IP Library Granted Patent US 9,008,406
Granted Patent B2
US 9,008,406 · App. 13/500,626 · Granted Apr 14, 2015

Method and apparatus for discriminating undifferentiated pluripotent stem cells, and automated culture method and system

Inventors: Keizo Watakabe (Kobe, JP); Yohichi Nakamura (Kobe, JP); Osamu Ohji (Hyogo, JP); Katsumi Nakashima (Kobe, JP)
Assignee: Kawasaki Jukogyo Kabushiki Kaisha
G01N33/5073
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Quick Facts
Patent No.
US 9,008,406
App. No.
13/500,626
Granted
Apr 14, 2015
Kind
B2
Abstract

Provided are a method capable of discriminating between a colony of differentiated pluripotent stem cells and a colony of undifferentiated pluripotent stem cells, and a method for automatically culturing undifferentiated pluripotent stem cells and a system thereof. A differentiated colony composed of differentiated pluripotent stem cells, an undifferentiated colony composed of undifferentiated pluripotent stem cells and a multilayered colony having pluripotent stem cells stacked in multiple layers are discriminated by processing a photo image of a colony including pluripotent stem cells in a culture vessel. Specifically, a colony having a luminance higher than a first threshold A is determined as a differentiated colony, a colony having a luminance equal to or lower than the first threshold A and equal to or higher than a second threshold B is determined as an undifferentiated colony, and a colony having a luminance lower than the second threshold B is determined as a multilayered colony.

Claims (41)

1. A method for discriminating a colony based on a photo image of the colony composed of pluripotent stem cells, the method comprising

discriminating between a differentiated colony containing differentiated pluripotent stem cells and an undifferentiated colony containing only undifferentiated pluripotent stem cells based on the luminance of the photo image,

wherein

a colony having a region with a luminance higher than the first threshold of the luminance is determined as the differentiated colony, and a colony having only a region with a luminance equal to or lower than the first threshold is determined as the undifferentiated colony, and

the first threshold is determined by applying a discriminant analysis to the distribution of the number of pixels with respect to each luminance value in a median filtered image obtained by applying median filtering once or multiple times to the photo image.

2. The method for discriminating a colony according to claim 1 , further comprising discriminating a multilayered colony containing pluripotent stem cells stacked in multiple layers.

3. The method for discriminating a colony according to claim 2 , wherein: a colony having a region with a luminance higher than the first threshold of the luminance is determined as the differentiated colony; a colony having only a region with a luminance equal to or lower than the first threshold and equal to or higher than a second threshold is determined as the undifferentiated colony; and a colony having a region with a luminance lower than the second threshold as the multilayered colony.

4. The method for discriminating a colony according to claim 3 , wherein

the first threshold is determined by applying a discriminant analysis to the distribution of the number of pixels with respect to each luminance value determined on a median filtered image obtained by applying median filtering once or multiple times to the photo image; and

the second threshold is determined by: obtaining an image of only the colony region by extracting, out of the pixels in the smoothing filtered image obtained by applying smoothing filtering once or multiple times to the photo image, only the pixels having a luminance value smaller than the threshold calculated by multiplying the first threshold by a predetermined multiplying factor in the range of from 105% to 115%; creating a histogram with respect to each pixel in the image of only the colony region, with the luminance value on the horizontal axis and the number of pixels having the corresponding luminance value on the vertical axis; provided that a maximum luminance limit defined as whichever the smaller luminance value between the first threshold and the luminance value corresponding to the maximum value of the histogram, obtaining within the range of luminance value smaller than the maximum luminance limit, a straight line by the least squares method using the coordinates of the points on the histogram that lie between 20% of the number of pixels corresponding to the maximum luminance limit and 90% of the number of pixels corresponding to the maximum luminance limit; and obtaining the intersection point of the straight line and the horizontal axis to give the second threshold.

5. A method for automatically culturing undifferentiated pluripotent stem cells, the method comprising:

discriminating an undifferentiated colony from a colony other than the undifferentiated colony by the method for discriminating a colony according to claim 1 ; acquiring the positional information of the undifferentiated colony and that of the colony other than the undifferentiated colony;

introducing a cell detaching agent into the culture vessel;

detaching the undifferentiated colony based on the positional information; and

recovering the undifferentiated pluripotent stem cells obtained by detaching the undifferentiated colony.

6. A method for automatically culturing undifferentiated pluripotent stem cells, the method comprising:

discriminating an undifferentiated colony from a colony other than the undifferentiated colony by the method for discriminating a colony according to claim 1 ;

acquiring the positional information of the undifferentiated colony and that of the colony other than the undifferentiated colony;

introducing a cell detaching agent into the culture vessel;

detaching the colony other than the undifferentiated colony based on the positional information;

discarding the pluripotent stem cells obtained by detaching the colony other than the undifferentiated colony; and

recovering the undifferentiated pluripotent stem cells by detaching the undifferentiated colony.

7. A colony discrimination apparatus, comprising

an image input unit for inputting a photo image after subjected to image processing based on the luminance value, and

a discrimination unit for discriminating between a differentiated colony containing differentiated pluripotent stem cells and an undifferentiated colony composed only of undifferentiated pluripotent stem cells,

the discrimination unit determines a colony having a region with a luminance higher than the first threshold of the luminance as the differentiated colony; and a colony having only a region with a luminance equal to or lower than the first threshold as the undifferentiated colony; and

the first threshold is determined by applying a discriminant analysis to the distribution of the number of pixels with respect to each luminance value determined on a median filtered image obtained by applying median filtering once or multiple times to the photo image.

8. The colony discrimination apparatus according to claim 7 , wherein the discrimination unit further discriminates a multilayered colony containing pluripotent stem cells stacked in multiple layers based on the luminance of the colony.

9. The colony discrimination apparatus according to claim 7 , wherein the discrimination unit determines: a colony having a region with a luminance higher than the first threshold as the differentiated colony; a colony having only a region with a luminance equal to or lower than the first threshold and equal to or higher than a second threshold as the undifferentiated colony; and a colony having a region with a luminance lower than the second threshold as the multilayered colony.

10. The colony discrimination apparatus according to claim 9 , wherein

the first threshold is determined by applying a discriminant analysis to the distribution of the number of pixels with respect to each luminance value determined on a median filtered image obtained by applying median filtering once or multiple times to the photo image; and

the second threshold is determined by: obtaining an image of only the colony region by extracting, out of the pixels in the smoothing filtered image obtained by applying smoothing filtering once or multiple times to the photo image, only the pixels having a luminance value smaller than the threshold calculated by multiplying the first threshold by a predetermined multiplying factor in the range of from 105% to 115%; creating a histogram with respect to each pixel in the image of only the colony region, with the luminance value on the horizontal axis and the number of pixels having the corresponding luminance value on the vertical axis; provided that a maximum luminance limit defined as whichever the smaller luminance value between the first threshold and the luminance value corresponding to the maximum value of the histogram, obtaining within the range of luminance value smaller than the maximum luminance limit, a straight line by the least squares method using the coordinates of the points on the histogram that lie between 20% of the number of pixels corresponding to the maximum luminance limit and 90% of the number of pixels corresponding to the maximum luminance limit; and obtaining the intersection point of the straight line and the horizontal axis to give the second threshold.

11. A system for automatically culturing undifferentiated stem cells, comprising:

the colony discrimination apparatus according to claim 7 ;

a detaching agent introduction unit for introducing a cell detaching agent into the culture vessel; and

a pipetting unit for detaching the undifferentiated colony based on the positional information of each of the colony and recovering the undifferentiated pluripotent stem cells obtained by detaching the undifferentiated colony.

12. A system for automatically culturing undifferentiated stem cells, comprising:

the colony discrimination apparatus according to claim 7 ;

a positional information acquisition unit for acquiring the positional information of the undifferentiated colony and that of the colony other than the undifferentiated colony;

a detaching agent introduction unit for introducing a cell detaching agent into the culture vessel; and

a pipetting unit for detaching the colony other than the undifferentiated colony based on the positional information acquired by the positional information acquisition unit, discarding the pluripotent stem cells obtained by detaching the colony other than the undifferentiated colony, and recovering undifferentiated pluripotent stem cells by further detaching the undifferentiated colony.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2012
From: WATAKABE, KEIZO; NAKAMURA, YOHICHI; OHJI, OSAMU; NAKASHIMA, KATSUMI
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 028447/0690 →
Priority Claims (1)
JP 2009-235306 · Oct 9, 2009 · national
Continuity (1)
Related Publication 20120315620A1 · Dec 13, 2012