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PMID: 26855729 Published · ppublish English

Differentiation of Definitive Endoderm from Human Induced Pluripotent Stem Cells on hMSCs Feeder in a Defined Medium.

Avicenna journal of medical biotechnology ·Vol. 8 ·No. 1 ·2016-02-09

Jaafarpour Zahra, Soleimani Masoud, Hosseinkhani Saman, Karimi Mohammad Hossein, Yaghmaei Parichehreh, Mobarra Naser, Geramizadeh Bita

Abstract

The Definitive Endoderm (DE) differentiation using the undefined media and non-human feeders can cause contaminations in the generated cells for therapeutic applications. Therefore, generating safer and more appropriate DE cells is needed. This study compared five different methods to establish an appropriate method for inducing an efficient DE differentiation from Human Induced Pluripotent Stem Cells (hiPSCs) on an appropriate feeder in a more defined medium.,Human Induced Pluripotent Stem Cells (hiPSCs) were cultured on inactivated feeders. Passaged hiPSCs, without feeder, were incubated for three days with Activin-A and different endodermal differentiation media including 1-FBS, 2-B27, 3-ITS and albumin fraction-V, 4-B27 and ITS and 5-like the third medium. The feeder cells in the first four methods were Mouse Embryonic Fibroblasts (MEFs) and in the fifth method were human adult bone marrow Mesenchymal Stem Cells (hMSCs). DE markers FOXA2, SOX17 and CXCR4 and also pluripotency marker OCT4 were evaluated using qRT-PCR, as well as FOXA2 by the immunocytochemistry.,QRT-PCR analysis showed that after three days, the expression levels of DE and pluripotency markers in the differentiated hiPSCs among all five groups did not have any significant differences. Similarly, the immunocytochemistry analysis demonstrated that the differentiated hiPSCs expressed FOXA2, with no significant differences.,Despite this similarity in the results, the third differentiation medium has more defined and cost effective components. Furthermore, hMSC, a human feeder, is safer than MEF. Therefore, the fifth method is preferable among other DE differentiation methods and can serve as a fundamental method helping the development of regenerative medicine.

Keywords
Endoderm Induced pluripotent stem cells Mesenchymal stem cells
Article Info
Journal
Avicenna journal of medical biotechnology
Abbr.
Avicenna J Med Biotechnol
ISSN
2008-2835
Published
2016-02-09
Indexed
2016-02-09
Updated
2016-02-10
Language
English
Country/Region
Iran
NLM ID
101511065
External Links
PubMed source
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