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作 者:Esther Perez-Torrero Leticia Esmeralda Luna-Rodriguez Gerardo Antonio Fonseca-Hernandez Jose Santos-Cruz Eric Mauricio Rivera-Muñoz Maria Lucero Gomez-Herrera Esther Perez-Torrero;Leticia Esmeralda Luna-Rodriguez;Gerardo Antonio Fonseca-Hernandez;Jose Santos-Cruz;Eric Mauricio Rivera-Muñoz;Maria Lucero Gomez-Herrera(Facultad de Ingeniería, Investigación y Posgrado, Campus Aeropuerto, Universidad Autónomade Querétaro, México;Centro de Física Aplicada y Tecnología Avanzada (CFATA) de la Universidad Nacional Autónoma de México;Facultad de Química, Investigación y Posgrado Campus Cerro de las Campanas, UniversidadAutónoma de Querétaro, México)
机构地区:[1]Facultad de Ingeniería, Investigación y Posgrado, Campus Aeropuerto, Universidad Autónomade Querétaro, México [2]Centro de Física Aplicada y Tecnología Avanzada (CFATA) de la Universidad Nacional Autónoma de México [3]Facultad de Química, Investigación y Posgrado Campus Cerro de las Campanas, UniversidadAutónoma de Querétaro, México
出 处:《Journal of Biosciences and Medicines》2023年第9期181-194,共14页生物科学与医学(英文)
摘 要:A synthetizing material blended with two distinct proteins (collagen and casein) and mineral mixture, was developed in order to evaluate their properties suitable for possible applications in the biomedical such as inducing the regeneration of damaged bone, either due to an accident or illness. Samples were evaluated by 1) Mechanical properties tests under the bending, 2) Scanning electronic microscopy and 3) Infrared spectroscopy were carried out. The results showed that the developed material has breaking strength and structure characteristics associated with the protein used in their composition. This fact suggests that the used protein determines the resistance of the material, in such a way according to the required use, being able to choose appropriate strength and duration either short or long time. The material composition for specific use, in order to find the most suitable mixture for bone replacement, or induce bone recovery, according to the required properties similar to those of damaged living tissue.A synthetizing material blended with two distinct proteins (collagen and casein) and mineral mixture, was developed in order to evaluate their properties suitable for possible applications in the biomedical such as inducing the regeneration of damaged bone, either due to an accident or illness. Samples were evaluated by 1) Mechanical properties tests under the bending, 2) Scanning electronic microscopy and 3) Infrared spectroscopy were carried out. The results showed that the developed material has breaking strength and structure characteristics associated with the protein used in their composition. This fact suggests that the used protein determines the resistance of the material, in such a way according to the required use, being able to choose appropriate strength and duration either short or long time. The material composition for specific use, in order to find the most suitable mixture for bone replacement, or induce bone recovery, according to the required properties similar to those of damaged living tissue.
关 键 词:MINERALS BONE POLYMETHYLMETHACRYLATE CASEIN COLLAGEN Mechanical Properties Infrared Scanning Electronic Microscopy
分 类 号:TG1[金属学及工艺—金属学]
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