IP Library Granted Patent US 11,774,445
Granted Patent B2
US 11,774,445 · App. 16/614,112 · Granted Oct 3, 2023

Particle trapping device and particle trapping method

Inventor: Yan Xu (Sakai, JP)
Assignee: UNIVERSITY PUBLIC CORPORATION OSAKA
G01N33/54346B01L3/502761C12M1/34G01N15/1484G01N33/536B01L2200/0668B01L2300/0864B01L2300/0896G01N1/10G01N2015/0038G01N2015/0065
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Quick Facts
Patent No.
US 11,774,445
App. No.
16/614,112
Granted
Oct 3, 2023
Kind
B2
Abstract

The particle trapping device according to the present invention comprises: a lead-in channel; a flattened channel disposed on the downstream side of the lead-in channel; a rectangular channel disposed on the downstream side of the flattened channel; and a particle pit trap disposed at least on a first inner wall face of the rectangular channel, wherein the lead-in channel has a channel cross-section larger than a channel cross-section of the flattened channel; the flattened channel has a flat channel cross-section whose the width is longer than its height; the rectangular channel has a rectangular channel cross-section, and is provided with the first inner wall face, a second inner wall face opposed to the first inner wall face, a third inner wall face, and a fourth inner wall face opposed to the third inner wall face; and the lead-in channel, the flattened channel, the rectangular channel, and the particle pit trap are characterized by being configured in such a way that a portion of liquid containing target particles and flowing through the lead-in channel flows into the flattened channel; the target particles contained in the liquid that had flowed through the flattened channel flow into the rectangular channel; and the target particle that had flowed through the rectangular channel enters into the particle pit trap and is trapped therein.

Claims (43)

1. A particle trapping device comprising: a lead-in channel; a flattened channel disposed on the downstream side of the lead-in channel; a rectangular channel disposed on the downstream side of the flattened channel; and a particle pit trap disposed at least on a first inner wall face of the rectangular channel, wherein

the lead-in channel has a channel cross-section larger than a channel cross-section of the flattened channel and is configured whereby a liquid containing variously-sized particles including one or more target particles flows through the lead-in channel;

the flattened channel has a flat channel cross-section whose width is longer than its thickness;

the rectangular channel has a rectangular channel cross-section, and is provided with the first inner wall face, a second inner wall face opposed to the first inner wall face, a third inner wall face, and a fourth inner wall face opposed to the third inner wall face;

the particle pit trap is shaped like a well;

the lead-in channel, the flattened channel, the rectangular channel, and the particle pit trap are characterized by being configured in such a way that a portion of the liquid containing the one or more target particles and flowing through the lead-in channel flows into the flattened channel; the one or more target particles contained in the liquid that had flowed through the flattened channel flow into the rectangular channel; and the one or more target particles that had flowed through the rectangular channel enters into the particle pit trap and are trapped therein; and

the width and the thickness of the flat channel cross-section are configured to allow the target particles to flow from the lead-in channel to the flattened channel and not to allow the particles larger than the thickness of the flat channel cross-section to flow from the lead-in channel to the flattened channel for filtering the liquid containing the one or more target particles.

2. The particle trapping device according to claim 1 , further comprising a cell trapping chamber disposed between the flattened channel and the lead-in channel.

3. The particle trapping device according to claim 1 , further comprising an exit-side channel; an auxiliary channel; and a connecting channel, wherein

the exit-side channel is disposed on the downstream side of the rectangular channel;

the auxiliary channel extends substantially parallel to the rectangular channel, and one end of the auxiliary channel connects with the exit-side channel; and

the connecting channel is configured to connect the particle pit trap to the auxiliary channel and is configured to have a channel cross-section that does not allow the one or more target particles to pass therethrough.

4. The particle trapping device according to claim 1 , wherein the particle pit trap is one of a plurality of particle pit traps each characterized by being disposed on each of the first inner wall face and the second inner wall face.

5. The particle trapping device according to claim 1 , wherein a width between the first inner wall face and the second inner wall face of the rectangular channel is 1.04 times or more to 2.3 times or less than an average particle diameter of the one or more target particles.

6. The particle trapping device according to claim 1 , wherein a width between the third inner wall face and the fourth inner wall face of the rectangular channel is 1.04 times or more to 5 times or less than the average particle diameter of the one or more target particles.

7. The particle trapping device according to claim 1 , wherein the particle pit trap has a size that is 1.04 times or more to 3 times or less than an average particle diameter of the one or more target particles.

8. The particle trapping device according to claim 1 , wherein the particle pit trap is characterized by being larger than an average particle diameter of the one or more target particles.

9. The particle trapping device according to claim 1 , wherein the flattened channel has a thickness that is 1.04 times or more to 2.3 times or less than an average particle diameter of the one or more target particles.

10. The particle trapping device according to claim 1 , wherein

the thickness of the flattened channel is configured to be substantially the same as a width between the first inner wall face and the second inner wall face or a width between the third inner wall face and the fourth inner wall face; and

one of an upper plane and a lower plane of the flattened channel substantially lies in the same plane with the first inner wall face or the third inner wall face, and the other one of the upper plane and the lower plane substantially lies in the same plane with the second inner wall face or the fourth inner wall face.

11. The particle trapping device according to claim 1 , comprising a first substrate and a second substrate; and

wherein the rectangular channel has a structure in such a way that grooves formed on the first substrate are covered with the second substrate.

12. The particle trapping device according to claim 1 , wherein the particle pit trap traps the one or more target particles therein.

13. The particle trapping device according to claim 1 , wherein the one or more target particles are follicles, organelles, extracellular vesicles, viruses, liposomes, metallic particles, organic particles, inorganic particles, air pollution particulates, or pollens.

14. A particle trapping method characterized by comprising the steps of:

flowing liquid containing variously-sized particles including one or more target particles through a lead-in channel;

flowing a portion of the liquid containing the one or more target particles from the lead-in channel to a flattened channel;

flowing the liquid containing the one or more target particles from the flattened channel to a rectangular channel; and

trapping at least one of the one or more target particles in a particle pit trap formed on a first inner wall face of the rectangular channel by entering into the particle pit trap, wherein

the lead-in channel has a channel cross-section larger than a channel cross-section of the flattened channel;

the flattened channel has a flat channel cross-section whose the width is longer than its thickness;

the rectangular channel is provided with the first inner wall face, a second inner wall face opposed to the first inner wall face, a third inner wall face, and a fourth inner wall face opposed to the third inner wall face;

the particle pit is shaped like a well; and

the width and the thickness of the flat channel cross-section are configured to allow the one or more target particles to flow from the lead-in channel to the flattened channel and not to allow a particle larger than the thickness of the flat channel cross-section to flow from the lead-in channel to the flattened channel.

15. The particle trapping method according to claim 14 , wherein the flattened channel has the thickness that is 1.04 times or more to 2.3 times or less than an average particle diameter of the one or more target particles.

16. A particle trapping device comprising: a lead-in channel; a flattened channel disposed on the downstream side of the lead-in channel; a rectangular channel disposed on the downstream side of the flattened channel; and a particle pit trap disposed at least on a first inner wall face of the rectangular channel, wherein

the lead-in channel has a channel cross-section larger than a channel cross-section of the flattened channel;

the flattened channel has a flat channel cross-section whose width is longer than its thickness;

the rectangular channel has a rectangular channel cross-section, and is provided with the first inner wall face, a second inner wall face opposed to the first inner wall face, a third inner wall face, and a fourth inner wall face opposed to the third inner wall face;

the particle pit is shaped like a well;

the lead-in channel, the flattened channel, the rectangular channel, and the particle pit trap are characterized by being configured in such a way that a portion of a liquid containing variously-sized particles including one or more target particles and flowing through the lead-in channel flows into the flattened channel; the one or more target particles contained in the liquid that had flowed through the flattened channel flow into the rectangular channel; and the one or more target particles that had flowed through the rectangular channel enters into the particle pit trap and is trapped therein; and

the flattened channel has the thickness that is 1.04 times or more to 2.3 times or less than the average particle diameter of the one or more target particles.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2019
From: XU, YAN
To: UNIVERSITY PUBLIC CORPORATION OSAKA
Reel/Frame 051022/0081 →
Priority Claims (1)
JP 2017-098247 · May 17, 2017 · national
Continuity (1)
Related Publication 20200173987A1 · Jun 4, 2020