Simon Marina, Saez Gladys, Muggiolu Giovanna, Lavenas Magali, Le Trequesser Quentin, Michelet Claire, Devès Guillaume, Barberet Philippe, Chevet Eric, Dupuy Denis, Delville Marie-Hélène, Seznec Hervé
a Centre d'Etudes Nucléaires Bordeaux Gradignan (CENBG), Université de Bordeaux , Gradignan , France.
b CNRS, UMR5797, Centre d'Etudes Nucléaires Bordeaux Gradignan (CENBG) , Gradignan , France.
Nanotoxicology. 2017 Feb;11(1):134-145. doi: 10.1080/17435390.2017.1278803.
Although titanium dioxide nanoparticles (TiO NPs) have been extensively studied, their possible impact on health due to their specific properties supported by their size and geometry, remains to be fully characterized to support risk assessment. To further document NPs biological effects, we investigated the impact of TiO NPs morphology on biological outcomes. To this end, TiO NPs were synthesized as nanoneedles (NNs), titanate scrolled nanosheets (TNs), gel-sol-based isotropic nanoparticles (INPs) and tested for perturbation of cellular homeostasis (cellular ion content, cell proliferation, stress pathways) in three cell types and compared to the P25. We showed that TiO NPs were internalized at various degrees and their toxicity depended on both titanium content and NPs shape, which impacted on intracellular calcium homeostasis thereby leading to endoplasmic reticulum stress. Finally, we showed that a minimal intracellular content of TiO NPs was mandatory to induce toxicity enlightening once more the crucial notion of internalized dose threshold beside the well-recognized dose of exposure.
尽管二氧化钛纳米颗粒(TiO NPs)已得到广泛研究,但由于其尺寸和几何形状所赋予的特定性质,它们对健康可能产生的影响仍有待充分表征,以支持风险评估。为了进一步记录纳米颗粒的生物学效应,我们研究了TiO NPs形态对生物学结果的影响。为此,将TiO NPs合成纳米针(NNs)、钛酸盐卷曲纳米片(TNs)、基于凝胶 - 溶胶的各向同性纳米颗粒(INPs),并在三种细胞类型中测试其对细胞内稳态(细胞离子含量、细胞增殖、应激途径)的扰动,并与P25进行比较。我们发现TiO NPs以不同程度被内化,其毒性取决于钛含量和纳米颗粒形状,这会影响细胞内钙稳态,从而导致内质网应激。最后,我们表明,TiO NPs的最低细胞内含量是诱导毒性所必需的,这再次揭示了除了公认的暴露剂量之外,内化剂量阈值这一关键概念。