Lu X, Li S, Zhang J, Zhang Z, Lu B, Bu H, Li Y, Cheng J
Laboratory of Transplant Engineering and Immunology, West China Hospital of Sichuan University, Chengdu 610041.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2001 Dec;18(4):497-9.
The biocompatibility of HA/TCP ceramic was evaluated by investigation of attachment and growth of osteoblasts on biomaterial, as well as monitoring the effects of biomaterial on expression of functional phenotypes of co-cultured osteoblasts in vitro. When co-cultured with HA/TCP ceramics, osteoblasts firstly attached to the surface of HA/TCP disk, then attached to notches and grew into the micropores of biomaterial during further culture period. At last, the ceramics were almost packed with osteoblasts. Additionally, osteoblasts co-cultured with HA/TCP were similar to osteoblasts cultured under normal condition in osteoblastic phenotypes; the secreted lots of collagen type I, possess strong activity of Alkaline Phosphatase and mineralized extracellular matrix. The fact that osteoblasts could grow well on HA/TCP ceramics and the biomaterial did not affect their physiological function suggest that HA/TCP ceramic is biocompatible with human osteoblasts.
通过研究成骨细胞在生物材料上的附着和生长情况,以及监测生物材料对体外共培养成骨细胞功能表型表达的影响,来评估HA/TCP陶瓷的生物相容性。当与HA/TCP陶瓷共培养时,成骨细胞首先附着在HA/TCP盘的表面,然后附着在缺口处,并在进一步培养期间长入生物材料的微孔中。最后,陶瓷几乎被成骨细胞填满。此外,与HA/TCP共培养的成骨细胞在成骨细胞表型上与在正常条件下培养的成骨细胞相似;分泌大量I型胶原蛋白,具有较强的碱性磷酸酶活性并矿化细胞外基质。成骨细胞能够在HA/TCP陶瓷上良好生长且生物材料不影响其生理功能这一事实表明,HA/TCP陶瓷与人类成骨细胞具有生物相容性。