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1.
Blood Coagul Fibrinolysis ; 32(6): 411-417, 2021 Sep 01.
Article in English | MEDLINE | ID: mdl-34397450

ABSTRACT

Leukocyte-platelet rich fibrin (PRF) is an autologous biomaterial formed by platelets, cytokines, growth factors and cells imprisoned on a fibrin mesh, produced according to Choukroun's protocol. The aim of the present article was to report the use of PRF, associated with a bone substitute, on the regenerative treatment of a large bone defect resulting from the enucleation of a paradental cyst involving the posterior mandible. The treatment resulted in the maintenance of the bone volume, and radiographic evaluation showed new bone formation after 40 days, suggesting an osteogenic and osteoinductive effect. Also, the current literature was reviewed.


Subject(s)
Bone Substitutes/therapeutic use , Cysts/therapy , Leukocytes/metabolism , Mandibular Injuries/therapy , Platelet-Rich Fibrin/metabolism , Adolescent , Bone Regeneration , Bone Substitutes/metabolism , Female , Humans , Mandibular Injuries/metabolism , Mandibular Injuries/pathology
2.
Dent Mater J ; 35(5): 762-768, 2016.
Article in English | MEDLINE | ID: mdl-27725513

ABSTRACT

This study assessed the cell viability of the inoculation vehicle of BACCOR (a combination of sulfate-reducing bacteria plus a culture media for bacteria), a biopharmaceutical product under development for dental use as aid in fractured endodontic file removal from the root canal. Different culture media for bacteria were evaluated: modified Postgate E (MCP-E mod), Modified Postgate E without Agar-agar (MCP-E w/Ag), Postgate C with Agar-agar (MCP-C Ag) and Postgate C without Agar-agar (MCP-C w/Ag). Cytotoxicity was quantified by the MTT test, exposing L929 and Vero cell lines to the vehicles over 24 h. The exposure of L929 cell line to MCP-E w/Ag resulted in biocompatibility (52% cell viability), while the exposure of the Vero kidney line revealed only MCP-E mod as cytotoxic. When diluted, all the vehicles showed biocompatibility with both cell lines. MCP-E w/Ag was the vehicle chosen for BACCOR, because of its biocompatibility with the cells used.


Subject(s)
Cell Survival , Endodontics , Sulfur-Reducing Bacteria , Cell Line , Culture Media , Sulfates
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