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      Different Molarities and Dissolution-Precipitation Duration Affect the Formation of Carbonate-Apatite Blocks for Bone Graft Material

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          Abstract

          Abstract Objective: To determine diametral tensile strength and water absorption ability of Carbonate-apatite blocks fabricated from gypsum precursors (CaSO4) through a dissolution-precipitation method, with different solution molarities and immersion times. Material and Methods: Thirty-six CaSO4 gypsum specimens with 6 mm diameter; 3 mm height (Group A for diametral tensile strength) and 36 specimens of 6 mm diameter; 3 mm thickness (Group B for water absorption ability) were used. Each group was divided into 4 group treatments of: 1) dissolution-precipitation in solution of 0.5mol / L Na2CO3 + 0.5mol / L Na3PO4 for 48 hours and 72 hours; 1mol / L Na2CO3 + 1mol / L Na3PO4 for 48 hours and 72 hours. The C-Ap blocks were then tested using ATR-FTIR spectrometer to identify the formation of C-Ap functional groups. Furthermore, Group A specimens were tested for diametral tensile strength using Universal Testing Machine, and Group B specimens were tested for water adsorption ability using an analytical balance by measuring initial and final weight after immersion in saline solution at 37oC for 24 hours. Results: The formation of carbonate-apatite (C-Ap) in groups with solution molarity of 1 mol/L for 48 hours and 72 hours resulted in a lower diametral tensile strength and water absorption ability than the groups with a 0.5 mol/L solution. Conclusion: Solution with different molarities and dissolution-precipitation duration affect the formation of carbonate-apatite blocks.

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          Most cited references19

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          Bone grafts, bone substitutes and orthobiologics: the bridge between basic science and clinical advancements in fracture healing.

          The biology of fracture healing is better understood than ever before, with advancements such as the locking screw leading to more predictable and less eventful osseous healing. However, at times one's intrinsic biological response, and even concurrent surgical stabilization, is inadequate. In hopes of facilitating osseous union, bone grafts, bone substitutes and orthobiologics are being relied on more than ever before. The osteoinductive, osteoconductive and osteogenic properties of these substrates have been elucidated in the basic science literature and validated in clinical orthopaedic practice. Furthermore, an industry built around these items is more successful and in demand than ever before. This review provides a comprehensive overview of the basic science, clinical utility and economics of bone grafts, bone substitutes and orthobiologics.
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            Bone grafts in dentistry

            Bone grafts are used as a filler and scaffold to facilitate bone formation and promote wound healing. These grafts are bioresorbable and have no antigen-antibody reaction. These bone grafts act as a mineral reservoir which induces new bone formation.
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              Mechanical properties of trabecular bone in the human mandible: Implications for dental implant treatment planning and surgical placement

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                Author and article information

                Journal
                pboci
                Pesquisa Brasileira em Odontopediatria e Clínica Integrada
                Pesqui. Bras. Odontopediatria Clín. Integr.
                Associação de Apoio à Pesquisa em Saúde Bucal (João Pessoa, PB, Brazil )
                1519-0501
                1983-4632
                2020
                : 20
                : e5644
                Affiliations
                [2] Jakarta orgnameUniversitas Indonesia orgdiv1Faculty of Dentistry orgdiv2Dentistry Study Program Indonesia
                [1] Jakarta orgnameUniversitas Indonesia orgdiv1Faculty of Dentistry orgdiv2Department of Dental Materials Science Indonesia
                Article
                S1983-46322020000100405 S1983-4632(20)02000000405
                10.1590/pboci.2020.110
                05b47d96-6691-4c71-bdde-51432fd6e687

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 29 May 2020
                : 07 March 2019
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 24, Pages: 0
                Product

                SciELO Brazil

                Self URI: Full text available only in PDF format (EN)
                Categories
                Original Article

                Tensile Strength,Adsorption,Calcium Sulfate,Dental Materials

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