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Stem Cell-Friendly Scaffold Biomaterials: Applications for Bone Tissue Engineering and Regenerative Medicine

机译:干细胞友好的脚手架生物材料:用于骨组织工程和再生医学的应用

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Bone is a dynamic organ with high regenerative potential and provides essential biological functions in the body, such as providing body mobility and protection of internal organs, regulating hematopoietic cell homeostasis, and serving as important mineral reservoir. Bone defects, which can be caused by trauma, cancer and bone disorders, pose formidable public health burdens. Even though autologous bone grafts, allografts, or xenografts have been used clinically, repairing large bone defects remains as a significant clinical challenge. Bone tissue engineering (BTE) emerged as a promising solution to overcome the limitations of autografts and allografts. Ideal bone tissue engineering is to induce bone regeneration through the synergistic integration of biomaterial scaffolds, bone progenitor cells, and bone-forming factors. Successful stem cell-based BTE requires a combination of abundant mesenchymal progenitors with osteogenic potential, suitable biofactors to drive osteogenic differentiation, and cell-friendly scaffold biomaterials. Thus, the crux of BTE lies within the use of cell-friendly biomaterials as scaffolds to overcome extensive bone defects. In this review, we focus on the biocompatibility and cell-friendly features of commonly used scaffold materials, including inorganic compound-based ceramics, natural polymers, synthetic polymers, decellularized extracellular matrix, and in many cases, composite scaffolds using the above existing biomaterials. It is conceivable that combinations of bioactive materials, progenitor cells, growth factors, functionalization techniques, and biomimetic scaffold designs, along with 3D bioprinting technology, will unleash a new era of complex BTE scaffolds tailored to patient-specific applications.
机译:骨是具有高再生潜力的动态器官,并在体内提供必要的生物学功能,例如提供体内迁移率和内脏的保护,调节造血细胞稳态,并用作重要的矿物储层。骨缺陷,可能是由创伤,癌症和骨紊乱引起的,构成强大的公共卫生负担。尽管临床上使用自体骨移植物,同种异体移植物或异种移植物,但修复大骨缺损仍然是一个显着的临床攻击。骨组织工程(BTE)作为克服自体移植物和同种异体移植物的局限性的有希望的解决方案。理想的骨组织工程是通过生物材料支架,骨祖细胞和骨形成因素的协同整合诱导骨再生。成功的干细胞基BTE需要具有成骨电位,合适的生物膜的丰富间充质祖细胞的组合,以驱动成骨分化和细胞友好的支架生物材料。因此,BTE的关键在于使用细胞友好的生物材料作为支架,以克服广泛的骨缺陷。在本文中,我们专注于常用的支架材料的生物相容性和细胞友好的特征,包括无机化合物的陶瓷,天然聚合物,合成聚合物,脱细胞外基质,以及许多情况下使用上述生物材料复合支架。可以想到,生物活性材料,祖细胞,生长因子,官能化技术和仿生脚手架设计以及3D生物监测技术的组合将释放对患者特异性应用的复杂BTE支架的新时代。
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