Titorencu Irina, Albu Madalina Georgiana, Nemecz Miruna, Jinga Victor V
Department of Regenerative Medicine, Institute of Cellular Biology and Pathology "Nicolae Simionescu", P.O. Box: 35-14, Bucharest, Romania.
Curr Stem Cell Res Ther. 2017;12(2):165-174. doi: 10.2174/1574888X10666151102105659.
The major goal of bone tissue engineering is to develop bioconstructs which substitute the functionality of damaged natural bone structures as much as possible if critical-sized defects occur. Scaffolds that mimic the structure and composition of bone tissue and cells play a pivotal role in bone tissue engineering applications. First, composition, properties and in vivo synthesis of bone tissue are presented for the understanding of bone formation. Second, potential sources of osteoprogenitor cells have been investigated for their capacity to induce bone repair and regeneration. Third, taking into account that the main property to qualify one scaffold as a future bioconstruct for bone tissue engineering is the biocompatibility, the assessments which prove it are reviewed in this paper. Forth, various types of natural polymer- based scaffolds consisting in proteins, polysaccharides, minerals, growth factors etc, are discussed, and interaction between scaffolds and cells which proved bone tissue engineering concept are highlighted. Finally, the future perspectives of natural polymer-based scaffolds for bone tissue engineering are considered.
骨组织工程的主要目标是开发生物构建体,在出现临界尺寸骨缺损时尽可能替代受损天然骨结构的功能。模仿骨组织结构和组成的支架以及细胞在骨组织工程应用中起着关键作用。首先,介绍骨组织的组成、特性及体内合成过程,以助于理解骨形成。其次,研究了骨祖细胞的潜在来源,考察其诱导骨修复和再生的能力。第三,鉴于一种支架成为未来骨组织工程生物构建体的主要特性是生物相容性,本文对证明生物相容性的评估进行了综述。第四,讨论了各种基于天然聚合物的支架,包括蛋白质、多糖、矿物质、生长因子等,并强调了支架与细胞之间能证明骨组织工程概念的相互作用。最后,探讨了基于天然聚合物的支架在骨组织工程方面的未来前景。