IP Library Patent Application 18843785
Patent Application
App. No. 18/843,785

DNA MICROARRAYS AND COMPONENT LEVEL SEQUENCING FOR NUCLEIC ACID-BASED DATA STORAGE AND PROCESSING

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/843,785
Abstract

Technologies include systems, devices, and methods to write, store, read, and perform computation of digital information using nucleic acid molecules (e.g., DNA). The technologies include, for example, a device including one or more individually or block-addressable electrode micro-arrays or nano-arrays to write, store, retrieve, read, and compute/manipulate digital information.

Claims (27)

1 .- 100 . (canceled)

101 . A device for reading a nucleic acid sequence, the device including:

a nano-channel disposed in a substrate and configured to receive an input nucleic acid molecule including an input strand; and

a sensor device disposed on or in the nano-channel, the sensor device including an electronic sensing device, the electronic sensing device having an electronic gate having a gate voltage, wherein the gate voltage can be modulated with an electric charge of a translocating read component of the input nucleic acid molecule to effect a change in source-to-drain current in the gate.

102 .- 103 . (canceled)

104 . The device of claim 101 , wherein the sensor device is or includes a metal-oxide-semiconductor field-effect transistor (MOSFET).

105 . The device of claim 101 , wherein the sensor device is or includes an electrolyte oxide field-effect transistor (EOSFET).

106 . The device of claim 101 , wherein the read component includes a single-stranded nucleic acid molecule configured to hybridize to a section of a single stranded nucleic acid molecule.

107 . The device of claim 101 , including a plurality of read components, each read component configured to hybridize to a complementary section of the input strand to form the input nucleic acid molecule.

108 . The device of claim 101 , wherein a first read component is configured to hybridize to one or more sections of the input strand having a first input sequence, and a second read component is configured to hybridize to one or more sections of the input strand having a second input sequence.

109 . The device of claim 108 , wherein the first read component, when translocating through the gate, causes a first change in source-to-drain current in the gate and the second read component, when translocating through the gate, causes a second change in source-to-drain current in the gate.

110 . The device of claim 109 , wherein the first change being different from the second change.

111 . The device of claim 101 , comprising a start read component and a stop read component, the start read component including a single-stranded nucleic acid molecule configured to hybridize to a first end of the input strand and the stop read component including a single-stranded nucleic acid molecule configured to hybridize to a second end of the input strand.

112 . The device of claim 101 , wherein the input strand encodes digital information.

113 . The device of claim 101 , wherein the input strand includes one or more identifier components, each identifier component being a component of a nucleic acid identifier encoding digital information.

114 . The device of claim 101 , wherein the input strand includes a first input sequence corresponding to a first identifier component and a second input sequence corresponding to a second identifier component.

115 . The device of claim 101 , comprising an overlap read component including a single-stranded nucleic acid molecule configured to hybridize to at least a portion of the first identifier component and the second identifier component.

116 . The device of claim 115 , wherein the overlap read component includes a non-complementary nucleic acid section forming a flap and a nucleic acid section having secondary molecular structure at an end of the flap.

117 . The device of claim 115 , wherein the overlap read component includes a non-complementary component forming a flap and a component having secondary molecular structure hybridized to the flap.

118 . The device of claim 101 , wherein the sensor device is or includes one or more electronic signal processing devices.

119 . The device of claim 101 , wherein the read component is a single-stranded nucleic acid molecule including a section having a secondary molecular structure.

120 . The device of claim 101 , wherein the read component includes a peptide aptamer, a dendrimer, or a protein.

121 - 123 . (canceled)

124 . The device claim 101 , wherein the sensor device includes a plurality of electronic sensing devices arranged in series along a path of the nano-channel.

125 . (canceled)

126 . The device of claim 124 , wherein the plurality of sensor devices or plurality of electronic sensing devices are configured to read two or more read components simultaneously.

127 .- 153 . (canceled)

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2026
From: CATALOG TECHNOLOGIES, INC.
To: BIOMEMORY AMERICA, LLC
Reel/Frame 075235/0936 →
SECURITY INTEREST Recorded Oct 3, 2025
From: CATALOG TECHNOLOGIES, INC.
To: HANWHA IMPACT NEW TECH LLC
Reel/Frame 072998/0067 →