de Misquita Marcos Ricardo Dantas Oliveira Ferraz, Bentini Ricardo, Goncalves Flavia
Universidade Ibirapuera - Unidade Chacara Flora, Sao Paulo, Brazil.
National University of Singapore, Singapore, Singapore.
J Biomater Appl. 2016 Nov;31(5):625-636. doi: 10.1177/0885328216656476. Epub 2016 Jun 22.
Bone tissue engineering is an excellent alternative for the regeneration of large bone defects caused by trauma or bone pathologies. Scaffolds, stem cells, and bioactive molecules are the three key components of bone regeneration. Although a wide range of biomaterials of various compositions and structures has been proposed in the literature, these materials are rarely used in clinical applications. Therefore, more standardized studies are required to design scaffolds that enable better bone regeneration and are suitable for clinical use. The aim of this systematic review was to compare the performance of scaffolds used in preclinical animal studies to determine which class of materials has achieved a higher rate of bone neoformation (osteoinduction and osteoconduction). The selected studies were divided into three groups according to the following experimental models: studies that used subcutaneous models, bone defects in calvaria, and bone defects in long bones. Despite the large number of parameters in the included studies, we generally concluded that biomaterials containing calcium phosphates had important osteoinductive effects and were essential for better performance of the materials. Furthermore, natural polymers generally had better performance than synthetic polymers did, especially when the materials were associated with stem cells. The combination of materials from different classes was the most promising strategy for bone tissue regeneration.
骨组织工程是修复由创伤或骨病引起的大骨缺损的一种极佳替代方法。支架、干细胞和生物活性分子是骨再生的三个关键组成部分。尽管文献中已提出了多种组成和结构的生物材料,但这些材料很少用于临床应用。因此,需要进行更标准化的研究来设计能够实现更好骨再生且适合临床使用的支架。本系统评价的目的是比较临床前动物研究中使用的支架的性能,以确定哪类材料实现了更高的骨新形成率(骨诱导和骨传导)。根据以下实验模型,将所选研究分为三组:使用皮下模型的研究、颅骨骨缺损研究和长骨骨缺损研究。尽管纳入研究中的参数众多,但我们总体得出结论,含磷酸钙的生物材料具有重要的骨诱导作用,对材料的更好性能至关重要。此外,天然聚合物的性能通常优于合成聚合物,尤其是当材料与干细胞结合时。不同类别材料的组合是骨组织再生最有前景的策略。