Environmental Health Science & Cancer Center, Tulane University, New Orleans, Louisiana 70112, USA.
J Toxicol Environ Health A. 2010;73(11):748-56. doi: 10.1080/15287391003614042.
Amorphous silica engineered nanoparticles (ENP) are used for drug delivery and food additive under current regulations. Although the adverse effects of amorphous silica ENP may be negligible, contamination by bacterium products may enhance the toxic potential of these so-called safe products. Lipopolysaccharide (LPS), an endotoxin component generated by gram-negative bacteria, is a potential contaminant of amorphous silica ENP due to its ubiquitous presence in the environment. The combined effects of amorphous silica ENP and LPS are therefore of particular concern. In this study, A549 cells were exposed to amorphous silica ENP in combination with LPS for comparison with the cells treated with ENP. Measurements of MTT assay and lactate dehydrogenase (LDH) activity indicated that the toxicity of amorphous silica ENP was low but co-treatment of the cells with LPS significantly enhanced this toxicity. Decreased cell viability and increased LDH activity release occurred earlier and at lower concentration levels in co-treated cells. Co-treatment of LPS with amorphous silica ENP might also enhance the increase in oxidative stress produced by amorphous silica ENP. However, there were no detectable changes in nitric oxide generation and 8-hydroxy-2-deoxy guanosine formation in the cells treated with either ENP or ENP plus LPS, indicating low effect on oxidative DNA damage. These results showed that LPS may enhance the oxidative stress induced by amorphous silica ENP to initiate cytotoxicity of these engineered nanoparticles.
无定形二氧化硅工程纳米颗粒(ENP)在现行法规下被用于药物输送和食品添加剂。虽然无定形二氧化硅 ENP 的不良反应可能可以忽略不计,但细菌产物的污染可能会增强这些所谓安全产品的潜在毒性。脂多糖(LPS),一种革兰氏阴性菌产生的内毒素成分,由于其在环境中的普遍存在,是无定形二氧化硅 ENP 的潜在污染物。因此,无定形二氧化硅 ENP 和 LPS 的联合效应尤其令人关注。在这项研究中,A549 细胞暴露于无定形二氧化硅 ENP 与 LPS 的混合物中,与单独用 ENP 处理的细胞进行比较。MTT 测定和乳酸脱氢酶(LDH)活性的测量表明,无定形二氧化硅 ENP 的毒性较低,但 LPS 的共同处理显著增强了这种毒性。在共同处理的细胞中,细胞活力下降和 LDH 活性释放更早且在更低的浓度水平发生。LPS 与无定形二氧化硅 ENP 的共同处理也可能增强无定形二氧化硅 ENP 产生的氧化应激增加。然而,在用 ENP 或 ENP 加 LPS 处理的细胞中,均未检测到一氧化氮生成和 8-羟基-2-脱氧鸟苷形成的变化,表明对氧化 DNA 损伤的影响较小。这些结果表明,LPS 可能会增强无定形二氧化硅 ENP 诱导的氧化应激,从而引发这些工程纳米颗粒的细胞毒性。