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Multiphoton imaging of the dentine‐enamel junction
Authors:Thierry Cloitre  Ivan V Panayotov  Hervé Tassery  Csilla Gergely  Bernard Levallois  Frédéric J G Cuisinier
Institution:1. Université Montpellier 2, Laboratoire Charles Coulomb UMR 5221, F‐34095, Montpellier, France;2. CNRS, Laboratoire Charles Coulomb UMR 5221, F‐34095, Montpellier, France;3. EA 4203, UFR Odontologie, Université Montpellier 1, 34193 Montpellier Cedex 5, France;4. Aix Marseille Université;5. Assistance Public H?pitaux de Marseille, 13354 Marseille, France
Abstract:Multiphoton microscopy has been used to reveal structural details of dentine and enamel at the dentin‐enamel junction (DEJ) based on their 2‐photon excited fluorescence (2PEF) emission and second harmonic generation (SHG). In dentine tubule 2PEF intensity varies due to protein content variation. Intertubular dentin produces both SHG and 2PEF signals. Tubules are surrounded by a thin circular zone with a lower SHG signal than the bulk dentine and the presence of collagen fibers perpendicular to the tubule longitudinal axis is indicated by strong SHG responses. The DEJ appears as a low intensity line on the 2PEF images and this was never previously reported. The SHG signal is completely absent for enamel and aprismatic enamel shows a homogeneous low 2PEF signal contrary to prismatic enamel. The SHG intensity of mantle dentine is increasing from the dentine‐enamel junction in the first 12 μm indicating a progressive presence of fibrillar collagen and corresponding to the more external part of mantle dentine where matrix metallo‐proteases accumulate. The high information content of multiphoton images confirms the huge potential of this method to investigate tooth structures in physiological and pathological conditions. (© 2013 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
Keywords:dentine‐enamel junction  multiphoton microscopy  second harmonic generation  two photon exited fluorescence  histology  human
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