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用于颅面和牙科组织工程的纳米材料

Nanomaterials for Craniofacial and Dental Tissue Engineering.

作者信息

Li G, Zhou T, Lin S, Shi S, Lin Y

机构信息

1 State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, P. R. China.

出版信息

J Dent Res. 2017 Jul;96(7):725-732. doi: 10.1177/0022034517706678. Epub 2017 May 2.

Abstract

Tissue engineering shows great potential as a future treatment for the craniofacial and dental defects caused by trauma, tumor, and other diseases. Due to the biomimetic features and excellent physiochemical properties, nanomaterials are of vital importance in promoting cell growth and stimulating tissue regeneration in tissue engineering. For craniofacial and dental tissue engineering, the frequently used nanomaterials include nanoparticles, nanofibers, nanotubes, and nanosheets. Nanofibers are attractive for cell invasion and proliferation because of their resemblance to extracellular matrix and the presence of large pores, and they have been used as scaffolds in bone, cartilage, and tooth regeneration. Nanotubes and nanoparticles improve the mechanical and chemical properties of scaffold, increase cell attachment and migration, and facilitate tissue regeneration. In addition, nanofibers and nanoparticles are also used as a delivery system to carry the bioactive agent in bone and tooth regeneration, have better control of the release speed of agent upon degradation of the matrix, and promote tissue regeneration. Although applications of nanomaterials in tissue engineering remain in their infancy with numerous challenges to face, the current results indicate that nanomaterials have massive potential in craniofacial and dental tissue engineering.

摘要

组织工程作为未来治疗由创伤、肿瘤和其他疾病引起的颅面及牙齿缺损的方法,具有巨大潜力。由于具有仿生特性和优异的物理化学性质,纳米材料在促进组织工程中的细胞生长和刺激组织再生方面至关重要。对于颅面和牙齿组织工程,常用的纳米材料包括纳米颗粒、纳米纤维、纳米管和纳米片。纳米纤维因其与细胞外基质相似且具有大孔隙,对细胞侵袭和增殖具有吸引力,已被用作骨、软骨和牙齿再生的支架。纳米管和纳米颗粒可改善支架的力学和化学性质,增加细胞附着和迁移,并促进组织再生。此外,纳米纤维和纳米颗粒还用作递送系统,在骨和牙齿再生中携带生物活性剂,在基质降解时能更好地控制活性剂的释放速度,并促进组织再生。尽管纳米材料在组织工程中的应用仍处于起步阶段,面临众多挑战,但目前的结果表明,纳米材料在颅面和牙齿组织工程中具有巨大潜力。

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