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新型磁性纳米颗粒对血管内皮细胞功能的体内外影响。

The effect of novel magnetic nanoparticles on vascular endothelial cell function in vitro and in vivo.

机构信息

Shandong Provincial Key Laboratory of Animal Cells and Developmental Biology, School of Life Science, Shandong University, Jinan 250100, China.

出版信息

J Hazard Mater. 2012 Oct 15;235-236:316-25. doi: 10.1016/j.jhazmat.2012.08.003. Epub 2012 Aug 7.

Abstract

Manufactured nanoparticles are currently used for many fields. However, their potential toxicity provides a growing concern for human health. In our previous study, we prepared novel magnetic nanoparticles (MNPs), which could effectively remove heavy metal ions and cationic dyes from aqueous solution. To understand its biocompatibility, we investigated the effect of the nanoparticles on the function of vascular endothelial cells. The results showed that the nanoparticles were taken up by human umbilical vein endothelial cells (HUVECs) and could inhibit cell proliferation at 400 μg/ml. An increase in nitric oxide (NO) production and endothelial nitric oxide synthase (eNOS) activity were induced, which companied with the decrease in caveolin-1 level. The endothelium in the aortic root was damaged and the NO level in serum was elevated after treated mice with 20mg/kg nanoparticles for 3 days, but it was integrated after treated with 5mg/kg nanoparticles. Meanwhile, an increase in eNOS activity and decrease in caveolin-1 level were induced in the endothelium. The data suggested that the low concentration of nanoparticles could not affect the function and viability of VECs. The high concentration of nanoparticles could inhibit VEC proliferation through elevation of the eNOS activity and NO production and thus present toxicity.

摘要

目前,人工合成纳米颗粒被广泛应用于多个领域。然而,其潜在的毒性也对人类健康构成了日益严重的威胁。在我们之前的研究中,我们制备了新型磁性纳米颗粒(MNPs),其可有效去除水溶液中的重金属离子和阳离子染料。为了探究其生物相容性,我们研究了纳米颗粒对血管内皮细胞功能的影响。结果表明,纳米颗粒可被人脐静脉内皮细胞(HUVECs)摄取,并在 400μg/ml 时抑制细胞增殖。同时,还可诱导一氧化氮(NO)生成和内皮型一氧化氮合酶(eNOS)活性增加,伴随小窝蛋白-1 水平降低。给予小鼠 20mg/kg 纳米颗粒处理 3 天后,主动脉根部的内皮受到损伤,血清中的 NO 水平升高,但给予 5mg/kg 纳米颗粒处理后得到了整合。此外,在处理后内皮细胞中 eNOS 活性增加,小窝蛋白-1 水平降低。上述结果表明,低浓度的纳米颗粒不会影响血管内皮细胞的功能和活力,而高浓度的纳米颗粒可能通过提高 eNOS 活性和 NO 生成来抑制 VEC 增殖,从而表现出毒性。

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