IP Library Granted Patent US 9,422,586
Granted Patent B2
US 9,422,586 · App. 11/818,623 · Granted Aug 23, 2016

Method for genetic identification of unknown organisms

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Quick Facts
Patent No.
US 9,422,586
App. No.
11/818,623
Granted
Aug 23, 2016
Kind
B2
Abstract

A method of rapid, genome and proteome based identification of unknown pathogenic or non-pathogenic organisms in a complex sample. The entire sample is analyzed by creating millions of emulsion encapsulated microdroplets, each containing a single pathogenic or non-pathogenic organism sized particle and appropriate reagents for amplification. Following amplification, the amplified product is analyzed.

Claims (48)

1. An apparatus for identifying pathogenic and non-pathogenic organisms in a sample, comprising:

a sample preparation means for preparing the sample, said sample preparation means including

reagents and

an emulsifier, and

means for mixing said reagents and said emulsifier, and

droplet maker means, said droplet maker means including an orifice wherein said droplet maker means forces the sample with the organisms in the sample and said reagents mixed with said emulsifier through said orifice to produce microdroplets with the sample with the pathogenic and non-pathogenic organisms in said microdroplets;

an amplifier for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said amplifer connected to said droplet maker;

a sorter for sorting said microdroplets, said sorter connected to said amplifier;

an analyzer for analyzing said microdroplets, said analyzer connected to said sorter; and

a system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said system for classifying and identifying the organisms connected to said analyzer.

2. An apparatus for identifying pathogenic and non-pathogenic organisms in a sample, comprising:

sample preparation means for preparing the sample, said sample preparation means including

reagents and

an emulsifier, and

means for mixing said reagents and said emulsifier, and

droplet maker means, said droplet maker means including an orifice wherein said droplet maker means forces the sample with the organisms in the sample and said reagents mixed with said emulsifier through said orifice to produce microdroplets with the sample with the pathogenic and non-pathogenic organisms in said microdroplets;

amplifier means for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets connected to said droplet maker, wherein said amplifier means includes PCR amplification means for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets;

a sorter for sorting said microdroplets, said sorter connected to said amplifier;

an analyzer for analyzing said microdroplets, said analyzer connected to said sorter; and

a system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said system for classifying and identifying the organisms connected to said analyzer.

3. An apparatus for identifying pathogenic and non-pathogenic organisms in a sample, comprising:

sample preparation means for preparing the sample, said sample preparation means including

reagents and

an emulsifier, and

means for mixing said reagents and said emulsifier, and

droplet maker means, said droplet maker means including an orifice wherein said droplet maker means forces the sample with the organisms in the sample and said reagents mixed with said emulsifier through said orifice to produce microdroplets with the sample with the pathogenic and non-pathogenic organisms in said microdroplets;

an amplifier for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said amplifier connected to said droplet maker;

sorter means for sorting said microdroplets, said sorter connected to said amplifier, wherein said sorter means comprises an optical sorter, a hydrodynamic sorter, or a magnetic sorter or any combination of an optical sorter, a hydrodynamic sorter, or a magnetic sorter;

an analyzer for analyzing said microdroplets, said analyzer connected to said sorter; and

a system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said system for classifying and identifying the organisms connected to said analyzer.

4. An apparatus for identifying pathogenic and non-pathogenic organisms in a sample, comprising:

a sample preparation system for preparing the sample, said sample preparation system including

reagents and

an emulsifier, and

a droplet maker, said droplet maker including an orifice wherein said droplet maker forces the sample with the organisms in the sample and said reagents mixed with said emulsifier through said orifice to produce microdroplets with the sample with the pathogenic and non-pathogenic organisms in said microdroplets;

an amplifier for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said amplifier connected to said droplet maker;

a sorter for sorting said microdroplets, said sorter connected to said amplifier;

an analyzer for analyzing said microdroplets, said analyzer connected to said sorter; and

a system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said system for classifying and identifying the organisms connected to said analyzer, wherein said system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets comprises a sequencer.

5. An apparatus for identifying pathogenic and non-pathogenic organisms in a sample, comprising:

a sample preparation system for preparing the sample, said sample preparation system including

reagents and

an emulsifier, and

a droplet maker, said droplet maker including an orifice wherein said droplet maker forces the sample with the organisms in the sample and said reagents mixed with said emulsifier through said orifice to produce microdroplets with the sample with the pathogenic and non-pathogenic organisms in said microdroplets;

an amplifier for amplifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said amplifier connected to said droplet maker;

a sorter for sorting said microdroplets, said sorter connected to said amplifier;

an analyzer for analyzing said microdroplets, said analyzer connected to said sorter, wherein said analyzer for analyzing said microdroplets is a parallel analyzer; and

a system for classifying and identifying the pathogenic and non-pathogenic organisms in the sample in said microdroplets, said system for classifying and identifying the organisms connected to said analyzer.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2016
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 039126/0437 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 020012/0032 →
CONFIRMATORY LICENSE Recorded Sep 28, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: ENERGY, U.S. DEPARTMENT OF
Reel/Frame 019901/0465 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2007
From: COLSTON, BILLY W., JR.; FITCH, JOSEPH P.; HINDSON, BENJAMIN J.; CARTER, J. CHANCE
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 019693/0572 →