Ma Xing, Hu Yunyu, Wu Xiaoming, Yan Yongnian, Xiong Zhuo, Lu Rong, Wang Jun, Li Dan, Xu Xinzhi
Institute of Orthopaedics, Xijing Hospital, The Fourth Military Medical University, Xi 'an 710032, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2008 Jun;25(3):571-7.
Under laboratory condition, the compound materials of Poly (DL-lactic-co-glycolic acid)/Tricalcium phosphate [PLGA/TCP(L), with component ratio of 7:3] were fabricated by combining the thermally induced phase separation (TIPS) with solvent-casting particulate-leaching (SCPL) approach. On the other hand, rapid prototyping (RP) technique manufactured PLGA/TCP scaffolds [PLGA/TCP(RP)] were obtained. These two kinds of carriers were coated with collagen type I (Col I). The extracted bovine bone morphogenetic protein (bBMP) was loaded into carriers to establish biomimetic synthetic bones. PLGA/TCP(L) scaffolds, demineralized bone matrices (DBM) of bovine cancellous bone, PLGA/TCP(L) scaffolds, biomimetic synthetic bones and OsteoSet bone graft substitutes were investigated. Scanning electron microscopy revealed that the microarchitecture of PLGA/TCP(RP) scaffolds was much better than that of PLGA/TCP(L) scaffolds. The diameter of macropore of PLGA/TCP(RP) scaffold was 350 microm. The porosities of PLGA/ TCP(L) scaffolds, DBM, PLGA/TCP(RP) scaffolds and OsteoSet bone graft substitutes were 21.5%, 70.4%, 58.6% and 0%, respectively (P<0.01). Modification of PLGA/TCP scaffolds with collagen type I [PLGA/TCP(L)-Col I and PLGA/TCP(RP)-Col I] essentially increased the affinity of the carriers to bBMP. Among these synthetic materials, PLGA/TCP(RP)-Col I-bBMP composite is promising as a novel bone graft substitute due to its advanced fabrication technique, good tri-dimensional microarchitecture and ideal components.
在实验室条件下,通过热致相分离(TIPS)与溶剂浇铸颗粒沥滤(SCPL)相结合的方法制备了聚(DL-乳酸-共-乙醇酸)/磷酸三钙复合材料[PLGA/TCP(L),组分比例为7:3]。另一方面,采用快速成型(RP)技术制备了PLGA/TCP支架[PLGA/TCP(RP)]。这两种载体均用I型胶原蛋白(Col I)进行了包被。将提取的牛骨形态发生蛋白(bBMP)加载到载体中以构建仿生合成骨。对PLGA/TCP(L)支架、牛松质骨脱矿骨基质(DBM)、PLGA/TCP(L)支架、仿生合成骨和OsteoSet骨移植替代物进行了研究。扫描电子显微镜显示,PLGA/TCP(RP)支架的微观结构比PLGA/TCP(L)支架好得多。PLGA/TCP(RP)支架的大孔直径为350微米。PLGA/TCP(L)支架、DBM、PLGA/TCP(RP)支架和OsteoSet骨移植替代物的孔隙率分别为21.5%、70.4%、58.6%和0%(P<0.01)。用I型胶原蛋白对PLGA/TCP支架进行改性[PLGA/TCP(L)-Col I和PLGA/TCP(RP)-Col I]从根本上提高了载体对bBMP的亲和力。在这些合成材料中,PLGA/TCP(RP)-Col I-bBMP复合材料因其先进的制备技术、良好的三维微观结构和理想的组分,有望成为一种新型骨移植替代物。