Schmalz G
Department of Operative Dentistry and Periodontology, University of Regensburg, Germany.
Clin Oral Investig. 1997 Dec;1(4):154-62. doi: 10.1007/s007840050027.
Due to the diversity of adverse biological effects which might be caused by dental restorative materials, biocompatibility assessment cannot rely on a single test but has to be based on a planned and structured approach (concept). First, the possible harm evoked by the material, the known data, and suitable biological and other test methods available must be taken into consideration. Modern regulatory concepts require for this purpose the services of experts to propose the appropriate set of required tests for a given material. The use of standards is generally emphasized because of better comparability of the data. Other tests may be chosen if more appropriate. Modern scientific concepts of biocompatibility testing are based on the need for rapid and cost-effective test methods, avoiding animal tests whenever possible. While formerly in vitro experiments did not take into account the special clinical situation in which the material would be used, modern concepts try to simulate important parameters of the in vivo situation as closely as possible. This may be achieved, for example, by including suitable barriers between the material and the target cells, by constructing appropriate target cells, and by choosing clinically relevant markers for measuring the biological effects caused by the material. There are indications so far that through this approach the number of animal tests can be reduced. The use of these methods may also lead to a better understanding of the mechanisms behind the biological reactions (mechanistic approach) in describing the biocompatibility of dental restorative materials.
由于牙科修复材料可能会引发多种不良生物学效应,生物相容性评估不能依赖单一测试,而必须基于一种有计划、有结构的方法(概念)。首先,必须考虑材料可能造成的危害、已知数据以及可用的合适生物学和其他测试方法。为此,现代监管概念要求专家提供服务,为给定材料提出一套适当的所需测试。由于数据具有更好的可比性,通常强调使用标准。如果更合适,也可以选择其他测试。现代生物相容性测试的科学概念基于对快速且经济高效的测试方法的需求,尽可能避免动物试验。以前体外实验没有考虑材料使用的特殊临床情况,而现代概念则试图尽可能紧密地模拟体内情况的重要参数。例如,这可以通过在材料和靶细胞之间设置合适的屏障、构建合适的靶细胞以及选择临床相关标记物来测量材料引起的生物学效应来实现。到目前为止,有迹象表明通过这种方法可以减少动物试验的数量。在描述牙科修复材料的生物相容性时,使用这些方法也可能有助于更好地理解生物反应背后的机制(机制方法)。