Examples of 'microcarriers' in a sentence

Meaning of "microcarriers"

Microcarriers are small particles or beads used in cell culture to support the growth of adherent cells, commonly used in biotechnology and tissue engineering
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  • plural of microcarrier

How to use "microcarriers" in a sentence

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microcarriers
The microcarriers are then resuspended in the medium.
Therefore it does not permit cultivation with microcarriers.
The microcarriers could be used as small columns.
Vero cells can conveniently be cultured on microcarriers.
Cell microcarriers based on natural components also exist.
This was repeated until the microcarriers were confluent.
Microcarriers may also be used with bioreactor systems.
Cells were allowed to attach to the microcarriers by intermittent agitation.
The microcarriers are not intended to resorb or degrade once implanted.
Cell attachment to these charged microcarriers are mediated by ionic attractions.
The microcarriers are transparent and are easily transported through tubing.
Method for producing microcarriers.
Keeps the microcarriers in the bioreactor.
Methods and apparatus for separating cells from microcarriers.
Protein free microcarriers can be used to culture postpartum cells.

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Cells are capable of adhering and propagating on the surface of microcarriers.
Microcarriers are small microscopic beads on which adherent cells are caused to grow.
The cells were attached to microcarriers.
The microcarriers are porous recombinant gelatin microcarriers of the present invention.
Adherent cultures include culture on microcarriers that can be maintained in suspension.
Microcarriers for use in the instant invention may be biodegradable or nonbiodegradable.
Cells were first seeded onto microcarriers for the latter method.
These microcarriers are designed for use in fluidized bed perfusion cultures.
Suitable for microcarriers.
The somatic cells may also be maintained in suspension or attached to microcarriers.
The agitation was stopped and the coated microcarriers were allowed to settle.
Microcarriers are generally kept in suspension in a growth medium by gently stirring them in a vessel.
Tungsten or gold particles are sterilized for use as microcarriers in bombardment experiments.
Microcarriers are small solid particles on which cells may be grown in suspension culture.
The cells are allowed to attach to the microcarriers and then are cultivated further.
The microcarriers were coated with a layer of porcine collagen to promote cell attachment.
The bottle containing the sterile microcarriers was transferred to a laminar flow hood.
The cells attach and grow to confluence on the surface of the microcarriers.
Cells attach to the microcarriers and grow gradually to confluency on the microcarrier surface.
This was repeated until the cells were completely detached from the microcarriers.
Microcarriers can also be used to increase surface área and host cell growth.
The agent is employed to facilitate the detachment or release of cells from microcarriers.
Microcarriers may also incorporate an ionic charge to assist in cell attachment to the microcarrier.
The gelatin of the porous gelatin microcarriers of the present invention is recombinant gelatin.
Microcarriers may be used with the roller bottle or stirred tank bioreactor systems.
The concentration of cells on the microcarriers surface may readily determined by light microscopy.
The requirement for suspendability limits the physical parameters of the microcarriers themselves.
Porous microcarriers provide even greater surface área per unit volume or weight.
The polypeptides could also be administered following incorporation into liposomes or other microcarriers.
The cells around the microcarriers move to the microcarriers and form colonies.
The active cooling is useful for adjusting the properties of the final microcarriers.
The microcarriers were allowed to swell at ambient temperature for five hours and thirty minutes.
Settling steps are avoided which might cause damage to the cells on the microcarriers.
Charge group capacity and bead size of microcarriers have been optimized to enhance cell growth.
The detached cells may then be used to evenly seed a greater number of microcarriers.

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