Alpha-mangostin promotes myoblast differentiation by modulating the gene-expression profile in C2C12 cells

Alpha-mangostin, a xanthone contained mostly in mangosteen pericarp, has been reported to exert various biological functions. However, little is known about involvement of this xanthone in the muscle differentiation process. Here, we report the effect of α-mangostin on murine skeletal muscle-derived...

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Veröffentlicht in:Bioscience, biotechnology, and biochemistry biotechnology, and biochemistry, 2014-11, Vol.78 (11), p.1923-1929
Hauptverfasser: Horiba, Taro, Katsukawa, Masahiro, Abe, Keiko, Nakai, Yuji
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container_end_page 1929
container_issue 11
container_start_page 1923
container_title Bioscience, biotechnology, and biochemistry
container_volume 78
creator Horiba, Taro
Katsukawa, Masahiro
Abe, Keiko
Nakai, Yuji
description Alpha-mangostin, a xanthone contained mostly in mangosteen pericarp, has been reported to exert various biological functions. However, little is known about involvement of this xanthone in the muscle differentiation process. Here, we report the effect of α-mangostin on murine skeletal muscle-derived C2C12 myoblasts. α-mangostin stimulated myoblast differentiation leading to myotube formation. DNA microarray analysis revealed that genes associated with myoblast differentiation and muscle cell component formation were up-regulated in α-mangostin-treated cells. These results indicate that α-mangostin promotes myoblast differentiation through modulating the gene-expression profile in myoblasts. Alpha-mangostin promotes myoblast differentiation by stimulating expression of genes related to myotube formation.
doi_str_mv 10.1080/09168451.2014.940832
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subjects alpha-mangostin
Animals
Cell Differentiation - drug effects
Cell Line
DNA microarray
Gene Expression Regulation - drug effects
Mice
myoblast
Myoblasts - cytology
Myoblasts - drug effects
myotube
Oligonucleotide Array Sequence Analysis
Protein Kinase Inhibitors - pharmacology
Transcriptome
xanthone
Xanthones - pharmacology
title Alpha-mangostin promotes myoblast differentiation by modulating the gene-expression profile in C2C12 cells
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