| Literature DB >> 28196411 |
Song Baek1, Na Rae Han1, Jung Im Yun2, Jae Yeon Hwang3, Minseok Kim4, Choon Keun Park1,5, Eunsong Lee6, Seung Tae Lee1,5.
Abstract
Despite the fact that porcine embryonic stem cells (ESCs) are a practical study tool, in vitro long-term maintenance of these cells is difficult in a two-dimensional (2D) microenvironment using cellular niche or extracellular matrix proteins. However, a three-dimensional (3D) microenvironment, similar to that enclosing the inner cell mass of the blastocyst, may improve in vitro maintenance of self-renewal. Accordingly, as a first step toward constructing a 3D microenvironment optimized to maintain porcine ESC self-renewal, we investigated different culture dimensions for porcine ICM-derived cells to enhance the maintenance of self-renewal. Porcine ICM-derived cells were cultured inEntities:
Keywords: agarose; culture dimension; embryonic stem cells; pig; self-renewal
Mesh:
Year: 2017 PMID: 28196411 PMCID: PMC5339502 DOI: 10.14348/molcells.2017.2223
Source DB: PubMed Journal: Mol Cells ISSN: 1016-8478 Impact factor: 5.034
Effects of different agarose concentrations on the maintenance of AP activity in the culture of porcine ICM-derived cells inside agarose-based 3D hydrogels.
| Concentration (%, w/v) of agarose | No. of porcine ICM-derived cell colonies inserted into agarose-based 3D hydrogels | No. (%) |
|---|---|---|
| 0.5 | 28 | 24 (85.7) |
| 1.0 | 27 | 24 (88.9) |
| 1.5 | 29 | 28 (96.6) |
Model effect of treatments in the number of colonies stained positively by AP staining is 0.3662 (p value).
Percentage of the number of porcine ICM-derived cell colonies inserted into agarose-based 3D hydrogels.
Colonies were derived from porcine ICM-derived cells cultured for 7 days in the 3D hydrogels based on agarose with the specific concentration.
Effects of different agarose concentrations on the proliferation of porcine ICM-derived cells cultured in agarose-based 3D hydrogels.
| Concentration (%, w/v) of agarose | No. of porcine ICM-derived cell colonies inserted into agarose-based 3D hydrogels | No. (%) |
|---|---|---|
| 0.5 | 34 | 2 (5.9) |
| 1.0 | 34 | 9 (26.5) |
| 1.5 | 40 | 12 (30.0) |
Model effect of treatments in the number of colonies stained positively by AP staining is 0.5068 (p value).
Percentage of the number of porcine ICM-derived cell colonies inserted into agarose-based 3D hydrogels.
Colonies were derived from porcine ICM-derived cells cultured for 7 days in the 3D hydrogels based on agarose with the specific concentration.
Colony experiencing increase of size post-in vitro culture was regarded as the proliferated colony.
Fig. 1AP activity and colony morphology of porcine ICM-derived cells cultured in 2D and 3D microenvironments
Undifferentiated porcine ICM-derived cells were maintained on 2D culture plates coated with (A) or without (B) MEFs, or in 3D microenvironments in 1.5% (w/v) agarose-based 3D hydrogels (C). After 7 days of incubation, AP activity and colony morphology were characterized by histochemical staining and stereomicroscopy. Porcine ICM-derived in MEF-free 2D cultures showed no AP positivity (B), whereas those in 2D cultures with MEFs or in 1.5% (w/v) agarose-based 3D hydrogels showed strong positivity (A and C, red color). Colonies with well-defined boundaries were primarily observed in the porcine ESCs cultured in 2D with MEFs, while MEF-free 2D cultures induced formation of colonies with discontinuous boundaries. Colonies in the 3D microenvironment showed stereoscopic morphology. Scale bars are 200 μm.
Effects of dimensional difference in in vitro culture on the maintenance of AP activity in porcine ICM-derived cells.
| Dimension | Culture condition Without (−) or With (+) MEFs | No. of porcine ICM-derived cell colonies seeded | No. (%) |
|---|---|---|---|
| 2D | + | 15 | 15 (100.0) |
| − | 14 | 0 (0.0) | |
| 3D | − | 16 | 15 (93.8) |
Model effect of treatments in the number of colonies stained positively by AP staining was less than 0.0001 (p value).
Percentage of the number of porcine ICM-derived cell colonies seeded.
Colonies were derived from porcine ICM-derived cells cultured for 7 days in the 3D hydrogels based on agarose with the specific concentration.
Different superscripts within a column are significantly different, p < 0.0001.
Fig. 2Effects of the culture dimension in vitro on the transcript levels of self-renewal-related genes in porcine ICM-derived cells
Porcine ICM-derived cells were cultured for 7 days on 2D culture plates coated with or without MEFs or in 1.5% (w/v) agarose-based 3D hydrogels. Subsequently, transcript levels of self-renewal-related genes were estimated by real-time PCR. Porcine ICM-derived cells in agarose-based 3D hydrogels showed significantly higher transcript levels of OCT4 (A), SOX2 (B), NANOG (C) and TERT (D) relative to those in 2D cultures without MEFs. The MEF-free agarose-based 3D hydrogel itself induced significant transcriptional up-regulation of OCT4 (A), SOX2 (B) and TERT (D) and down-regulation of NANOG (C) in porcine ICM-derived cells, compared with MEF-coated 2D culture plates. Error bars represent S.D. n = 3. *,**p < 0.05.
Fig. 3The percentage of porcine ICM-derived cells expressing self-renewal-related proteins in 2D and 3D cultures
Porcine ICM-derived cells were cultured for 7 days on 2D plates with or without MEFs or in 1.5% (w/v) agarose-based 3D hydrogels and then immunostained for self-renewal-related proteins expressed in undifferentiated porcine ICM-derived cells. The percentage of porcine ICM-derived cells expressing self-renewal-related proteins within a colony was calculated by dividing the positively stained area of each colony by the total area of that colony. Porcine ICM-derived cells cultured in MEF-free 2D culture plates showed significantly lower percentages of cells positive for all self-renewal-related proteins evaluated except SOX2 (B). There were no significant differences in the percentages of porcine ICM-derived cells expressing OCT4 (A), NANOG (C) and TRA-1-60 (D) between 2D cultures with MEFs and agarose-based 3D hydrogels; significantly more porcine ICM-derived cells cultured in agarose-based 3D hydrogels were positive for SOX2 (B) and TRA-1-81 (E) than in 2D cultures with MEFs. Error bars represent S.D. n = 3. *,**p < 0.05.