|
- 2016
透明质酸支架材料诱导成骨的研究进展
|
Abstract:
摘要 透明质酸(hyalronic acid ,HA)又称玻尿酸, 由于具有良好的生物相容性、机械强度、可塑性,可作为促进组织修复的生长因子的有效基质,是一种理想的骨诱导支架材料。本文介绍了HA诱导形成骨组织的相关实验,对未来的研究进行了展望
[1] | Schroeder J E, Mosheiff R. Tissue engineering approaches for bone repair: concepts and evidence [J]. Injury,2011,42(6)∶609-613 |
[2] | Lee P , Tran K, Chang W, et al. Influence of chondroitin sulfate and hyaluronic acid presence in nanofibers and its alignment on the bone marrow stromal cells: cartilage regeneration [J]. J Biomed Nanotechnol,2014,10(8)∶1469-1479 |
[3] | 张玉强,李岩,王岩峰,等.透明质酸钠对大鼠成肌细胞体外成骨分化的影响[J].中国医科大学学报,2011,40(5)∶408-410 |
[4] | Dong Hwa Kim J T, Martin D M, Elliott L J, et al. Phenotypic stability, matrix elaboration and functional maturation of nucleus pulposus cells encapsulated in photocrosslinkable hyaluronic acid hydrogels [J]. Acta Biomaterialia,2015,12∶21-29 |
[5] | Jensen J, Kraft D C, Lysdahl H, et al. Functionalization of polycaprolactone scaffolds with hyaluronic acid and beta-TCP facilitates migration and osteogenic differentiation of human dental pulp stem cells in vitro [J]. Tissue Eng Part A,2015,21 (3-4)∶729-739 |
[6] | Son SR, Sarkar SK, Nguyen-Thuy BL, et al. Platelet-rich plasma encapsulation in hyaluronic acid/gelatin-BCP hydrogel for growth factor delivery in BCP sponge scaffold for bone regeneration [J]. J Biomater Appl,2015,29(7)∶988-1002 |
[7] | Bae M S, Ohe J Y , Lee J B, et al. Photo-cured hyaluronic acid-based hydrogels containing growth and differentiation factor 5 (GDF-5) for bone tissue regeneration [J]. Bone,2014,59∶189-198 |
[8] | Yuchun Liu, Jing Lim, Swee-Hin Teoh. Review: Development of clinically relevant scaffolds for vascularised bone tissue engineering [J]. Biotechnology Advances,2013,31∶688-705 |
[9] | Bhakta G, Rai B, Lim ZX. Hyaluronic acid-based hydrogels functionalized with heparin that support controlled release of bioactive BMP-2 [J]. Biomaterials,2012,33(26)∶6113-6122 |
[10] | Collins M N, Birkinshaw C. Hyaluronic acid based Scaffolds for tissue Engineering-A Review [J]. Carbohydrate Polymers,2013,92(2)∶1262-1279 |
[11] | O'Brien F J. Biomaterials & scaffolds for tissue engineering [J]. Materials Today, 2011, 14(3)∶88-95 |
[12] | Baldini A, Zaffe D, Nicolini S, et al. Lack of effect on bone healing by high-molecular hyaluronic acid :preliminary results [J]. Ann Stomatal (Roma),2010,1(1)∶2-7 |
[13] | Ao H , Xie Y, Qin A, et al. Immobilization of hyaluronic acid on plasma-sprayed porous titanium coatings for improving biological properties [J]. J Biomater Sci Polym Ed,2014,25(11)∶1211-1224 |
[14] | Meyer K, Palmer J W. The polysaccharide of the vitreous humor [J]. J Biol Chem,1934,107∶629-634 |
[15] | Zou X, Li H, Chen L, et al. Stimulation of porcine bone marrow stromal cells by hyaluronan, dexamethasone and rhBMP-2 [J]. Biomaterials,2004,25(23)∶5375-5385 |
[16] | Fabio S.P, Calogero F, Mauro D S, et al. In situ forming hydrogels of hyaluronic acid and inulin derivatives for cartilage regeneration [J]. Carbohydrate Polymers,2015,122∶408-416 |
[17] | Nguyen TB, Lee BT. A combination of biphasic calcium phosphate scaffold with hyaluronic acid-gelatin hydrogel as a new tool for bone regeneration [J]. Tissue Eng Part A,2014,20(13-14)∶1993-2004 |
[18] | Singh D, Tripathi A, Zo S, et al. Synthesis of composite gelatin-hyaluronic acid-alginate porous scaffold and evaluation for in vitro stem cell growth and in vivo tissue integration [J]. Colloids Surf B Biointerfaces,2014,116∶502-509 |
[19] | Depan D, Girase B, Shah J S, et al. Structure-process-property relationship of the polar graphene oxide-mediated cellular response and stimulated growth of osteoblasts on hybrid chitosan network structurenano composite scaffolds [J]. Acta Biomater,2011,7(9)∶3432-3445 |
[20] | Lebourg M,Martinez-Diaz S,Garcia-Giralt N, et al . Cell-free cartilage engineering approach using hyaluronic acid-polycaprolactone scaffolds: a study in vivo [J]. J Biomater Appl,2014,28(9)∶1304-1315 |
[21] | A. Fakharia, C. Berkland. Applications and emerging trends of hyaluronic acid in tissue engineering, as a dermal filler and in osteoarthritis treatment [J]. Acta Biomaterialia,2013,9∶7081-7092 |