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Characterization of in vitro transcriptional responses of dorsal root ganglia cultured in the presence and absence of blastema cells from regenerating salamander limbs
Author(s) -
Athippozhy Antony,
Lehrberg Jeffrey,
Monaghan James R.,
Gardiner David M.,
Voss S. Randal
Publication year - 2014
Publication title -
regeneration
Language(s) - English
Resource type - Journals
ISSN - 2052-4412
DOI - 10.1002/reg2.14
Subject(s) - blastema , biology , regeneration (biology) , microbiology and biotechnology , anatomy , salamander , axon guidance , ambystoma mexicanum , in vitro , dorsal root ganglion , axon , neuroscience , dorsum , axolotl , genetics , ecology
During salamander limb regeneration, nerves provide signals that induce the formation of a mass of proliferative cells called the blastema. To better understand these signals, we developed a blastema−dorsal root ganglia (DRG) co‐culture model system to test the hypothesis that nerves differentially express genes in response to cues provided by the blastema. DRG with proximal and distal nerve trunks were isolated from axolotls ( Ambystoma mexicanum ), cultured for 5 days, and subjected to microarray analysis. Relative to freshly isolated DRG, 1541 Affymetrix probe sets were identified as differentially expressed and many of the predicted genes are known to function in injury and neurodevelopmental responses observed for mammalian DRG. We then cultured 5‐day DRG explants for an additional 5 days with or without co‐cultured blastema cells. On day 10, we identified 27 genes whose expression in cultured DRG was significantly affected by the presence or absence of blastema cells. Overall, our study established a DRG−blastema in vitro culture system and identified candidate genes for future investigations of axon regrowth, nerve−blastema signaling, and neural regulation of limb regeneration.

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