Hakki Sema S, Bozkurt Buket, Hakki Erdogan E, Kayis Seyit Ali, Turac Gizem, Yilmaz Irem, Karaoz Erdal
Department of Periodontology, Selcuk University, Faculty of Dentistry, Konya, Turkey.
J Biomed Mater Res B Appl Biomater. 2014 Jan;102(1):119-30. doi: 10.1002/jbm.b.32988. Epub 2013 Jul 13.
The utility of adult stem cells for bone regeneration may be an attractive alternative in the treatment of extensive injury, congenital malformations, or diseases causing large bone defects. To create an environment that is supportive of bone formation, signals from molecules such as the bone morphogenetic proteins (BMPs) are required to engineer fully viable and functional bone. We therefore determined whether BMP-2, -6, and -7 differentially regulate the (1) proliferation, (2) mineralization, and (3) mRNA expression of bone/mineralized tissue associated genes of human periodontal ligament stem cells (hPDLSCs), which were obtained from periodontal ligament tissue of human impacted third molars. hPDLSCs from six participants were isolated and characterized using histochemical and immunohistochemical methods. A real-time cell analyzer was used to evaluate the effects of BMP-2, -6, and -7 on the proliferation of hPDLSCs. hPDLSCs were treated with Dulbecco's modified Eagle's medium containing different concentrations of BMP-2, -6, and -7 (10, 25, 50, 100 ng/mL) and monitored for 264 hours. After dose-response experiments, 50 and 100 ng/mL concentrations of BMPs were used to measure bone/mineralized tissue-associated gene expression. Type I collagen, bone sialoprotein, osteocalcin, osteopontin, and osteoblastic transcription factor Runx2 mRNA expression of hPDLSCs treated with BMP-2, -6, and -7, were evaluated using quantitative RT-PCR. Biomineralization of hPDLSCs was assessed using von Kossa staining. This study demonstrated that BMPs at various concentrations differently regulate the proliferation, mineralization, and mRNA expression of bone/mineralized tissue associated genes in hPDLSCs. BMPs regulate hPDLSC proliferation in a time and dose-dependent manner when compared to an untreated control group. BMPs induced bone/mineralized tissue-associated gene mRNA expression and biomineralization of hPDLSCs. The most pronounced induction occurred in the BMP-6 group in the biomineralization of the hPDLSCs. Our data suggest that BMP-2, -6, and -7 are potent regulators of hPDLSC gene expression and biomineralization. Employing BMPs with hPDLSCs isolated from periodontal ligament tissues provides a promising strategy for bone tissue engineering.
成人干细胞用于骨再生在治疗大面积损伤、先天性畸形或导致大骨缺损的疾病方面可能是一种有吸引力的替代方法。为了创造一个支持骨形成的环境,需要来自诸如骨形态发生蛋白(BMPs)等分子的信号来构建完全有活力和功能的骨。因此,我们确定BMP-2、-6和-7是否差异调节从人类阻生第三磨牙的牙周膜组织中获得的人牙周膜干细胞(hPDLSCs)的(1)增殖、(2)矿化以及(3)骨/矿化组织相关基因的mRNA表达。使用组织化学和免疫组织化学方法对来自六名参与者的hPDLSCs进行分离和鉴定。使用实时细胞分析仪评估BMP-2、-6和-7对hPDLSCs增殖的影响。用含有不同浓度BMP-2、-6和-7(10、25、50、100 ng/mL)的杜氏改良 Eagle培养基处理hPDLSCs,并监测264小时。在剂量反应实验后,使用50和100 ng/mL浓度的BMPs来测量骨/矿化组织相关基因的表达。使用定量RT-PCR评估用BMP-2、-6和-7处理的hPDLSCs的I型胶原蛋白、骨唾液蛋白、骨钙素、骨桥蛋白和成骨细胞转录因子Runx2 mRNA的表达。使用冯·科萨染色评估hPDLSCs的生物矿化。本研究表明,不同浓度的BMPs差异调节hPDLSCs中骨/矿化组织相关基因的增殖、矿化和mRNA表达。与未处理的对照组相比,BMPs以时间和剂量依赖性方式调节hPDLSC增殖。BMPs诱导hPDLSCs的骨/矿化组织相关基因mRNA表达和生物矿化。在hPDLSCs的生物矿化中,最明显的诱导发生在BMP-6组。我们的数据表明,BMP-2、-6和-7是hPDLSC基因表达和生物矿化的有效调节因子。将BMPs与从牙周膜组织分离的hPDLSCs一起使用为骨组织工程提供了一种有前景的策略。