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In vitro and in vivo biocompatibility and bioactivity of bioceramic repair materials

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This study aimed to evaluate the in vitro cytotoxicity and bioactivity, and the in vivo biocompatibility, collagen maturation, and bioactivity, of PBS Cimmo HP and Bio-C Repair Ion+ in comparison with white MTA-Angelus. Osteoblast-like cell viability was assessed using the Alamar Blue assay, while bioactivity was assessed by alkaline phosphatase (ALP) activity and Alizarin Red staining. For the in vivo analysis, polyethylene tubes containing the materials or empty tubes (control) were implanted in the dorsum of mice. After 7 and 30 days (n = 8), the animals were euthanised and the specimens were processed for haematoxylin-eosin, Picrosirius Red, von Kossa (VK), and polarised light (PL) analyses. Data were statistically analysed (p < 0.05). Most materials extracts were cytocompatible (P > 0.05), except for the PBS Cimmo HP 1:4 extract at 48-h (p < 0.05). All materials showed increased ALP activity (p < 0.05). Mineralized nodules were significantly present in most material extracts (p < 0.05), except in the undiluted PBS Cimmo HP extract and in the white MTA-Angelus 1:4 extract. At 7 days, PBS Cimmo HP induced moderate-to-severe inflammation, whereas the other groups induced moderate inflammation (p > 0.05). At 30 days, all groups showed reduced inflammation (p > 0.05). Overall, the fibrous capsule was thick at 7 days and thin at 30 days. At 7 days, the control and PBS Cimmo HP groups showed a greater presence of immature collagen (p < 0.05); at 30 days, more mature collagen was observed in all groups (p > 0.05). The materials exhibited positivity for VK or PL in both periods. In conclusion, PBS Cimmo HP and Bio-C Repair Ion+ were cytocompatible and biocompatible, and demonstrated bioactivity and collagen maturation similar to those of white MTA-Angelus.

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Biocompatible materials Endodontics In vitro technques Models, animal

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Sociedade Brasileira de Pesquisa Odontológica

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