Department of Surgical Sciences, Orthopedics, Uppsala University Hospital, Uppsala SE 751 85, Sweden.
Biomacromolecules. 2013 Sep 9;14(9):3055-63. doi: 10.1021/bm400639e. Epub 2013 Aug 28.
Regeneration of bone by delivery of bone morphogenetic proteins (BMPs) from implantable scaffolds is a promising alternative to the existing autologous bone grafting procedures. Hydrogels are used extensively in biomaterials as delivery systems for different growth factors. However, a controlled release of the growth factors is necessary to induce bone formation, which can be accomplished by various chemical functionalities. Herein we demonstrate that functionalization of a hyaluronan (HA) hydrogel with covalently linked bisphosphonate (BP) ligands provides efficient sequestering of BMP-2 in the resulting HA-BP hydrogel. The HA-BP hydrogel was investigated in comparison with its analogue lacking BP groups (HA hydrogel). While HA hydrogel released 100% of BMP-2 over two weeks, less than 10% of BMP-2 was released from the HA-BP hydrogel for the same time. We demonstrate that the sequestered growth factor can still be released by enzymatic degradation of the HA-BP hydrogel. Most importantly, entrapment of BMP-2 in HA-BP hydrogel preserves the growth factor bioactivity, which was confirmed by induction of osteogenic differentiation of mesenchymal stem cells (MSCs) after the cells incubation with the enzymatic digest of the hydrogel. At the same time, the hydrogels degradation products were not toxic to MSCs and osteoblasts. Furthermore, BP-functionalization of HA hydrogels promotes adhesion of the cells to the surface of HA hydrogel. Altogether, the present findings indicate that covalent grafting of HA hydrogel with BP groups can alter the clinical effects of BMPs in bone tissue regeneration.
通过将骨形态发生蛋白(BMPs)从可植入支架递送到骨骼中,可以替代现有的自体骨移植程序,这是一种很有前途的方法。水凝胶在生物材料中被广泛用作不同生长因子的递送系统。然而,为了诱导骨形成,需要生长因子的受控释放,这可以通过各种化学官能团来实现。在此,我们证明了通过共价键将双膦酸盐(BP)配体接枝到透明质酸(HA)水凝胶上,可以有效地将 BMP-2 固定在所得的 HA-BP 水凝胶中。与缺乏 BP 基团的类似物(HA 水凝胶)相比,研究了 HA-BP 水凝胶。尽管 HA 水凝胶在两周内释放了 100%的 BMP-2,但在相同的时间内,HA-BP 水凝胶仅释放了不到 10%的 BMP-2。我们证明,通过 HA-BP 水凝胶的酶降解仍可以释放被隔离的生长因子。最重要的是,将 BMP-2 固定在 HA-BP 水凝胶中可以保留生长因子的生物活性,这通过将细胞与水凝胶的酶消化产物孵育后,诱导间充质干细胞(MSCs)的成骨分化得到证实。同时,水凝胶降解产物对 MSCs 和成骨细胞没有毒性。此外,HA 水凝胶的 BP 功能化促进了细胞在 HA 水凝胶表面的黏附。总之,这些发现表明,通过共价键将 HA 水凝胶与 BP 基团接枝可以改变 BMP 在骨组织再生中的临床效果。