The present invention relates to a cell washing method.
A known centrifuge apparatus in the related art separates components contained in a cell suspension by specific gravity by rotating a centrifuge container, which holds a cell suspension acquired by breaking down fat tissue and isolating fat-derived cells, around an axis away from the centrifuge container (refer to PTL 1).
The centrifuge container is substantially cylindrical with one end closed and is rotated in such a manner that the closed end faces outward in the radial direction to move components having large specific weights toward the closed end so that they are arranged in descending order of specific weight from the closed end side.
{PTL 1}
PCT International Publication No. WO 2005/012480
However, there is a disadvantage in that a cell cluster separated at a bottom part of a centrifuge container by centrifugally separating a cell suspension is packed into a solid pellet shape by a centrifugal force. That is, when the cell cluster is formed into a pellet shape, it becomes difficult to take out the cell cluster from the centrifuge container by suction after centrifugation. Sometimes a cell cluster may be formed into a pellet shape in which unwanted components, such as proteolytic enzymes and fat, remain trapped during centrifugation, and it is difficult to remove such unwanted components.
The present invention has been made in view of the circumstances described above, and an object thereof is to provide a cell washing method that can efficiently wash a cell cluster and collect a cell cluster with unwanted components removed therefrom.
To achieve the object described above, the present invention provides the following solutions.
The present invention provides a cell washing method including a centrifuging step of collecting a cell suspension in a centrifuge container having a washing fluid discharge port opposing a bottom part and centrifugally separating cells at the bottom part by rotating in such a manner that the bottom part faces outward in the radial direction; a supernatant ejecting step of ejecting a supernatant centrifugally separated in the centrifuging step; and a washing step of discharging washing fluid from the discharge port while rotating the centrifuge container while ejecting the supernatant in the supernatant ejecting step.
The present invention is advantageous in that a cell cluster in which unwanted components are removed therefrom by efficiently washing the cell cluster can be collected.
A cell washing method according to an embodiment of the present invention will be described below with reference to the drawings.
As illustrated in
As illustrated in
By centrifugally separating the cell suspension into the supernatant and the cell cluster in the first centrifuging step S1, unwanted components, such as digestive enzyme solution and dust, contained in the cell suspension are trapped between the cells and are formed into a pellet shape. In this state, in the supernatant ejecting step S2, by ejecting the supernatant from the container main body 1, the pellet-shaped cell cluster remains inside the container main body 1. Then, in the washing step S3, the washing fluid is supplied to the pellet-shaped cell cluster from the discharge suction port 3a of the discharge suction tube 3 facing the bottom part 2 to resuspend and wash the cell cluster such that the unwanted components trapped in the cell cluster are released.
In such a case, according to this embodiment, in the washing step S3, by discharging the washing fluid toward the bottom part 2 of the container main body 1 while rotating the container main body 1 in a centrifugal motion, the washing fluid can be supplied while collecting the cell cluster receiving the centrifugal force at the bottom part 2 of the container main body 1. In this way, the washing fluid can be supplied while retaining the pellet-shaped cell cluster at the bottom part 2 so that the pellet-shaped cell cluster is not scattered by the discharged washing fluid, and the pellet-shaped cell cluster can be more reliably broken down to release the unwanted components tapped inside.
Then, the cell suspension generated by breaking down the cell cluster in the washing step S3 is centrifugally separated into the supernatant and the pellet-shaped cell cluster in the second centrifuging step S4, and in the second supernatant ejecting step S5, a pellet-shaped cell cluster can be obtained again by ejecting the supernatant. The concentration of unwanted components contained in the cell cluster obtained in this way is sufficiently lower than those in the cell cluster obtained initially.
As illustrated in
As illustrated in
In this way, according to the cell washing method of this embodiment, since a cell cluster having a sufficiently suppressed concentration of remaining unwanted components can be acquired, and the concentration of digestive enzymes, which are unwanted components, is low, there are advantages in that damage to the cells is prevented, and a cell cluster having high biological affinity can be acquired by removing unwanted components from a cell cluster to be implanted.
Furthermore, after resuspension by supplying a small amount of washing fluid from the discharge suction port 3a of the discharge suction tube 3, the cell suspension may be collected outside the container main body 1 from the discharge suction port 3a of the discharge suction tube 3.
Number | Date | Country | Kind |
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2008-331031 | Dec 2008 | JP | national |
Number | Date | Country | |
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Parent | PCT/JP2009/068237 | Oct 2009 | US |
Child | 13163042 | US |