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MTT作为介孔硅微粒毒性测试剂的失败。

Failure of MTT as a toxicity testing agent for mesoporous silicon microparticles.

作者信息

Laaksonen Timo, Santos Hélder, Vihola Henna, Salonen Jarno, Riikonen Joakim, Heikkilä Teemu, Peltonen Leena, Kumar Narendra, Murzin Dmitry Yu, Lehto Vesa-Pekka, Hirvonen Jouni

机构信息

Division of Pharmaceutical Technology P.O. Box 56 (Viikinkaari 5 E), FI-00014 University of Helsinki, Finland.

出版信息

Chem Res Toxicol. 2007 Dec;20(12):1913-8. doi: 10.1021/tx700326b. Epub 2007 Nov 9.

DOI:10.1021/tx700326b
PMID:17990852
Abstract

In this work, it is shown that the common toxicity indicator, MTT (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide), will fail to predict the toxicity of porous silicon (PSi) microparticles. This is due to the spontaneous redox reactions where the MTT is reduced and the PSi particle surfaces are oxidized simultaneously. MTT was shown to even react with thermally oxidized and carbonized forms of PSi particles, although the treatment did give an enhanced protection against the unwanted reactions as compared to as-anodized PSi particles. The observed levels of cellular viability with the MTT assay were much higher than expected in the presence of Caco-2 cells, even considering the spontaneous reduction of MTT at PSi surfaces. The results indicate that the redox reaction is further enhanced inside living cells. Thus, we recommend that MTT should not be used to test the cytotoxicity of drug formulations containing PSi microparticles. The study also shows that since PSi particles are capable of reducing the MTT, they will also be able to reduce other species as well. This should be taken into account when considering future applications for the porous silicon particles. The completely oxidized SiO2 particles (MCM-41 and SBA-15) were shown to work as expected with the MTT assay and showed no inherent oxidation/reduction.

摘要

在这项工作中,研究表明常见的毒性指标MTT(3-[4,5-二甲基噻唑-2-基]-2,5-二苯基四氮唑溴盐)无法预测多孔硅(PSi)微粒的毒性。这是由于自发的氧化还原反应,在此反应中MTT被还原,同时PSi颗粒表面被氧化。结果表明MTT甚至会与热氧化和碳化形式的PSi颗粒发生反应,尽管与阳极氧化的PSi颗粒相比,这种处理确实增强了对不必要反应的防护。即使考虑到MTT在PSi表面的自发还原,在存在Caco-2细胞的情况下,MTT法测得的细胞活力水平仍远高于预期。结果表明氧化还原反应在活细胞内会进一步增强。因此,我们建议不应使用MTT来测试含有PSi微粒的药物制剂的细胞毒性。该研究还表明,由于PSi颗粒能够还原MTT,它们也能够还原其他物质。在考虑多孔硅颗粒未来的应用时应考虑到这一点。完全氧化的SiO2颗粒(MCM-41和SBA-15)在MTT法测试中表现如预期,且未显示出固有的氧化/还原反应。

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