Yoshikawa T, Ohgushi H, Dohi Y, Davies J E
Department of Orthopaedics, Nara Medical University, Kashihara City, Japan.
Biomed Mater Eng. 1997;7(1):49-58.
With the aim of in vitro production of bone fragments more closely resembling autogenous bone, rat cultured bone marrow cells were combined with porous hydroxyapatite (HA) discs and cultured in the presence of dexamethasone (Dex). Bone marrow cells were collected from the femoral diaphyses of a 7-week-old male Wistar rat, and primary culture was performed for six days. Then, cell suspensions were prepared by trypsin treatment, and combined with the porous HA discs. After a 2-hour incubation, the composites were additionally cultured for up to 4 weeks (subculture) in the presence of Dex. In a control group, the subculture was performed without Dex. After 1, 2, 3 and 4 weeks of subculturing, the HA discs were removed, and alkaline phosphatase (ALP) activity, bone Gla protein (BGP), and DNA were quantitated. A portion of the disc was prepared for scanning electron microscopy (SEM), from which bone formation was evaluated morphologically. ALP activity peaked at 2-3 weeks and decreased at 4 weeks. BGP levels began to increase at 3 weeks. In the SEM study, mineralized collagenous extracellular matrix was noted at 3 and 4 weeks. In the control group, neither significant ALP activity nor increased BGP was detected. These biochemical and morphological results suggest that with the culture technique, active bone formation in the pore regions of HA can be fabricated in vitro. It is anticipated that when composites are subcultured in this way they will function as a bone graft with properties similar to those of autogenous bone.
为了在体外生产更接近自体骨的骨碎片,将大鼠培养的骨髓细胞与多孔羟基磷灰石(HA)圆盘相结合,并在地塞米松(Dex)存在的情况下进行培养。从7周龄雄性Wistar大鼠的股骨干收集骨髓细胞,并进行6天的原代培养。然后,通过胰蛋白酶处理制备细胞悬液,并与多孔HA圆盘相结合。孵育2小时后,将复合材料在Dex存在的情况下额外培养长达4周(传代培养)。在对照组中,传代培养在没有Dex的情况下进行。传代培养1、2、3和4周后,取出HA圆盘,对碱性磷酸酶(ALP)活性、骨钙蛋白(BGP)和DNA进行定量。将圆盘的一部分制备用于扫描电子显微镜(SEM),从形态学上评估骨形成情况。ALP活性在2 - 3周达到峰值,并在4周时下降。BGP水平在3周时开始升高。在SEM研究中,在3周和4周时观察到矿化的胶原细胞外基质。在对照组中,未检测到显著的ALP活性或BGP增加。这些生化和形态学结果表明,通过这种培养技术,可以在体外制造HA孔隙区域的活性骨形成。预计当以这种方式对复合材料进行传代培养时,它们将作为具有与自体骨相似特性的骨移植材料发挥作用。