IP Library › Granted Patent US 8,287,822
Granted Patent B2
US 8,287,822 · App. 12/780,639 · Granted Oct 16, 2012

Reaction surface array diagnostic apparatus

Assignee: Grace Bio-Labs, Inc.
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Quick Facts
Patent No.
US 8,287,822
App. No.
12/780,639
Granted
Oct 16, 2012
Kind
B2
Abstract

A reaction surface array diagnostic apparatus and method of making the same includes a substrate carrying a plurality of reaction surfaces, a plate and a gasket, each having a plurality of through bores, alignable with one of the reaction surfaces and forming a fluid tight well about each reaction surface when the gasket and the plate are sealingly affixed to the substrate to form a stack. Clamp members engage opposite side edges of a stack to compress the gasket. A plurality of side-by-side disposed clamped stacks of plates, gaskets and substrates are mounted in a tray in the standard footprint of a microtitre plate. Alternately, the plate and the gasket are combined into a single plate formed of a flexible material having an adhesive on one surface.

Claims (26)

1. A reaction surface array diagnostic apparatus comprising:

a single stack including a planar substrate; a plate having a plurality of wells extending therethrough disposed in a standard microtitre plate well spacing; a gasket, having a releasably adhering surface, sealingly coupling the plate to the planar substrate, the gasket having wells disposed in said microtitre plate well spacing and fluidically coupled to the wells in the plate and combining with the wells in the plate to form reaction chambers disposed in said microtitre plate well spacing, the substrate forming a bottom of the wells, and wherein the gasket is positioned between the plate and the planar substrate, and where the gasket has a first face contiguous with the plate and a second face contiguous with the planar substrate; and

a pair of joinder members engageable with longer side edges of the stack, the pair of joinder members providing a clamping force to the longer side edges of the stack and extending inboard of the longer side edges of the stack on a top surface of the plate, wherein the wells of the plate are exposed when the stack is clamped by the pair of joinder members.

2. The reaction surface array diagnostic apparatus of claim 1 , wherein the joinder members each include projections for interfacing with the plate, the projections having a rounded surface, the rounded surfaces engaging with the side edges of the plate to provide the clamping force to the stack.

3. The reaction surface array diagnostic apparatus of claim 1 wherein the plate includes a recess formed along one of its edges, the recess engaging in a snap-fit connection with a projection of one of the joinder members.

4. The reaction surface array diagnostic apparatus of claim 1 wherein the planar substrate includes a plurality of reaction surfaces within the reaction chambers, the reaction surfaces predeposited in microtitre well spaced bound arrays on the planar substrate.

5. A reaction surface array diagnostic stack consisting essentially of:

a planar substrate having a top and bottom face;

a rectangular-shaped plate having a plurality of rectangular-shaped wells extending therethrough disposed in a standard microtitre plate well spacing, the plate having a top and bottom face, and four sides;

a gasket, having a releasably adhering surface, sealingly coupling the bottom face of the plate to the top face of the planar substrate, the gasket having wells disposed in said microtitre plate well spacing and fluidically coupled to the wells in the plate and combining with the wells in the plate to form a plurality of separate reaction chambers disposed in said microtitre plate well spacing, the substrate forming a bottom of the wells, and wherein the gasket is positioned between the plate and the planar substrate; and

a pair of joinder members engageable with side edges of the stack, the pair of joinder members providing a clamping force to the stack to compress the gasket between the plate against the planar substrate, the pair of joinder members each including a top and bottom projection, the top and bottom projections respectively engaging recesss in the top face of the plate and the bottom face of the planar substrate, without covering any of the wells such that all of the wells of the plate are exposed when the stack is clamped by the pair of joinder members.

6. The stack of claim 5 , wherein the projections of each joinder member form a channel, the channel of each joinder member engaging a respective side of the plate.

7. The stack of claim 5 wherein the top projection of each joinder member includes a rounded surface, where the rounded surfaces engage with the top face of the plate in a snap-fit connection to provide the clamping force.

8. The stack of claim 6 wherein the top projection of each joinder member includes a rounded surface, where the rounded surfaces engage with the top face of the plate in a snap-fit connection to provide the clamping force.

9. A reaction surface array diagnostic apparatus comprising:

a plurality of stacks, each stack including a planar substrate; a plate having a plurality of wells extending therethrough disposed in a standard microtitre plate well spacing; a gasket, having a releasably adhering surface, sealingly coupling the plate to the planar substrate, the gasket having wells disposed in said microtitre plate well spacing and fluidically coupled to the wells in the plate and combining with the wells in the plate to form reaction chambers disposed in said microtitre plate well spacing, wherein the substrate forms a bottom of the wells;

a first pair of joinder members engageable with longer side edges of a first stack of the plurality of stacks, the first stack including a first plate;

a second pair of joinder members engageable with longer side edges of a second stack of the plurality of stacks, the second stack including a second plate, with each of the first and second pair of joinder members providing a clamping force to the longer side edges of each of said first and second stacks and extending inboard of the longer side edges of said first and second stack on top surfaces of the first and second plates, respectively,

the plurality of stacks arranged into a planar array, with the wells in all of the plurality of stacks maintaining the microtitre plate well spacing across the array; and

a tray supporting the stacks in the planar array, the tray defining a foot print of a standard microtitre plate.

10. The reaction surface array diagnostic apparatus of claim 9 wherein each of the first and second stacks is independently manipulatable.

11. The reaction surface array diagnostic apparatus of claim 10 , wherein the reaction surface array diagnostic apparatus is configured such that assembly or disassembly of the first stack can occur while maintaining the sealed coupling and clamping force of the second stack.

12. The reaction surface array diagnostic apparatus of claim 9 wherein the first and second pairs of joinder members are C-shaped clamps.

13. The reaction surface array diagnostic apparatus of claim 9 further comprising a third pair of joinder members engageable with longer side edges of a third stack of the plurality of stacks, with the third pair of joinder members providing a clamping force to the longer side edges of the third stack, and with each of the first, second, and third stacks arranged into the planar array.

14. The reaction surface array diagnostic apparatus of claim 9 wherein the joinder members are independently manipulatable from the tray.

15. The reaction surface array diagnostic apparatus of claim 1 , wherein the joinder members are slideable past shorter side edges of the single stack in a direction of the longer side edges of the single stack.

Assignments (2)
CHANGE OF ADDRESS OF ASSIGNEE Recorded Feb 5, 2020
From: GRACE BIO-LABS, INC.
To: GRACE BIO-LABS, INC.
Reel/Frame 051834/0136 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2010
From: GRUDZIEN, JENNIPHER; MCGRATH, CHARLES M.
To: GRACE BIO-LABS, INC.
Reel/Frame 024441/0967 →
Continuity (6)
Continuation 10784092 · Feb 20, 2004
Continuation In Part 10349347 · Jan 22, 2003
Continuation In Part 12780639
Division 10349347 · Jan 22, 2003
Provisional Application 60351008 · Jan 22, 2002
Related Publication 20100267590A1 · Oct 21, 2010