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Int J Mol Sci ; 19(11)2018 Nov 15.
Article in English | MEDLINE | ID: mdl-30445700

ABSTRACT

The regeneration of dental tissues is a still an unmet clinical need; in fact, no therapies have been completely successful in regenerating dental tissue complexes such as periodontium, which is also due to the lack of scaffolds that are able to guide and direct cell fate towards the reconstruction of different mineralized and non-mineralized dental tissues. In this respect, the present work develops a novel multifunctional hybrid scaffold recapitulating the different features of alveolar bone, periodontal ligament, and cementum by integrating the biomineralization process, and tape casting and electrospinning techniques. The scaffold is endowed with a superparamagnetic ability, thanks to the use of a biocompatible, bioactive superparamagnetic apatite phase, as a mineral component that is able to promote osteogenesis and to be activated by remote magnetic signals. The periodontal scaffold was obtained by engineering three different layers, recapitulating the relevant compositional and microstructural features of the target tissues, into a monolithic multifunctional graded device. Physico-chemical, morphological, and ultrastructural analyses, in association with preliminary in vitro investigations carried out with mesenchymal stem cells, confirm that the final scaffold exhibits a good mimicry of the periodontal tissue complex, with excellent cytocompatibility and cell viability, making it very promising for regenerative applications in dentistry.


Subject(s)
Magnetite Nanoparticles/chemistry , Periodontium/physiology , Regeneration/physiology , Tissue Scaffolds/chemistry , Alveolar Process/physiology , Animals , Cell Death , Cell Line , Cell Survival , Collagen/chemistry , Dental Cementum/physiology , Horses , Mice, Inbred BALB C , Periodontal Ligament/physiology , X-Ray Diffraction
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