Ceramic Materials for Biomedical Applications: An Overview on Properties and Fabrication Processes
Керамические материалы для биомедицинских применений: обзор свойств и процессов изготовления
2023-03-04
SCID: 54.1/6amgtsq5
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biomimetic ceramic scaffoldsbone-tissue engineeringceramic biomaterialsceramic nanocompositesregenerative medicine
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Abstract (AI)
A growing interest in creating advanced biomaterials with specific physical and chemical properties is currently being observed. These high-standard materials must be capable to integrate into biological environments such as the oral cavity or other anatomical regions in the human body. Given these requirements, ceramic biomaterials offer a feasible solution in terms of mechanical strength, biological functionality, and biocompatibility. In this review, the fundamental physical, chemical, and mechanical properties of the main ceramic biomaterials and ceramic nanocomposites are drawn, along with some primary related applications in biomedical fields, such as orthopedics, dentistry, and regenerative medicine. Furthermore, an in-depth focus on bone-tissue engineering and biomimetic ceramic scaffold design and fabrication is presented.
Key Findings
1
Biomedical applications covered include orthopedics, dentistry, and regenerative medicine.
2
Ceramic biomaterials provide a feasible combination of mechanical strength, biological functionality, and biocompatibility for integration with human biological environments.
3
Ceramic materials are presented as advanced biomaterial candidates whose properties can support specialized biomedical applications.
4
The review provides an in-depth examination of bone-tissue engineering and biomimetic ceramic scaffold design and fabrication.
5
The review summarizes the fundamental physical, chemical, and mechanical properties of major ceramic biomaterials and ceramic nanocomposites.
Research Object
Ceramic biomaterials and ceramic nanocomposites for biomedical applications, including biomimetic ceramic scaffolds
Research Subject
Physical, chemical, mechanical, biological, and biocompatibility properties, applications, and fabrication of ceramic biomaterials, with emphasis on bone-tissue engineering and biomimetic scaffold design
Publication Details
Publication Date
2023-03-04
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