Bar-Kana I, Savion N, Narayanan A S, Pitaru S
Department of Oral Biology, Goldschleger School of Dental Medicine, Sakler Faculty of Medicine, Tel Aviv University, Israel.
Eur J Oral Sci. 1998 Jan;106 Suppl 1:357-64. doi: 10.1111/j.1600-0722.1998.tb02198.x.
The mechanisms that regulate cementogenesis are mainly unknown. A specific cementum attachment protein (CAP) has been recently partially characterized and found to be more efficient in supporting the attachment of alveolar bone cells (ABC) and periodontal ligament cells (PLC) than that of gingival fibroblasts (GF). The purpose of this study was to determine the capacity of human periodontal-derived cells to bind and express CAP and to relate these properties to their capacity to express alkaline phosphatase (AlP) and form mineralized tissue (MTF). ABC, PLC and GF were tested. Human stromal bone marrow cells (SBMC) and a cementoma-derived cell line (CC) served as controls. CAP binding was determined using 125I-CAP. The amount of MTF was assessed by alizarin red staining and image analysis determination of the amount of red-stained material. AlP and CAP expression were examined by histochemistry and immunochemistry, respectively. The highest expression of CAP was observed in CC, followed by PLC and ABC in decreasing order, whereas SBMC and GF did not express CAP. SBMC manifested the highest CAP binding capacity followed by CC, ABC, PLC and GF. MTF and AlP manifestation were greatest in SBMC, followed by ABC, PLC and CC. Collectively the results indicate that CAP binding and secretion are not linked and that CAP manifestation is restricted to periodontal derived cell lineages with the potential of forming mineralized tissues.
调节牙骨质生成的机制目前主要尚不清楚。最近已对一种特定的牙骨质附着蛋白(CAP)进行了部分表征,发现它在支持牙槽骨细胞(ABC)和牙周膜细胞(PLC)附着方面比牙龈成纤维细胞(GF)更有效。本研究的目的是确定人牙周来源细胞结合和表达CAP的能力,并将这些特性与其表达碱性磷酸酶(AlP)和形成矿化组织(MTF)的能力相关联。对ABC、PLC和GF进行了测试。人骨髓基质细胞(SBMC)和一种牙骨质瘤来源的细胞系(CC)作为对照。使用125I-CAP测定CAP结合。通过茜素红染色和对红色染色物质含量的图像分析测定来评估MTF的量。分别通过组织化学和免疫化学检查AlP和CAP的表达。在CC中观察到CAP的最高表达,其次是PLC和ABC,呈递减顺序,而SBMC和GF不表达CAP。SBMC表现出最高的CAP结合能力,其次是CC、ABC、PLC和GF。MTF和AlP的表现以SBMC中最为显著,其次是ABC、PLC和CC。总体而言,结果表明CAP结合和分泌没有关联,并且CAP的表现仅限于具有形成矿化组织潜力的牙周来源细胞谱系。