TY - JOUR
T1 - Engineered scaffolds and cell-based therapy for periodontal regeneration
AU - Carmagnola, Daniela
AU - Tarce, Mihai
AU - Dellavia, Claudia
AU - Rimondini, Lia
AU - Varoni, Elena M.
N1 - Publisher Copyright:
© 2017 The Authors.
PY - 2017/10/1
Y1 - 2017/10/1
N2 - Background The main objective of regenerative periodontal therapy is to completely restore the periodontal tissues lost. This review summarizes the most recent evidence in support of scaffold- and cell-based tissue engineering, which are expected to play a relevant role in next-generation periodontal regenerative therapy. Methods A literature search (PubMed database) was performed to analyze more recently updated articles regarding periodontal regeneration, scaffolds and cell-based technologies. Results Evidence supports the importance of scaffold physical cues to promote periodontal regeneration, including scaffold multicompartmentalization and micropatterning. The in situ delivery of biological mediators and/or cell populations, both stem cells and already differentiated cells, has shown promising in vivo efficacy. Conclusions Porous scaffolds are pivotal for clot stabilization, wound compartmentalization, cell homing and cell nutrients delivery. Given the revolutionary introduction of rapid prototyping technique and cell-based therapies, the fabrication of custom-made scaffolds is not far from being achieved.
AB - Background The main objective of regenerative periodontal therapy is to completely restore the periodontal tissues lost. This review summarizes the most recent evidence in support of scaffold- and cell-based tissue engineering, which are expected to play a relevant role in next-generation periodontal regenerative therapy. Methods A literature search (PubMed database) was performed to analyze more recently updated articles regarding periodontal regeneration, scaffolds and cell-based technologies. Results Evidence supports the importance of scaffold physical cues to promote periodontal regeneration, including scaffold multicompartmentalization and micropatterning. The in situ delivery of biological mediators and/or cell populations, both stem cells and already differentiated cells, has shown promising in vivo efficacy. Conclusions Porous scaffolds are pivotal for clot stabilization, wound compartmentalization, cell homing and cell nutrients delivery. Given the revolutionary introduction of rapid prototyping technique and cell-based therapies, the fabrication of custom-made scaffolds is not far from being achieved.
KW - Calcium phosphates
KW - Cell encapsulation
KW - Cell sheet technology
KW - Chitosan
KW - Multilayered scaffolds
KW - Regenerative periodontal therapy
UR - https://www.scopus.com/pages/publications/85034422413
U2 - 10.5301/jabfm.5000389
DO - 10.5301/jabfm.5000389
M3 - Review article
SN - 1722-6899
VL - 15
SP - e303-e312
JO - Journal of Applied Biomaterials and Functional Materials
JF - Journal of Applied Biomaterials and Functional Materials
IS - 4
ER -