IP Library Granted Patent US 10,662,404
Granted Patent B2
US 10,662,404 · App. 15/475,469 · Granted May 26, 2020

Bioreactor using acoustic standing waves

Inventors: Bart Lipkens (Hampden, MA); Louis Masi (Longmeadow, MA); Stanley Kowalski, III (Wilbraham, MA); Walter M. Presz, Jr. (Wilbraham, MA); Jason Dionne (Simsbury, CT); Brian Dutra (Windsor Locks, CT); Ari Mercado (Agawam, MA); Thomas J. Kennedy, III (Wilbraham, MA); Arthur Martin (Sutton, MA)
Assignee: FloDesign Sonics, Inc.
C12M47/10B01D17/04B01D17/06B01D21/283B06B1/0644C12M23/14C12M23/22C12M27/00C12M27/02C12M29/18C12M33/08C12M33/14C12M35/04C12M47/02C12M47/04C12P21/02
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Quick Facts
Patent No.
US 10,662,404
App. No.
15/475,469
Granted
May 26, 2020
Kind
B2
Abstract

A perfusion bioreactor includes at least one ultrasonic transducer that can acoustically generate a multi-dimensional standing wave. The standing wave can be used to retain cells in the bioreactor, and can also be utilized to dewater or further harvest product from the waste materials produced in a bioreactor.

Claims (40)

1. A method for obtaining expanded cells, comprising:

culturing cells in a fluid medium in a bioreactor to expand the cells;

sending a portion of the fluid medium containing the expanded cells from the bioreactor to an acoustophoretic separator that comprises:

a flow chamber through which the portion of the fluid medium flows; and

an ultrasonic transducer and a reflector located opposite the ultrasonic transducer so as to produce an acoustic standing wave in the flow chamber;

driving the transducer to produce the acoustic standing wave and create a concentrated flow of the expanded cells; and

further processing the concentrated flow of the expanded cells, wherein the further processing is selected from the group consisting of cell washing, cell concentration, and cell fractionation, or wherein the further processing is adapted to isolate or recover the expanded cells from the concentrated flow.

2. A method for obtaining biomolecules, comprising:

culturing cells in a fluid medium in a bioreactor, wherein the cells produce the biomolecules;

sending a portion of the fluid medium containing the biomolecules from the bioreactor to an acoustophoretic separator that comprises:

a flow chamber through which the portion of the fluid medium flows; and

an ultrasonic transducer and a reflector located opposite the ultrasonic transducer so as to produce an acoustic standing wave in the flow chamber;

driving the transducer to produce the acoustic standing wave and create a concentrated flow of the biomolecules; and

further processing the concentrated flow of the biomolecules.

3. The method of claim 2 , wherein the further processing is adapted to isolate or recover the biomolecules from the concentrated flow.

4. The method of claim 2 , wherein the biomolecules are selected from the group consisting of recombinant proteins and monoclonal antibodies.

5. A method for obtaining viruses or exosomes, comprising:

culturing cells in a fluid medium in a bioreactor, wherein the cells are engineered to produce the viruses or exosomes;

sending a portion of the fluid medium containing the viruses or exosomes from the bioreactor to an acoustophoretic separator that comprises:

a flow chamber through which the portion of the fluid medium flows; and

an ultrasonic transducer and a reflector located opposite the ultrasonic transducer so as to produce an acoustic standing wave in the flow chamber;

driving the transducer to produce the acoustic standing wave and create a concentrated flow of the viruses or exosomes; and

further processing the concentrated flow of the viruses or exosomes.

6. The method of claim 5 , wherein the further processing is adapted to isolate or recover the viruses or exosomes from the concentrated flow.

7. A method for obtaining a desired product, comprising:

sending a fluid medium containing the desired product from a bioreactor to an acoustophoretic separator that comprises:

a flow chamber through which the fluid medium flows; and

an ultrasonic transducer and a reflector located opposite the ultrasonic transducer so as to produce an acoustic standing wave in the flow chamber;

driving the transducer in a higher order mode to produce the acoustic standing wave and create a concentrated flow of the desired product; and

further processing the concentrated flow of the desired product to isolate or recover the desired product.

8. The method of claim 7 , wherein the desired product is expanded cells, biomolecules, viruses, or exosomes.

9. A system for obtaining a desired product, comprising:

a bioreactor;

an acoustophoretic separator fluidly connected to and downstream of the bioreactor, the acoustophoretic separator comprising:

a flow chamber for receiving a fluid medium containing the desired product from the bioreactor;

an ultrasonic transducer and a reflector located opposite the ultrasonic transducer so as to produce an acoustic standing wave in the flow chamber that separates the fluid medium and the desired product; and

a product outlet for recovering a concentrated flow of the desired product; and

at least one device for further processing of the concentrated flow, the at least one device located downstream of the acoustophoretic separator;

wherein the at least one device for further processing performs a process selected from the group consisting of cell washing, cell concentration, and cell fractionation, or wherein the at least one device for further processing is adapted to isolate or recover the desired product from the concentrated flow of the desired product.

10. The system of claim 9 , wherein the desired product is expanded cells, biomolecules, viruses, or exosomes.

Assignments (2)
CHANGE OF ADDRESS Recorded Mar 3, 2022
From: FLODESIGN SONICS, INC.
To: FLODESIGN SONICS, INC.
Reel/Frame 059317/0507 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2017
From: LIPKENS, BART; MASI, LOUIS; KOWALSKI, STANLEY, III; PRESZ, WALT M., JR.; DIONNE, JASON; DUTRA, BRIAN; MERCADO, ARI; KENNEDY, THOMAS J., III; MARTIN, ART
To: FLODESIGN SONICS, INC.
Reel/Frame 041808/0670 →
Continuity (11)
Continuation 15432888 · Feb 14, 2017
Continuation 15238624 · Aug 16, 2016
Continuation In Part 14175766 · Feb 7, 2014
Continuation In Part 14026413 · Sep 13, 2013
Continuation In Part 13844754 · Mar 15, 2013
Provisional Application 61761717 · Feb 7, 2013
Provisional Application 61611159 · Mar 15, 2012
Provisional Application 61611240 · Mar 15, 2012
Provisional Application 61708641 · Oct 2, 2012
Provisional Application 61754792 · Jan 21, 2013
Related Publication 20170204360A1 · Jul 20, 2017