IP Library › Granted Patent US 7,022,516
Granted Patent B2
US 7,022,516 · App. 10/181,708 · Granted Apr 4, 2006

Well unit for detecting cell chemotaxis and separating chemotactic cells

Assignee: Effector Cell Institute
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,022,516
App. No.
10/181,708
Granted
Apr 4, 2006
Kind
B2
Abstract

The present invention aims at providing a well unit to be used in fabricating an apparatus whereby movements of cells based on their own actions can be accurately and easily detected, in detecting the chemotaxis of cells due to a chemotactic factor or the inhibition of the chemotaxis of cells by an inhibitor. Accordingly, the present invention provides a well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells characterized in that a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, the channel is provided with a bank, and, in the upper part of the bank, barriers constituting one or more grooves having a width and/or a depth fit for the diameter or deformability of cells are provided or a plane is provided so as to give a gap having a depth fit for the diameter or deformability of cells between the plane and the glass substrate.

Claims (9)

1. A well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells comprising: (1) a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, (2) wherein the channel is provided with a bank having a terrace on the upper part of the bank, (3) wherein the wells are formed so as to tightly bond to a glass substrate, (4) wherein on the terrace on the upper part of the bank, barriers constituting one or more grooves having a width and/or depth fit for the diameter or deformability of cells are provided or the terrace on the bank is provided so as to give a gap fit for the diameter or deformability of cells between the terrace and the glass substrate and (5) wherein said plural number of wells are connected to a single well each via a separate channel.

2. The well unit as claimed in claim 1 , (6) wherein among said plural number of wells connected to a single well each via a channel, at least two wells are connected to another common well each via a separate channel.

3. A well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells comprising: (1) a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, (2) wherein the channel is provided with a bank having a terrace on the upper part of the bank, (3) wherein the wells are formed so as to tightly bond to a glass substrate, (4) wherein on the terrace on the upper part of the bank, barriers constituting one or more grooves having a width and/or a depth fit for the diameter or deformability of cells are provided or the terrace on the bank is provided so as to give a gap fit for the diameter or deformability of cells between the terrace and the glass substrate and (5) wherein a multistage terrace is formed on the bank in the channel.

4. A well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells comprising: (1) a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, (2) wherein the channel is provided with a bank having a terrace on the upper part of the bank, (3) wherein the wells are formed so as to tightly bond to a glass substrate, (4) wherein on the terrace on the upper part of the bank, barriers constituting one or more grooves having a width and/or a depth fit for the diameter or deformability of cells are provided or the terrace on the bank is provided so as to give a gap fit for the diameter or deformability of cells between the terrace and the glass substrate and (5) wherein the grooves formed on the terrace in the channel are connected to each other via one or more grooves orthogonal to the direction toward the opposite well.

5. The well unit as claimed in claim 4 , (6) wherein the width of a plural number of grooves in the direction toward the opposite well in the channel is changed stepwise each time the grooves intersect one or more grooves orthogonal thereto.

6. The well unit as claimed in claim 4 , (6) wherein a plural number of grooves in the direction toward the opposite well in the channel are formed by mutually shifting the positions thereof each time the grooves intersect one or more grooves orthogonal thereto.

7. A well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells comprising: (1) a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, (2) wherein the channel is provided with a bank having a terrace on the upper part of the bank, (3) wherein the wells are formed so as to tightly bond to a glass substrate, (4) wherein on the terrace on the upper part of the bank, barriers constituting one or more grooves having a width and/or depth fit for the diameter or deformability of cells are provided or the terrace on the bank is provided so as to give a gap fit for the diameter or deformability of cells between the terrace and the glass substrate and (5) wherein terraces are formed in the front and the rear of an array of said barriers constituting one or more grooves having a width and/or a depth fit for the diameter or deformability of cells in the channel and the terrace in the cell flow direction is longer than the other terrace.

8. A well unit to be used in an apparatus for detecting chemotaxis of cells and separating cells comprising: (1) a plural number of wells, in which a liquid sample can be held in a resting state, are connected to each other via a channel, (2) wherein the channel is provided with a bank having a terrace on the bank, (3) wherein the wells are formed so as to tightly bond to a glass substrate, (4) wherein on the terrace, barriers constituting one or more grooves having a width and/or a depth fit for the diameter or deformability of cells are provided, and (5) wherein a terrace is formed at the center in the channel, arrays of said barriers are formed at two positions in both sides of the terrace, and, if desired, terraces are further formed outside the barrier arrays.

9. The well unit as claimed in any one of claims 1 – 2 , 3 – 7 and 8 , wherein a distinguishable mark for positioning the viewing field when detecting the position on the terrace is given on the terrace.

Assignments (3)
CHANGE OF NAME AND CHANGE OF ADDRESS Recorded May 21, 2009
From: EFFECTOR CELL INSTITUTE
To: ECI, INC.
Reel/Frame 022719/0238 →
CHANGE OF ADDRESS Recorded Mar 10, 2004
From: EFFECTOR CELL INSTITUTE
To: EFFECTOR CELL INSTITUTE
Reel/Frame 015073/0829 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2002
From: KANEGASAKI, SHIRO; KIKUCHI, YUJI; KIKUCHI, HIROKO
To: EFFECTOR CELL INSTITUTE
Reel/Frame 013313/0130 →
Priority Claims (5)
JP 2000-372467 · Dec 7, 2000 · national
JP 2000-377120 · Dec 12, 2000 · national
JP 2001-209743 · Jul 10, 2001 · national
JP 2001-258526 · Aug 28, 2001 · national
JP 2001-313205 · Oct 10, 2001 · national
Continuity (1)
Related Publication 20030003571A1 · Jan 2, 2003