scholarly journals From pluripotency to totipotency: an experimentalist's guide to cellular potency

Development ◽  
2020 ◽  
Vol 147 (16) ◽  
pp. dev189845 ◽  
Author(s):  
Alba Redó Riveiro ◽  
Joshua Mark Brickman

ABSTRACTEmbryonic stem cells (ESCs) are derived from the pre-implantation mammalian blastocyst. At this point in time, the newly formed embryo is concerned with the generation and expansion of both the embryonic lineages required to build the embryo and the extra-embryonic lineages that support development. When used in grafting experiments, embryonic cells from early developmental stages can contribute to both embryonic and extra-embryonic lineages, but it is generally accepted that ESCs can give rise to only embryonic lineages. As a result, they are referred to as pluripotent, rather than totipotent. Here, we consider the experimental potential of various ESC populations and a number of recently identified in vitro culture systems producing states beyond pluripotency and reminiscent of those observed during pre-implantation development. We also consider the nature of totipotency and the extent to which cell populations in these culture systems exhibit this property.

2002 ◽  
Vol 2 ◽  
pp. 690-700 ◽  
Author(s):  
Joy Rathjen ◽  
Peter D. Rathjen

Recent interest in the generation of neural lineages by differentiation of embryonic stem cells arises from the opportunities represented by a developmentally normal, unlimited source of material that can be manipulated genetically with precision. Several experimental approaches, which differ conceptually, in the route of differentiation and the characteristics of the resulting cell population have been reported. In this review we undertake a comparative analysis of these approaches and their suitability for experimental investigation or implantation.


2011 ◽  
Vol 23 (1) ◽  
pp. 252
Author(s):  
K. P. Singh ◽  
R. Kaushik ◽  
R. Sharma ◽  
S. Kala ◽  
A. George ◽  
...  

Nucleostemin is a newly found putative GTPase protein that binds to P53 and exists mainly in the nucleoli and at a very low level in nucleoplasm of undifferentiated embryonic stem cells (ESC) and myeloid stem cells but is not expressed in committed and terminally differentiated cells. Embryonic stem cells are pluripotent cells derived from the inner cell mass (ICM) of blastocysts. The ICM and ESC express a number of transcription factors, and their expression is used as a pluripotency marker in the ESC of many species. The present study was undertaken to identify expression of the nucleostemin gene in different developmental stages of buffalo embryos and cultured ESC. Parthenogenetic activation is a process by which an oocyte can be developed up to blastocyst without fertilization. The parthenotes were produced by following protocol. Briefly, immature oocytes were aspirated from slaughterhouse buffalo ovaries and subjected to in vitro maturation for 24 h in a CO2 incubator (5% O2, 5% CO2, 90–95% relative humidity) at 38.5°C. After 24 h of in vitro maturation, oocytes were activated by exposure to 7% ethanol for 7 min, followed by incubation with 2 mM 6-dimethyl aminopurine in CR2 medium for 3.5 h, and they were then subjected to in vitro culture. The activated embryos were cultured for 8 days in CR2 medium containing 0.6% BSA and 10% FBS to obtain different stages (immature and mature oocytes 2-, 4-,8–16-cell, morula, and blastocyst) of embryos. A total of 23 blastocysts were produced parthenogenetically, of which 5 blastocysts were used for nucleostemin expression and the rest were used for ICM isolation. The isolated ICM were subsequently cultured on mitomycin-C (10 μg mL–1) treated buffalo fetal fibroblast feeder layer in DMEM medium supplemented with 20% fetal bovine serum, 1 000 IU mL–1 of mouse leukemia inhibitory factor, 1% nonessential amino acids, 2 mM L-glutamine, and 50 μg mL–1 gentamycin. These ESC were cultured up to 5 passages. The 5 embryos of different developmental stages and a clump of ESC were used for nucleostemin expression. The total RNA was isolated and transcribed using Cell-to-cDNA-II (Ambion, Austin, TX, USA) according to manufacturer protocol. To amplify the nucleostemin gene, the PCR cycle was carried out and included heating to 94°C for 5 min, followed by 35 cycles at 94°C for 30 s, 60°C for 30 s, and 72°C for 40 s. The expressions of nucleostemin transcript were observed in all the developmental stages including immature and mature oocytes. The transcript was highly expressed in the 2-cell stage, blastocysts, and ESC, but immature oocytes and 8–16-cell stage showed lower expression. The experiment was repeated, and the same result was found. To our knowledge this is the first report in buffalo. It is concluded that the transcript was expressed in all the early stages of parthenogenetically derived buffalo embryos from immature oocytes to blastocysts and continued to be expressed in ESC. This work was funded by NAIP, C-420678075, India.


2006 ◽  
Vol 50 (7) ◽  
pp. 645-652 ◽  
Author(s):  
Hossein Baharvand ◽  
Seyed M. Hashemi ◽  
Saeid Kazemi Ashtiani ◽  
Ali Farrokhi

2016 ◽  
Vol 36 (6) ◽  
Author(s):  
Zohreh Makoolati ◽  
Mansoureh Movahedin ◽  
Mehdi Forouzandeh-Moghadam

The present study aims to confirm and analyse germ cell-related patterns and specific gene expressions at a very early stage of cell commitment. Following the XY cytogenetic confirmation of the CCE mouse embryonic stem cells (mESCs) line, cells were cultured to form embryoid bodies (EBs). Expression pattern assessment of the mouse vasa homologue (Mvh), Stra8, α6 and β1 integrin genes in ESC and 1–3-day-old EB showed that all genes except α6 integrin were expressed in the ESC. The mean calibration of Mvh, Stra8 and α6 integrin expression significantly increased upon EB formation compared with the ESCs. During mouse embryogenesis, the signalling of bone morphogenetic protein (BMP) is essential for germ-line formation. To investigate its role in germ-line induction in vitro, mESCs were cultured as 1-day-old EB aggregates with BMP4 for 4 days in STO co-culture systems, in the presence and absence of 5 ng/ml BMP4. At the end of the culture period, colony assay (number and diameter) was performed and the viability percentage and proliferation rate was determined. There were no significant statistical differences in the abovementioned criteria between these two groups. Moreover, the expression of Mvh, α6 and β1 integrins, Stra8 and Piwil2 genes was evaluated in co-culture groups. The molecular results of co-culture groups showed higher–but insignificant–Piwil2 and significant α6 integrin expressions in BMP4 treated co-culture systems. These results confirmed that the EB system and the presence of BMP4 in a STO co-culture system improve the differentiation of ESCs to germ cell.


2021 ◽  
Author(s):  
Remko Offringa ◽  
Omid Karami ◽  
Cheryl Philipsen ◽  
Arezoo Rahimi ◽  
Annisa Ratna Nurillah ◽  
...  

Somatic embryogenesis (SE) is the process by which embryos develop from in vitro cultured vegetative tissue explants. The synthetic auxin 2,4-dichlorophenoxyacetic acid (2,4-D) is widely used for SE induction, but SE can also be induced by overexpression of specific transcription factors, such as AT-HOOK MOTIF NUCLEAR LOCALIZED 15 (AHL15). 2,4-D and AHL15 both trigger the biosynthesis of the natural auxin indole-3-acetic acid (IAA). However, the role of this endogenously produced auxin in SE is yet not well understood. In this study we show that the induction of embryonic stem cells from explants does not require IAA biosynthesis, whereas an increase in IAA levels is essential to maintain embryo identity and for embryo formation from these stem cells. Further analysis showed that YUCCA (YUC) genes involved in the IPyA auxin biosynthesis pathway are up-regulated in embryo-forming tissues. Chemical inhibition of the IPyA pathway significantly reduced or completely inhibited the formation of somatic embryos in both 2,4-D-and AHL15-dependent systems. In the latter system, SE could be restored by exogenous IAA application, confirming that the biosynthesis-mediated increase in IAA levels is important. Our analyses also show that PIN1 and AUX1 are the major auxin carriers that determine respectively auxin efflux and influx during SE. This auxin transport machinery is required for the proper transition of embryonic cells to proembryos and, later, for correct cell fate specification and differentiation. Taken together, our results indicate that auxin biosynthesis in conjunction with its polar transport are required during SE for multicellular somatic proembryo development and differentiation.


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