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BJ人成纤维细胞系中银纳米颗粒效应及细胞摄取的拉曼成像研究

Raman imaging of cellular uptake and studies of silver nanoparticles effect in BJ human fibroblasts cell lines.

作者信息

Harvanova Monika Perlovska, Jiravova Jana, Malohlava Jakub, Tomankova Katerina Barton, Jirova Dagmar, Kolarova Hana

机构信息

Department of Medical Biophysics, Institute of Molecular and Translational Medicine, Faculty of Medicine and Dentistry, Palacky University in Olomouc, Czech Republic.

Center of Toxicology and Health Safety, National Institute of Public Health, Prague, Czech republic, Czech republic.

出版信息

Int J Pharm. 2017 Aug 7;528(1-2):280-286. doi: 10.1016/j.ijpharm.2017.05.076. Epub 2017 Jun 7.

Abstract

Silver nanoparticles (AgNPs) have been widely studied for their beneficial antimicrobial effect and have been considered by some to be a safe ingredient, as penetration of metal nanoparticles through the skin in vivo has not been proven. However, AgNPs are becoming a commonly applied nanomaterial for surface modifications of medical products which come into contact with damaged skin. In our experiments, we tested two commercially available AgNPs samples manufactured by electrolysis. AFM was used to characterize tested AgNPs morphology and their mean particle size which was assessed as 30.6nm and 20.4nm. An important mechanism of AgNPs cytotoxicity is generation of reactive oxygen species (ROS), chemically reactive species containing oxygen. Although ROS occur in cell metabolism naturally, their overproduction can induce oxidative stress - imbalance between production and antioxidant defenses. This can be associated with cytotoxicity and DNA damage. Conventional in vitro tests were used to evaluate the cytotoxic potential and DNA damage in BJ human fibroblasts cell lines. We found that both tested AgNPs samples induced ROS generation and caused the DNA damage in fibroblasts. One of the key concerns about the association with cytotoxic or genotoxic responses of nanoparticles is the capability of these materials to penetrate through cellular membrane. Cellular uptake studies were performed using Raman imaging as a label-free microscopic technique. In combination with a univariate image analysis, results demonstrate cellular uptake and distribution of the AgNPs which were taken up by BJ cells within 24h of incubation in a growth medium. The study demonstrates the potential of Raman imaging to unambiguously identify and localize AgNPs in fixed cells.

摘要

银纳米颗粒(AgNPs)因其有益的抗菌作用而受到广泛研究,并且被一些人认为是一种安全成分,因为金属纳米颗粒在体内穿透皮肤的情况尚未得到证实。然而,AgNPs正成为一种常用于与受损皮肤接触的医疗产品表面改性的纳米材料。在我们的实验中,我们测试了两种通过电解制造的市售AgNPs样品。原子力显微镜(AFM)用于表征测试的AgNPs形态及其平均粒径,评估结果分别为30.6nm和20.4nm。AgNPs细胞毒性的一个重要机制是活性氧(ROS)的产生,ROS是含氧的化学反应性物质。虽然ROS在细胞代谢中自然存在,但其过量产生会诱导氧化应激——产生与抗氧化防御之间的失衡。这可能与细胞毒性和DNA损伤有关。使用传统的体外试验来评估BJ人成纤维细胞系中的细胞毒性潜力和DNA损伤。我们发现,两种测试的AgNPs样品均诱导了ROS的产生,并导致成纤维细胞中的DNA损伤。关于纳米颗粒与细胞毒性或基因毒性反应之间关联的一个关键问题是这些材料穿透细胞膜的能力。使用拉曼成像作为无标记显微镜技术进行了细胞摄取研究。结合单变量图像分析,结果证明了在生长培养基中孵育24小时内BJ细胞摄取了AgNPs,并显示了其细胞摄取和分布情况。该研究证明了拉曼成像在明确识别和定位固定细胞中AgNPs方面的潜力。

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