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首页> 外文期刊>Journal of nanoscience and nanotechnology >Advances in Bionanomaterials for Bone Tissue Engineering
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Advances in Bionanomaterials for Bone Tissue Engineering

机译:骨组织工程用生物纳米材料的研究进展

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摘要

Bone is a specialized form of connective tissue that forms the skeleton of the body and is built at the nano and microscale levels as a multi-component composite material consisting of a hard inorganic phase (minerals) in an elastic, dense organic network. Mimicking bone structure and its properties present an important frontier in the fields of nanotechnology, materials science and bone tissue engineering, given the complex morphology of this tissue. There has been a growing interest in developing artificial bone-mimetic nanomaterials with controllable mineral content, nanostructure, chemistry for bone, cartilage tissue engineering and substitutes. This review describes recent advances in bionanomaterials for bone tissue engineering including developments in soft tissue engineering. The significance and basic process of bone tissue engineering along with different bionanomaterial bone scaffolds made of nanocomposites and nanostructured biopolymers/bioceramics and the prerequisite biomechanical functions are described. It also covers latest developments in soft-tissue reconstruction and replacement. Finally, perspectives on the future direction in nanotechnology-enabled bone tissue engineering are presented.
机译:骨是结缔组织的一种特殊形式,它形成身体的骨架,并在纳米和微米级别上作为多组分复合材料构建,该复合材料由弹性,致密的有机网络中的硬质无机相(矿物)组成。考虑到这种组织的复杂形态,模仿骨骼的结构及其特性在纳米技术,材料科学和骨骼组织工程领域提出了重要的前沿领域。人们对开发具有可控矿物质含量,纳米结构,骨骼化学,软骨组织工程学和替代品的人造仿骨纳米材料的兴趣日益增长。这篇综述描述了用于骨组织工程的生物纳米材料的最新进展,包括软组织工程的发展。描述了骨组织工程的重要性和基本过程,以及由纳米复合材料和纳米结构的生物聚合物/生物陶瓷制成的各种仿生材料骨支架以及必要的生物力学功能。它还涵盖了软组织重建和置换的最新进展。最后,介绍了纳米技术支持的骨组织工程的未来方向。

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