Current advances concerning the most cited metal ions doped bioceramics and silicate-based bioactive glasses for bone tissue engineering

被引:106
作者
Schatkoski, Vanessa Modelski [1 ]
Montanheiro, Thais Larissa do Amaral [1 ]
Canuto de Menezes, Beatriz Rossi [1 ]
Pereira, Raissa Monteiro [1 ]
Rodrigues, Karla Faquine [1 ]
Ribas, Renata Guimaraes [1 ]
da Silva, Diego Morais [1 ]
Thim, Gilmar Patrocinio [1 ]
机构
[1] Technol Inst Aeronaut ITA, Lab Plasmas & Proc LAB LPP, Praca Marechal Eduardo Gomes 50, BR-12228900 Sao Jose Dos Campos, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Doping; Metal ion; Biomaterials; Bioceramic; Bioactive glass; Bone tissue; IN-VITRO BIOACTIVITY; ANTIBACTERIAL ACTIVITY; DRUG-DELIVERY; HYDROXYAPATITE; SCAFFOLDS; NANOPARTICLES; SOL; CYTOTOXICITY; ANGIOGENESIS; COATINGS;
D O I
10.1016/j.ceramint.2020.09.213
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Studies related to biomaterials that stimulate the repair of living tissue have increased considerably, improving the quality of many people's lives that require surgery due to traumatic accidents, bone diseases, bone defects, and reconstructions. Among these biomaterials, bioceramics and bioactive glasses (BGs) have proved to be suitable for coating materials, cement, scaffolds, and nanoparticles, once they present good biocompatibility and degradability, able to generate osteoconduction on the surrounding tissue. However, the role of biomaterials in hard tissue engineering is not restricted to a structural replacement or for guiding tissue regeneration. Nowadays, it is expected that biomaterials develop a multifunctional role when implanted, orchestrating the process of tissue regeneration and providing to the body the capacity to heal itself. In this way, the incorporation of specific metal ions in bioceramics and BGs structure, including magnesium, silver, strontium, lithium, copper, iron, zinc, cobalt, and manganese are currently receiving enhanced interest as biomaterials for biomedical applications. When an ion is incorporated into the bioceramic structure, a new category of material is created, which has several unique properties that overcome the disadvantages of primitive material and favors its use in different biomedical applications. The doping can enhance handling properties, angiogenic and osteogenic performance, and antimicrobial activity. Therefore, this review aims to summarize the effect of selected metal ion dopants into bioceramics and silicate-based BGs in bone tissue engineering. Furthermore, new applications for doped bioceramics and BGs are highlighted, including cancer treatment and drug delivery.
引用
收藏
页码:2999 / 3012
页数:14
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