Literature DB >> 18369101

Androgenetic embryonic stem cells form neural progenitor cells in vivo and in vitro.

Timo C Dinger1, Sigrid Eckardt, Soon Won Choi, Guadelupe Camarero, Satoshi Kurosaka, Vroni Hornich, K John McLaughlin, Albrecht M Müller.   

Abstract

Uniparental zygotes with two paternal (androgenetic [AG]) or two maternal (gynogenetic [GG]; parthenogenetic [PG]) genomes are not able to develop into viable offspring but can form blastocysts from which embryonic stem cells (ESCs) can be derived. Although some aspects of the in vitro and in vivo differentiation potential of PG and GG ESCs of several species have been studied, the developmental capacity of AG ESCs is much less clear. Here, we investigate the potential of murine AG ESCs to undergo neural differentiation. We observed that AG ESCs differentiate in vitro into pan-neural progenitor cells (pnPCs) that further give rise to cells that express neuronal- and astroglial-specific markers. Neural progeny of in vitro-differentiated AG ESCs exhibited fidelity of expression of six imprinted genes analyzed, with the exception of Ube3a. Bisulfite sequencing for two imprinting control regions suggested that pnPCs predominantly maintained their methylation pattern. Following blastocyst injection of AG and biparental (normal fertilized [N]) ESCs, we found widespread and evenly distributed contribution of ESC-derived cells in both AG and N chimeric early fetal brains. AG and N ESC-derived cells isolated from chimeric fetal brains by fluorescence-activated cell sorting exhibited similar neurosphere-initiating cell frequencies and neural multilineage differentiation potential. Our results indicate that AG ESC-derived neural progenitor/stem cells do not differ from N neural progenitor/stem cells in their self-renewal and neural multilineage differentiation potential. Disclosure of potential conflicts of interest is found at the end of this article.

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Year:  2008        PMID: 18369101     DOI: 10.1634/stemcells.2007-0877

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  10 in total

1.  In vivo and in vitro differentiation of uniparental embryonic stem cells into hematopoietic and neural cell types.

Authors:  Sigrid Eckardt; Timo C Dinger; Satoshi Kurosaka; N Adrian Leu; Albrecht M Müller; K John McLaughlin
Journal:  Organogenesis       Date:  2008-01       Impact factor: 2.500

2.  Epigenetic alteration of imprinted genes during neural differentiation of germline-derived pluripotent stem cells.

Authors:  Hye Jeong Lee; Na Young Choi; Seung-Won Lee; Kisung Ko; Tae Sook Hwang; Dong Wook Han; Jisun Lim; Hans R Schöler; Kinarm Ko
Journal:  Epigenetics       Date:  2016-03-10       Impact factor: 4.528

3.  Human Parthenogenetic Embryonic Stem Cell-Derived Neural Stem Cells Express HLA-G and Show Unique Resistance to NK Cell-Mediated Killing.

Authors:  Jessica Schmitt; Sigrid Eckardt; Paul G Schlegel; Anna-Leena Sirén; Valentin S Bruttel; K John McLaughlin; Jörg Wischhusen; Albrecht M Müller
Journal:  Mol Med       Date:  2015-03-23       Impact factor: 6.354

4.  Phenotype and Stability of Neural Differentiation of Androgenetic Murine ES Cell-Derived Neural Progenitor Cells.

Authors:  Wanja Wolber; Ruhel Ahmad; Soon Won Choi; Sigrid Eckardt; K John McLaughlin; Jessica Schmitt; Christian Geis; Manfred Heckmann; Anna-Leena Sirén; Albrecht M Müller
Journal:  Cell Med       Date:  2013-06-13

5.  Mouse Parthenogenetic Embryonic Stem Cells with Biparental-Like Expression of Imprinted Genes Generate Cortical-Like Neurons That Integrate into the Injured Adult Cerebral Cortex.

Authors:  Annie Varrault; Sigrid Eckardt; Benoît Girard; Anne Le Digarcher; Isabelle Sassetti; Céline Meusnier; Chantal Ripoll; Armen Badalyan; Federica Bertaso; K John McLaughlin; Laurent Journot; Tristan Bouschet
Journal:  Stem Cells       Date:  2017-11-10       Impact factor: 6.277

6.  Polycomb protein EED is required for silencing of pluripotency genes upon ESC differentiation.

Authors:  Nadine Obier; Qiong Lin; Pierre Cauchy; Vroni Hornich; Martin Zenke; Matthias Becker; Albrecht M Müller
Journal:  Stem Cell Rev Rep       Date:  2015-02       Impact factor: 5.739

7.  Cell lines derived from human parthenogenetic embryos can display aberrant centriole distribution and altered expression levels of mitotic spindle check-point transcripts.

Authors:  Tiziana A L Brevini; Georgia Pennarossa; Stefania Antonini; Alessio Paffoni; Gianluca Tettamanti; Tiziana Montemurro; Enrico Radaelli; Lorenza Lazzari; Paolo Rebulla; Eugenio Scanziani; Magda de Eguileor; Nissim Benvenisty; Guido Ragni; Fulvio Gandolfi
Journal:  Stem Cell Rev Rep       Date:  2009-09-09       Impact factor: 5.739

8.  IGF-1 enhances cell proliferation and survival during early differentiation of mesenchymal stem cells to neural progenitor-like cells.

Authors:  Tee Jong Huat; Amir Ali Khan; Soumya Pati; Zulkifli Mustafa; Jafri Malin Abdullah; Hasnan Jaafar
Journal:  BMC Neurosci       Date:  2014-07-22       Impact factor: 3.288

9.  Functional neuronal cells generated by human parthenogenetic stem cells.

Authors:  Ruhel Ahmad; Wanja Wolber; Sigrid Eckardt; Philipp Koch; Jessica Schmitt; Ruslan Semechkin; Christian Geis; Manfred Heckmann; Oliver Brüstle; John K McLaughlin; Anna-Leena Sirén; Albrecht M Müller
Journal:  PLoS One       Date:  2012-08-06       Impact factor: 3.240

Review 10.  Double sperm cloning (DSC) is a promising strategy in mammalian genetic engineering and stem cell research.

Authors:  Zhi-Ping Zhang; Jun-Tao Zhang; Shu-Cheng Huang; Xiu-Yuan He; Li-Xin Deng
Journal:  Stem Cell Res Ther       Date:  2020-09-07       Impact factor: 6.832

  10 in total

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