King Abdullah Institute for Nanotechnology, King Saud University, Riyadh-11451, Saudi Arabia.
Clin Chim Acta. 2010 Dec 14;411(23-24):1841-8. doi: 10.1016/j.cca.2010.08.016. Epub 2010 Aug 16.
Nanotechnology is rapidly growing with nanoparticles produced and utilized in a wide range of commercial products throughout the world. For example, silver nanoparticles (Ag NP) are used in electronics, bio-sensing, clothing, food industry, paints, sunscreens, cosmetics and medical devices. These broad applications, however, increase human exposure and thus the potential risk related to their short- and long-term toxicity. A large number of in vitro studies indicate that Ag NPs are toxic to the mammalian cells derived from skin, liver, lung, brain, vascular system and reproductive organs. Interestingly, some studies have shown that this particle has the potential to induce genes associated with cell cycle progression, DNA damage and apoptosis in human cells at non-cytotoxic doses. Furthermore, in vivo bio-distribution and toxicity studies in rats and mice have demonstrated that Ag NP administered by inhalation, ingestion or intra-peritoneal injection were subsequently detected in blood and caused toxicity in several organs including brain. Moreover, Ag NP exerted developmental and structural malformations in non-mammalian model organisms typically used to elucidate human disease and developmental abnormalities. The mechanisms for Ag NP induced toxicity include the effects of this particle on cell membranes, mitochondria and genetic material. This paper summarizes and critically assesses the current studies focusing on adverse effects of Ag NPs on human health.
纳米技术正在迅速发展,世界各地生产和使用的纳米颗粒广泛应用于各种商业产品。例如,银纳米颗粒(Ag NP)用于电子、生物传感、服装、食品工业、涂料、防晒霜、化妆品和医疗器械。然而,这些广泛的应用增加了人类的暴露,从而增加了与它们的短期和长期毒性相关的潜在风险。大量的体外研究表明,Ag NPs 对源自皮肤、肝脏、肺、大脑、血管系统和生殖器官的哺乳动物细胞具有毒性。有趣的是,一些研究表明,这种颗粒有可能在非细胞毒性剂量下诱导与人细胞周期进展、DNA 损伤和细胞凋亡相关的基因。此外,在大鼠和小鼠中的体内生物分布和毒性研究表明,通过吸入、摄入或腹腔内注射给予的 Ag NP 随后在血液中被检测到,并在包括大脑在内的几个器官中引起毒性。此外,Ag NP 在通常用于阐明人类疾病和发育异常的非哺乳动物模式生物中产生了发育和结构畸形。Ag NP 诱导毒性的机制包括该颗粒对细胞膜、线粒体和遗传物质的影响。本文总结并批判性评估了目前关注 Ag NP 对人类健康的不良影响的研究。