Patents Assigned to Autonomous Medical Devices Inc.
  • Patent number: 12111313
    Abstract: A field effect transistor comprising a chelator or derivatized chelator, a device for detecting a marker in a sample comprising said sensor, a method for detecting metal ions in a sample comprising said sensor or device and a sensor and method for detecting a marker in a sample.
    Type: Grant
    Filed: August 14, 2019
    Date of Patent: October 8, 2024
    Assignee: Autonomous Medical Devices Inc.
    Inventor: Roger D. Kornberg
  • Patent number: 12023674
    Abstract: A field portable diagnostic apparatus uses a rotatable disk in which a microfluidic circuit is defined. The microfluidic circuit includes a centrifugal separation chamber receiving a sample to stratify the sample. A magnetic bead holding chamber is communicated to a mixing chamber, where mass amplifying functionalized magnetic-nanoparticles, held in a buffer solution and contained in the magnetic bead holding reservoir communicated to mixing chamber, are mixed with the separated fluid delivered to mixing chamber from the separation chamber. The functionalized magnetic nanoparticles conjugate with a target analyte in the sample. A magnet in proximity to a SAW chamber including a SAW detector draws the functionalized magnetic nanoparticles toward antibodies immobilized on the SAW sensor surface A wash reservoir is communicated to the SAW sensor chamber, and a cleanup/waste reservoir is communicated to the SAW chamber for receive fluid after it has passed through the SAW chamber.
    Type: Grant
    Filed: December 8, 2021
    Date of Patent: July 2, 2024
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Josh Shachar, Sam Gurley, Aaron Cipriano, Peter Yin, Rob Purnell, Marc Rocklinger, Ming Petrullo, Stelica Stelea, Alexandra Perebikovsky
  • Patent number: 11567068
    Abstract: The illustrated embodiments include a method of operating a SAW sensor to detect a sample in a fluid which includes the steps of: providing a SAW sensor with a functionalized detection lane in a handheld, portable assay device and sensor system; maintaining the functionalized detection lane of the SAW sensor dry until the sample is fluidically disposed in the detection lane; fluidically disposing the sample in the functionalized detection lane; removing fluid the functionalized detection lane to concentrate the sample in the functionalized detection lane to increase the probability of a specific antibody-antigen interaction; washing the functionalized detection lane so that substantially only the specific antigen-antibody interaction remains in the functionalized detection lane; removing fluid from the functionalized detection lane again; and measuring concentration of the sample while the functionalized detection lane is fluid-free.
    Type: Grant
    Filed: March 28, 2019
    Date of Patent: January 31, 2023
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Yehoshua Shachar, Marlon S. Thomas
  • Patent number: 11358140
    Abstract: An cartridge is combined with a smart device which is capable of communicating with a network to perform a portable, fast, field assay of a small sample biological analyte. A closed microfluidic circuit for mixes the analyte with a buffer with functionalized magnetic beads capable of being specifically combined with the analyte. A detector communicates with the microfluidic circuit in which the mixed analyte, buffer and combined functionalized magnetic beads are sensed. A microcontroller is coupled to detector for controlling the detector and for data processing an output assay signal from the detector. A user interface communicates with the microcontroller for providing user input and for providing user output through the smart device to the network.
    Type: Grant
    Filed: October 4, 2018
    Date of Patent: June 14, 2022
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Josh Yehoshua Shachar, Sam Gurley, Aaron Cipriano, Peter Yin, Rob Purnell, Marc Rocklinger, Ming Petrullo, Stelica Stelea, Marlon S. Thomas
  • Patent number: 11293919
    Abstract: The invention includes a method of assaying an analyte in a sample in a portable, handheld microfluidic reader. The method includes the steps of: inserting the sample in the reader; capturing the analyte with a first antibody having a DNA tag attached thereto; capturing the analyte in the sample with a second antibody attached to a surface or having a magnetic nanoparticle (MNP) attached thereto; where a sandwich including the magnetic nanoparticle, first and second antibodies, the analyte and the DNA tag is formed; replicating the DNA tag using isothermal amplification to a predetermined amount of DNA tags detectable by a detector sufficient to overcome the minimal mass sensitivity limitations of the detector; and measuring the amount of replicated DNA tags using the detector. The invention also includes an apparatus or handheld portable field microfluidic reader in which the method is performed.
    Type: Grant
    Filed: December 13, 2019
    Date of Patent: April 5, 2022
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Josh Shachar, Roger Kornberg
  • Patent number: 11224874
    Abstract: A field portable diagnostic apparatus uses a rotatable disk in which a microfluidic circuit is defined. The microfluidic circuit includes a centrifugal separation chamber receiving a sample to stratify the sample. A magnetic bead holding chamber is communicated to a mixing chamber, where mass amplifying functionalized magnetic-nanoparticles, held in a buffer solution and contained in the magnetic bead holding reservoir communicated to mixing chamber, are mixed with the separated fluid delivered to mixing chamber from the separation chamber. The functionalized magnetic nanoparticles conjugate with a target analyte in the sample. A magnet in proximity to a SAW chamber including a SAW detector draws the functionalized magnetic nanoparticles toward antibodies immobilized on the SAW sensor surface A wash reservoir is communicated to the SAW sensor chamber, and a cleanup/waste reservoir is communicated to the SAW chamber for receive fluid after it has passed through the SAW chamber.
    Type: Grant
    Filed: February 25, 2019
    Date of Patent: January 18, 2022
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Josh Yehoshua Shachar, Sam Gurley, Aaron Cipriano, Peter Yin, Rob Purnell, Marc Rocklinger, Ming Petrullo, Stelica Stelea
  • Publication number: 20210402392
    Abstract: An automated system communicated to a remote server for diagnostically field testing a sample taken from a patient using an automated portable handheld instrument to determine the presence of Covid-19 and/or antibodies thereto includes microfluidic circuits defined in a rotatable disk for performing a bioassay using a microarray to generate an electrical signal indicative of a bioassay measurement; the microarray operationally positioned in the microfluidic circuit; one or more lasers; one or more positionable valves in the microfluidic circuit; and a backbone unit for rotating the disk according to a protocol to perform the bioassay, for controlling the lasers to selectively open the positionable valves in the microfluidic disk, for operating the microarray to generate a digital image as a bioassay measurement; for communicating the bioassay measurement to the remote server, and for associating the performed bioassay and its corresponding bioassay measurement to the patient.
    Type: Application
    Filed: October 28, 2020
    Publication date: December 30, 2021
    Applicant: Autonomous Medical Devices Inc.
    Inventors: Josh Shachar, Roger Kornberg, Ehsan Shamloo, Horacio Kido, Adam Roberts, Hector Munoz
  • Patent number: 11156542
    Abstract: A surface acoustic wave (SAW) performs a rapid, label-free detection of biological species. Biosensing and detection of multiple analytes multiplexed by an array of sensing lanes is configured to enable bio-amplification using engineered DNA encoded libraries as the probe through a phage display procedure to enhance specificity, capture statistics for the detection, screening and analyzing of the analyte in vitro. A biochemical formulation minimizes the limit of detection (LOD) at a threshold magnitude on the order of a femtomolar concentration. Additional enhancement of the apparatus is achieved by use of an analog front end to amplify biochemical events.
    Type: Grant
    Filed: August 22, 2017
    Date of Patent: October 26, 2021
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Yehoshua Shachar, Roger Kornberg
  • Publication number: 20210311028
    Abstract: The disclosure relates to antibody conjugates or aptamer conjugates comprising an antibody linked to a lipid vesicle comprising a detectable label, methods for detecting a marker or several markers in a sample by using said antibody and aptamer conjugates. The present disclosure further relates to microfluidics devices to detect one or more markers in a sample by using said antibody and aptamer conjugates.
    Type: Application
    Filed: October 11, 2019
    Publication date: October 7, 2021
    Applicant: Autonomous Medical Devices Inc.
    Inventor: Roger D. Kornberg
  • Publication number: 20210310044
    Abstract: The disclosure relates to antibody conjugates comprising an antibody linked to a polynucleotide, aptamer conjugates comprising an aptamer linked to a polynucleotide, and methods for detecting a marker or several markers in a sample by using said antibody and aptamer conjugates. The present disclosure also relates to microfluidics devices for detecting markers in a sample. The present disclosure further relates to methods for detecting a microorganism or several microorganisms in a sample and a microfluidics device to be used to detect such microorganisms.
    Type: Application
    Filed: October 12, 2019
    Publication date: October 7, 2021
    Applicant: Autonomous Medical Devices Inc.
    Inventor: Roger D. Kornberg
  • Patent number: 11130994
    Abstract: The illustrated embodiments of the invention include an automated method of assaying a viral and antibody analyte in a sample in a portable, handheld microfluidic reader having a SAW detector with a minimal mass sensitivity limitation. The automated method includes the steps of automatically performing the assay with the SAW detector with enhanced sensitivity as in Optikus I, but also includes the steps of automatically disposing a second portion of the sample on a microarray, selectively automatically probing the second portion of the sample for antibodies corresponding to the at least one selected virus using the microarray, and automatically reading the microarray using a fluorescent camera to identify antibodies in the second portion of the sample.
    Type: Grant
    Filed: June 25, 2020
    Date of Patent: September 28, 2021
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Josh Shachar, Philip Felgner, Marc Madou
  • Publication number: 20210293798
    Abstract: The disclosure relates to a Field Effect Transistor comprising a chelator or derivatized chelator, a device for detecting a marker in a sample comprising said sensor, a method for detecting metal ions in a sample comprising said sensor or device and a sensor and method for detecting a marker in a sample.
    Type: Application
    Filed: August 14, 2019
    Publication date: September 23, 2021
    Applicant: Autonomous Medical Devices Inc.
    Inventor: Roger D. Kornberg
  • Patent number: 11020741
    Abstract: A system and method for performing a portable, fast, field assay of a small sample biological analyte includes a microfluidic cartridge and a reader with which the microfluidic cartridge is selectively communicated. A closed microfluidic circuit mixes and recirculates the analyte with a buffer. A shear horizontal surface acoustic wave (SAW) detector communicates with the microfluidic circuit and has a plurality of channels including at least one functionalized sensing channel in which the mixed analyte and buffer is recirculated and sensed. Capture of the analyte is amplified by recirculation of the analyte and buffer, and detection is amplified by use of an all-purpose endospore display mass amplification.
    Type: Grant
    Filed: December 10, 2018
    Date of Patent: June 1, 2021
    Assignee: Autonomous Medical Devices Inc.
    Inventors: Yehoshua Shachar, Roger Kornberg