生物陶瓷
生物相容性
PLGA公司
聚乳酸
聚酯纤维
生物降解
材料科学
聚合物
组织工程
乙醇酸
生物医学工程
可生物降解聚合物
药物输送
脚手架
模拟体液
陶瓷
化学工程
纳米技术
化学
乳酸
复合材料
有机化学
扫描电子显微镜
纳米颗粒
医学
工程类
生物
细菌
冶金
遗传学
作者
Amir Mohammad Maadani,E. Salahinejad
标识
DOI:10.1016/j.jconrel.2022.09.022
摘要
Bioceramics, particularly calcium phosphates, bioactive glasses, and crystalline silicates, are a principal group of biomaterials employed for the regeneration of damaged tissues and therapeutic delivery. The development of ceramic tissue engineering scaffolds with an appropriate combination of mechanical and biological properties is still one of the key challenges in this field. In this regard, the deposition of polymeric coatings on the scaffolds is a simple and effective approach to reinforce their functions. Among different polymers, the influences of biodegradable aliphatic polyester coatings, especially polylactic acid (PLA) and poly(lactic-co-glycolic acid) (PLGA), over the performance of the scaffolds have been investigated in numerous research. This review paper provides a comprehensive comparison of PLA- and PLGA-coated bioceramic scaffolds which are mainly employed in bone tissue engineering. It is concluded that both the polymers enhance the mechanical behaviors of the scaffolds, but control their biodegradability, bioactivity, and delivery kinetics, where PLA acts almost more influentially than PLGA in comparison. However, the response of biocompatibility to this surface treatment is condition-dependent and requires case-by-case experiments to be determined accurately.
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