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Biomaterials in Tooth TissueEngineering: A Review

机译:牙组织工程中的生物材料:综述

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Biomaterials play a crucial role in the field of tissue engineering. They are utilized for fabricating frameworks known as scaffolds, matrices or constructs which are interconnected porous structures that establish a cellular microenvironment required for optimal tissue regeneration. Several natural and synthetic biomaterials have been utilized for fabrication of tissue engineering scaffolds. Amongst different biomaterials, polymers are the most extensively experimented and employed materials. They can be tailored to provide good interconnected porosity, large surface area, adequate mechanical strengths, varying surface characterization and different geometries required for tissue regeneration. A single type of material may however not meet all the requirements. Selection of two or more biomaterials, optimization of their physical, chemical and mechanical properties and advanced fabrication techniques are required to obtain scaffold designs intended for their final application. Current focus is aimed at designing biomaterials such that they will replicate the local extra cellular environment of the native organ and enable cell-cell and cell-scaffold interactions at micro level required for functional tissue regeneration. This article provides an insight into the different biomaterials available and the emerging use of nano engineering principles for the construction of bioactive scaffolds in tooth regeneration.
机译:生物材料在组织工程领域起着至关重要的作用。它们被用于制造被称为支架,基质或构建体的框架,所述框架是相互连接的多孔结构,其建立了最佳组织再生所需的细胞微环境。几种天然和合成生物材料已被用于制造组织工程支架。在不同的生物材料中,聚合物是最广泛试验和采用的材料。可以对它们进行定制,以提供良好的互连孔隙率,较大的表面积,足够的机械强度,变化的表面特性以及组织再生所需的不同几何形状。但是,单一类型的材料可能无法满足所有要求。为了获得用于其最终应用的支架设计,需要选择两种或更多种生物材料,优化其物理,化学和机械性能以及先进的制造技术。当前的焦点旨在设计生物材料,以使它们将复制天然器官的局部细胞外环境,并在功能组织再生所需的微观水平上实现细胞-细胞和细胞-支架的相互作用。本文提供了对可用的不同生物材料以及纳米工程原理在牙齿再生中构建生物活性支架的新兴应用的见解。

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