Department of Materials Science & Engineering, University of Florida, Gainesville, FL 32611-6400, USA.
Acta Biomater. 2014 Jan;10(1):494-507. doi: 10.1016/j.actbio.2013.10.010. Epub 2013 Oct 17.
Mineralized collagen composites are of interest because they have the potential to provide a bone-like scaffold that stimulates the natural processes of resorption and remodeling. Working towards this goal, our group has previously shown that the nanostructure of bone can be reproduced using a polymer-induced liquid-precursor (PILP) process, which enables intrafibrillar mineralization of collagen with hydroxyapatite to be achieved. This prior work used polyaspartic acid (pASP), a simple mimic for acidic non-collagenous proteins, to generate nanodroplets/nanoparticles of an amorphous mineral precursor which can infiltrate the interstices of type-I collagen fibrils. In this study we show that osteopontin (OPN) can similarly serve as a process-directing agent for the intrafibrillar mineralization of collagen, even though OPN is generally considered a mineralization inhibitor. We also found that inclusion of OPN in the mineralization process promotes the interaction of mouse marrow-derived osteoclasts with PILP-remineralized bone that was previously demineralized, as measured by actin ring formation. While osteoclast activation occurred when pASP was used as the process-directing agent, using OPN resulted in a dramatic effect on osteoclast activation, presumably because of the inherent arginine-glycine-aspartate acid ligands of OPN. By capitalizing on the multifunctionality of OPN, these studies may lead the way to producing biomimetic bone substitutes with the capability of tailorable bioresorption rates.
矿化胶原复合材料很有研究价值,因为它们有可能提供一种类似骨骼的支架,刺激吸收和重塑的自然过程。为了实现这一目标,我们小组之前已经表明,可以使用聚合物诱导的液相前体(PILP)工艺来复制骨的纳米结构,该工艺能够实现胶原纤维内的羟磷灰石矿化。之前的工作使用聚天冬氨酸(pASP)作为酸性非胶原蛋白的简单模拟物,生成可渗透到 I 型胶原纤维间隙的无定形矿物前体的纳米液滴/纳米颗粒。在这项研究中,我们表明骨桥蛋白(OPN)也可以作为胶原纤维内矿化的过程导向剂,尽管 OPN 通常被认为是矿化抑制剂。我们还发现,在矿化过程中加入 OPN 可以促进先前脱矿的 PILP 再矿化骨与鼠骨髓来源的破骨细胞的相互作用,这可以通过形成肌动蛋白环来衡量。虽然使用 pASP 作为过程导向剂时会发生破骨细胞激活,但使用 OPN 会对破骨细胞激活产生显著影响,这可能是因为 OPN 固有的精氨酸-甘氨酸-天冬氨酸酸配体。通过利用 OPN 的多功能性,这些研究可能为生产具有可定制生物吸收速率的仿生骨替代物铺平道路。