Neuroproteomics in stem cell differentiation

Beyer S, Mix E, Hoffrogge R, Luenser K, Voelker U, Rolfs A (2007)
PROTEOMICS CLINICAL APPLICATIONS 1(11): 1513-1523.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Beyer, Susanne; Mix, Eilhard; Hoffrogge, RaimundUniBi ; Luenser, Katja; Voelker, Uwe; Rolfs, Arndt
Abstract / Bemerkung
The term "proteome" is used to describe the entire complement of proteins in a given organism or in a system at a given time. Proteome analysis in neuroscience, also called "neuroproteomics" or "neuromics" is in its initial stage, and shows a deficit of studies in the context of brain development. It is the main objective of this review to illustrate the potential of neuroproteomics as a tool to unravel the differentiation of neural stem or progenitor cells to terminally differentiated neurons. Experimental results regarding the rat striatal progenitor model cell line ST14A are presented to illustrate the large rearrangements of the proteome during the differentiation process of neural progenitor cells and their modification by neurotrophic factors like the glial cell line-derived neurotrophic factor (GDNF). Thereby native stem cells and cells transfected with GDNF gene were investigated at the proliferative state and at seven time points up to 72 h after induction of differentiation. In addition, the immortalized human fetal midbrain stem cell line ReNcell VM was analyzed in order to detect stem cell differentiation associated changes of the protein profile. This review gives also an outlook on technical improvements and perspectives of application of neural stem cell proteomics.
Stichworte
neural progenitor cell (NPC); neuronal; differentiation; proteome profiling; neural stem cell (NSC); neuroproteomics
Erscheinungsjahr
2007
Zeitschriftentitel
PROTEOMICS CLINICAL APPLICATIONS
Band
1
Ausgabe
11
Seite(n)
1513-1523
ISSN
1862-8346
eISSN
1862-8354
Page URI
https://pub.uni-bielefeld.de/record/1631319

Zitieren

Beyer S, Mix E, Hoffrogge R, Luenser K, Voelker U, Rolfs A. Neuroproteomics in stem cell differentiation. PROTEOMICS CLINICAL APPLICATIONS. 2007;1(11):1513-1523.
Beyer, S., Mix, E., Hoffrogge, R., Luenser, K., Voelker, U., & Rolfs, A. (2007). Neuroproteomics in stem cell differentiation. PROTEOMICS CLINICAL APPLICATIONS, 1(11), 1513-1523. https://doi.org/10.1002/prca.200700324
Beyer, Susanne, Mix, Eilhard, Hoffrogge, Raimund, Luenser, Katja, Voelker, Uwe, and Rolfs, Arndt. 2007. “Neuroproteomics in stem cell differentiation”. PROTEOMICS CLINICAL APPLICATIONS 1 (11): 1513-1523.
Beyer, S., Mix, E., Hoffrogge, R., Luenser, K., Voelker, U., and Rolfs, A. (2007). Neuroproteomics in stem cell differentiation. PROTEOMICS CLINICAL APPLICATIONS 1, 1513-1523.
Beyer, S., et al., 2007. Neuroproteomics in stem cell differentiation. PROTEOMICS CLINICAL APPLICATIONS, 1(11), p 1513-1523.
S. Beyer, et al., “Neuroproteomics in stem cell differentiation”, PROTEOMICS CLINICAL APPLICATIONS, vol. 1, 2007, pp. 1513-1523.
Beyer, S., Mix, E., Hoffrogge, R., Luenser, K., Voelker, U., Rolfs, A.: Neuroproteomics in stem cell differentiation. PROTEOMICS CLINICAL APPLICATIONS. 1, 1513-1523 (2007).
Beyer, Susanne, Mix, Eilhard, Hoffrogge, Raimund, Luenser, Katja, Voelker, Uwe, and Rolfs, Arndt. “Neuroproteomics in stem cell differentiation”. PROTEOMICS CLINICAL APPLICATIONS 1.11 (2007): 1513-1523.

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