creating a protected surface. The protective reagent alone is sufficient to confer to the protected surface an increased resistance to adsorption of proteins.
    Type: Application
    Filed: October 20, 2008
    Publication date: July 9, 2009
    Inventors: Joel M. Harris, Henry S. White, Joshua R. Wayment, Ryan J. White
  • Publication number: 20080218184
    Abstract: Chemical modification of a glass and fused silica nanopore surfaces results in surface properties that are ideal for localized bilayer formation over a nanopore and subsequent ion channel recording. With no surface modification, one may form a bilayer supported on the glass capillary extending across the nanopore orifice. Changing the surface properties from that of bare glass to a moderately hydrophobic surface produces a lipid monolayer above the glass and spontaneously yields a bilayer across the nanopore orifice, effectively corralling a single protein ion channel in the lipid bilayer region spanning nanopore orifice. The bilayer structure over the modified nanopore is such that current can only flow through the protein ion channel. The protein ion channel is able to diffuse in the bilayer above the pore opening, but cannot leave this area to enter the lipid monolayer.
    Type: Application
    Filed: May 2, 2007
    Publication date: September 11, 2008
    Applicant: UNIVERSITY OF UTAH RESEARCH FOUNDATION
    Inventors: Henry S. White, Ryan J. White, Eric N. Ervin
  • Publication number: 20080121534
    Abstract: Provided are fabrication, characterization and application of a nanodisk electrode, a nanopore electrode and a nanopore membrane. These three nanostructures share common fabrication steps. In one embodiment, the fabrication of a disk electrode involves sealing a sharpened internal signal transduction element (“ISTE”) into a substrate, followed by polishing of the substrate until a nanometer-sized disk of the ISTE is exposed. The fabrication of a nanopore electrode is accomplished by etching the nanodisk electrode to create a pore in the substrate, with the remaining ISTE comprising the pore base. Complete removal of the ISTE yields a nanopore membrane, in which a conical shaped pore is embedded in a thin membrane of the substrate.
    Type: Application
    Filed: May 3, 2007
    Publication date: May 29, 2008
    Applicant: UNIVERSITY OF UTAH RESEARCH FOUNDATION
    Inventors: Henry S. White, Bo Zhang, Ryan J. White, Eric N. Ervin, Gangli Wang