Brauer Delia S, Saeki Kuniko, Hilton Joan F, Marshall Grayson W, Marshall Sally J
Department of Preventive and Restorative Dental Sciences, UCSF School of Dentistry, Box 0758, San Francisco, CA 94143, USA.
Dent Mater. 2008 Aug;24(8):1137-40. doi: 10.1016/j.dental.2008.02.016. Epub 2008 Apr 23.
Extracted teeth used in dental research need to be considered infective and hence be sterilized without the materials' properties being altered. This study examined the effect of gamma radiation on the nano-mechanical properties of dentin and enamel of extracted human third molars.
Whole teeth were sterilized using gamma radiation doses of 7 kGy and 35 kGy, respectively; teeth of the control group were not treated with gamma radiation. Crowns were sectioned occlusally and polished. Elastic modulus and hardness were tested using atomic force microscopy with nano-indentations under wet conditions.
The authors found no significant dose-response relationship in elastic modulus or hardness in either dentin or enamel.
Nano-indentation is a common technique for the determination of local mechanical properties in biological hard tissues. Gamma radiation is an efficient way to sterilize extracted teeth while alteration of dentin and enamel mechanical properties are minimized.
牙科研究中使用的拔除牙齿需被视为具有传染性,因此要在不改变材料特性的情况下进行消毒。本研究考察了γ射线辐射对拔除的人类第三磨牙牙本质和牙釉质纳米力学性能的影响。
分别使用7千戈瑞和35千戈瑞的γ射线辐射剂量对完整牙齿进行消毒;对照组牙齿未接受γ射线辐射。将牙冠从咬合面切开并抛光。在潮湿条件下,使用带有纳米压痕的原子力显微镜测试弹性模量和硬度。
作者发现,牙本质和牙釉质的弹性模量或硬度均未呈现出显著的剂量反应关系。
纳米压痕是测定生物硬组织局部力学性能的常用技术。γ射线辐射是对拔除牙齿进行消毒的有效方法,同时可将牙本质和牙釉质力学性能的改变降至最低。