IP Library Granted Patent US 7,332,328
Granted Patent B2
US 7,332,328 · App. 10/236,120 · Granted Feb 19, 2008

Microcolumn-platform based array for high-throughput analysis

Assignee: Corning Incorporated
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Quick Facts
Patent No.
US 7,332,328
App. No.
10/236,120
Granted
Feb 19, 2008
Kind
B2
Abstract

A device and methods for performing biological or chemical analysis is provided. The device includes an array of three-dimensional microcolumns projecting away from a support plate. Each microcolumn has a relatively planar, first surface remote from the support plate. An array of multiple, different biological materials may be attached to the first surface. The device, when used in combination with existent micro-titer well plates, can improve efficiency of binding assays using microarrays for high-throughput capacity.

Claims (35)

1. A product for performing biological or chemical analysis, selected from the group consisting of hybridization of nucleic acids, assays of chemical molecules peptides, proteins, lipids, membranes, and viral particles, and cell transfection and reverse cell transfection, the product comprising:

a) a support structure;

b) a number of microcolumns projecting away from said support structure;

c) each microcolumn having a first surface remote from said support structure and at least a second surface; and

d) an array of multiple samples of biological material deposited on each first surface;

e) wherein, each microcolumn is sized to fit within a corresponding well of a microtiter plate and wherein said microcolumn has a hollow cavity extending from said support structure, through said microcolumn, to said first surface.

2. The product according to claim 1 , wherein said hollow cavity comprises an inlet port, an outlet port, and a microchannel connecting the inlet and outlet ports.

3. The product according to claim 2 , wherein said microchannel has a diameter of about 500 μm or less.

4. The product according to claim 1 , wherein said microcolumn has a hollow cavity that extends about 99.5% or less through the length of a shaft of said microcolumn and is capable of receiving a fiber optical imaging component.

5. The product according to claim 1 , wherein each of said microcolumns further comprises either:

1) a hydrophilic wetting surface, and at least a hydrophobic non-wetting second surface, or

2) a roughened surface that entraps fluids with multiple fluid contact angles, and having a different biological material attached to each of said wetting surface or said roughened surface.

6. The product according to claim 1 , wherein said microcolumns have a cross section dimension generally between about 4 mm and about 1 μm.

7. The product according to claim 1 , wherein said microcolumns are made of a material selected from a glass, polymeric, metallic, ceramic, or composite material.

8. An comprising:

a) a support structure;

b) a plurality of microcolumns, each extending orthogonally away from a surface of said support structure;

c) each microcolumn having a first surface and at least a second surface; and

d) a plurality of micropins located on said first surface of each microcolumn;

e) wherein each micropin has a surface with a different biological material attached thereto, to form an organized array of multiple biological materials on said first surface of each microcolumn, and

wherein each micropin has either 1) a hydrophilic wetting surface and at least one non-wetting second surface, or 2) a roughened surface that entraps fluids with multiple fluid contact angles.

9. The product according to claim 8 , wherein said microcolumns have a cross-sectional dimension in the range from about 0.5 mm to about 5.0 mm.

10. The product according to claim 8 , wherein said microcolumns has a hollow cavity extending from said support structure, through said microcolumn, to said first surface.

11. The product according to claim 10 , wherein said hollow conduit comprises an inlet port, an outlet port, and a microchannel connecting the inlet and outlet ports.

12. The product according to claim 11 , wherein said microchannel has a diameter of about 500 μm or less.

13. The product according to claim 8 , wherein each of said microcolumns has a hollow cavity that extends about 99.5% or less through the length of a shaft of said microcolumn and is capable of receiving a fiber optical imaging component.

14. An product comprising: a support structure; at least one microcolumn projecting away from a planar surface of said support structure; said microcolumn having a first surface remote from said support structure and at least a second surface; and a sheet of multiple, different biological material arranged in a plurality of containment spaces defined by a lattice-like network located on said first surface.

15. The product according to claim 14 , wherein said biological material is arranged in a rectilinear array within said network of containment spaces.

16. The product according to claim 14 , wherein a number of said microcolumns is organized in an array that has a footprint that corresponds to a micro-titer plate.

17. The product according to claim 14 , wherein said biological material comprises: DNA, RNA, oligonucleotides, plasmids, peptides, proteins; lipids, membranes, chemical molecules, pharmaceutical compounds, viral particles, cells, sub-cellular components, and cellular products.

18. The product according to claim 14 , wherein said microcolumn is made of a material selected from a glass, polymeric, metallic, ceramic, or composite material.

19. The product according to claim 14 , wherein said first surface has a material selected from group consisting of an amino-propylsilane-treated glass, quartz, fused silica, polypropylene, polystyrene, nylon filter, gold, platinum, chromium, and silicon.

20. The product according to claim 14 , wherein said microcolumn has a hollow cavity extending from said support structure, through said microcolumn, to said first surface.

21. The product according to claim 20 , wherein said hollow conduit comprises an inlet port, an outlet port, and a microchannel connecting the inlet and outlet ports.

22. The product according to claim 21 , wherein said microchannel has a diameter of about 500 μm or less.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2006
From: BRADY, MICHAEL DONAVON; HORN, KEITH ALAN; PENG, JINLIN; ROOT, DAVID MARTIN; STAMATOFF, JAMES BEDFORD; WEBB, BRIAN LYNN; DESPA, MIRCEA; LAHIRI, JOYDEEP; YUEN, PO KI
To: CORNING INCORPORATED
Reel/Frame 017702/0113 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2003
From: BRADY, MICHAEL D; MIRCEA, DESPA; HORN, KEITH A.; JOYDEEP, LAHIRI; JINLIN, PENG; ROOT, DAVID M.; STAMATOFF, JAMES B; WEBB, BRIAN L
To: CORNING INCORPORATED
Reel/Frame 013744/0482 →
Continuity (2)
Provisional Application 6031766000 · Sep 7, 2001
Related Publication 20030124029A1 · Jul 3, 2003