IP Library Granted Patent US 11,790,280
Granted Patent B2
US 11,790,280 · App. 17/378,988 · Granted Oct 17, 2023

Methods of chemical computation

Inventors: Brenda Rubenstein (Providence, RI); Jacob Karl Rosenstein (Providence, RI); Christopher Arcadia (Providence, RI); Shui Ling Chen (Harrisburg, PA); Amanda Doris Dombroski (Cranston, RI); Joseph D. Geiser (Barrington, RI); Eamonn Kennedy (West Warwick, RI); Eunsuk Kim (Providence, RI); Kady M. Oakley (North Attleboro, MA); Sherief Reda (Barrington, RI); Christopher Rose (Providence, RI); Jason Kelby Sello (Tiverton, RI); Hokchhay Tann (North Reading, MA); Peter Weber (Barrington, RI)
Assignee: BROWN UNIVERSITY
G06N99/007
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Quick Facts
Patent No.
US 11,790,280
App. No.
17/378,988
Granted
Oct 17, 2023
Kind
B2
Abstract

The invention provides methods for computing with chemicals by encoding digital data into a plurality of chemicals to obtain a dataset; translating the dataset into a chemical form; reading the data set; querying the dataset by performing an operation to obtain a perceptron; and analyzing the perceptron for identifying chemical structure and/or concentration of at least one of the chemicals, thereby developing a chemical computational language. The invention demonstrates a workflow for representing abstract data in synthetic metabolomes. Also presented are several demonstrations of kilobyte-scale image data sets stored in synthetic metabolomes, recovered at >99% accuracy.

Claims (7)

1. An information storage system, comprising a solid surface with a plurality of addressable locations, wherein each addressable location comprises a mixture of small molecules, wherein each mixture contains one set of small molecules per addressable location; wherein the set of small molecules per addressable location comprises a plurality of small molecules; and wherein the plurality comprises at least six molecules.

2. The information storage system of claim 1 , wherein the solid surface is a MALDI plate.

3. The information storage system of claim 1 , wherein the storage system comprises more than 100 kbits of data.

4. An information storage system, comprising a solid surface with a plurality of addressable locations, wherein each addressable location comprises a mixture of small molecules, and each mixture contains one set of small molecules per addressable location, wherein the small molecules are metabolomic elements.

5. An information storage system, comprising a solid surface with a plurality of addressable locations, wherein each addressable location comprises a mixture of small molecules, and each mixture contains one set of small molecules per addressable location, wherein the addressable locations comprise at least 1024 independent mixture spots.

6. An information storage system, comprising a solid surface with a plurality of addressable locations, wherein each addressable location comprises a mixture of small molecules, and each mixture contains one set of small molecules per addressable location, wherein the addressable locations comprise thousands of spatially arrayed nanoliter spots.

7. An information storage system, comprising a solid surface with a plurality of addressable locations, wherein each addressable location comprises a mixture of small molecules, and each mixture contains one set of small molecules per addressable location, wherein the storage system comprises at least a gigabyte of data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2023
From: RUBENSTEIN, BRENDA; ROSENSTEIN, JACOB KARL; ARCADIA, CHRISTOPHER; CHEN, SHUI LING; DOMBROSKI, AMANDA DORIS; GEISER, JOSEPH D.; KENNEDY, EAMONN; KIM, EUNSUK; OAKLEY, KADY M.; REDA, SHERIEF; ROSE, CHRISTOPHER; SELLO, JASON KELBY; TANN, HOKCHHAY; WEBER, PETER
To: BROWN UNIVERSITY
Reel/Frame 063982/0600 →
Continuity (4)
Division 17253013
Provisional Application 62791504 · Jan 11, 2019
Provisional Application 62687366 · Jun 20, 2018
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