Chair of Anatomy, Faculty of Medicine, Jagiellonian University Medical College, Kopernika 12, 31-034 Krakow, Poland.
Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland.
Int J Biol Macromol. 2018 Jul 1;113:692-700. doi: 10.1016/j.ijbiomac.2018.02.161. Epub 2018 Mar 29.
The aim of this study was to assess osteogenic potential of three groups of biopolymeric hydrogel-based surfaces made of plain collagen, chitosan or collagen/chitosan, crosslinked with genipin or all three biopolymers modified with silica particles of two sizes (S1=240nm and S2=450nm). Biocompatibility and osteoinductive properties of the resulting composites were analyzed in the human bone marrow-derived mesenchymal stromal cells (hBMSCs) in vitro cultures. It was revealed that all tested materials are biocompatible and significantly enhance ALP activity in hBMSCs which was particularly pronounced for collagen/chitosan based hybrids. Gene expression (RUNX-2, COL-I, OC and VEGF mRNA) analyses performed in hBMSCs cultured at collagen/chitosan materials showed that ColChS1 hybrid the most effectively promotes osteogenic differentiation of hBMSCs. SEM and EDS analyses of materials carried out after 20days of hBMSCs culturing on ColCh-based hydrogels revealed that the hybrid materials enhanced hBMSCs-mediated mineralization of ECM. Our studies revealed that collagen/chitosan hydrogels modified with silica particles of smaller sizes (ColChS1) exhibit high pro-osteogenic properties without the need of applying any additional osteogenic inducers. That suggests that ColChS1 having the intrinsic osteoinductive activity holds great potential as material of choice for bone regeneration procedures, especially in regeneration of small bone losses.
本研究旨在评估三组由普通胶原蛋白、壳聚糖或胶原蛋白/壳聚糖组成的基于生物聚合物水凝胶的表面的成骨潜力,这些水凝胶分别通过京尼平、或三种生物聚合物与两种粒径(S1=240nm 和 S2=450nm)的硅颗粒改性交联而成。在体外培养的人骨髓间充质基质细胞(hBMSCs)中分析了所得复合材料的生物相容性和骨诱导特性。结果表明,所有测试材料均具有生物相容性,并能显著增强 hBMSCs 中的碱性磷酸酶(ALP)活性,其中基于胶原蛋白/壳聚糖的杂化材料的效果最为显著。在培养于胶原蛋白/壳聚糖材料上的 hBMSCs 中进行的基因表达(RUNX-2、COL-I、OC 和 VEGF mRNA)分析表明,ColChS1 杂化材料最有效地促进了 hBMSCs 的成骨分化。在 hBMSCs 培养 20 天后对 ColCh 基水凝胶上的材料进行的 SEM 和 EDS 分析表明,杂化材料增强了 hBMSCs 介导的细胞外基质的矿化。我们的研究表明,用较小粒径(ColChS1)的硅颗粒改性的胶原蛋白/壳聚糖水凝胶具有较高的促骨生成特性,而无需应用任何额外的成骨诱导剂。这表明具有内在骨诱导活性的 ColChS1 作为骨再生程序的首选材料具有很大的潜力,特别是在小骨量损失的再生中。