高效且安全地内化磁性氧化铁纳米颗粒:生物医学应用的两个基本要求。
Efficient and safe internalization of magnetic iron oxide nanoparticles: two fundamental requirements for biomedical applications.
机构信息
Departamento de Biología, Universidad Autónoma de Madrid, Darwin 2, Cantoblanco, Madrid, Spain; IMDEA Nanociencia, Faraday, 9, Cantoblanco, Madrid, Spain.
Instituto de Ciencia de Materiales de Madrid, ICMM-CSIC, Sor Juana Inés de la Cruz 3, Cantoblanco, Madrid, Spain.
出版信息
Nanomedicine. 2014 May;10(4):733-43. doi: 10.1016/j.nano.2013.11.010. Epub 2013 Dec 10.
UNLABELLED
We have performed a series of in vitro tests proposed for the reliable assessment of safety associated with nanoparticles-cell interaction. A thorough analysis of toxicity of three different coating iron oxide nanoparticles on HeLa cells has been carried out including, methyl thiazol tetrazolium bromide (MTT) and Trypan blue exclusion tests, cell morphology observation by optical and Scanning Electron Microscopy (SEM), study of cytoskeletal components, analysis of cell cycle and the presence of reactive oxygen species (ROS). We have quantified magnetic nanoparticle internalization, determined possible indirect cell damages and related it to the nanoparticle coating. The results confirm a very low toxicity of the analyzed iron oxide nanoparticles into HeLa cells by multiple assays and pave the way for a more successful cancer diagnostic and treatment without secondary effects.
FROM THE CLINICAL EDITOR
In this paper, three different iron oxide nanoparticles are studied and compared from the standpoint of safety and toxicity in HeLa cells, demonstrating low toxicity for each preparation, and paving the way to potential future clinical applications.
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我们进行了一系列体外试验,旨在可靠评估与纳米颗粒-细胞相互作用相关的安全性。对三种不同涂层氧化铁纳米颗粒对 HeLa 细胞的毒性进行了彻底分析,包括甲基噻唑四唑溴盐 (MTT) 和台盼蓝排除试验、光学和扫描电子显微镜 (SEM) 观察细胞形态、细胞骨架成分分析、细胞周期分析和活性氧 (ROS) 分析。我们对磁性纳米颗粒的内化进行了量化,确定了可能的间接细胞损伤,并将其与纳米颗粒涂层相关联。结果通过多种检测方法证实了分析的氧化铁纳米颗粒在 HeLa 细胞中极低的毒性,为没有副作用的更成功的癌症诊断和治疗铺平了道路。
临床编辑按
在本文中,从 HeLa 细胞的安全性和毒性角度研究和比较了三种不同的氧化铁纳米颗粒,证明了每种制剂的低毒性,为未来可能的临床应用铺平了道路。