Data from: Ellipsoid segmentation model for analyzing light-attenuated 3D confocal image stacks of fluorescent multi-cellular spheroids
Barbier, Michaël, Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Jaensch, Steffen, Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Cornelissen, Frans, Pharma R&D IT, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Vidic, Suzana, University of Primorska
Gjerde, Kjersti, Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
De Hoogt, Ronald, Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Graeser, Ralph, Translational Medicine and Clinical Pharmacology, Boehringer Ingelheim, Ingelheim am Rhein, Germany
Gustin, Emmanuel, Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Chong, Yolanda T., Discovery Sciences, Janssen Pharmaceutical companies of Johnson & Johnson, Beerse, Belgium
Publication date: May 26, 2017
Publisher: Dryad
https://doi.org/10.5061/dryad.0m9n7
Citation
Barbier, Michaël et al. (2017), Data from: Ellipsoid segmentation model for analyzing light-attenuated 3D confocal image stacks of fluorescent multi-cellular spheroids, Dryad, Dataset, https://doi.org/10.5061/dryad.0m9n7
Abstract
In oncology, two-dimensional in-vitro culture models are the standard test beds for the discovery and development of cancer treatments, but in the last decades, evidence emerged that such models have low predictive value for clinical efficacy. Therefore they are increasingly complemented by more physiologically relevant 3D models, such as spheroid micro-tumor cultures. If suitable fluorescent labels are applied, confocal 3D image stacks can characterize the structure of such volumetric cultures and, for example, cell proliferation. However, several issues hamper accurate analysis. In particular, signal attenuation within the tissue of the spheroids prevents the acquisition of a complete image for spheroids over 100 micrometers in diameter. And quantitative analysis of large 3D image data sets is challenging, creating a need for methods which can be applied to large-scale experiments and account for impeding factors. We present a robust, computationally inexpensive 2.5D method for the segmentation of spheroid cultures and for counting proliferating cells within them. The spheroids are assumed to be approximately ellipsoid in shape. They are identified from information present in the Maximum Intensity Projection (MIP) and the corresponding height view, also known as Z-buffer. It alerts the user when potential bias-introducing factors cannot be compensated for and includes a compensation for signal attenuation.
Usage notes
S2_File: tiff image stack of the example 3D spheroid culture used in figures 1-4 and figure 6
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
S2_File.tif
S3_File: ground truth manual segmentation data on 2D MIP images
This is a zip-file containing manually segmented 2D ground truth labeled masks of 3D spheroid cultures. The cultures are LNCaP cancer spheroids in co-culture with CAF stromal cells (untreated, DMSO samples). For the manual segmentation 2D maximum intensity projections (MIPs) were used of the original 3D stacks. The spheroids are labeled in five distinct classes: (1) well separated, (2) overlapping with brighter spheroids in the MIP (rendering it non-separable), (3) overlapping with less bright spheroids in the MIP (rendering it well separable), (4) merely touching other spheroids, and (5) touching the border of the 2D projection of the image. Opening of the images in FIJI (ImageJ) with the ROI Manager allows visual inspection of the data. For this purpose the cases (1) to (5) are color-coded in red, green, magenta, cyan, and blue, respectively.
S3_File.zip
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A06, field 1
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_001.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A06, field 2
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_002.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A06, field 3
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_003.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A06, field 4
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_004.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A08, field 1
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_001.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A08, field 2
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_002.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A08, field 3
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_003.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, control sample (DMSO), well A08, field 4
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_004.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with docetaxel, well E08, field 1
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_001.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with docetaxel, well E08, field 2
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_002.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with docetaxel, well E08, field 3
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_003.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with docetaxel, well E08, field 4
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_004.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with MDV, well F05, field 1
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_001.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with MDV, well F05, field 2
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_002.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with MDV, well F05, field 3
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_003.tif
S5_File: 3D image stack of PC346c cancer spheroids in co-culture with CAFs, treated with MDV, well F05, field 4
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of PC346c prostate cancer cells (a cell line obtained from the Erasmus Medical Center, via the PREDECT consortium) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
field_004.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A05, field 1, stack 333
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_333.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A05, field 2, stack 334
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_334.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A05, field 3, stack 335
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_335.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A05, field 4, stack 336
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_336.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A07, field 1, stack 337
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_337.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A07, field 2, stack 338
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_338.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A07, field 3, stack 339
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_339.tif
S4_File: 3D image stack, LNCaP cancer spheroids in co-culture with CAFs, control sample (DMSO), well A07, field 4, stack 340
3D image stack of 3D fluorescent multi-cellular spheroid culture existing out of LNCaP human prostate cancer cells (ATCC, Rockville, USA) and CAF-PF179T human cancer associated fibroblasts (a cell line obtained from the Weizmann Institute, via the PREDECT consortium).
stack_340.tif
ReadMe
The ReadMe file describes the 3D image data contained in this data repository.
S6 File. Spot detection algorithm illustrated on the 3D image stack in S2 File.
This is a multi-page tiff file which shows the EdU channel of the 3D image stack in the supplement S2 File, with the EdU positive cells annotated by small spheres. This image can serve as an example result of the spot detection algorithm (3D version). Similar to the image stack in the supplement S2 File, this image stack can be opened with an application such as ImageJ.
S6_File_v2.tif