Kurashina K, Kurita H, Hirano M, Kotani A, Klein C P, de Groot K
Department of Dentistry and Oral Surgery, Shinshu University School of Medicine, Matsumoto, Japan.
Biomaterials. 1997 Apr;18(7):539-43. doi: 10.1016/s0142-9612(96)00162-7.
alpha-Tricalcium phosphate (alpha-TCP)/dicalcium phosphate dibasic (DCPD)/tetracalcium phosphate monoxide (TeCP) cement was implanted in paste form into soft tissue (rate subcutaneous sockets) and bone tissue (defects in rabbit mandibles) to evaluate the setting behaviour of the cement and tissue responses to the cement. A histological study of the soft tissue implants revealed thin fibrous capsule formation, the appearance of multinucleated giant cells on and close to the cement surface, and small clusters of the cement near the main part of the set cement which were formed by the migration of the paste while setting. X-ray diffraction (XRD) analysis of the implanted cement showed peaks for hydroxyapatite (HA) which increased as the implant period increased. Histology and microradiography of the bone tissue implants showed well-set cement without migration, active bone formation around the cement and direct bone union to it. However, the cement disappeared from the implant site in 4 of 16 specimens where intense bleeding seemed to wash away the implants while setting. From the results of the present study, we concluded that the cement is well tolerated, especially by bone tissue. This may be related to the fact that the cement sets producing HA. The cement is a promising material as a bone substitute; however, there is a problem of migration while setting in soft tissue and of exclusion from the bone defects by intense bleeding.
将α-磷酸三钙(α-TCP)/磷酸氢钙二水合物(DCPD)/一氧化四钙(TeCP)骨水泥以膏状植入软组织(大鼠皮下囊袋)和骨组织(兔下颌骨缺损)中,以评估骨水泥的凝固行为以及组织对骨水泥的反应。对软组织植入物的组织学研究显示,形成了薄纤维囊,在骨水泥表面及其附近出现了多核巨细胞,并且在凝固的骨水泥主体部分附近有小的骨水泥团块,这是由膏体在凝固时迁移形成的。对植入的骨水泥进行X射线衍射(XRD)分析显示,随着植入时间的增加,羟基磷灰石(HA)的峰增多。对骨组织植入物的组织学和显微放射照相显示,骨水泥凝固良好且无迁移,骨水泥周围有活跃的骨形成并与之直接骨结合。然而,在16个标本中有4个标本的植入部位骨水泥消失了,在凝固时大量出血似乎将植入物冲走了。从本研究结果得出,骨水泥耐受性良好,尤其是对骨组织。这可能与骨水泥凝固产生HA这一事实有关。骨水泥作为骨替代材料是一种有前景的材料;然而,存在在软组织中凝固时迁移以及因大量出血而从骨缺损处排出的问题。