C12M33/08

ACOUSTIC SEPARATION OF CELLULAR SUPPORTING MATERIALS FROM CULTURED CELLS

Methods, systems, and apparatus for acoustic separation of cellular supporting materials such as microcarriers or microbubbles from cell culture are provided. In one aspect, a method includes flowing a fluid containing the cellular supporting material and the cells through a flow chamber; driving at least one acoustic transducer to launch an acoustic wave from the acoustic transducer positioned on a first wall of the flow chamber to a reflector positioned on a second wall of the flow chamber to create, in the flow chamber, a multi-dimensional field that includes first spatial locales where acoustic pressure amplitude is elevated from a baseline level when the acoustic transducer is turned off, and second spatial locales where acoustic pressure amplitude is substantially identical to the baseline level when the acoustic transducer is turned off, wherein the first wall is opposite to the second wall; preferentially trapping, and gravity separating, the cellular supporting material or the cells at the first or second spatial locales inside the flow chamber; and collecting cells separated from the cellular supporting material using a first collection duct coupled to the flow chamber.

Bioreactor using acoustic standing waves

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.

METHODS AND SYSTEMS FOR HARVESTING CELLS
20170247656 · 2017-08-31 ·

Methods for using vibration to harvest cells grown in 3D culture are provided. The methods entail the application of force cells attached to a 3D matrix of sufficient amplitude, frequency, and duration to detach cells from the matrix and to flush the detached cells out of the matrix material. An apparatus for performing the methods of the invention as provided.

Acoustic perfusion devices

Methods are disclosed for separating beads and cells from a host fluid. The method includes flowing a mixture containing the host fluid, the beads, and the cells through an acoustophoretic device having an ultrasonic transducer including a piezoelectric material driven by a drive signal to create a multi-dimensional acoustic standing wave. A drive signal is sent to drive the at least one ultrasonic transducer to create the multi-dimensional acoustic standing wave. A recirculating fluid stream having a tangential flow path is located substantially tangential to the standing wave and separated therefrom by an interface region. A portion of the cells pass through the standing wave, and the beads are held back from the standing wave in the recirculating fluid stream at the interface region. Also disclosed is an acoustophoretic device having a coolant inlet adapted to permit the ingress of a cooling fluid into the device for cooling the transducer.

Bioreactor using acoustic standing waves

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.

BIOREACTOR USING ACOUSTIC STANDING WAVES

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.

BIOREACTOR USING ACOUSTIC STANDING WAVES

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.

BIOREACTOR USING ACOUSTIC STANDING WAVES

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.

BIOREACTOR USING ACOUSTIC STANDING WAVES

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.

BIOREACTOR USING ACOUSTIC STANDING WAVES

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.