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  1. All for one and one for all: condensations and the initiation of skeletal development.Brian K. Hall & T. Miyake - 2000 - Bioessays 22 (2):138.
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  • The odontode explosion: The origin of tooth‐like structures in vertebrates.Gareth J. Fraser, Robert Cerny, Vladimir Soukup, Marianne Bronner-Fraser & J. Todd Streelman - 2010 - Bioessays 32 (9):808-817.
    Essentially we show recent data to shed new light on the thorny controversy of how teeth arose in evolution. Essentially we show (a) how teeth can form equally from any epithelium, be it endoderm, ectoderm or a combination of the two and (b) that the gene expression programs of oral versus pharyngeal teeth are remarkably similar. Classic theories suggest that (i) skin denticles evolved first and odontode‐inductive surface ectoderm merged inside the oral cavity to form teeth (the ‘outside‐in’ hypothesis) or (...)
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  • Continuous tooth replacement: the possible involvement of epithelial stem cells.Ann Huysseune & Irma Thesleff - 2004 - Bioessays 26 (6):665-671.
    Epithelial stem cells have been identified in integumental structures such as hairs and continuously growing teeth of various rodents, and in the gut. Here we propose the involvement of epithelial stem cells in the continuous tooth replacement that characterizes non‐mammalian vertebrates, as exemplified by the zebrafish. Arguments are based on morphological observations of tooth renewal in the zebrafish and on the similarities between molecular control of hair and tooth formation. Dissection of the molecular cascades underlying the regulation of the epithelial (...)
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