Wu Andy T H, Aoki Teruo, Sakoda Megumu, Ohta Seiichi, Ichimura Shigetoshi, Ito Taichi, Ushida Takashi, Furukawa Katsuko S
Department of Mechanical Engineering, ‡Department of Chemical System Engineering, §Center for Disease Biology and Integrative Medicine, and ∥Department of Bioengineering, The University of Tokyo , 7-3-1, Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Biomacromolecules. 2015 Jan 12;16(1):166-73. doi: 10.1021/bm501356c. Epub 2014 Dec 5.
In tissue engineering, precise control of cues in the microenvironment is essential to stimulate cells to undergo bioactivities such as proliferation, differentiation, and matrix production. However, current approaches are inefficient in providing nondepleting cues. In this study, we have developed a novel bioactive hydrogel (HAX-PolyP) capable of enhancing tissue growth by conjugating inorganic polyphosphate chains onto hyaluronic acid macromers. The immobilized polyphosphates provided constant osteoconductive stimulation to the embedded murine osteoblast precursor cells, resulting in up-regulation of osteogenic marker genes and enhanced levels of ALP activity. The osteoconductive activity was significantly higher when compared to those stimulated with free-floating polyphosphates. Even at very low concentrations, immobilization of polyphosphates onto the scaffold allowed sufficient signaling leading to more effective osteoconduction. These results demonstrate the potential of our novel material as an injectable bioactive scaffold, which can be clinically useful for developing bone grafts and bone regeneration applications.
在组织工程中,精确控制微环境中的信号对于刺激细胞进行增殖、分化和基质产生等生物活性至关重要。然而,目前的方法在提供非消耗性信号方面效率低下。在本研究中,我们开发了一种新型生物活性水凝胶(HAX - PolyP),它能够通过将无机多磷酸盐链连接到透明质酸大分子单体上来促进组织生长。固定化的多磷酸盐为包埋的小鼠成骨细胞前体细胞提供持续的骨传导刺激,导致成骨标记基因上调和碱性磷酸酶(ALP)活性水平增强。与游离多磷酸盐刺激的细胞相比,其骨传导活性显著更高。即使在非常低的浓度下,将多磷酸盐固定在支架上也能产生足够的信号,从而实现更有效的骨传导。这些结果证明了我们新型材料作为可注射生物活性支架的潜力,在临床上可用于开发骨移植和骨再生应用。