Geopolymer Materials for Bone Tissue Applications: Recent Advances and Future Perspectives

被引:13
|
作者
Ricciotti, Laura [1 ,2 ]
Apicella, Antonio [1 ,2 ]
Perrotta, Valeria [1 ,2 ]
Aversa, Raffaella [1 ,2 ]
机构
[1] Univ Campania Luigi Vanvitelli, Dept Architecture & Ind Design, I-81031 Aversa, Italy
[2] Univ Campania Luigi Vanvitelli, Dept Architecture & Ind Design, Adv Mat Lab, I-81031 Aversa, Italy
关键词
geopolymer; bone tissue; biocompatibility; hydroxyapatite; biomaterials; CALCIUM-CHLORIDE SOLUTION; MECHANICAL-PROPERTIES; APATITE FORMATION; FLY-ASH; SCAFFOLDS; METAKAOLIN; BIOMATERIALS; DEGRADATION; BIOACTIVITY; COMPOSITES;
D O I
10.3390/polym15051087
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
With progress in the bone tissue engineering (BTE) field, there is an important need to develop innovative biomaterials to improve the bone healing process using reproducible, affordable, and low-environmental-impact alternative synthetic strategies. This review thoroughly examines geopolymers' state-of-the-art and current applications and their future perspectives for bone tissue applications. This paper aims to analyse the potential of geopolymer materials in biomedical applications by reviewing the recent literature. Moreover, the characteristics of materials traditionally used as bioscaffolds are also compared, critically analysing the strengths and weaknesses of their use. The concerns that prevented the widespread use of alkali-activated materials as biomaterials (such as their toxicity and limited osteoconductivity) and the potentialities of geopolymers as ceramic biomaterials have also been considered. In particular, the possibility of targeting their mechanical properties and morphologies through their chemical compositions to meet specific and relevant requirements, such as biocompatibility and controlled porosity, is described. A statistical analysis of the published scientific literature is presented. Data on "geopolymers for biomedical applications" were extracted from the Scopus database. This paper focuses on possible strategies necessary to overcome the barriers that have limited their application in biomedicine. Specifically, innovative hybrid geopolymer-based formulations (alkali-activated mixtures for additive manufacturing) and their composites that optimise the porous morphology of bioscaffolds while minimising their toxicity for BTE are discussed.
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页数:25
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