Delgado-López José Manuel, Bertolotti Federica, Lyngsø Jeppe, Pedersen Jan Skov, Cervellino Antonio, Masciocchi Norberto, Guagliardi Antonietta
Dipartimento di Scienza e Alta Tecnologia and To.Sca.Lab, Università dell'Insubria, Como, Italy; Instituto Andaluz de Ciencias de la Tierra (IACT, CSIC-UGR), Armilla (Granada), Spain.
Dipartimento di Scienza e Alta Tecnologia and To.Sca.Lab, Università dell'Insubria, Como, Italy.
Acta Biomater. 2017 Feb;49:555-562. doi: 10.1016/j.actbio.2016.11.041. Epub 2016 Nov 18.
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citrate and the combined role of the two bone organic matrix components in controlling mineral formation was investigated for the first time. Mineralized and non-mineralized collagen fibrils have been in depth characterized by combining small- and wide-angle X-ray scattering (SAXS/WAXS) techniques with Atomic Force Microscopy (AFM) imaging. A synergic effect of collagen and citrate in driving the formation of long-term stable amorphous calcium phosphate (ACP) nanoparticles with platy morphology was found. AFM images on mineralized collagen fibrils revealed that some of the ACP nanoparticles were deposited on the intramolecular nanoscopic holes of collagen fibrils.
Citrate is an important component of the bone organic matrix but its specific role in bone mineralization is presently unclear. In this work, bioinspired in vitro collagen mineralization experiments in the presence of citrate have been carried out and the combined role of collagen and citrate in controlling mineral formation has been addressed for the first time. Through X-ray scattering and Atomic Force Microscopy characterizations on mineralized and non-mineralized collagen fibrils, we have found that citrate in synergy with collagen stabilizes an amorphous calcium phosphate (ACP) phase with platy morphology over one week and controls its deposition on collagen fibrils.
在柠檬酸盐存在的情况下进行了受生物启发的体外胶原蛋白矿化实验,并首次研究了两种骨有机基质成分在控制矿物质形成中的联合作用。通过将小角和广角X射线散射(SAXS/WAXS)技术与原子力显微镜(AFM)成像相结合,对矿化和未矿化的胶原纤维进行了深入表征。发现胶原蛋白和柠檬酸盐在驱动形成具有板状形态的长期稳定无定形磷酸钙(ACP)纳米颗粒方面具有协同作用。矿化胶原纤维的AFM图像显示,一些ACP纳米颗粒沉积在胶原纤维的分子内纳米孔上。
柠檬酸盐是骨有机基质的重要组成部分,但其在骨矿化中的具体作用目前尚不清楚。在这项工作中,进行了在柠檬酸盐存在下受生物启发的体外胶原蛋白矿化实验,并首次探讨了胶原蛋白和柠檬酸盐在控制矿物质形成中的联合作用。通过对矿化和未矿化胶原纤维的X射线散射和原子力显微镜表征,我们发现柠檬酸盐与胶原蛋白协同作用,在一周内稳定了具有板状形态的无定形磷酸钙(ACP)相,并控制其在胶原纤维上的沉积。