IP Library Granted Patent US 10,845,277
Granted Patent B2
US 10,845,277 · App. 14/058,193 · Granted Nov 24, 2020

Liquid to liquid biological particle fractionation and concentration

Inventors: Zachary Allen Packingham (Drexel, MO); Andrew Edward Page (Smithton, MO); David Scott Alburty (Drexel, MO); Steven Dale Graham (Overland Park, KS); Alec Douglas Adolphson (Raymore, MO)
Assignee: INNOVAPREP, LLC
G01N1/405B01D61/20B01D61/22B01D63/082B01D63/088G01N1/40G01N1/4077B01D2315/08B01D2319/06B01D2321/02G01N1/4055G01N2001/4016G01N2001/4038G01N2001/4088
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Quick Facts
Patent No.
US 10,845,277
App. No.
14/058,193
Granted
Nov 24, 2020
Kind
B2
Abstract

The present disclosure provides for devices, systems and methods for fractionation and concentration of particles from a fluid sample. This includes a cartridge containing staged filters having porous surface in series of decreasing pore size for capture of particles from a fluid sample; and a permeate pressure source in fluid communication with the cartridge; wherein the particles are eluted from the porous surfaces and dispensed in a reduced fluid volume.

Claims (13)

1. A device for fractionation and concentration of particles from a fluid sample, the device comprising:

a cartridge containing an inlet port and an outlet port and having alternating layers of plastic spacers and filters positioned serially between the inlet port and outlet port, wherein the inlet port, filters, and outlet port are positioned along a longitudinal axis, the longitudinal axis being perpendicular to the filters, each of the filters having a porous surface with all pores on a given filter being of a constant size, wherein the filters are arranged in series of decreasing pore size for capture of particles from a fluid sample, the alternating layers of plastic spacers and filters creating a plurality of internal volume chambers adjacent each porous surface, wherein the cartridge is adapted to direct a fluid sample flow in a substantially unidirectional manner along the longitudinal axis in each chamber, into the inlet port, perpendicularly through the decreasing pore size filters, and out of the outlet port, in a single pass, such that all of the fluid sample that entered into the inlet port passes through the outlet port while the particles are retained at a given filter according to particle size and do not pass to a subsequent filter if they are larger than the pore size of the given filter;

a permeate pressure source in fluid communication with the cartridge; and

a foam injection port at each end of the plurality of internal volume chambers and a retentate port at each opposite end of the plurality of internal volume chambers;

wherein the particles are eluted tangentially from said each porous surface by foam injected by the foam injecting port and collected through the retentate port, and dispensed in a reduced fluid volume.

2. The device in claim 1 , further comprising a connecting portion for connection to a concentrating unit.

3. The device in claim 1 , wherein the filters are separated by a small interstitial space.

4. The device in claim 1 , wherein the filters are separated by a filter support with flow channel connecting the permeate of one filter with the retentate of an adjacent smaller pore filter.

5. The device in claim 1 , wherein a sample is introduced into the device perpendicular to a surface of each filter.

6. The device in claim 1 , wherein valved fluidic connections connect the internal volume between each of the filters.

7. The device in claim 1 , wherein pneumatic, hydraulic, or mechanical valves are integrated into the cartridge device.

8. The device in claim 1 , wherein the filters are one or more of a flat membrane filter, a flat ceramic filter, an affinity-based filter, a flat depth filter, an electrostatically charged filter, or a microsieve.

9. The device in claim 1 , further comprising an elution buffer distribution manifold including flow control orifice.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2013
From: PACKINGHAM, ZACHARY ALLEN; PAGE, ANDREW EDWARD; ALBURTY, DAVID SCOTT; GRAHAM, STEVEN DALE; ADOLPHSON, ALEC DOUGLAS
To: INNOVAPREP LLC
Reel/Frame 031439/0945 →
Continuity (2)
Provisional Application 61715451 · Oct 18, 2012
Related Publication 20140231256A1 · Aug 21, 2014
Cited By (1)
US 1,121,103