Yamamoto A, Honma R, Tanaka A, Sumita M
National Research Institute for Metals, Science and Technology Agency, 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan. akikoya@nrim
J Biomed Mater Res. 1999 Dec 5;47(3):396-403. doi: 10.1002/(sici)1097-4636(19991205)47:3<396::aid-jbm15>3.0.co;2-r.
Systematic cytotoxicity evaluation of various metallic elements may contribute to the development of new metallic biomaterials with superior biocompatibility. It is generally reported that the cytotoxicity of a chemical differs with cell lines. However, our previous study revealed a high correlation in the cytotoxicity of 43 metal salts between two murine cell lines. If there is any generic tendency toward metal salt cytotoxicity for many kinds of cells, that information is helpful for the determination of the chemical composition of new metallic biomaterials that are expected to have lower cytotoxicity. In this study, the cytotoxicity of 12 metal salts was evaluated using four cell lines, and the results were compared, including those for two other cell lines obtained in our previous study. A metal salt concentration that reduced cell viability to 50% of that without any metal salt (IC(50)) was used as an index to compare the metal salt cytotoxicity between cell lines. The correlation was statistically proved by the IC(50)s of 12 metal salts among these cell lines (p < 0.01), suggesting the existence of a generic tendency to metal salt cytotoxicity beyond cell lines. The metal salt order of toxicity from the highest was K(2)Cr(2)O(7), AgNO(3), VCl(3), SbCl(3), CuCl(2), CoCl(2), NiCl(2), ZnCl(2), Cr(NO(3))(3), FeCl(3), TiCl(4), and Al(NO(3))(3). The sensitivity for metal salt cytotoxicity differed with cell lines; IMR-32 had the highest sensitivity among the six cell lines.
对各种金属元素进行系统的细胞毒性评估可能有助于开发具有卓越生物相容性的新型金属生物材料。一般报道称,一种化学物质的细胞毒性因细胞系而异。然而,我们之前的研究表明,43种金属盐在两种小鼠细胞系之间的细胞毒性具有高度相关性。如果对于多种细胞的金属盐细胞毒性存在任何普遍趋势,那么该信息将有助于确定预期具有较低细胞毒性的新型金属生物材料的化学成分。在本研究中,使用四种细胞系评估了12种金属盐的细胞毒性,并对结果进行了比较,包括我们之前研究中获得的另外两种细胞系的结果。将使细胞活力降低至无任何金属盐时的50%的金属盐浓度(IC(50))用作比较细胞系之间金属盐细胞毒性的指标。这些细胞系中12种金属盐的IC(50)在统计学上证明了相关性(p < 0.01),表明存在超越细胞系的金属盐细胞毒性的普遍趋势。毒性从高到低的金属盐顺序为K(2)Cr(2)O(7)、AgNO(3)、VCl(3)、SbCl(3)、CuCl(2)、CoCl(2)、NiCl(2)、ZnCl(2)、Cr(NO(3))(3)、FeCl(3)、TiCl(4)和Al(NO(3))(3)。细胞系对金属盐细胞毒性的敏感性不同;IMR - 32在六种细胞系中具有最高的敏感性。