Eslaminejad Mr Baghaban, Vahabi S, Shariati M, Nazarian H
Associate Professor, Department of Stem Cell and Developmental Biology, Royan Institute for Stem Cell Biology and Technology, Academic Center for Education, Culture and Research (ACECR), Tehran, Iran.
J Dent (Tehran). 2010 Fall;7(4):185-95. Epub 2010 Sep 30.
By date investigations have indicated the presence of stem cells within the pulp tissue of both temporary and permanent human teeth. In the present study, these stem cells were compared in terms of their growth kinetics and culture requirements.
Stem cells within the pulp of the human third molar (permanent tooth) and the deciduous incisor (temporary tooth) were isolated, culture-expanded and characterized. Then the proliferation potential of the cells was compared using multiple cell growth indices as PDT (Population doubling time), colonogenic activity and growth curve. Furthermore, the cultures of both cells were optimized for maximal proliferation.
Stem cells of either pulp tissue appeared as fibroblastic cells capable of differentiating into osteoblastic, odontoblastic, adipocytic and chondrocytic cell lineages. In contrast to molar stem cells, those from the incisor tooth expressed neurogenic markers of ßIII Tubulin and Tau. Based on in vitro growth data, the cells from third molar tended to have a lower PDT value (20.79, SD=2.8 versus 25.55, SD=2.9 hours), higher colonogenic activity and better growth curve than those from the deciduous incisor (P<0.05). Both cells exhibited high expansion rate when being plated in a medium with 20% phosphate buffer solution at a density of 100 cells/cm(2).
Given the high proliferation capacity, the stem cells from the human third molar would be an appropriate candidate for use in experimental, preclinical and even clinical setups.
迄今为止的研究表明,人类乳牙和恒牙的牙髓组织中均存在干细胞。在本研究中,对这些干细胞的生长动力学和培养条件进行了比较。
分离、培养扩增并鉴定了人类第三磨牙(恒牙)和乳切牙(乳牙)牙髓中的干细胞。然后使用多个细胞生长指标,如群体倍增时间(PDT)、集落形成活性和生长曲线,比较细胞的增殖潜力。此外,对两种细胞的培养条件进行了优化,以实现最大增殖。
两种牙髓组织的干细胞均表现为成纤维细胞样细胞,能够分化为成骨细胞、成牙本质细胞、脂肪细胞和软骨细胞系。与磨牙干细胞不同,乳切牙干细胞表达βIII微管蛋白和Tau等神经源性标志物。根据体外生长数据,第三磨牙的细胞与乳切牙的细胞相比,往往具有更低的PDT值(20.79,标准差=2.8对25.55,标准差=2.9小时)、更高的集落形成活性和更好的生长曲线(P<0.05)。当以100个细胞/cm²的密度接种在含有20%磷酸盐缓冲溶液的培养基中时,两种细胞均表现出高扩增率。
鉴于人类第三磨牙的干细胞具有高增殖能力,其将是用于实验、临床前甚至临床研究的合适候选细胞。