IP Library › Granted Patent US 10,407,655
Granted Patent B2
US 10,407,655 · App. 15/403,944 · Granted Sep 10, 2019

Systems and methods for improved performance of fluidic and microfluidic systems

Inventors: Christopher David Hinojosa (Cambridge, MA); Josiah Sliz (Boston, MA); Daniel Levner (Cambridge, MA); Guy Thompson (Lexington, MA); Hubert Geisler (Saint-Die-des-Vosges, FR); Jose Fernandez-Alcon (Cambridge, MA); Donald E. Ingber (Boston, MA)
Assignee: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
C12M23/16B01L3/5027B01L3/50273B01L3/502715B01L3/502746B82Y15/00C12M21/08C12M33/12C12M41/00C12M41/40C12M41/46G01N33/5005B01L2200/027B01L2200/0605B01L2200/0684B01L2300/044B01L2300/0681B01L2300/0816B01L2300/0864B01L2300/0867B01L2300/14B01L2400/0487B01L2400/084
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Quick Facts
Patent No.
US 10,407,655
App. No.
15/403,944
Granted
Sep 10, 2019
Kind
B2
Abstract

Systems and methods for improved flow properties in fluidic and microfluidic systems are disclosed. The system includes a microfluidic device having a first microchannel, a fluid reservoir having a working fluid and a pressurized gas, a pump in communication with the fluid reservoir to maintain a desired pressure of the pressurized gas, and a fluid-resistance element located within a fluid path between the fluid reservoir and the first microchannel. The fluid-resistance element includes a first fluidic resistance that is substantially larger than a second fluidic resistance associated with the first microchannel.

Claims (30)

1. A microfluidic system, comprising:

a microfluidic device having a first microchannel;

a fluid reservoir comprising a working fluid and being disposed outside of the microfluidic device;

a fluid line coupled to the fluid reservoir for delivering the working fluid to or from the microfluidic device; and

a fluid-resistance element removably coupled to the microfluidic device,

the fluid-resistance element having a first fluidic resistance that is about 10-50,000 times greater than a second fluidic resistance associated with the microfluidic device, and wherein said fluid-resistance element comprises a substrate having an elongated fluid path.

2. The microfluidic system of claim 1 , wherein said fluid-resistance element is attached to a cartridge.

3. The microfluidic system of claim 2 , wherein said fluid-resistance element is removably attached to said cartridge.

4. The microfluidic system of claim 1 , wherein said substrate of said fluid-resistance element comprises an elongated tube forming the elongated fluid path, the first fluidic resistance being created by the elongated fluid path.

5. The microfluidic system of claim 4 , wherein the elongated tube undergoes multiple windings so as to create said elongated fluid path.

6. A microfluidic system, comprising:

a cartridge comprising a fluid-resistance element, the cartridge configured to removably receive a microfluidic device having a first microchannel, the fluid-resistance element having a first fluidic resistance that is about 10-50,000 times greater than a second fluidic resistance associated with the microfluidic device, and wherein said fluid-resistance element comprises a substrate having an elongated fluid path;

a fluid reservoir having a working fluid and a pressurized gas and being disposed outside of the microfluidic device;

a pump in communication with the fluid reservoir to maintain a desired pressure of the pressurized gas; and

a fluid path disposed between the fluid reservoir and the first microchannel.

7. The microfluidic system of claim 6 , wherein said fluid-resistance element is removably attached to said cartridge.

8. The microfluidic system of claim 6 , wherein said substrate of said fluid-resistance element comprises an elongated tube forming the elongated fluid path, the first fluidic resistance being created by the elongated fluid path.

9. The microfluidic system of claim 8 , wherein the elongated tube undergoes multiple windings so as to create said elongated fluid path.

10. The microfluidic system of claim 1 , wherein the fluid-resistance element is a channeled fluid-resistance element.

11. The microfluidic system of claim 1 , wherein the fluid-resistance element is a tubular fluid-resistance element.

12. The microfluidic system of claim 1 , wherein the fluid-resistance element is an internal fluid-resistance element.

13. The microfluidic system of claim 1 , wherein the fluid-resistance element is separate from the microfluidic device.

14. The microfluidic system of claim 1 , wherein the working fluid comprises at least one component selected from the group consisting of media, suspensions of cells, particulates, proteins, chemicals, contaminant, pollutant, pharmaceutical and combinations thereof.

15. The microfluidic system of claim 6 , wherein the working fluid comprises at least one component selected from the group consisting of media, suspensions of cells, particulates, proteins, chemicals, contaminant, pollutant, pharmaceutical and combinations thereof.

16. A microfluidic system, comprising:

a cartridge comprising a fluid-resistance element, the cartridge configured to removably receive a microfluidic device having a first microchannel, the fluid-resistance element having a first fluidic resistance that is at least about 10 times greater than a second fluidic resistance associated with the microfluidic device, and wherein said fluid-resistance element comprises a substrate having an elongated fluid path;

a fluid reservoir having a working fluid and a pressurized gas and being disposed outside of the microfluidic device;

a pump in communication with the fluid reservoir to maintain a desired pressure of the pressurized gas; and

a fluid path disposed between the fluid reservoir and the first microchannel.

17. The microfluidic system of claim 16 , wherein the fluid-resistance element is a tubular fluid-resistance element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2017
From: FERNANDEZ-ALCON, JOSE; GEISLER, HUBERT; HINOJOSA, CHRISTOPHER DAVID; INGBER, DONALD E.; LEVNER, DANIEL; SLIZ, JOSIAH; THOMPSON, GUY
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 041088/0129 →
Continuity (4)
Continuation PCTUS2015040026 · Jul 10, 2015
Provisional Application 62127438 · Mar 3, 2015
Provisional Application 62024361 · Jul 14, 2014
Related Publication 20170121659A1 · May 4, 2017
Cited By (2)
US 12,594,557 US 12,628,820