Laboratory of Preclinical and Surgical Studies, Rizzoli Orthopaedic Institute, via di Barbiano 1/10, 40136 Bologna, Italy.
Department of Medical and Surgical Sciences, University of Bologna, via G. Massarenti 9, 40138 Bologna, Italy.
J Biomed Mater Res A. 2018 Apr;106(4):914-923. doi: 10.1002/jbm.a.36295. Epub 2017 Nov 27.
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biomimetic porous gelatin-nanocrystalline hydroxyapatite scaffolds with tailored properties were previously developed, showing a positive response in terms of cell adhesion, proliferation, and differentiation. In the present paper, we focused on their osteoinductive properties. The effect of scaffolds on osteogenic differentiation of human mesenchymal stromal cells (hMSCs) was investigated in vitro. hMSCs were seeded on GEL (type A gelatin) and GEL containing 10 wt% hydroxyapatite (GEL-HA) and cultured in osteogenic medium. Results showed that GEL and GEL-HA10 sustained hMSC differentiation, with an increased ALP activity and a higher expression of bone specific genes. The osteoinductive ability of these scaffolds was then studied in vivo in a heterotopic bone formation model in nude mice. The influence of hMSCs within the implants was examined as well. Both GEL and GEL-HA10 scaffolds mineralized when implanted without hMSCs. On the contrary, the presence of hMSC abolished or reduced mineralization of GEL and GEL-HA10 scaffolds. However, we could observe a species-specific response to the presence of HA, which stimulated osteogenic differentiation of human cells only. In conclusion, the scaffolds showed promising osteoinductive properties and may be suitable for use in confined critical defects. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 914-923, 2018.
对新的骨再生诱导策略的需求不断增加。以前已经开发出了具有定制特性的仿生多孔明胶-纳米晶羟基磷灰石支架,在细胞黏附、增殖和分化方面表现出了积极的响应。在本文中,我们重点研究了它们的成骨诱导特性。在体外研究了支架对人间充质基质细胞(hMSC)成骨分化的影响。将 hMSC 接种在 GEL(A型明胶)和含 10wt%羟基磷灰石的 GEL(GEL-HA)上,并在成骨培养基中培养。结果表明,GEL 和 GEL-HA10 维持 hMSC 分化,ALP 活性增加,骨特异性基因表达升高。然后在裸鼠异位骨形成模型中研究了这些支架的体内成骨能力。还研究了植入物内 hMSC 的影响。在没有 hMSC 的情况下植入 GEL 和 GEL-HA10 支架都会矿化。相反,hMSC 的存在会阻止或减少 GEL 和 GEL-HA10 支架的矿化。然而,我们可以观察到 HA 存在的种属特异性反应,仅刺激人细胞的成骨分化。总之,支架显示出有前途的成骨诱导特性,可适用于受限的临界缺陷。© 2017 威利父子公司。J 生物医学材料研究部分 A:106A:914-923,2018。