ACS Nano. 2015 Mar 24;9(3):3109-18. doi: 10.1021/nn507488s. Epub 2015 Feb 25.
Despite bone's impressive ability to heal after traumatic injuries and fractures, a significant need still exists for developing strategies to promote healing of nonunion defects. To address this issue, we developed collagen-based hydrogels containing two-dimensional nanosilicates. Nanosilicates are ultrathin nanomaterials with a high degree of anisotropy and functionality that results in enhanced surface interactions with biological entities compared to their respective three-dimensional counterparts. The addition of nanosilicates resulted in a 4-fold increase in compressive modulus along with an increase in pore size compared to collagen-based hydrogels. In vitro evaluation indicated that the nanocomposite hydrogels are capable of promoting osteogenesis in the absence of any osteoinductive factors. A 3-fold increase in alkaline phosphatase activity and a 4-fold increase in the formation of a mineralized matrix were observed with the addition of the nanosilicates to the collagen-based hydrogels. Overall, these results demonstrate the multiple functions of nanosilicates conducive to the regeneration of bone in nonunion defects, including increased network stiffness and porosity, injectability, and enhanced mineralized matrix formation in a growth-factor-free microenvironment.
尽管骨骼在创伤和骨折后具有令人印象深刻的愈合能力,但仍需要开发策略来促进非愈合缺陷的愈合。为了解决这个问题,我们开发了含有二维纳米硅酸盐的基于胶原的水凝胶。纳米硅酸盐是具有高各向异性和功能的超薄纳米材料,与各自的三维对应物相比,其与生物实体的表面相互作用得到增强。与基于胶原的水凝胶相比,纳米硅酸盐的添加使压缩模量增加了 4 倍,同时孔径也增加了。体外评估表明,纳米复合材料水凝胶能够在没有任何成骨诱导因子的情况下促进成骨。添加纳米硅酸盐到基于胶原的水凝胶中,碱性磷酸酶活性增加了 3 倍,矿化基质的形成增加了 4 倍。总的来说,这些结果表明纳米硅酸盐具有多种功能,有利于非愈合缺陷中骨骼的再生,包括增加网络硬度和孔隙率、可注射性以及在无生长因子的微环境中增强矿化基质的形成。