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1.
Eur Rev Med Pharmacol Sci ; 27(12): 5421-5430, 2023 06.
Article in English | MEDLINE | ID: mdl-37401277

ABSTRACT

OBJECTIVE: Since 1967, when the osteoinduction properties of autogenous demineralized dentin matrix were discovered, autologous tooth grafts have been advocated as a viable option to autologous or heterologous bone graft. Tooth graft materials may be extracted from the patient's whole tooth using a granulating device. The aim of this study was to examine the size of granules obtained by the Tooth Transformer (TT)® device, using a laser instrument with high precision. MATERIALS AND METHODS: The TT® device can obtain bone graft material in a short period from an extracted tooth. The resulting material can act as an osteoconductive scaffold, providing a mineral substrate during resorption, including platelet growth factors and morphogenetic proteins. Different studies have investigated the dimension and behavior of various graft material particles, since the size of the grafted particles may play a role in osteogenesis and bone regeneration. RESULTS: Different dimensions of granules are available: small (< 400 µm), medium (400 µm-1,000 µm) and large (1,000 µm-2,000 µm). From 4.03 µm to 100 µm the percentage of granules was 14.52 ± 1.93%. A larger part of the granules was up to 100 µm, while 85.47 ± 1.93% of the granules were from 100 µm to 1,000 µm. CONCLUSIONS: 85% of the granules produced were in accordance with the dimensions suggested in the literature.


Subject(s)
Tooth , Humans , Bone Regeneration , Bone and Bones , Osteogenesis , Tooth Extraction , Bone Transplantation
2.
Eur Rev Med Pharmacol Sci ; 27(24): 11817-11831, 2023 Dec.
Article in English | MEDLINE | ID: mdl-38164845

ABSTRACT

OBJECTIVE: This review aims to explore the efficacy of fluorescence-guided excision in the treatment of necrotic bone and highlights the importance of fluorescence in distinguishing viable margins from necrotic ones for a more targeted and predictable management of MRONJ. MATERIALS AND METHODS: The review was conducted according to PRISMA guidelines using PubMed, Scopus, and Web of Science databases from January 1, 2008, to May 17, 2023. The Boolean search strategy with the following keywords "osteonecrosis" AND "fluorescence" was performed. Then, the articles were subjected to screening and eligibility phases. The papers about the use of autofluorescence-guided laser therapy in patients with jaw osteonecrosis were included. RESULTS: A total of 320 articles were initially identified through an electronic search, and ultimately, 17 papers were included in the qualitative analysis. CONCLUSIONS: In conclusion, our findings demonstrate that the VELscope system allows for clear visualization of the bone, making guided autofluorescence a precise, safe, and reliable technique.


Subject(s)
Bisphosphonate-Associated Osteonecrosis of the Jaw , Bone Density Conservation Agents , Laser Therapy , Humans , Bisphosphonate-Associated Osteonecrosis of the Jaw/therapy , Bone Density Conservation Agents/adverse effects , Diphosphonates/adverse effects , Low-Level Light Therapy
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