IP Library Granted Patent US 9,266,108
Granted Patent B2
US 9,266,108 · App. 14/042,458 · Granted Feb 23, 2016

Nanoliter array loading

Inventors: Tanya S. Kanigan (Lexington, MA); Steve Smith (Arlington, MA); John Linton (Lincoln, MA); Robert Hess (Arlington, MA); Karl Yoder (Stoneham, MA); Colin John Herbert Brenan (Marblehead, MA)
Assignee: Life Technologies Corporation
B01L3/5085B01L3/0244B01L3/5025B01L3/50857B01L3/563B01L3/0241B01L2200/021B01L2200/027B01L2200/0605B01L2200/0636B01L2200/0642B01L2300/0816B01L2300/0829B01L2300/0864B01L2300/12B01L2300/161Y10T137/0318Y10T137/1624Y10T137/206Y10T436/2525
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Quick Facts
Patent No.
US 9,266,108
App. No.
14/042,458
Granted
Feb 23, 2016
Kind
B2
Abstract

An interface is provided for storing microfluidic samples in a nanoliter sample chip. A fluid access structure provides a fluid access region to a selected subset of sample wells from an array of sample wells. A fluid introduction mechanism introduces a sample fluid to the fluid access region so that the sample wells in the selected subset are populated with the sample fluid without the unselected sample wells being populated with the sample fluid.

Claims (28)

1. A system for holding a plurality of biomolecular samples, comprising:

a receptacle comprising a plurality of wells disposed within a substrate;

a plurality of sample chips disposed inside respective wells of the receptacle, each chip comprising an array of sample wells and

a loader interface structure comprising an upper portion and a lower portion, the lower portion configured to hold the sample chips, wherein the upper portion is disposed above the plurality of wells of the receptacle while the lower portion is disposed inside at least some of the plurality of wells of the receptacle.

2. The system of claim 1 , wherein the receptacle comprises a microtiter plate.

3. The system of claim 1 , wherein at least one of the chips comprises an array of through-hole sample wells.

4. The system of claim 1 , wherein at least some of the sample wells of at least one of the chips comprise a through-hole sample well.

5. The system of claim 1 , wherein at least some of the sample wells have a volume of 0.2 nanoliter to 100 nanoliters.

6. The system of claim 1 , wherein at least some of the sample chips comprise 1000 or more sample wells.

7. The system of claim 1 , further comprising a fluid introduction mechanism configured to introduce a biomolecular sample fluid from at least some of the wells of the receptacle and into at least some of the sample wells.

8. A kit for holding a plurality of biomolecular samples, comprising:

a receptacle comprising a plurality of wells disposed within a substrate;

a plurality of sample chips, each chip comprising an array of sample wells;

the plurality of sample chips configured to fit inside respective wells of the receptacle and

a loader interface structure comprising an upper portion and a lower portion, the lower portion configured to hold the sample chips, wherein during use the upper portion is disposed above the plurality of wells of the receptacle while the lower portion is disposed inside at least some of the plurality of wells of the receptacle.

9. The kit of claim 8 , wherein the receptacle comprises a microtiter plate.

10. The kit of claim 8 , wherein at least one of the chips comprises an array of through-hole sample wells.

11. The kit of claim 8 , wherein at least some of the sample wells of at least one of the chips comprise a through-hole sample well.

12. The kit of claim 8 , wherein at least some of the sample wells have a volume of 0.2 nanoliter to 100 nanoliters.

13. The kit of claim 8 , wherein at least some of the sample chips comprise 1000 or more sample wells.

14. The kit of claim 8 , further comprising a fluid introduction mechanism configured to introduce a biomolecular sample fluid from at least some of the wells of the receptacle and into at least some of the sample wells.

15. A method for holding a plurality of biomolecular samples, comprising:

providing a receptacle comprising a plurality of wells disposed within a substrate;

providing a loader interface structure comprising an upper portion and a lower portion, the lower portion holding a plurality of sample chips; and

placing the plurality of sample chips inside respective wells of the receptacle, each chip comprising an array of through-hole sample wells

wherein placing the plurality of chips comprises locating the upper portion above the plurality of wells of the receptacle and locating the lower portion inside at least some of the plurality of wells of the receptacle.

16. The method of claim 15 , wherein the receptacle comprises a microtiter plate.

17. The method of claim 15 , further comprising introducing a biomolecular sample from at least some of the wells of the receptacle into at least some of the sample wells.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2016
From: KANIGAN, TANYA S.; SMITH, STEVEN; LINTON, JOHN; HESS, ROBERT; YODER, KARL
To: BIOTROVE, INC.
Reel/Frame 037418/0301 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2016
From: BRENAN, COLIN J.H.
To: BIOTROVE, INC.
Reel/Frame 037414/0587 →
MERGER Recorded Jan 5, 2016
From: BOXTER ACQUISITION CORPORATION
To: BIOTROVE, INC.
Reel/Frame 037414/0653 →
MERGER Recorded Jan 5, 2016
From: BIOTROVE, INC.
To: BIOTROVE ACQUISITION CORPORATION
Reel/Frame 037414/0689 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2016
From: BIOTROVE CORPORATION
To: LIFE TECHNOLOGIES CORPORATION
Reel/Frame 037414/0724 →
CHANGE OF NAME Recorded Jan 5, 2016
From: BIOTROVE ACQUISITION CORPORATION
To: BIOTROVE CORPORATION
Reel/Frame 037445/0402 →
Continuity (6)
Continuation 13336902 · Dec 23, 2011
Continuation 11078196 · Mar 11, 2005
Provisional Application 60552267 · Mar 12, 2004
Provisional Application 60607838 · Sep 8, 2004
Provisional Application 60627334 · Nov 12, 2004
Related Publication 20140031262A1 · Jan 30, 2014