DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT
Embryonic stem (ES) cells, the undifferentiated cells of early embryos are established as permanent lines and are characterised by their self-renewal capacity and the ability to retain their developmental capacity in vivo and in vitro. The pluripotent properties of ES cells are the basis of gene tar...
Main Authors: | , , , |
---|---|
Formato: | Artigo |
Idioma: | English |
Publicado em: |
Agroprint Timisoara
2023-11-01
|
Colecção: | Scientific Papers Animal Science and Biotechnologies |
Assuntos: | |
Acesso em linha: | https://spasb.ro/index.php/public_html/article/view/1720 |
_version_ | 1827289355640635392 |
---|---|
author | EMOKE PALL ZSUZSANNA LICHNER BABETT BONTOVICS ELEN GOCZA |
author_facet | EMOKE PALL ZSUZSANNA LICHNER BABETT BONTOVICS ELEN GOCZA |
author_sort | EMOKE PALL |
collection | DOAJ |
description | Embryonic stem (ES) cells, the undifferentiated cells of early embryos are
established as permanent lines and are characterised by their self-renewal capacity
and the ability to retain their developmental capacity in vivo and in vitro. The
pluripotent properties of ES cells are the basis of gene targeting technologies used
to create mutant mouse strains with inactivated genes by homologous
recombination. There are several methods to induce the formation of EBs. One of
them the formation by aggregating ES cells in hanging drops, using gravity as an
aggregation force. This method presents the advantage of obtaining well-calibrated
EBs almost identical in size. We used at our experiment the mouse ES cell line
KA1/11/C3/C8 with a normal karyotype, at 14th passages. Immunohistochemical
examination was aimed to identify tissue-restricted proteins for the two
differentiated lineages: titin as a cell-specific antigen for cardiac and skeletal
muscle, betaIII-tubulin for the neuronal differentiation, cytokeratin Endo-A
(TROMA) for the presence of mesenchymal progenitor cells, Oct-4 for the presence
of the undifferentiated ES cells. The beating cardiac muscle clumps showed more
synchronous rhythm than those seen in EBs obtained from suspension culture
method, where the beating cardiac muscle clumps appeared later, had a lower
frequency and were uneven. The synaptic networks of neuronal cells were best
developed in EBs from suspension, compared to those observed in EBs from
hanging-drop method. |
first_indexed | 2024-04-24T11:48:11Z |
format | Article |
id | doaj.art-901b0e9ff12d48c186c3883b9127d1b1 |
institution | Directory Open Access Journal |
issn | 1841-9364 2344-4576 |
language | English |
last_indexed | 2024-04-24T11:48:11Z |
publishDate | 2023-11-01 |
publisher | Agroprint Timisoara |
record_format | Article |
series | Scientific Papers Animal Science and Biotechnologies |
spelling | doaj.art-901b0e9ff12d48c186c3883b9127d1b12024-04-09T08:50:27ZengAgroprint TimisoaraScientific Papers Animal Science and Biotechnologies1841-93642344-45762023-11-014111301301720DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENTEMOKE PALL0ZSUZSANNA LICHNER1BABETT BONTOVICS2ELEN GOCZA3University of Agricultural Science and Veterinary Medicine, Cluj-Napoca, Romania Agricultural Biotechnology Center, Gödöllı, Hungary Agricultural Biotechnology Center, Gödöllı, Hungary Agricultural Biotechnology Center, Gödöllı, Hungary Embryonic stem (ES) cells, the undifferentiated cells of early embryos are established as permanent lines and are characterised by their self-renewal capacity and the ability to retain their developmental capacity in vivo and in vitro. The pluripotent properties of ES cells are the basis of gene targeting technologies used to create mutant mouse strains with inactivated genes by homologous recombination. There are several methods to induce the formation of EBs. One of them the formation by aggregating ES cells in hanging drops, using gravity as an aggregation force. This method presents the advantage of obtaining well-calibrated EBs almost identical in size. We used at our experiment the mouse ES cell line KA1/11/C3/C8 with a normal karyotype, at 14th passages. Immunohistochemical examination was aimed to identify tissue-restricted proteins for the two differentiated lineages: titin as a cell-specific antigen for cardiac and skeletal muscle, betaIII-tubulin for the neuronal differentiation, cytokeratin Endo-A (TROMA) for the presence of mesenchymal progenitor cells, Oct-4 for the presence of the undifferentiated ES cells. The beating cardiac muscle clumps showed more synchronous rhythm than those seen in EBs obtained from suspension culture method, where the beating cardiac muscle clumps appeared later, had a lower frequency and were uneven. The synaptic networks of neuronal cells were best developed in EBs from suspension, compared to those observed in EBs from hanging-drop method.https://spasb.ro/index.php/public_html/article/view/1720embryonic stem cellsin vitro differentiationcardiacneuronal |
spellingShingle | EMOKE PALL ZSUZSANNA LICHNER BABETT BONTOVICS ELEN GOCZA DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT Scientific Papers Animal Science and Biotechnologies embryonic stem cells in vitro differentiation cardiac neuronal |
title | DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT |
title_full | DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT |
title_fullStr | DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT |
title_full_unstemmed | DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT |
title_short | DIFFERENTIATION OF EMBRYONIC STEM CELLS: LESSONS FROM EMBRYONIC DEVELOPMENT |
title_sort | differentiation of embryonic stem cells lessons from embryonic development |
topic | embryonic stem cells in vitro differentiation cardiac neuronal |
url | https://spasb.ro/index.php/public_html/article/view/1720 |
work_keys_str_mv | AT emokepall differentiationofembryonicstemcellslessonsfromembryonicdevelopment AT zsuzsannalichner differentiationofembryonicstemcellslessonsfromembryonicdevelopment AT babettbontovics differentiationofembryonicstemcellslessonsfromembryonicdevelopment AT elengocza differentiationofembryonicstemcellslessonsfromembryonicdevelopment |