IP Library Granted Patent US 11,899,011
Granted Patent B2
US 11,899,011 · App. 18/308,219 · Granted Feb 13, 2024

Selective optical detection of organic analytes in liquids

Inventors: Sergei Babitshenko (Tallinn, EE); Jaak Järv (Tallinn, EE); Aleksei Kuznetsov (Tallinn, EE); Anton Mastitski (Tallinn, EE)
Assignee: QanikDX OU
G01N33/54373G01N21/6428G01N33/582G01N33/588G01N2021/6441
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Quick Facts
Patent No.
US 11,899,011
App. No.
18/308,219
Granted
Feb 13, 2024
Kind
B2
Abstract

An assay substrate including a first component comprising a sensor molecule labeled with a quantum dot, the quantum dot immobilized to an assay substrate surface with a first linker being a bi-polar linker comprising a first binding group for specific binding of the quantum dot and a second binding group for specific binding of the assay substrate surface, the sensor molecule having a specific binding site for an organic analyte, the sensor molecule labeled with the quantum dot in a position that has no effect on the organic analyte binding the specific binding site; and a second component comprising a chemical analogue of the organic analyte, the chemical analogue labeled with a fluorescent dye, the chemical analogue linked to the quantum dot with a second linker having a length exceeding Foster radius, and the chemical analogue reversibly binding the specific binding site of the sensor molecule of the first component.

Claims (31)

1. An assay substrate comprising:

a first component comprising a sensor molecule labeled with a quantum dot, the quantum dot immobilized to an assay substrate surface with a first linker, the first linker being a bi-polar linker comprising a first binding group for specific binding of the quantum dot and a second binding group for specific binding of the assay substrate surface, the sensor molecule having a specific binding site for an organic analyte, the sensor molecule labeled with the quantum dot in a position that has no effect on the organic analyte binding the specific binding site;

a second component comprising a chemical analogue of the organic analyte, the chemical analogue labeled with a fluorescent dye, the chemical analogue linked to the quantum dot with a second linker having a length exceeding Förster radius, and the chemical analogue reversibly binding the specific binding site of the sensor molecule of the first component;

the quantum dot having a first fluorescence emission spectrum that excites fluorescence of the fluorescent dye and the fluorescent dye having a second fluorescence emission spectrum distinguished from the first fluorescence spectrum of the quantum dot.

2. The assay substrate of claim 1 , wherein the second linker is sized to prevent binding of the chemical analogue with a specific binding site of a neighbouring first component unlinked to the chemical analogue.

3. The assay substrate of claim 1 , wherein the sensor molecule is labeled with the quantum dot by a third linker linking the sensor molecule to the quantum dot, a length of the third linker being shorter than the Förster radius and being shorter than the length of the second linker.

4. The assay substrate of claim 2 , wherein the sensor molecule is labeled with the quantum dot by a third linker linking the sensor molecule to the quantum dot, a length of the third linker being shorter than the Förster radius and being shorter than the length of the second linker.

5. The assay substrate of claim 1 , wherein the assay substrate is configured to bind a plurality of types of organic analytes, a plurality of types of chemical analogues respectively labeled with a plurality of types of fluorescent markers, each one of the plurality of types of chemical analogues linked to a single quantum dot.

6. The assay substrate of claim 1 , wherein the assay substrate is configured to bind a plurality of types of organic analytes, a plurality of types of chemical analogues respectively labeled with a plurality of types of fluorescent markers, at least two of the plurality of types of chemical analogues linked to a single quantum dot.

7. The assay substrate of claim 1 , wherein the assay substrate is configured to bind a plurality of types of organic analytes, a plurality of types of sensor molecules respectively labeled with a plurality of types of quantum dots immobilized on the same assay substrate surface.

8. The assay substrate of claim 1 , further comprising an assay substrate compartment for applying the liquid sample to the assay substrate surface.

9. The assay substrate of claim 8 , wherein the assay substrate compartment limits a volume of the liquid sample applied onto the assay substrate surface, and limits a thickness of interaction surface layer of the liquid sample applied onto the assay substrate according to the Förster radius.

10. The assay substrate of claim 1 , wherein the assay substrate surface is solid, chemically stable, and carries chemically active groups covalently linked to the first linker.

11. A system comprising:

the assay substrate of claim 1 ;

a light source configured to emit a specific spectrum to excite fluorescence of the quantum dot;

an opto-electronic detector configured to detect fluorescence of the fluorescent dye and generate a signal corresponding to fluorescence intensity;

a controller configured to record the signal from the opto-electronic detector and determine presence of the organic analyte based on a decrease of the detected fluorescence.

12. The system of claim 11 , wherein the controller is configured to record the signal generated by the opto-electronic detector in time to record a time curve of the detected fluorescence to determine the concentration of the organic analyte.

13. The system of claim 12 , wherein the controller is configured to derive concentration of an analyte based on determining a relative decrease of recorded fluorescence in time from its initial value.

14. The system of claim 11 , wherein the controller is configured to process a detected fluorescence having multichannel characteristics.

15. The system of claim 11 , wherein the controller is configured to process a detected fluorescence having multispectral characteristics.

16. A system comprising:

the assay substrate of claim 4 ;

a light source configured to emit a specific spectrum to excite fluorescence of the quantum dot;

an opto-electronic detector configured to detect fluorescence of the fluorescent dye and generate a signal corresponding to fluorescence intensity;

a controller configured to record the signal from the opto-electronic detector and determine presence of the organic analyte based on a decrease of the detected fluorescence.

17. The system of claim 16 , wherein the controller is configured to record the signal generated by the opto-electronic detector in time to record a time curve of the detected fluorescence to determine the concentration of the organic analyte.

18. The system of claim 17 , wherein the controller is configured to derive concentration of an analyte based on determining a relative decrease of recorded fluorescence in time from its initial value.

19. The system of claim 16 , wherein the controller is configured to process a detected fluorescence having multichannel characteristics.

20. The system of claim 16 , wherein the controller is configured to process a detected fluorescence having multispectral characteristics.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2023
From: BABITSHENKO, SERGEI; JÄRV, JAAK; KUZNETSOV, ALEKSEI; MASTITSKI, ANTON
To: QANIKDX OÜ
Reel/Frame 063468/0235 →
Priority Claims (1)
EE U201900011 · Feb 11, 2019 · national
Continuity (2)
Continuation 17251536
Related Publication 20230258631A1 · Aug 17, 2023
Cited By (1)
US 12,553,890