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Osteointegration of porous absorbable bone substitutes: A systematic review of the literature
Paulo, Maria Júlia Escanhoela; dos Santos, Mariana Avelino; Cimatti, Bruno; Gava, Nelson Fabrício; Riberto, Marcelo; Engel, Edgard Eduard.
  • Paulo, Maria Júlia Escanhoela; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
  • dos Santos, Mariana Avelino; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
  • Cimatti, Bruno; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
  • Gava, Nelson Fabrício; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
  • Riberto, Marcelo; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
  • Engel, Edgard Eduard; Universidade de São Paulo. Faculdade de Medicina de Ribeirão Preto. Departamento de Biomecânica, Medicina e Reabilitação do Aparelho Locomotor. Ribeirão Preto. BR
Clinics ; 72(7): 449-453, July 2017. tab, graf
Article in English | LILACS | ID: biblio-890713
ABSTRACT
Biomaterials' structural characteristics and the addition of osteoinductors influence the osteointegration capacity of bone substitutes. This study aims to identify the characteristics of porous and resorbable bone substitutes that influence new bone formation. An Internet search for studies reporting new bone formation rates in bone defects filled with porous and resorbable substitutes was performed in duplicate using the PubMed, Web of Science, Scielo, and University of São Paulo Digital Library databases. Metaphyseal or calvarial bone defects 4 to 10 mm in diameter from various animal models were selected. New bone formation rates were collected from the histomorphometry or micro-CT data. The following variables were analyzed animal model, bone region, defect diameter, follow-up time after implantation, basic substitute material, osteoinductor addition, pore size and porosity. Of 3,266 initially identified articles, 15 articles describing 32 experimental groups met the inclusion criteria. There were no differences between the groups in the experimental model characteristics, except for the follow-up time, which showed a very weak to moderate correlation with the rate of new bone formation. In terms of the biomaterial and structural characteristics, only porosity showed a significant influence on the rate of new bone formation. Higher porosity is related to higher new bone formation rates. The influence of other characteristics could not be identified, possibly due to the large variety of experimental models and methodologies used to estimate new bone formation rates. We suggest the inclusion of standard control groups in future experimental studies to compare biomaterials.
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Full text: Available Index: LILACS (Americas) Main subject: Biocompatible Materials / Osseointegration / Bone Substitutes Type of study: Prognostic study / Systematic reviews Limits: Animals / Humans Language: English Journal: Clinics Journal subject: Medicine Year: 2017 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade de São Paulo/BR

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Full text: Available Index: LILACS (Americas) Main subject: Biocompatible Materials / Osseointegration / Bone Substitutes Type of study: Prognostic study / Systematic reviews Limits: Animals / Humans Language: English Journal: Clinics Journal subject: Medicine Year: 2017 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade de São Paulo/BR