Σφακιανάκης Αλέξανδρος
ΩτοΡινοΛαρυγγολόγος
Αναπαύσεως 5 Άγιος Νικόλαος
Κρήτη 72100
00302841026182
00306932607174
alsfakia@gmail.com

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! # Ola via Alexandros G.Sfakianakis on Inoreader

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Παρασκευή 13 Ιανουαρίου 2017

Retinoic acid receptor regulation of epimorphic and homeostatic regeneration in the axolotl [RESEARCH ARTICLE]

Matthew Nguyen, Pankhuri Singhal, Judith Piet, Sandra J. Shefelbine, Malcolm Maden, S. Randal Voss, and James R. Monaghan

Salamanders are capable of regenerating amputated limbs by generating a mass of lineage-restricted cells called a blastema. Blastemas only generate structures distal to their origin unless treated with retinoic acid (RA), which results in proximodistal (PD) limb duplications. Little is known about the transcriptional network that regulates PD duplication. In this study, we target specific retinoic acid receptors (RARs) to either PD duplicate (RA treatment or RAR agonist) or truncate (RARβ antagonist) regenerating limbs. RARE-EGFP reporter axolotls showed divergent reporter activity in limbs undergoing PD duplication versus truncation suggesting differences in patterning and skeletal regeneration. Transcriptomics identified expression patterns that explain PD duplication including upregulation of proximal homeobox gene expression and silencing of distal-associated genes whereas limb truncation was associated with disrupted skeletal differentiation. Rarβ antagonism in uninjured limbs induced a loss in skeletal integrity leading to long bone regression and loss of skeletal turnover. Overall, mechanisms were identified that regulate RAR's multifaceted roles in the salamander limb including regulation of skeletal patterning during epimorphic regeneration, skeletal tissue differentiation during regeneration, and homeostatic regeneration of intact limbs.



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