Interdisciplinary Research Centre, Laboratory of BioNanoColloids, K.U. Leuven - Campus Kortrijk, E. Sabbelaan 53, B-8500 Kortrijk, Belgium.
Nanomedicine (Lond). 2010 Oct;5(8):1261-75. doi: 10.2217/nnm.10.106.
The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of transplanting these cells into live animals and, for example, noninvasively monitoring their migration, is a hot topic in nanomedicine research. It is of crucial importance that cell-nanoparticle interactions are studied in depth in order to exclude any negative effects of the cell labeling procedure. To date, many disparate results can be found in the literature regarding nanoparticle toxicity due to the great versatility of different parameters investigated. In the present work, an overview is presented of different types of nanomaterials, focusing mostly on iron oxide nanoparticles, developed for biomedical research. The difficulties in assessing nanoparticle-mediated toxicity are discussed, an overview of some of the problems encountered using commercial (dextran-coated) iron oxide nanoparticles is presented, several key parameters are highlighted and novel methods suggested--emphasizing the importance of intracellular nanoparticle degradation and linking toxicity data to functional (i.e., cell-associated) nanoparticle levels, which could help to advance any progress in this highly important research topic.
用工程纳米粒子对干细胞或治疗细胞进行体外标记,目的是将这些细胞移植到活体动物体内,并例如非侵入性地监测它们的迁移,这是纳米医学研究中的一个热门话题。深入研究细胞-纳米粒子相互作用至关重要,以排除细胞标记过程的任何负面影响。迄今为止,由于所研究的不同参数的多样性,文献中可以找到许多关于纳米粒子毒性的不同结果。在本工作中,介绍了不同类型的纳米材料,主要集中在氧化铁纳米粒子上,这些纳米材料是为生物医学研究开发的。讨论了评估纳米粒子介导的毒性的困难,介绍了使用商业(葡聚糖涂层)氧化铁纳米粒子时遇到的一些问题的概述,强调了几个关键参数,并提出了新的方法--强调了细胞内纳米粒子降解的重要性,并将毒性数据与功能(即细胞相关)纳米粒子水平联系起来,这有助于在这个非常重要的研究课题上取得任何进展。