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Merck
  • A hyaluronan-based scaffold for the in vitro construction of dental pulp-like tissue.

A hyaluronan-based scaffold for the in vitro construction of dental pulp-like tissue.

International journal of molecular sciences (2015-03-05)
Letizia Ferroni, Chiara Gardin, Stefano Sivolella, Giulia Brunello, Mario Berengo, Adriano Piattelli, Eriberto Bressan, Barbara Zavan
摘要

Dental pulp tissue supports the vitality of the tooth, but it is particularly vulnerable to external insults, such as mechanical trauma, chemical irritation or microbial invasion, which can lead to tissue necrosis. In the present work, we present an endodontic regeneration method based on the use of a tridimensional (3D) hyaluronan scaffold and human dental pulp stem cells (DPSCs) to produce a functional dental pulp-like tissue in vitro. An enriched population of DPSCs was seeded onto hyaluronan-based non-woven meshes in the presence of differentiation factors to induce the commitment of stem cells to neuronal, glial, endothelial and osteogenic phenotypes. In vitro experiments, among which were gene expression profiling and immunofluorescence (IF) staining, proved the commitment of DPSCs to the main components of dental pulp tissue. In particular, the hyaluronan-DPSCs construct showed a dental pulp-like morphology consisting of several specialized cells growing inside the hyaluronan fibers. Furthermore, these constructs were implanted into rat calvarial critical-size defects. Histological analyses and gene expression profiling performed on hyaluronan-DPSCs grafts showed the regeneration of osteodentin-like tissue. Altogether, these data suggest the regenerative potential of the hyaluronan-DPSC engineered tissue.

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Sigma-Aldrich
单克隆抗-胶原蛋白,I型 小鼠抗, clone COL-1, ascites fluid
Sigma-Aldrich
抗胶质纤维酸性蛋白(GFAP)抗体, serum, Chemicon®
Sigma-Aldrich
抗β III微管蛋白抗体, Chemicon®, from chicken