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Published on: August 3, 2015
Suppression of transforming growth factor β signaling promotes ground state pluripotency from single blastomeres
Seyedeh-Nafiseh Hassani1, Mohammad Pakzad2, Behrouz Asgari2
1Department of Stem Cells and Developmental Biology at the Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, PO Box 19395-4644, Tehran, Iran Department of Developmental Biology, University of Science and Culture, ACECR, Tehran, Iran.
Study Question:
Can transforming growth factor β (TGFβ) inhibition promote ground state pluripotency of embryonic stem cells (ESCs) from single blastomeres (SBs) of cleavage embryos in different mouse stains?
Summary Answer:
Small molecule suppression of extracellular signal-regulated protein kinases 1 and 2 (ERK1/2) and TGFβ signaling (designated as R2i) can enhance the generation of mouse ESCs from SBs of different cleavage stage embryos compared with the dual suppression of ERK1/2 and glycogen synthase kinase 3 (GSK3), designated as 2i, regardless of the strain of mouce.
What Is Known Already:
It is known that chemical inhibition of TGFβ promotes ground state pluripotency in the generation and sustenance of naïve ES cells from mouse blastocysts compared with the well-known 2i condition. However, the positive effect of this inhibition on mouse ESCs from early embryonic SBs remains obscure.
Study Design, Size, Duration:
We used 155 cleavage-stage mouse embryos to optimize the culture conditions for blastocyst development. Then, to assess the effects of R2i and 2i on ESC generation from SBs, we cultured isolated SBs in 2i and R2i for 10 days. SBs were replated under the same conditions to produce ESCs. In total, 46 embryos and 321 SBs from two- to eight-cell stages were recovered from NMRI and BALB/c mouse strains and used in this study.
Participants/Materials, Setting, Methods:
Blastomeres from 2- to 8-cell stage mouse embryos were dispersed and individually seeded into a 96-well plates that included mitotically inactivated feeder cells. ESCs were generated in B27N2 defined medium supplemented with R2i or 2i. Randomly selected ESC lines, generated from SBs of each stage, were assessed for pluripotency and germ-line transmission.
Main Results And The Role Of Chance:
We demonstrated that dual inhibition of ERK1/2 and TGFβ (R2i) enhanced efficient blastocyst development and efficient establishment of ESCs from SB of 2- to 8-cell stage mouse embryos compared with the dual inhibition of ERK1/2 and GSK3 (2i) regardless of the embryonic stage and strain of mice. The proportions of SBs that produced ESC were 50-60 versus 20-30%.
Limitations, Reasons For Caution:
This study was done with mouse embryos, it is not known whether these findings are transferable to humans.
Wider Implications Of The Findings:
These findings resulted in an increased efficiency of ESC generation from one biopsied blastomere for autogeneic or allogeneic matched pluripotent cells without the need to destroy viable embryos. The results also provided information about the developmental capacity of early embryonic blastomeres.
Study Funding/Competing Interests:
This study was funded by grants provided from Royan Institute, the Iranian Council of Stem Cell Research and Technology and the Iran National Science Foundation. The authors have no conflict of interest to declare.
Insights
Inhibition of TGFβ signaling with R2i enhances mouse embryonic stem cell generation from single blastomeres more effectively than 2i. This method improves efficiency without destroying embryos, offering potential for matched pluripotent cells.
Area of Science:
- Stem cell biology
- Developmental biology
- Reproductive medicine
Background:
- Chemical inhibition of TGFβ promotes pluripotency in mouse ESCs compared to 2i.
- The effect of TGFβ inhibition on ESCs from early embryonic single blastomeres is not well understood.
Purpose of the Study:
- To investigate if TGFβ inhibition can promote ground state pluripotency of ESCs derived from single blastomeres of cleavage-stage mouse embryos.
- To compare the efficacy of R2i (ERK1/2 and TGFβ inhibition) with 2i (ERK1/2 and GSK3 inhibition) in generating ESCs from single blastomeres across different mouse strains.
Main Methods:
- Single blastomeres were isolated from 2- to 8-cell stage mouse embryos (NMRI and BALB/c strains).
- Isolated blastomeres were cultured individually in defined medium supplemented with either R2i or 2i for 10 days to generate ESCs.
- ESC lines were assessed for pluripotency and germ-line transmission potential.
Main Results:
- R2i significantly enhanced blastocyst development and ESC establishment from single blastomeres compared to 2i.
- The proportion of single blastomeres yielding ESCs was 50-60% with R2i versus 20-30% with 2i.
- These improvements were consistent across different embryonic stages and mouse strains.
Conclusions:
- R2i is more effective than 2i for generating mouse ESCs from single blastomeres.
- This approach increases ESC generation efficiency from a single biopsied blastomere, potentially for autogeneic or allogeneic matched pluripotent cells.
- The study provides insights into the developmental capacity of early embryonic blastomeres.
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