IP Library Granted Patent US 7,368,084
Granted Patent B2
US 7,368,084 · App. 11/066,843 · Granted May 6, 2008

Flow cytometry for high throughput screening

Assignee: STC.UNM
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Quick Facts
Patent No.
US 7,368,084
App. No.
11/066,843
Granted
May 6, 2008
Kind
B2
Abstract

The present invention, provides a flow cytometry apparatus for the detection of particles from a plurality of samples comprising: means for moving a plurality of samples comprising particles from a plurality of respective source wells into a fluid flow stream; means for introducing a separation gas between each of the plurality of samples in the fluid flow stream; and means for selectively analyzing each of the plurality of samples for the particles. The present invention also provides a flow cytometry method employing such an apparatus.

Claims (24)

1. A flow cytometry apparatus comprising:

an autosampler for inserting a plurality of samples comprising particles from a plurality of respective source wells into a fluid flow stream;

a flow cytometer;

a single length of tubing extending from said autosampler to said flow cytometer for delivering said fluid flow stream to said flow cytometer; and

a pump disposed in operative contact with said single length of tubing between said autosampler and said flow cytometer for moving the plurality of samples in the fluid flow stream along said single length of tubing,

said autosampler and said pump cooperating to introduce aliquots of a separation fluid between successive ones of said samples in said fluid flow stream to configure said fluid flow stream as a bubble-separated fluid flow stream,

said flow cytometer hydrodynamically focusing the bubble-separated fluid flow stream delivered by said single length of tubing from said autosampler and said pump and selectively analyzing said particles in each of said plurality of samples as said bubble-separated fluid flow stream passes through said flow cytometer.

2. The flow cytometry apparatus of claim 1 , wherein said autosampler includes a probe and said flow cytometry apparatus includes a means for exposing a probe tip of said probe to a jet of gas to remove liquid from said probe tip.

3. The flow cytometry apparatus of claim 1 wherein said tubing is a high speed multi-sample tube.

4. The flow cytometry apparatus of claim 1 wherein said tubing has an internal diameter of approximately 0.02 inches.

5. The flow cytometry apparatus of claim 1 , further comprising a means for injecting a buffer fluid between adjacent samples in said fluid flow stream so that said adjacent samples are separated by two aliquots of separation fluid and said buffer fluid located between said two aliquots of separation fluid.

6. The flow cytometry apparatus of claim 1 wherein said separation fluid is a gas.

7. A flow cytometry apparatus comprising:

an autosampler for inserting a plurality of samples comprising particles from a plurality of respective source wells into a fluid flow stream;

a flow cytometer;

tubing extending from said autosampler to said flow cytometer for delivering said fluid flow stream to said flow cytometer; and

a pump disposed in operative contact with said tubing between said autosampler and said flow cytometer for moving the plurality of samples in the fluid flow stream along said tubing,

said autosampler and said pump cooperating to introduce aliquots of a separation fluid between successive ones of said samples in said fluid flow stream to configure said fluid flow stream as a bubble-separated fluid flow stream,

said flow cytometer hydrodynamically focusing the bubble-separated fluid flow stream delivered by said single length of tubing from said autosampler and said pump and selectively analyzing said particles in each of said plurality of samples as said bubble-separated fluid flow stream passes through said flow cytometer,

said tubing being of a given size for carrying aliquots of separation fluid, each in a controlled volume, in said bubble-separated fluid flow stream with said samples flowing at a specific rate, said given size and said controlled volume and said specific rate all being predetermined to permit the hydrodynamic focusing of said bubble-separated fluid flow stream in said flow cytometer.

8. The flow cytometry apparatus of claim 7 wherein said tubing extends from said pump and has compression characteristics allowing said pump to move samples separated by fluid through said tubing at a speed of at least 6 samples per minute without causing adjacent samples to mix with one another.

9. The flow cytometry apparatus of claim 7 wherein said tubing has an inner diameter of about 0.01 to 0.03 inch.

10. The flow cytometry apparatus of claim 7 wherein said given size is about 0.01 to 0.03 inch.

11. The flow cytometry apparatus of claim 7 wherein said specific rate is at least six samples per minute.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2016
From: SKLAR, LARRY A; EDWARDS, BRUCE S; KUCKUCK, FREDERICK W
To: THE REGENTS OF THE UNIVERSITY OF NEW MEXICO
Reel/Frame 038633/0536 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2016
From: THE REGENTS OF THE UNIVERSITY OF NEW MEXICO
To: STC.UNM
Reel/Frame 038633/0762 →
CONFIRMATORY LICENSE Recorded Mar 17, 2009
From: UNIVERSITY OF NEW MEXICO ALBUQUERQUE
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 022406/0136 →
CHANGE OF NAME Recorded Mar 12, 2008
From: SCIENCE & TECHNOLOGY CORPORATION @ UNM
To: STC.UNM
Reel/Frame 020640/0548 →
Continuity (3)
Continuation 0950164300 · Feb 10, 2000
Provisional Application 6015694600 · Sep 30, 1999
Related Publication 20050180887A1 · Aug 18, 2005