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Multifunctional bioactive glass and glass-ceramic biomaterials with antibacterial properties for repair and regeneration of bone tissue

机译:多功能生物活性玻璃和玻璃 - 陶瓷生物材料,具有抗菌性能,用于修复和再生骨组织

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摘要

Bioactive glasses (BGs) and related glass-ceramic biomaterials have been used in bone tissue repair for over 30 years. Previous work in this field was comprehensively reviewed including by their inventor Larry Hench, and the key features and properties of BGs are well understood. More recently, attention has focused on their modification to further enhance the osteogenic behaviour, or further compositional changes that may introduce additional properties, such as antimicrobial activity. Evidence is emerging that BGs and related glass-ceramics may be modified in such a way as to simultaneously introduce more than one desirable property. The aim of this review is therefore to consider the evidence that these more recent inorganic modifications to glass and glass-ceramic biomaterials are effective, and whether or not these new compositions represent sufficiently versatile systems to underpin the development of a new generation of truly multifunctional biomaterials to address pressing clinical needs in orthopaedic and dental surgery. Indeed, a number of classical glass compositions exhibited antimicrobial activity, however the structural design and the addition of specific ions, i.e. Ag+, Cu+, and Sr2+, are able to impart a multifunctional character to these systems, through the combination of, for example, bioactivity with bactericidal activity.
机译:生物活性玻璃(BGS)和相关的玻璃 - 陶瓷生物材料已用于骨组织修复超过30年。本领域的以前的工作是全面的审查,包括他们的发明者拉里Hench,BGS的主要特征和性质得到了很好的理解。最近,注意力集中于它们的修饰,以进一步增强成骨行为,或者可以引入额外性质,例如抗微生物活性的进一步的组成变化。出现据然是BGS和相关的玻璃陶瓷可以以同时引入多于一个理想的性质的方式进行修饰。因此,本综述的目的是考虑对玻璃和玻璃 - 陶瓷生物材料的这些更近期的无机修改是有效的,以及这些新的组合物是否代表了足够通用的系统来支撑新一代真正多功能生物材料的发展解决矫形和牙科手术中的临床需求。实际上,许多古典玻璃组合物表现出抗微生物活性,然而结构设计和特定离子的添加​​,即Ag +,Cu +和SR2 +,通过例如,通过例如,通过组合来赋予这些系统的多功能特征。具有杀菌活性的生物活性。

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