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首页> 外文期刊>ScientificWorldJournal >Assessment of Cellular Responses after Short- and Long-Term Exposure to Silver Nanoparticles in Human Neuroblastoma (SH-SY5Y) and Astrocytoma (D384) Cells
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Assessment of Cellular Responses after Short- and Long-Term Exposure to Silver Nanoparticles in Human Neuroblastoma (SH-SY5Y) and Astrocytoma (D384) Cells

机译:在人神经母细胞瘤(SH-SY5Y)和星形细胞瘤(D384)细胞中短期和长期暴露于银纳米粒子后细胞反应的评估

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摘要

Silver nanoparticle (AgNP, 20 nm) neurotoxicity was evaluated by an integratedin vitrotesting protocol employing human cerebral (SH-SY5Y and D384) cell lines. Cellular response after short-term (4–48 h, 1–100 μg/ml) and prolonged exposure (up to 10 days, 0.5–50 μg/ml) to AgNP was assessed by MTT, calcein-AM/PI, clonogenic tests. Pulmonary A549 cells were employed for data comparison along with silver nitrate as metal ionic form.Short-term data: (i) AgNP produced dose- and time-dependent mitochondrial metabolism changes and cell membrane damage (effects starting at 25 μg/ml after 4 h: EC50swere 40.7 ± 2.0 and 49.5 ± 2.1 μg/ml for SH-SY5Y and D384, respectively). A549 were less vulnerable; (ii) AgNP doses of ≤ 18 μg/ml were noncytotoxic; (iii) AgNO3induced more pronounced effects compared to AgNP on cerebral cells.Long-term data: (i) low AgNP doses (≤1 μg/ml) compromised proliferative capacity of all cell types (cell sensibility: SHSY5Y > A549 > D384). Colony number decrease in SH-SY5Y and D384 was 50% and 25%, respectively, at 1 μg/ml, and lower dose (0.5 μg/ml) was significantly effective towards SH-SY5Y and pulmonary cells; (ii) cell proliferation activity was more affected by AgNO3than AgNPs. In summary, AgNP-induced cytotoxic effects after short-term and prolonged exposure (even at low doses) were evidenced regardless of cell model types.
机译:通过使用人体脑(SH-SY5Y和D384)细胞系的一体素玻璃器培养方案评估银纳米粒子(AGNP,20nm)神经毒性。短期(4-48小时,1-100μg/ ml)后的细胞反应和MTT,Calcein-AM / PI,克隆因试验评估对AGNP的延长暴露(最多10天,0.5-50μg/ ml) 。使用肺部A549细胞与硝酸银作为金属离子形式,使用硝酸银作为金属离子形式。(I)AGNP产生剂量和时间依赖性线粒体代谢变化和细胞膜损伤(在4后开始于25μg/ mL的效果H:SH-SY5Y和D384分别为49.5±2.0和49.5±2.1μg/ ml。 A549更脆弱; (ii)≤18μg/ ml的AgNP剂量是非胞间毒性的; (iii)与脑细胞上AgNP相比,AgNO 3诱导的更明显的效果。术语数据:(i)低AgNP剂量(≤1μg/ ml)损害了所有细胞类型的增殖能力(细胞敏感性:Shsy5Y> A549> D384)。 SH-SY5Y和D384的菌落数减少分别为50%,分别为25%,在1μg/ ml下,低剂量(0.5μg/ ml)对SH-SY5Y和肺部细胞显着有效; (ii)细胞增殖活性受到AgNo3 angnps的影响。总之,无论细胞模型类型如何,都证明了短期和长期暴露后的agnp诱导的细胞毒性效应(即使在低剂量下)。

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