Ahmed Hany Mohamed Aly, Luddin Norhayati, Kannan Thirumulu Ponnuraj, Mokhtar Khairani Idah, Ahmad Azlina
School of Dental Sciences, Universiti Sains Malaysia, Kubang Kerian, Kelantan, Malaysia.
School of Dental Sciences, Universiti Sains Malaysia, Kubang Kerian, Kelantan, Malaysia.
J Endod. 2014 Oct;40(10):1517-23. doi: 10.1016/j.joen.2014.06.013. Epub 2014 Aug 12.
The attachment and spreading of mammalian cells on endodontic biomaterials are an area of active research. The purpose of this review is to discuss the cell attachment properties of Portland cement (PC)-based materials by using scanning electron microscope (SEM). In addition, methodological aspects and technical challenges are discussed.
A PubMed electronic search was conducted by using appropriate key words to identify the available investigations on the cell attachment properties of PC-based endodontic materials. After retrieving the full text of related articles, the cross citations were also identified.
A total of 23 articles published between January 1993 and October 2013 were identified. This review summarizes the cell attachment properties of commercial and experimental PC-based materials on different cell cultures by using SEM. Methodological procedures, technical challenges, and relevance of SEM in determining the biological profile of PC-based materials are discussed.
SEM observations demonstrate that commercial MTA formulations show favorable cell attachment properties, which is consistent with their successful clinical outcomes. The favorable cell attachment properties of PC and its modified formulations support its potential use as a substitute for mineral trioxide aggregate. However, researchers should carefully select cell types for their SEM investigations that would be in contact with the proposed PC-based combinations in the clinical situation. Despite being a technical challenge, SEM provides useful information on the cell attachment properties of PC-based materials; however, other assays for cell proliferation and viability are essential to come up with an accurate in vitro biological profile of any given PC-based formulation.
哺乳动物细胞在牙髓生物材料上的附着和铺展是一个活跃的研究领域。本综述的目的是通过扫描电子显微镜(SEM)来探讨基于波特兰水泥(PC)的材料的细胞附着特性。此外,还讨论了方法学方面和技术挑战。
通过使用适当的关键词在PubMed上进行电子检索,以识别有关基于PC的牙髓材料细胞附着特性的现有研究。在检索相关文章的全文后,还识别了交叉引用。
共识别出1993年1月至2013年10月期间发表的23篇文章。本综述通过SEM总结了商业和实验性基于PC的材料在不同细胞培养物上的细胞附着特性。讨论了方法学程序、技术挑战以及SEM在确定基于PC的材料生物学特征方面的相关性。
SEM观察表明,商业MTA配方显示出良好的细胞附着特性,这与其成功的临床结果一致。PC及其改性配方的良好细胞附着特性支持其作为三氧化矿物凝聚体替代品的潜在用途。然而,研究人员在进行SEM研究时应仔细选择细胞类型,这些细胞类型应与临床情况下拟用的基于PC的组合物接触。尽管存在技术挑战,但SEM提供了有关基于PC的材料细胞附着特性的有用信息;然而,其他细胞增殖和活力测定对于得出任何给定基于PC的配方准确的体外生物学特征至关重要。