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Proteomic analyses of early response of unicellular eukaryotic microorganism Tetrahymena thermophila exposed to TiO2 particles.

机译:暴露于TiO2颗粒的单细胞真核微生物嗜热四膜虫的早期反应的蛋白质组学分析。

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摘要

Key biological functions involved in cell survival have been studied to understand the difference between the impact of exposure to TiO2 nanoparticles (TiO2-NPs) and their bulk counterparts (bulk-TiO2). By selecting a unicellular eukaryotic model organism and applying proteomic analysis an overview of the possible impact of exposure could be obtained. In this study, we investigated the early response of unicellular eukaryotic protozoan Tetrahymena thermophila exposed to TiO2-NPs or bulk-TiO2 particles at subtoxic concentrations for this organism. The proteomic analysis based on 2DE + nLC-ESI-MS/MS revealed 930 distinct protein spots, among which 77 were differentially expressed and 18 were unambiguously identified. We identified alterations in metabolic pathways, including lipid and fatty acid metabolism, purine metabolism and energetic metabolism, as well as salt stress and protein degradation. This proteomic study is consistent with our previous findings, where the early response of T. thermophila to subtoxic concentrations of TiO2 particles included alterations in lipid and fatty acid metabolism and ion regulation. The response to the lowest TiO2-NPs concentration differed significantly from the response to higher TiO2-NPs concentration and both bulk-TiO2concentrations. Alterations on the physiological landscape were significant after exposure to both nano- and bulk-TiO2; however, no toxic effects were evidenced even at very high exposure concentrations. This study confirms the relevance of the alteration of the lipid profile and lipid metabolism in understanding the early impact of TiO2-NPs in eukaryotic cells, for example, phagocytosing cells like macrophages and ciliated cells in the respiratory epithelium.
机译:已经研究了涉及细胞存活的关键生物学功能,以了解暴露于TiO2纳米颗粒(TiO2-NPs)与它们的大部分对应物(本体-TiO2)之间的影响之间的差异。通过选择单细胞真核生物模型并应用蛋白质组学分析,可以获得有关暴露可能影响的概述。在这项研究中,我们调查了该生物体在亚毒性浓度下暴露于TiO2-NP或散装TiO2颗粒的单细胞真核原生动物嗜热四膜膜虫的早期反应。基于2DE + + nLC-ESI-MS / MS的蛋白质组学分析显示了930个不同的蛋白斑点,其中77个差异表达,明确鉴定出18个。我们确定了代谢途径的变化,包括脂质和脂肪酸代谢,嘌呤代谢和能量代谢,以及盐胁迫和蛋白质降解。这项蛋白质组学研究与我们之前的发现一致,嗜热嗜热丝菌对TiO2颗粒亚毒性浓度的早期反应包括脂质和脂肪酸代谢以及离子调节的改变。对最低的TiO2-NPs浓度的响应与对较高的TiO2-NPs浓度和整体TiO2浓度的响应明显不同。纳米和本体二氧化钛暴露后,生理景观发生了显着变化。但是,即使在非常高的暴露浓度下也没有发现毒性作用。这项研究证实了脂质分布和脂质代谢的改变与理解TiO2-NPs对真核细胞(例如吞噬细胞,如巨噬细胞和呼吸道上皮的纤毛细胞)的早期影响的相关性。

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