IP Library Granted Patent US 9,329,174
Granted Patent B2
US 9,329,174 · App. 14/003,509 · Granted May 3, 2016

Bead trapping method and method for detecting target molecule

Inventors: Hiroyuki Noji (Saitama, JP); Ryota Iino (Tokyo, JP); Suguru Araki (Fujieda, JP)
Assignee: JAPAN SCIENCE AND TECHNOLOGY AGENCY
G01N33/54313G01N21/6452B01J2219/00317B01J2219/00466B01J2219/00619B01J2219/00621B01L3/50853B01L2200/0642B01L2200/0668B01L2200/12B01L2300/0829B01L2300/0877B01L2300/161
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Quick Facts
Patent No.
US 9,329,174
App. No.
14/003,509
Filed
Sep 6, 2013
Granted
May 3, 2016
Kind
B2
Art Unit
1639
USPC
506/9
Abstract

This invention provides a technique enabling to detect target molecules of low concentration with high sensitivity. This invention includes (i) a step of introducing a hydrophilic solvent ( 42 ) containing beads ( 40 ),( 41 ′) into a space ( 30 ) between (a) a lower layer section ( 10 ) including a plurality of receptacles ( 13 ) each of which is capable of storing only one of the beads ( 41 ),( 41 ′) and which are separated from each other by a side wall ( 12 ) having a hydrophobic upper surface and (b) an upper layer section ( 20 ) facing a surface of the lower layer section ( 10 ) on which surface the plurality of receptacles ( 13 ) are provided; and (ii) a step of introducing a hydrophobic solvent ( 43 ) into the space ( 30 ), the step (ii) being carried out after the step (i).

Claims (19)

1. A method for trapping beads, comprising:

(i) a step of introducing a hydrophilic solvent containing beads having an average particle diameter of 1 μm to 4 μm into a space within a flow cell structure, the space being between

(a) a lower layer section including a plurality of receptacles each of which has a size that can store only one of the beads and which are separated from each other by a side wall having a hydrophobic upper surface and

(b) an upper layer section facing a surface of the lower layer section on which surface the plurality of receptacles are provided; and

(ii) a step of introducing a hydrophobic solvent into the space to displace the hydrophilic solvent,

the step (ii) being carried out after the step (i) to form, in the plurality of receptacles, droplets of the hydrophilic solvent within the plurality of receptacles covered with the hydrophobic solvent,

wherein

a single bead is trapped within a droplet of the hydrophilic solvent within each of the plurality of receptacles, and

wherein

the plurality of receptacles each have a width that is 1.5 to 2 times larger than the average particle diameter of the beads,

the plurality of receptacles each have a depth that is equal to or smaller than 1.5 times the average particle diameter of the beads, and

a trapping efficiency of the beads is twenty-five times or more higher relative to the absence of the flow cell structure, wherein the structure is lacking an upper layer section.

2. The method as set forth in claim 1 , further comprising:

(iii) a step of deaerating the space,

the step (iii) being carried out after the step (i) and before the step (ii).

3. The method as set forth in claim 1 , wherein:

the hydrophilic solvent is at least one selected from the group consisting of water, hydrophilic alcohol, hydrophilic ether, ketone, nitrile solvents, dimethyl sulfoxide, and N,N-dimethylformamide, or is a mixture including the at least one.

4. The method as set forth in claim 1 , wherein:

the hydrophobic solvent is at least one selected from the group consisting of saturated hydrocarbon, unsaturated hydrocarbon, aromatic hydrocarbon, silicone oil, perfluorocarbon, halogen solvents, and hydrophobic ionic liquid, or is a mixture including the at least one.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2013
From: NOJI, HIROYUKI; IINO, RYOTA; ARAKI, SUGURU
To: JAPAN SCIENCE AND TECHNOLOGY AGENCY
Reel/Frame 031178/0680 →
Priority Claims (1)
JP 2011-050629 · Mar 8, 2011 · national
Continuity (1)
Related Publication 20130345088A1 · Dec 26, 2013