Glia 2016-05-01

Functional and phenotypic differences of pure populations of stem cell-derived astrocytes and neuronal precursor cells.

Susanne Kleiderman, João V Sá, Ana P Teixeira, Catarina Brito, Simon Gutbier, Lars G Evje, Mussie G Hadera, Enrico Glaab, Margit Henry, Agapios Sachinidis, Paula M Alves, Ursula Sonnewald, Marcel Leist

Index: Glia 64 , 695-715, (2016)

Full Text: HTML

Abstract

Availability of homogeneous astrocyte populations would facilitate research concerning cell plasticity (metabolic and transcriptional adaptations; innate immune responses) and cell cycle reactivation. Current protocols to prepare astrocyte cultures differ in their final content of immature precursor cells, preactivated cells or entirely different cell types. A new method taking care of all these issues would improve research on astrocyte functions. We found here that the exposure of a defined population of pluripotent stem cell-derived neural stem cells (NSC) to BMP4 results in pure, nonproliferating astrocyte cultures within 24-48 h. These murine astrocytes generated from embryonic stem cells (mAGES) expressed the positive markers GFAP, aquaporin 4 and GLT-1, supported neuronal function, and acquired innate immune functions such as the response to tumor necrosis factor and interleukin 1. The protocol was applicable to several normal or disease-prone pluripotent cell lines, and the corresponding mAGES all exited the cell cycle and lost most of their nestin expression, in contrast to astrocytes generated by serum-addition or obtained as primary cultures. Comparative gene expression analysis of mAGES and NSC allowed quantification of differences between the two cell types and a definition of an improved marker set to define astrocytes. Inclusion of several published data sets in this transcriptome comparison revealed the similarity of mAGES with cortical astrocytes in vivo. Metabolic analysis of homogeneous NSC and astrocyte populations revealed distinct neurochemical features: both cell types synthesized glutamine and citrate, but only mature astrocytes released these metabolites. Thus, the homogeneous cultures allowed an improved definition of NSC and astrocyte features.© 2015 Wiley Periodicals, Inc.


Related Compounds

Related Articles:

NMR spectroscopic and quantum mechanical analyses of enhanced solubilization of hesperidin by theasinensin a.

2015-07-01

[Pharm. Res. 32 , 2301-9, (2015)]

Metabolomic quality control of commercial Asian ginseng, and cultivated and wild American ginseng using (1)H NMR and multi-step PCA.

2015-10-10

[J. Pharm. Biomed. Anal. 114 , 113-20, (2015)]

Whole Blood Reveals More Metabolic Detail of the Human Metabolome than Serum as Measured by 1H-NMR Spectroscopy: Implications for Sepsis Metabolomics.

2015-09-01

[Shock 44 , 200-8, (2015)]

A novel deconvolution method for modeling UDP-N-acetyl-D-glucosamine biosynthetic pathways based on (13)C mass isotopologue profiles under non-steady-state conditions.

2011-01-01

[BMC Biol. 9 , 37, (2011)]

More Articles...