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Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review

Different biomaterials, from synthetic products to autologous or heterologous grafts, have been suggested for the preservation and regeneration of bone. The aim of this study is to evaluate the effectiveness of autologous tooth as a grafting material and examine the properties of this material and i...

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Autores principales: Inchingolo, Angelo Michele, Patano, Assunta, Di Pede, Chiara, Inchingolo, Alessio Danilo, Palmieri, Giulia, de Ruvo, Elisabetta, Campanelli, Merigrazia, Buongiorno, Silvio, Carpentiere, Vincenzo, Piras, Fabio, Settanni, Vito, Viapiano, Fabio, Hazballa, Denisa, Rapone, Biagio, Mancini, Antonio, Di Venere, Daniela, Inchingolo, Francesco, Fatone, Maria Celeste, Palermo, Andrea, Minetti, Elio, Lorusso, Felice, Scarano, Antonio, Sauro, Salvatore, Tartaglia, Gianluca Martino, Bordea, Ioana Roxana, Dipalma, Gianna, Malcangi, Giuseppina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058341/
https://www.ncbi.nlm.nih.gov/pubmed/36976056
http://dx.doi.org/10.3390/jfb14030132
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author Inchingolo, Angelo Michele
Patano, Assunta
Di Pede, Chiara
Inchingolo, Alessio Danilo
Palmieri, Giulia
de Ruvo, Elisabetta
Campanelli, Merigrazia
Buongiorno, Silvio
Carpentiere, Vincenzo
Piras, Fabio
Settanni, Vito
Viapiano, Fabio
Hazballa, Denisa
Rapone, Biagio
Mancini, Antonio
Di Venere, Daniela
Inchingolo, Francesco
Fatone, Maria Celeste
Palermo, Andrea
Minetti, Elio
Lorusso, Felice
Scarano, Antonio
Sauro, Salvatore
Tartaglia, Gianluca Martino
Bordea, Ioana Roxana
Dipalma, Gianna
Malcangi, Giuseppina
author_facet Inchingolo, Angelo Michele
Patano, Assunta
Di Pede, Chiara
Inchingolo, Alessio Danilo
Palmieri, Giulia
de Ruvo, Elisabetta
Campanelli, Merigrazia
Buongiorno, Silvio
Carpentiere, Vincenzo
Piras, Fabio
Settanni, Vito
Viapiano, Fabio
Hazballa, Denisa
Rapone, Biagio
Mancini, Antonio
Di Venere, Daniela
Inchingolo, Francesco
Fatone, Maria Celeste
Palermo, Andrea
Minetti, Elio
Lorusso, Felice
Scarano, Antonio
Sauro, Salvatore
Tartaglia, Gianluca Martino
Bordea, Ioana Roxana
Dipalma, Gianna
Malcangi, Giuseppina
author_sort Inchingolo, Angelo Michele
collection PubMed
description Different biomaterials, from synthetic products to autologous or heterologous grafts, have been suggested for the preservation and regeneration of bone. The aim of this study is to evaluate the effectiveness of autologous tooth as a grafting material and examine the properties of this material and its interactions with bone metabolism. PubMed, Scopus, Cochrane Library, and Web of Science were searched to find articles addressing our topic published from 1 January 2012 up to 22 November 2022, and a total of 1516 studies were identified. Eighteen papers in all were considered in this review for qualitative analysis. Demineralized dentin can be used as a graft material, since it shows high cell compatibility and promotes rapid bone regeneration by striking an ideal balance between bone resorption and production; it also has several benefits, such as quick recovery times, high-quality newly formed bone, low costs, no risk of disease transmission, the ability to be performed as an outpatient procedure, and no donor-related postoperative complications. Demineralization is a crucial step in the tooth treatment process, which includes cleaning, grinding, and demineralization. Since the presence of hydroxyapatite crystals prevents the release of growth factors, demineralization is essential for effective regenerative surgery. Even though the relationship between the bone system and dysbiosis has not yet been fully explored, this study highlights an association between bone and gut microbes. The creation of additional scientific studies to build upon and enhance the findings of this study should be a future objective of scientific research.
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spelling pubmed-100583412023-03-30 Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review Inchingolo, Angelo Michele Patano, Assunta Di Pede, Chiara Inchingolo, Alessio Danilo Palmieri, Giulia de Ruvo, Elisabetta Campanelli, Merigrazia Buongiorno, Silvio Carpentiere, Vincenzo Piras, Fabio Settanni, Vito Viapiano, Fabio Hazballa, Denisa Rapone, Biagio Mancini, Antonio Di Venere, Daniela Inchingolo, Francesco Fatone, Maria Celeste Palermo, Andrea Minetti, Elio Lorusso, Felice Scarano, Antonio Sauro, Salvatore Tartaglia, Gianluca Martino Bordea, Ioana Roxana Dipalma, Gianna Malcangi, Giuseppina J Funct Biomater Systematic Review Different biomaterials, from synthetic products to autologous or heterologous grafts, have been suggested for the preservation and regeneration of bone. The aim of this study is to evaluate the effectiveness of autologous tooth as a grafting material and examine the properties of this material and its interactions with bone metabolism. PubMed, Scopus, Cochrane Library, and Web of Science were searched to find articles addressing our topic published from 1 January 2012 up to 22 November 2022, and a total of 1516 studies were identified. Eighteen papers in all were considered in this review for qualitative analysis. Demineralized dentin can be used as a graft material, since it shows high cell compatibility and promotes rapid bone regeneration by striking an ideal balance between bone resorption and production; it also has several benefits, such as quick recovery times, high-quality newly formed bone, low costs, no risk of disease transmission, the ability to be performed as an outpatient procedure, and no donor-related postoperative complications. Demineralization is a crucial step in the tooth treatment process, which includes cleaning, grinding, and demineralization. Since the presence of hydroxyapatite crystals prevents the release of growth factors, demineralization is essential for effective regenerative surgery. Even though the relationship between the bone system and dysbiosis has not yet been fully explored, this study highlights an association between bone and gut microbes. The creation of additional scientific studies to build upon and enhance the findings of this study should be a future objective of scientific research. MDPI 2023-02-27 /pmc/articles/PMC10058341/ /pubmed/36976056 http://dx.doi.org/10.3390/jfb14030132 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Systematic Review
Inchingolo, Angelo Michele
Patano, Assunta
Di Pede, Chiara
Inchingolo, Alessio Danilo
Palmieri, Giulia
de Ruvo, Elisabetta
Campanelli, Merigrazia
Buongiorno, Silvio
Carpentiere, Vincenzo
Piras, Fabio
Settanni, Vito
Viapiano, Fabio
Hazballa, Denisa
Rapone, Biagio
Mancini, Antonio
Di Venere, Daniela
Inchingolo, Francesco
Fatone, Maria Celeste
Palermo, Andrea
Minetti, Elio
Lorusso, Felice
Scarano, Antonio
Sauro, Salvatore
Tartaglia, Gianluca Martino
Bordea, Ioana Roxana
Dipalma, Gianna
Malcangi, Giuseppina
Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title_full Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title_fullStr Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title_full_unstemmed Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title_short Autologous Tooth Graft: Innovative Biomaterial for Bone Regeneration. Tooth Transformer(®) and the Role of Microbiota in Regenerative Dentistry. A Systematic Review
title_sort autologous tooth graft: innovative biomaterial for bone regeneration. tooth transformer(®) and the role of microbiota in regenerative dentistry. a systematic review
topic Systematic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058341/
https://www.ncbi.nlm.nih.gov/pubmed/36976056
http://dx.doi.org/10.3390/jfb14030132
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