IP Library Granted Patent US 10,544,443
Granted Patent B2
US 10,544,443 · App. 15/748,490 · Granted Jan 28, 2020

Detection of bacteria using bacteriophage

Inventors: John Alston Kellum (Pittsburgh, PA); John D. Hempel (North Braddock, PA); Robert Hugh Edgar (Pittsburgh, PA); John Andrew Viator (Pittsburgh, PA)
Assignees: University of Pittsburgh—Of the Commonwealth System of Higher Education; Duquesne University of the Holy Spirit
C12Q1/04C12N7/02G01N15/10G01N29/2425C12N2795/10321C12N2795/10331G01N2015/1006G01N2291/02466
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Quick Facts
Patent No.
US 10,544,443
App. No.
15/748,490
Granted
Jan 28, 2020
Kind
B2
Abstract

A method of detecting a species, strain or type of bacteria includes mixing a labeled bacteriophage including a label that is detectible via a detection system with a bacterial culture including the species, strain or type of bacteria to which the labeled bacteriophage selectively binds and using the detection system to detect the labeled bacteriophage bound to the species, strain or type of bacteria.

Claims (10)

1. A method of determining if a sample taken from a patient includes a species, strain or type of bacteria, comprising: mixing a labeled bacteriophage including a label that is detectable via a detection system comprising a photoacoustic cell with the sample, the labeled bacteriophage being active to selectively bind with the species, strain or type of bacteria and using the detection system to determine the presence of the labeled bacteriophage bound to the species, strain or type of bacteria.

2. The method of claim 1 further comprising removing unbound labeled bacteriophage after mixing the labeled bacteriophage with the sample.

3. The method of claim 1 wherein the label is selected from the group consisting of fluorescein isothiocyanate, an azo dye, a cyanine dye, or a protein dye.

4. The method of claim 1 wherein the photoacoustic cell is a component of a photoacoustic flowmetry system.

5. The method of claim 1 wherein the species, strain or type of bacteria is quantified upon detection.

6. The method of claim 1 wherein the level of energy used in the photoacoustic cell is sufficiently low to reduce detection of unbound labeled bacteriophage.

7. The method of claim 1 wherein a plurality of labeled bacteriophages are mixed with the sample, each of the plurality of bacteriophages selectively binding with a different species, strain or type of bacteria, each of the plurality of bacteriophages including a different label that is separately detectable via the detection system and using the detection system to determine the presence of the labeled bacteriophage bound to at least one of the different species, strains or types of bacteria.

8. The method of claim 7 further comprising removing unbound labeled bacteriophage after mixing the labeled bacteriophage with the sample.

9. The method of claim 7 wherein the level of energy used in the photoacoustic cell is sufficiently low to reduce detection of unbound labeled bacteriophage.

10. The method of claim 7 wherein the detection system comprises a photoacoustic flow cytometry system.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2018
From: VIATOR, JOHN ANDREW
To: DUQUESNE UNIVERSITY OF THE HOLY SPIRIT
Reel/Frame 044851/0229 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2018
From: KELLUM, JOHN ALSTON; EDGAR, ROBERT HUGH
To: PITTSBURGH, UNIVERSITY OF - OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
Reel/Frame 044821/0414 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2018
From: HEMPEL, JOHN D.
To: PITTSBURGH, UNIVERSITY OF - OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
Reel/Frame 044821/0465 →
Continuity (2)
Provisional Application 62199472 · Jul 31, 2015
Related Publication 20180216154A1 · Aug 2, 2018