Patents by Inventor Ramakrishna Sista

Ramakrishna Sista 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: 20110203930
    Abstract: The present invention relates to bead incubating and washing on a droplet actuator. Methods for incubating magnetically responsive beads that are labeled with primary antibody, a sample (i.e., analyte), and secondary reporter antibodies on a magnet, on and off a magnet, and completely off a magnet are provided. Also provided are methods for washing magnetically responsive beads using shape-assisted merging of droplets. Also provided are methods for shape-mediated splitting, transporting, and dispensing of a sample droplet that contains magnetically responsive beads. The apparatuses and methods of the invention provide for rapid time to result and optimum detection of an analyte in an immunoassay.
    Type: Application
    Filed: April 7, 2011
    Publication date: August 25, 2011
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Vamsee K. Pamula, Ramakrishna Sista, Arjun Sudarsan
  • Publication number: 20110180571
    Abstract: The present invention provides droplet actuators, modified fluids and methods relating to droplet operations. An aspect includes a droplet actuator including a droplet operations substrate; an oil based filler fluid on the droplet operations substrate comprising an oil soluble additive in the filler fluid; and a droplet in contact with the oil based filler fluid. Still other aspects are provided.
    Type: Application
    Filed: February 22, 2011
    Publication date: July 28, 2011
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Vijay Srinivasan, Vamsee Pamula, Ramakrishna Sista, Arjun Sudarsan, Prasanna Thwar
  • Publication number: 20110118132
    Abstract: The invention is directed to droplet actuator devices and assay methods. The method may include, among other things, a method of conducting enzymatic assays using umbelliferone substrates with cyclodextrins in droplets in oil, the method including incubating a droplet in oil, the droplet preferably comprising an umbelliferone substrate, a sample, and a cyclodextrin compound. The methods may further include a method of substantially eliminating cross-contamination between droplets in enzymatic containing substrate-based bioassays. The method may include immobilization of the enzymatic substrate including forming an inclusion complex with the substrate for stabilizing the substrate within an aqueous environment, wherein the inclusion complex may be formed using cyclodextrins. In yet another embodiment, the invention may provide a method of enhancing hydrolysis of enzymatic substrates.
    Type: Application
    Filed: January 25, 2011
    Publication date: May 19, 2011
    Applicant: Advanced Liquid Logic, Inc.
    Inventors: Theodore Winger, Allen E. Eckhardt, Carrie Graham, Ramakrishna Sista, Vamsee K. Pamula, Tong Wang, Yalin Xiong, Ning Wu, Sanjay Saha, Gajendrasinh Balvantsinh Raolji, Raveendra Dayam
  • Publication number: 20110114490
    Abstract: The invention provides a method of redistributing magnetically responsive beads in a droplet. The method may include providing a droplet including magnetically responsive beads. The droplet may be provided within a region of a magnetic field having sufficient strength to attract the magnetically responsive beads to an edge of the droplet or towards an edge of the droplet, or otherwise regionalize or aggregate beads within the droplet. The method may also include conducting on a droplet operations surface one or more droplet operations using the droplet without removing the magnetically responsive beads from the region of the magnetic field. The droplet operations may in some cases be electrode-mediated. The droplet operations may redistribute and/or circulate the magnetically responsive beads within the droplet. In some cases, the droplet may include a sample droplet may include a target analyte.
    Type: Application
    Filed: January 6, 2011
    Publication date: May 19, 2011
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Vamsee K. Pamula, Arjun Sudarsan, Ramakrishna Sista
  • Publication number: 20110104747
    Abstract: Methods of concentrating beads in a droplet and/or loading beads on a fluidic device are provided, including among other things, a method of concentrating beads in a droplet, the method comprising: (a) providing a droplet actuator comprising: (i) an interior droplet operations volume; and (ii) a reservoir exterior to the interior volume; (iii) a droplet established in a liquid path extending from the reservoir into the interior volume; (b) providing magnetically responsive beads in the portion of the droplet which is in the reservoir; (c) magnetically attracting the magnetically responsive beads through the liquid path into the portion of the droplet which is in the interior volume; and (d) forming a droplet comprising one or more of the magnetically responsive beads in the interior volume.
    Type: Application
    Filed: March 9, 2009
    Publication date: May 5, 2011
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Michael G. Pollack, Ramakrishna Sista, Zhishan Hua, Vamsee K. Pamula, Arjun Sudarsan, Vijay Srinivasan, Prasanna Thwar, Alexander Shenderov, Dwayne Allen
  • Publication number: 20110091989
    Abstract: The invention provides droplet actuators and droplet actuator techniques. Among other things, the droplet actuators and methods are useful for manipulating beads on a droplet actuator, such as conducting droplet operations using bead-containing droplets on a droplet actuator. For example, beads may be manipulated on a droplet actuator in the context of executing a sample preparation protocol and/or an assay protocol. An output of the methods of the invention may be beads prepared for execution of an assay protocol. Another output of the methods of the invention may be results of an assay protocol executed using beads.
    Type: Application
    Filed: May 18, 2009
    Publication date: April 21, 2011
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Ramakrishna Sista, Vamsee Pamula, Arjun Sudarsan, Vijay Srinivasan, Prasanna Thwar
  • Publication number: 20110076692
    Abstract: The present invention provides for the detection of cardiac markers on a droplet actuator. An aspect provides a method of assaying a cardiac marker in a biological sample from a subject, the method including providing a droplet actuator, loading the biological sample and assay reagents on the droplet actuator, executing droplet operations to create sample droplets from the sample and reagent droplets from the reagents on the droplet actuator, and executing droplet operations using the sample droplets and reagent droplets to produce a detectable signal indicative of the quantity of the cardiac marker in the biological sample. Still other aspects are provided.
    Type: Application
    Filed: September 29, 2009
    Publication date: March 31, 2011
    Inventors: Ramakrishna Sista, Vamsee K. Pamula, Arjun Sudarsan
  • Publication number: 20100279374
    Abstract: The invention provides a method of dispersing or circulating magnetically responsive beads within a droplet in a droplet actuator. The invention, in one embodiment, makes use of a droplet actuator with a plurality of droplet operations electrodes configured to transport the droplet, and a magnetic field present at a portion of the plurality of droplet operations electrodes. A bead-containing droplet is provided on the droplet actuator in the presence of the uniform magnetic field. Beads are circulated in the droplet during incubation by conducting droplet operations on the droplet within a uniform region of the magnetic field. Other embodiments are also provided.
    Type: Application
    Filed: April 15, 2010
    Publication date: November 4, 2010
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Ramakrishna Sista, Vamsee K. Pamula, Vijay Srinivasan, Michael G. Pollack, Allen Eckhardt
  • Publication number: 20100258441
    Abstract: The invention provides a method of circulating magnetically responsive beads within a droplet in a droplet actuator. The invention also provides methods for splitting droplets. The invention, in one embodiment, makes use of a droplet actuator with top and bottom substrates, a plurality of magnetic fields respectively present proximate the top and bottom substrates, wherein at least one of the magnet fields is selectively alterable, and a plurality of droplet operations electrodes positioned along at least one of the top and bottom surfaces. A droplet is positioned between the top and bottom surfaces and at least one of the magnetic fields is selectively altered.
    Type: Application
    Filed: April 15, 2010
    Publication date: October 14, 2010
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Ramakrishna Sista, Vamsee K. Pamula, Vijay Srinivasan, Michael G. Pollack, Allen Eckhardt
  • Publication number: 20100236928
    Abstract: A droplet actualor having electrodes configured for ejecting droplet operations transporting droplets on a surface, and a sensor arranged in proximity to one or more of the electrodes establishing a detection window on the surface for detection of one or more properties of one or more droplets on the surface, wherein the electrodes establish at least two pathways for transport of droplets into the detection window. Also provided is, A method of detecting a property of a target droplet, including using droplet operations to modulate signals from a droplet set comprising the target droplet, detecting the modulated signals of the droplet set, demodulating the modulated signals to identify the signal produced by one or more individual droplets of the set Related methods and alternative embodiments are also provided.
    Type: Application
    Filed: October 15, 2008
    Publication date: September 23, 2010
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Vijay Srinivasan, Vamsee K. Pamula, Ramakrishna Sista, Michael G. Pollack
  • Publication number: 20100120130
    Abstract: The present invention is directed to droplet actuators with droplet retention structures, and methods related thereto. In an exemplary embodiment, the invention provides a droplet actuator with one or more substrates arranged to form a droplet operations gap comprising gap-facing surfaces; droplet operations electrodes configured to conduct droplet operations in the droplet operations gap; at least one barrier included on at least one of the substrate surfaces and having dimensions selected to: permit droplet transport from atop a first droplet operations electrode to a second droplet operations electrode when the second droplet operations electrode is activated; and prevent movement of a droplet from atop a first droplet operations electrode when the first and second droplet operations electrodes are inactive.
    Type: Application
    Filed: December 28, 2009
    Publication date: May 13, 2010
    Applicant: Advanced Liquid Logic, Inc.
    Inventors: Vijay Srinivasan, Vamsee K. Pamula, Ramakrishna Sista, Prasanna Thwar
  • Publication number: 20100068764
    Abstract: A method of providing a droplet in contact with a magnetically responsive bead and having a reduced quantity of a substance.
    Type: Application
    Filed: February 11, 2008
    Publication date: March 18, 2010
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Ramakrishna Sista, Vamsee K. Pamula, Michael G. Pollack, Vijay Srinivasan, Allen E. Eckhardt
  • Publication number: 20090263834
    Abstract: Droplet actuator devices and methods for immunoassays and washing are provided. According to one embodiment, a method of providing a droplet in contact with a surface of a super paramagnetic bead with a reduced concentration of a substance is provided and includes: (a) providing a super paramagnetic bead in contact with a droplet comprising a starting concentration and starting quantity of the substance and having a starting volume; (b) conducting one or more droplet operations to merge a wash droplet with the droplet provided in step (a) to yield a combined droplet; and (c) conducting one or more droplet operations to divide the combined droplet to yield a set of droplets. The set of droplets includes: (i) a droplet in contact with the super paramagnetic bead having a decreased concentration of the substance relative to the starting concentration; and (ii) a droplet which is separated from the super paramagnetic bead.
    Type: Application
    Filed: February 26, 2009
    Publication date: October 22, 2009
    Applicant: ADVANCED LIQUID LOGIC, INC.
    Inventors: Ramakrishna Sista, Michael G. Pollack, Vamsee K. Pamula, Vijay Srinivasan