Development · 2013 · 87 citations · 51 references
Blastema CellsCell SpecializationRegenerative MedicineTissue DevelopmentSignaling PathwayNotch SignallingStem CellsCell SignalingNeural CrestHealth SciencesDevelopmental GeneticsFin RegenerationBlastema ProliferationMorphogenesisOrganogenesisCell BiologyBiologyCell LineageDevelopmental BiologyPrevents DifferentiationStem Cell ResearchCell Fate DeterminationMedicineCell Development
Zebrafish have the capacity to regenerate several organs, including the heart and fins. Fin regeneration is epimorphic, involving the formation at the amputation plane of a mass of undifferentiated, proliferating mesenchymal progenitor-like cells, called blastema. This tissue provides all the cell types that form the fin, so that after damage or amputation the fin pattern and structure are fully restored. How blastema cells remain in this progenitor-like state is poorly understood. Here, we show that the Notch pathway plays an essential role during fin regeneration. Notch signalling is activated during blastema formation and remains active throughout the regeneration process. Chemical inhibition or morpholino-mediated knockdown of Notch signalling impairs fin regeneration via decreased proliferation accompanied by reduced expression of Notch target genes in the blastema. Conversely, overexpression of a constitutively active form of the Notch1 receptor (N1ICD) in the regenerating fin leads to increased proliferation and to the expansion of the blastema cell markers msxe and msxb, as well as increased expression of the proliferation regulator aldh1a2. This blastema expansion prevents regenerative fin outgrowth, as indicated by the reduction in differentiating osteoblasts and the inhibition of bone regeneration. We conclude that Notch signalling maintains blastema cells in a plastic, undifferentiated and proliferative state, an essential requirement for fin regeneration.
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Stages of embryonic development of the zebrafish
Charles B. Kimmel, William W. Ballard, Seth R. Kimmel et al. · Developmental Dynamics · 1995 · 12K citations
Heart Regeneration in Zebrafish
Kenneth D. Poss, Lindsay G. Wilson, Mark T. Keating · Science · 2002 · 1.9K citations
Signalling downstream of activated mammalian Notch
Sophie Jarriault, Christel Brou, Frédérique Logeat et al. · Nature · 1995 · 1.4K citations
Developmental Biology, Signal Transduction, Signaling Pathway +8
Expression of a Delta homologue in prospective neurons in the chick
Domingos Henrique, Julie Adam, Anna Myat et al. · Nature · 1995 · 1K citations
Delta Homologue, Neural Mechanism, Molecular Neuroscience +11
Notch signals control the fate of immature progenitor cells in the intestine
Silvia Fré, Mathilde Huyghe, Philippos Mourikis et al. · Nature · 2005 · 904 citations