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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Multi-walled carbon nanotube directed gene and protein expression in cultured human aortic endothelial cells is influenced by suspension medium.
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Multi-walled carbon nanotube directed gene and protein expression in cultured human aortic endothelial cells is influenced by suspension medium.

机译:悬浮介质影响培养的人主动脉内皮细胞中多壁碳纳米管定向基因和蛋白质的表达。

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摘要

The use and production of multi-walled carbon nanotubes (MWCNTs) have significantly increased over the last decade due to their versatility in numerous applications. Their unique physical and chemical properties make them desirable for various biomedical applications, but the same properties also raise concerns about their safety to human health, particularly at the cellular level. The vascular endothelium could be exposed to nanomaterials either by direct intravenous administration in nanomedicine or by translocation following inhalational exposure in an occupational setting. We hypothesized that direct exposure to MWCNTs will increase the expression of inflammatory markers in human aortic endothelial cells (HAEC). We also investigated the effect of the route of exposure on activation by changing the suspension medium of the MWCNTs. HAEC were treated in vitro with MWCNTs (1 or 10 μg/cm(2)) suspended in either cell culture medium [(M)-MWCNTs] or 10% clinical grade pulmonary surfactant [(S)-MWCNTs]. The zeta potential of the (S)-MWCNTs was significantly more negative than the (M)-MWCNTs suggesting a more stable suspension. Treatment of HAEC with (S)-MWCNTs; as compared to (M)-MWCNTs resulted in a significantly higher up-regulation of mRNA transcripts for cell adhesion molecules VCAM1, SELE, ICAM1 and the chemokine CCL2. Time dependent changes in VCAM1 and CCL2 protein levels were confirmed by immunofluorescence, flow cytometry and ELISA. A label free quantitative mass spectrometry proteomic analysis was utilized to compare protein expression patterns between the two suspensions of MWCNTs. We identified significant expression changes in >200 unique proteins in MWCNT treated HAEC. However, the two suspensions of MWCNTs resulted in different protein expression patterns with the eIF2 pathway as the only common pathway identified between the two suspensions. These data suggest that direct exposure to MWCNTs induces acute inflammatory and protein expression changes in HAEC, which is influenced by the type of media used for suspension of MWCNTs and their resulting zeta potential.
机译:在过去的十年中,由于多壁碳纳米管(MWCNT)在众多应用中的多功能性,其使用和生产已大大增加。它们独特的物理和化学性质使其成为各种生物医学应用的理想选择,但是相同的性质也引起了人们对其尤其是在细胞水平上对人体健康的安全性的担忧。可以通过在纳米药物中直接静脉内给药或在职业环境中通过吸入暴露后易位,使血管内皮暴露于纳米材料。我们假设直接暴露于MWCNTs将增加人类主动脉内皮细胞(HAEC)中炎症标志物的表达。我们还通过改变MWCNTs的悬浮介质,研究了暴露途径对活化的影响。用悬浮在细胞培养基[(M)-MWCNTs]或10%临床级肺表面活性剂[(S)-MWCNTs]中的MWCNT(1或10μg/ cm(2))体外处理HAEC。 (S)-MWCNTs的zeta电位明显比(M)-MWCNTs的负电位高,表明悬浮液更稳定。 (S)-MWCNTs处理HAEC;与(M)-MWCNTs相比,细胞粘附分子VCAM1,SELE,ICAM1和趋化因子CCL2的mRNA转录上调明显更高。 VCAM1和CCL2蛋白水平随时间的变化已通过免疫荧光,流式细胞仪和ELISA证实。利用无标记定量质谱蛋白质组学分析来比较两种MWCNT悬浮液之间的蛋白质表达模式。我们在MWCNT处理的HAEC中鉴定了> 200种独特蛋白质的显着表达变化。但是,两种MWCNT悬浮液产生了不同的蛋白质表达模式,其中eIF2途径是这两种悬浮液之间唯一的共同途径。这些数据表明直接暴露于MWCNTs会引起HAEC中的急性炎症和蛋白质表达变化,这受用于悬浮MWCNTs的介质类型及其产生的Zeta电位的影响。

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