IP Library Granted Patent US 8,999,729
Granted Patent B2
US 8,999,729 · App. 13/165,134 · Granted Apr 7, 2015

Device and analyzing system for conducting agglutination assays

Inventors: Isabelle Delafosse (Greng, CH); Fabrice Ummel (La Chaux-de-Fonds, CH); Antonio Yanez (Salavaux, CH)
Assignee: Symbion Medical Systems Sarl
B01L3/5085G01N33/5304G01N33/538G01N33/5375B01L3/5021B01L9/06B01L2300/069B01L2300/18B01L2400/0409B04B5/0421Y10S436/81
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Quick Facts
Patent No.
US 8,999,729
App. No.
13/165,134
Granted
Apr 7, 2015
Kind
B2
Abstract

A device for conducting an agglutination assay comprising several reaction vessels, each reaction vessel comprising an upper chamber having an opening for accepting reactants and/or a sample; and a lower chamber comprising an end in communication with the upper chamber for receiving fluids from the upper chamber, a closed end opposite to the end, and a matrix for separating agglutinates from non-agglutinates; wherein the device further comprises a rotating support able to rotate around an axis and holding pivotally the reaction vessels in a way to allow the reaction vessels to pivot about an axis essentially perpendicular to the rotation axis of the support when the latter is rotated, such that the fluids remain in the upper chamber when the support is not rotated, and can flow from the upper chamber to the lower chamber and into the matrix when the support is rotated.

Claims (37)

1. A device for conducting an agglutination assay comprising several reaction vessels, each reaction vessel comprising an upper chamber having an opening for accepting reactants and/or a sample; and a lower chamber comprising an end in communication with the upper chamber for receiving fluids from the upper chamber, a closed end opposite to the end, and a matrix for separating agglutinates from non-agglutinates; wherein

the device further comprises a rotating support able to rotate around an axis and holding pivotally the reaction vessels in a way to allow the reaction vessels to pivot about an axis essentially perpendicular to the rotation axis of the support when the latter is rotated, such that the fluids remain in the upper chamber when the support is not rotated, and can flow from the upper chamber to the lower chamber and into the matrix when the support is rotated.

2. The device according to claim 1 , wherein the rotating support and/or the reaction vessels are made by a plastic injection molding process.

3. The device according to claim 1 , wherein

the rotating support is made of a single piece.

4. The device according to claim 1 , wherein

the rotating support comprises twelve reaction vessels.

5. The device according to claim 1 , wherein

the upper chamber is eccentric with the lower chamber.

6. The device according to claim 1 , wherein

the lower chamber is an elongate tube with a cylindrical section.

7. The device according to claim 1 , wherein

the rotating support comprises a receptacle concentric with the axis.

8. The device according to claim 7 , wherein

the underneath face of the support and/or the surface of the receptacle comprises one or several ribs.

9. The device according to claim 7 , wherein

the receptacle extends below and above the plane of the rotating support.

10. An analysis station for performing agglutination reaction and separation assays comprising:

a device containing several reaction vessels, each reaction vessel comprising an upper chamber having an opening for accepting reactants and/or a sample; a lower chamber comprising an end in communication with the upper chamber for receiving fluids from the upper chamber, a closed end opposite to the end, and a matrix for separating agglutinates from non-agglutinates; a rotating support able to rotate around an axis and holding pivotally the reaction vessels in a way to allow the reaction vessels to pivot about an axis essentially perpendicular to said rotation axis when the latter is rotated, such as to retain the fluids in the upper chamber when the support is not rotated and makes it flow from the upper chamber to the lower chamber and into the matrix when the support is rotated;

a drive shaft which fixedly holds the device at the rotating support;

a heating unit concentric with the support of the device; and

means to optically detect cluster agglutinate and/or band or button formation within the lower chamber.

11. The analysis station according to claim 10 , wherein the drive shaft fixedly holds the device with the support having its rotation axis essentially parallel with the drive shaft rotation axis.

12. The analysis station according to claim 10 , wherein the device is held in the drive shaft by fitting the receptacle into a conformal recess in the drive shaft.

13. The analysis station according to claim 10 , wherein the underneath face of the support and/or the surface of a receptacle of the support comprises one or several ribs cooperating with one or several corresponding grooves on the surface of the recess, in order to maintain the device in the drive shaft during centrifugation.

14. The analysis station according to claim 10 , wherein the heating unit is annular-shaped.

15. A method for conducting an agglutination assay comprising:

providing an analysis station comprising a device containing several reaction vessels, each reaction vessel comprising an upper chamber having an opening for accepting reactants and/or a sample; a lower chamber comprising an end in communication with the upper chamber for receiving fluids from the upper chamber, a closed end opposite to the end, and a matrix for separating agglutinates from non-agglutinates; a rotating support able to rotate around an axis and holding pivotally the reaction vessels in a way to allow the reaction vessels to pivot about an axis essentially perpendicular to said rotation axis when the latter is rotated, such as to retain the fluids in the upper chamber when the support is not rotated and makes it flow from the upper chamber to the lower chamber and into the matrix when the support is rotated; a drive shaft which fixedly holds the device at the rotating support; a heating unit concentric with the support of the device; and means to optically detect cluster agglutinate and/or band or button formation within the lower chamber;

incubating the reagents and sample in the upper chambers of the vessels while the support is not rotating;

centrifuging the reagents and sample by rotating the support in order to force to the fluids from the upper chamber to the lower chamber to the separation matrix; and

performing readings and interpretation of positive or negative agglutination reactions.

16. The method according to claim 15 , wherein the support comprises a receptacle and further comprising the steps of:

adding reagents and a sample into the receptacle and mixing them together; and

pipetting the mixed reagents and sample into the upper chamber of the different reaction vessels;

said steps being performed prior to said incubating the reagents and sample.

17. The method according to claim 15 , wherein

the device is disposed after completion of said performing readings and interpretation.

Assignments (3)
CONVERSION FROM A PRIVATE COMPANY TO A PUBLIC COMPANY (WITH A CHANGE OF NAME) Recorded Feb 7, 2022
From: HAEMOKINESIS PTY LTD
To: HAEMOKINESIS LIMITED
Reel/Frame 058962/0192 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2021
From: SYMBION MEDICAL SYSTEMS SÀRL
To: HAEMOKINESIS PTY LTD
Reel/Frame 055508/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2011
From: DELAFOSSE, ISABELLE; UMMEL, FABRICE; YANEZ, ANTONIO
To: SYMBION MEDICAL SYSTEMS SARL
Reel/Frame 026502/0510 →
Continuity (2)
Continuation PCTEP2008068260 · Dec 23, 2008
Related Publication 20110250617A1 · Oct 13, 2011