商用金属基纳米胶体。细胞毒性评价

J. Małaczewska, A. Siwicki
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引用次数: 3

摘要

摘要本研究采用MTT、NRU和LDH等常规比色法,研究了商品银、金、铜纳米胶体对两种已建立的细胞系(NIH/3T3和GMK)和原代鸡胚细胞培养物(CECC)的细胞毒性,初步探讨了被试物质的细胞毒性作用机制。MTT法检测线粒体活性,NRU法检测溶酶体损伤,LDH法检测细胞质膜损伤。NRU法被证明不适用于所测试的纳米胶体,很可能是由于纳米颗粒与中性红色染料的相互作用,影响了比色反应。MTT试验比LDH更敏感,因为一种物质的细胞间效应发生在细胞质膜永久性损伤之前。无论应用的细胞模型如何,银纳米胶体的细胞毒性最高,尽管其他两种金属也表现出一些细胞毒性作用,但金纳米胶体的毒性比铜纳米胶体更大。虽然鸡胚原代细胞培养作为一种比连续细胞系更能真实反映生物条件的模型,对毒性最大的银纳米胶体的耐受性没有提高,但在毒性较小的金和铜纳米胶体应用后,随着暴露时间的延长,其生长抑制有恢复的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Commercial Metal-Based Nanocolloids - Evaluation of Cytotoxicity
Abstract The purpose of the study was to determine the cytotoxicity of commercial silver, gold, and copper nanocolloids towards two established cell lines (NIH/3T3 and GMK) and primary chick embryo cell culture (CECC), using routine colorimetric assays: MTT, NRU, and LDH, which enable a preliminary evaluation of the mechanism of cytotoxic effect of the tested substances. The MTT assay evaluates the activity of mitochondria, NRU assay reveals the damage to lysosomes, while LDH assay shows injuries to the cytoplasmic membrane. The NRU assay proved to be non-applicable to the tested nanocolloids, most probably due to the interaction of nanoparticles with neutral red dye, which affected the colorimetric reaction. The MTT assay was more sensitive than LDH because the intercellular effect of a substance occurs before permanent damage to the cytoplasmic membrane. Silver nanocolloid was distinguished by the highest cytotoxicity, irrespective of the applied cell model, although the other two metals showed some cytotoxic effects as well, with gold nanocolloid being more toxic than copper one. Although the primary chick embryo cell culture, as a model reflecting more faithfully the conditions in a living organism than continuous cell lines, was undistinguished by elevated tolerance to the most toxic silver nanocolloid, it showed the tendency to recovery from the growth suppression with longer exposure after the application of less toxic gold and copper nanocolloids.
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