Hayashi Chikako, Hasegawa Urara, Saita Yoshitomo, Hemmi Hiroaki, Hayata Tadayoshi, Nakashima Kazuhisa, Ezura Yoichi, Amagasa Teruo, Akiyoshi Kazunari, Noda Masaki
Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.
J Cell Physiol. 2009 Jul;220(1):1-7. doi: 10.1002/jcp.21760.
Bone regeneration for the defects in revision surgery of joint replacement is an increasingly important issue. To repair bone defects, bone cell activation by growth factors using synthetic resorbable scaffold is a useful and safe option. We examine the efficiency of nanogel-crosslinking hydrogel as a novel synthetic scaffold for BMP to stimulate osteoblasts and to induce bone formation. Cholesterol-bearing pullulan nanogel-crosslinking hydrogel (CHPA/Hydrogel) was used to deliver BMP. The CHPA hydrogel pellets were implanted in vivo. Single implantation of CHPA/hydrogel containing low amounts of BMP induced osteoblastic activation and new bone formation in vivo. Furthermore, nanogel in a disc shape established recruitment of osteoblastic cells that vigorously formed bone to heal the calvarial defects, which did not heal spontaneously without it. In conclusion, CHPA/hydrogel serves as an efficient and versatile scaffold for the stimulation of osteoblasts to form bone and to repair defects via delivery of BMP.
关节置换翻修手术中骨缺损的骨再生是一个日益重要的问题。为修复骨缺损,使用合成可吸收支架通过生长因子激活骨细胞是一种有用且安全的选择。我们研究了纳米凝胶交联水凝胶作为一种新型合成支架用于骨形态发生蛋白(BMP)刺激成骨细胞并诱导骨形成的效率。含胆固醇的支链淀粉纳米凝胶交联水凝胶(CHPA/水凝胶)用于递送BMP。将CHPA水凝胶微丸植入体内。单次植入含有少量BMP的CHPA/水凝胶可在体内诱导成骨细胞活化和新骨形成。此外,圆盘状的纳米凝胶可募集成骨细胞,这些细胞能有力地形成骨以愈合颅骨缺损,若无纳米凝胶,该缺损不会自发愈合。总之,CHPA/水凝胶作为一种高效且通用的支架,可通过递送BMP刺激成骨细胞形成骨并修复缺损。