Italian Journal of Anatomy and Embryology - contenuto non piu disponibile
Barbara Buffoli, Massimo Albanese, Pier Francesco Nocini, Ramon Boninsegna, Guido Sancassani, Luigi Fabrizio Rodella
Abstract
Barbara Buffoli, Massimo Albanese, Pier Francesco Nocini, Ramon Boninsegna, Guido Sancassani, Luigi Fabrizio Rodella
Abstract
Current strategies for bone tissue regeneration involve the use of a wide range of biomaterials and synthetic bone substitutes; among them, Sodium-DNA could represent a new chance considering its osteoinductive properties (Nakamura et al., 2000; Bowler et a., 2001; Guizzardi et al., 2003; Guizzardi et al., 2007). The aim of this study was to evaluate the regenerative properties of two different preparation of Sodium- DNA (paste or liquid form) in a rat calvarial defect model. The cranium of each rat was shaved and a skin incision from the naso-frontal area to the external occipital protuberance was performed. The skin and the subcutaneous tissues were reflected to expose the full extent of the calvaria. Full-thickness 5X8 mm bone skull defects were made on each parietal region using piezoelectric surgery. Bone defects were filled with Sodium-DNA (paste or liquid form, Veritas, Brescia, Italy) alone or mixed with Bio-Oss (Geistlich, Wolhusen, Switzerland). Histomorphometric evaluation of bone regeneration was performed at the end of the treatments. The data obtained showed a time-dependent active bone healing process; however, differences in the use of past or liquid form were evident. These results suggest that Sodium-DNA could be considered an active biomaterial in bone regeneration, but an adequate formulation to obtain a better regenerative efficacy is needed.
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Current strategies for bone tissue regeneration involve the use of a wide range of biomaterials and synthetic bone substitutes; among them, Sodium-DNA could represent a new chance considering its osteoinductive properties (Nakamura et al., 2000; Bowler et a., 2001; Guizzardi et al., 2003; Guizzardi et al., 2007). The aim of this study was to evaluate the regenerative properties of two different preparation of Sodium- DNA (paste or liquid form) in a rat calvarial defect model. The cranium of each rat was shaved and a skin incision from the naso-frontal area to the external occipital protuberance was performed. The skin and the subcutaneous tissues were reflected to expose the full extent of the calvaria. Full-thickness 5X8 mm bone skull defects were made on each parietal region using piezoelectric surgery. Bone defects were filled with Sodium-DNA (paste or liquid form, Veritas, Brescia, Italy) alone or mixed with Bio-Oss (Geistlich, Wolhusen, Switzerland). Histomorphometric evaluation of bone regeneration was performed at the end of the treatments. The data obtained showed a time-dependent active bone healing process; however, differences in the use of past or liquid form were evident. These results suggest that Sodium-DNA could be considered an active biomaterial in bone regeneration, but an adequate formulation to obtain a better regenerative efficacy is needed.
Key concepts: Calvaria, Parietal bone, Regeneration (biology), Skull, Sodium, Biomaterial, Bone healing, Biomedical engineering