IP Library Granted Patent US 8,273,245
Granted Patent B2
US 8,273,245 · App. 13/292,903 · Granted Sep 25, 2012

Microfluidic devices, particularly filtration devices comprising polymeric membranes, and methods for their manufacture and use

Assignee: State of Oregon acting by and through the State Board of Higher Education on behalf of Oregon State University
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Quick Facts
Patent No.
US 8,273,245
App. No.
13/292,903
Granted
Sep 25, 2012
Kind
B2
Abstract

The present disclosure describes devices useful for microscale fluid purification, separation, and synthesis. Such devices generally comprise a fluid membrane that separates two or more fluids flowing through plural microchannels operatively associated with the membrane. Often, the membrane is a semipermeable membrane, such as might be used with a filtration device, such as a dialyzer. Devices of the present invention can be combined with other microscale devices to make systems. For example, the devices may be coupled with one or more microchemical microfactories, one or more micromixers, one or more microheaters, etc. Examples of devices made according to the present invention included an oxygenator, a dialyzer, microheat exchangers, etc.

Claims (11)

1. A dialyzer, comprising:

a semipermeable dialyzer membrane;

a microchannel fluidic device fluidly associated with the membrane to provide a blood flow adjacent to and on one side of the membrane through a first plurality of microchannels having a first end, a second end and plural parallel channels extending between the first and second ends, and a dialysate flow adjacent to and on a second side of the membrane through a second plurality of microchannels arranged in a counterflow manner with the first plurality of microchannels, the second plurality of microchannels having a first end, a second end and plural parallel channels extending between the first and second ends, wherein the first end of the second plurality of microchannels corresponds to the second end of the first plurality of microchannels;

a microscale heat exchanger operatively associated with the microchannels;

a first fluid inlet fluidly coupled to the first plurality of microchannels for delivering blood to the first plurality of microchannels;

a second fluid inlet fluidly coupled to the second plurality of microchannels for delivering dialysate to the second plurality of microchannels;

a first plurality of posts uniformly distributed across the first end of the first plurality of microchannels defining a header located adjacent the microchannels for distributing fluid to the first plurality of microchannels to distribute blood flow substantially equally among the first plurality of microchannels; and

a second plurality of posts uniformly distributed across the first end of the second plurality of microchannels defining a header located adjacent the microchannels for distributing dialysate flow substantially equally among the second plurality of microchannels.

2. A dialysis method, comprising:

flowing blood from a patient requiring dialysis to a dialyzer comprising (a) a semipermeable dialyzer membrane, (b) a microchannel fluidic device fluidly associated with the membrane to provide a blood flow adjacent to and on one side of the membrane through a first plurality of microchannels having a first end, a second end and plural parallel channels extending between the first and second ends, and a dialysate flow adjacent to and on a second side of the membrane through a second plurality of microchannels, the second plurality of microchannels having a first end, a second end and plural parallel channels extending between the first and second ends, (c) a first fluid inlet fluidly coupled to the first plurality of microchannels for delivering blood to the first plurality of microchannels, (d) a second fluid inlet fluidly coupled to the second plurality of microchannels for delivering dialysate to the second plurality of microchannels, (e) a first plurality of posts that define a header located adjacent the microchannels for distributing blood flow substantially equally among the first plurality of microchannels, (f) a second plurality of posts that define a header located adjacent the microchannels for distributing dialysate flow substantially equally among the second plurality of microchannels, and (g) a heat exchanger operatively associated with the microchannels; and

flowing dialysate to the second single-fluid inlet.

Assignments (7)
SECURITY INTEREST Recorded Jan 15, 2025
From: OUTSET MEDICAL, INC.
To: PERCEPTIVE CREDIT HOLDINGS IV, LP
Reel/Frame 069880/0739 →
RELEASE OF SECURITY INTEREST Recorded Jan 9, 2025
From: GEMINO HEALTHCARE FINANCE, LLC
To: OUTSET MEDICAL, INC.
Reel/Frame 069800/0767 →
RELEASE OF SECURITY INTEREST Recorded Jan 9, 2025
From: SLR INVESTMENT CORP., AS AGENT
To: OUTSET MEDICAL, INC.
Reel/Frame 069858/0267 →
SECURITY INTEREST Recorded Nov 4, 2022
From: OUTSET MEDICAL, INC.
To: GEMINO HEALTHCARE FINANCE, LLC
Reel/Frame 061654/0556 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Nov 3, 2022
From: OUTSET MEDICAL, INC.
To: SLR INVESTMENT CORP., AS AGENT
Reel/Frame 061879/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: OREGON STATE UNIVERSITY
To: OUTSET MEDICAL, INC.
Reel/Frame 058112/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2011
From: JOVANOVIC, GORAN; ATRE, SUNDAR V.; PAUL, BRIAN KEVIN; SIMONSEN, JOHN; REMCHO, VINCENT THOMAS; CHANG, CHIH-HUNG
To: STATE OF OREGON ACTING BY AND THROUGH THE STATE BOARD OF HIGHER EDUCATION ON BEHALF OF OREGON STATE UNIVERSITY
Reel/Frame 027296/0395 →
Continuity (4)
Continuation 13068037 · Apr 29, 2011
Continuation 11243937 · Oct 4, 2005
Provisional Application 60616877 · Oct 6, 2004
Related Publication 20120074062A1 · Mar 29, 2012