IP Library Granted Patent US 7,396,561
Granted Patent B2
US 7,396,561 · App. 10/343,035 · Granted Jul 8, 2008

Surface-attached polyfunctional polymer networks for sensor chips

Assignee: Micronas Holding GmbH
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Quick Facts
Patent No.
US 7,396,561
App. No.
10/343,035
Granted
Jul 8, 2008
Kind
B2
Abstract

The invention relates to polyfunctional polymer networks comprising an assembly of cross-linked polymer subchains attached to a surface, with each polymer subchain comprising a multitude of identical or different repeating units carrying one or more functional groups which allows an interaction with a sample or probe molecule.

Claims (55)

1. Process for the formation of a polyfunctional polymer network covalently attached to a sensor surface, wherein said network comprises cross linked polymer subchains having a multitude of identical or different repeating units carrying one or more functional groups which allow an interaction of the polymer with sample or probe molecules, the process comprising the steps of:

(a) covering the sensor surface with a monolayer of a polymerization initiator which comprises one or more functional groups suitable for covalent attachment to the surface;

(b) contacting the polymerization initiator monolayer with a solution comprising polymerization initiators, cross-linkers, and a polymerizable mixture of monomers and comonomers carrying functional groups which allow an interaction with sample or probe molecules;

wherein said contacting is followed by simultaneously initiating and carrying out a crosslinking polymerization reaction both in solution and on the sensor surface.

2. Process for the formation of a polyfunctional polymer network covalently attached to a sensor surface, wherein said network comprises cross-linked polymer subchains having a multitude of identical or different repeating units carrying one or more functional groups which allow an interaction of the polymer with sample or probe molecules, the process comprising the steps of:

(a) covering the sensor surface with a monolayer of a polymerization initiator which comprises one or more functional groups suitable for covalent attachment to the surface, wherein said initiator comprises a chlorosilane, a disulphide, or a thiol group;

(b) contacting the polymerization initiator monolayer with a polyfunctional polymer network comprising cross linked polymer subchains, obtained by polymerization of monomers and comonomers carrying functional groups which allow an interaction with sample or probe molecules, in the presence of cross-linkers,

wherein said contacting is followed by initiating a covalent binding reaction between the polymer network and the sensor surface-attached polymerization initiators.

3. Process according to claim 1 , wherein said initiator comprises a chlorosilane, an alkoxysilane, a disulphide, or a thiol group.

4. Process according to claim 1 , wherein said initiator comprises a group chosen from azo groups, peroxo groups, or a ketone group in conjunction with an aromatic system.

5. Process according to claim 2 , wherein said initiator comprises a group chosen from azo groups, peroxo groups, or a ketone group in conjunction with an aromatic system.

6. Process according to claim 4 , wherein said initiator comprises a group chosen from aromatic ketones or aromatic ketones containing sulphur.

7. Process according to claim 5 , wherein said initiator comprises a group chosen from aromatic ketones or aromatic ketones containing sulphur.

8. Process according to claim 1 , wherein said cross-linker is selected from the group consisting of bisacrylates, bismethacrylates and bisacrylamides.

9. Process according to claim 2 , wherein said cross-linker is selected from the group consisting of bisacrylates, bismethacrylates and bisacrylamides.

10. Process according to claim 1 , wherein said one or more functional groups are selected from the group consisting of carboxylic acids, maleinimides, N-hydroxy succinimides, epoxides, isothiocyanates, isocyanates, and azides.

11. Process according to claim 2 , wherein said one or more functional groups are selected from the group consisting of carboxylic acids, maleinimides, N-hydroxy succinimides, epoxides, isothiocyanates, isocyanates, and azides.

12. Sensor surface having covalently attached thereto a polyfunctional polymer network comprising cross-linked polymer subchains having a multitude of identical or different repeating units carrying one or more functional groups which allow an interaction of the polymer with sample or probe molecules, obtained by a process comprising the steps of:

(a) covering the sensor surface with a monolayer of a polymerization initiator which comprises one or more functional groups suitable for covalent attachment to the surface;

(b) contacting the polymerization initiator monolayer with a solution comprising polymerization initiators, cross-linkers, and a polymerizable mixture of monomers and comonomers carrying functional groups which allow on interaction with sample or probe molecules;

wherein said contacting is followed by simultaneously initiating and carrying out a crosslinking polymerization reaction both in solution and on the sensor surface.

13. Sensor surface having covalently attached thereto a polyfunctional polymer network comprising cross-linked polymer subchains having a multitude of identical or different repeating units carrying one or more functional groups which allow an interaction of the polymer with sample or probe molecules, obtained by a process comprising the steps of:

(a) covering the sensor surface with a monolayer of a polymerization initiator which comprises one or more functional groups suitable for covalent attachment to the surface, wherein said initiator comprises a chlorosilane, a disulphide, or a thiol group;

(b) contacting the polymerization initiator monolayer with a polyfunctional polymer network comprising cross linked polymer subchains, obtained by polymerization of monomers and comonomers carrying functional groups which allow an interaction with sample or probe molecules, in the presence of cross- linkers;

wherein said contacting is followed by initiating a covalent binding reaction between the polymer network and the sensor surface-attached polymerization initiators.

14. Sensor surface according to claim 12 , wherein said one or more functional groups are selected from the group consisting of carboxylic acids, maleinimides, N hydroxy succinimides, epoxides, isothiocyanates, isocyanates, and azides.

15. Sensor surface according to claim 13 , wherein said one or more functional groups are selected from the group consisting of carboxylic acids, maleinimides, N hydroxy succinimides, epoxides, isothiocyanates, isocyanates, and azides.

16. Sensor surface according to claim 12 , further comprising a multitude of different probe molecules immobilized at said polymer subchains via a reaction with said functional groups, wherein said probe molecules are selected from the group consisting of proteins, peptides, polysaccharides, nucleic acids, PNAs, and derivatives thereof.

17. Sensor surface according to claim 13 , further comprising a multitude of different probe molecules immobilized at said polymer subchains via a reaction with said functional groups, wherein said probe molecules are selected from the group consisting of proteins, peptides, polysaccharides, nucleic acids, PNAs, and derivatives thereof.

18. Sensor surface according to claim 12 , wherein said polymer subchains comprise segments that make said polymer network water-swellable.

19. Sensor surface according to claim 13 , wherein said polymer subchains comprise segments that make said polymer network water-swellable.

20. Sensor surface according to claim 18 , wherein said water swellability is provided by monomers chosen from acrylic acid, methacrylic acid, dimethyl acrylamide or vinyl pyrrolidon.

21. Sensor surface according to claim 19 , wherein said water swellability is provided by monomers chosen from acrylic acid, methacrylic acid, dimethyl acrylamide or vinyl pyrrolidon.

22. Sensor surface according to claim 12 , wherein said polyfunctional polymer network forms a patterned array on said surface.

23. Sensor surface according to claim 13 , wherein said polyfunctional polymer network forms a patterned array on said surface.

24. A method of using a sensor surface for detecting sample nucleic acid molecules, which comprises the steps of:

(a) providing a sensor surface according to claim 16 ;

(b) allowing a hybridization reaction to take place between the probe and the sample; followed by

(c) removal of the non hybridized nucleic acid molecules in a washing step; and

(d) detection of the hybridized nucleic acid molecules.

25. A method of using a sensor surface for detecting sample nucleic acid molecules, which comprises the steps of:

(a) providing a sensor surface according to claim 17 ;

(b) allowing a hybridization reaction to take place between the probe and the sample; followed by

(c) removal of the non hybridized nucleic acid molecules in a washing step; and

(d) detection of the hybridized nucleic acid molecules.

26. Medical or diagnostic instrument, comprising a surface according to claim 12 .

27. Medical or diagnostic instrument, comprising a surface according to claim 13 .

28. A method of using a surface for the immobilization of starter molecules for the formation of oligomers or polymers, the method comprising the steps of:

(a) providing a surface according to claim 12 ; and

(b) immobilizing starter molecules for the formation of oligomers or polymers.

29. The method according to claim 28 , wherein the oligomers or polymers formed are suitable for nucleic acid or peptide synthesis.

30. A method of using a surface for the immobilization of starter molecules for the formation of oligomers or polymers, the method comprising the steps of:

(a) providing a surface according to claim 13 ; and

(b) immobilizing starter molecules for the formation of oligomers or polymers.

31. The method according to claim 30 , wherein the oligomers or polymers formed are suitable for nucleic acid or peptide synthesis.

Assignments (14)
RELEASE OF SECURITY INTEREST Recorded Oct 31, 2024
From: MLC50 LP INC.
To: SAFEGUARD BIOSYSTEMS HOLDINGS LIMITED
Reel/Frame 069084/0649 →
RELEASE OF SECURITY INTEREST Recorded Oct 31, 2024
From: IP SUCCESSOR FUND 21 L.P.
To: SAFEGUARD BIOSYSTEMS HOLDINGS LIMITED
Reel/Frame 069084/0644 →
SECURITY INTEREST Recorded Aug 16, 2024
From: SAFEGUARD BIOSYSTEMS HOLDINGS LIMITED
To: MLC50 LP INC.
Reel/Frame 068317/0453 →
SECURITY INTEREST Recorded Feb 25, 2021
From: SAFEGUARD BIOSYSTEMS HOLDINGS LIMITED
To: IP SUCCESSOR FUND 21 L.P.
Reel/Frame 055411/0940 →
CHANGE OF NAME Recorded Nov 22, 2017
From: MICRONAS HOLDING GMBH
To: MICRONAS GMBH
Reel/Frame 044802/0836 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2017
From: TDK-MICRONAS GMBH
To: KLAPPROTH, HOLGER
Reel/Frame 044198/0061 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2017
From: KLAPPROTH, HOLGER
To: SAFEGUARD BIOSYSTEMS HOLDINGS LTD.
Reel/Frame 044198/0129 →
CHANGE OF NAME Recorded Nov 22, 2017
From: MICRONAS GMBH
To: TDK-MICRONAS GMBH
Reel/Frame 044496/0645 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR AND ASSIGNEE PREVIOUSLY RECORDED ON REEL 019121 FRAME 0979. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNOR: BIOCHIP TECHNOLOGIES ASSIGNEE: KLAPPROTH, HOLGER KEHLERSTR. 12 FRIEBURG, GERMANY 79108. Recorded Apr 25, 2007
From: KLAPPROTH, HOLGER
To: MICRONAS HOLDING GMBH
Reel/Frame 019210/0400 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR PREVIOUSLY RECORDED ON REEL 017758 FRAME 0112. ASSIGNOR(S) HEREBY CONFIRMS THE METZGER, JURGEN. Recorded Apr 25, 2007
From: BIOCHIP TECHNOLOGIES GMBH
To: KLAPPROTH, HOLGER
Reel/Frame 019210/0546 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR AND THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 017758 FRAME 0141. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNOR: KLAPPROTH, HOLGER ASSIGNEE: MICRONAS HOLDING GMBH HANS-BUNTE STR. 19 FREIBURG, GERMANY 79108. Recorded Apr 5, 2007
From: BIOCHIP TECHNOLOGIES
To: KLAPPROTH, HOLGER
Reel/Frame 019121/0979 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2006
From: METZGER, JURGEN
To: KLAPPROTH, HOLGER
Reel/Frame 017758/0112 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2006
From: KLAPPROTH, HOLGER
To: MICRONAS HOLDING GMBH
Reel/Frame 017758/0141 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2003
From: RUHE, JURGEN
To: BIOCHIP TECHNOLOGIES GMBH
Reel/Frame 014698/0271 →
Priority Claims (1)
EP 00116340 · Jul 27, 2000 · regional
Continuity (1)
Related Publication 20050202396A1 · Sep 15, 2005