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Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells

Human embryonic stem (hES) cells represent an important tool to study early cell development. The previously described use of human recombinant laminin (LN) 521 represented a step forward in generating clinically safe culture conditions. To test the short-term effect of LN521 on cultured hES cells,...

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Autores principales: Albalushi, Halima, Kurek, Magdalena, Karlsson, Leif, Landreh, Luise, Kjartansdóttir, Kristín Rós, Söder, Olle, Hovatta, Outi, Stukenborg, Jan-Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5835285/
https://www.ncbi.nlm.nih.gov/pubmed/29535778
http://dx.doi.org/10.1155/2018/7127042
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author Albalushi, Halima
Kurek, Magdalena
Karlsson, Leif
Landreh, Luise
Kjartansdóttir, Kristín Rós
Söder, Olle
Hovatta, Outi
Stukenborg, Jan-Bernd
author_facet Albalushi, Halima
Kurek, Magdalena
Karlsson, Leif
Landreh, Luise
Kjartansdóttir, Kristín Rós
Söder, Olle
Hovatta, Outi
Stukenborg, Jan-Bernd
author_sort Albalushi, Halima
collection PubMed
description Human embryonic stem (hES) cells represent an important tool to study early cell development. The previously described use of human recombinant laminin (LN) 521 represented a step forward in generating clinically safe culture conditions. To test the short-term effect of LN521 on cultured hES cells, five male hES cell lines were cultured on human foreskin fibroblasts (hFFs), Matrigel, LN521, and LN121 and characterized by qPCR, immunofluorescence analysis, as well as their potential for three-germ layer differentiation. Variations in gene expression related to pluripotency, stemness, and testicular cells at different passages and culture conditions were evaluated by qPCR. All cell lines expressed pluripotency markers at protein and RNA level and were able to differentiate into cell types of the three germ layers after being cultured on LN521 for nine passages. Reduction in variation of pluripotency marker expression could be observed after culturing the cells on LN521 for nine passages. hES cells cultured on LN521 exhibited less differentiation, faster cell growth, and attachment when compared to hES cells cultured on LN121 or Matrigel. Our results indicate a positive effect of LN521 in stabilizing pluripotency gene expression and might be the first step towards more controllable and robust culture conditions for hES cells.
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spelling pubmed-58352852018-03-13 Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells Albalushi, Halima Kurek, Magdalena Karlsson, Leif Landreh, Luise Kjartansdóttir, Kristín Rós Söder, Olle Hovatta, Outi Stukenborg, Jan-Bernd Stem Cells Int Research Article Human embryonic stem (hES) cells represent an important tool to study early cell development. The previously described use of human recombinant laminin (LN) 521 represented a step forward in generating clinically safe culture conditions. To test the short-term effect of LN521 on cultured hES cells, five male hES cell lines were cultured on human foreskin fibroblasts (hFFs), Matrigel, LN521, and LN121 and characterized by qPCR, immunofluorescence analysis, as well as their potential for three-germ layer differentiation. Variations in gene expression related to pluripotency, stemness, and testicular cells at different passages and culture conditions were evaluated by qPCR. All cell lines expressed pluripotency markers at protein and RNA level and were able to differentiate into cell types of the three germ layers after being cultured on LN521 for nine passages. Reduction in variation of pluripotency marker expression could be observed after culturing the cells on LN521 for nine passages. hES cells cultured on LN521 exhibited less differentiation, faster cell growth, and attachment when compared to hES cells cultured on LN121 or Matrigel. Our results indicate a positive effect of LN521 in stabilizing pluripotency gene expression and might be the first step towards more controllable and robust culture conditions for hES cells. Hindawi 2018-02-18 /pmc/articles/PMC5835285/ /pubmed/29535778 http://dx.doi.org/10.1155/2018/7127042 Text en Copyright © 2018 Halima Albalushi et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Albalushi, Halima
Kurek, Magdalena
Karlsson, Leif
Landreh, Luise
Kjartansdóttir, Kristín Rós
Söder, Olle
Hovatta, Outi
Stukenborg, Jan-Bernd
Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title_full Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title_fullStr Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title_full_unstemmed Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title_short Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells
title_sort laminin 521 stabilizes the pluripotency expression pattern of human embryonic stem cells initially derived on feeder cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5835285/
https://www.ncbi.nlm.nih.gov/pubmed/29535778
http://dx.doi.org/10.1155/2018/7127042
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