Titanium dioxide nanoparticles induce endothelial cell apoptosis via cell membrane oxidative damage and p38, PI3K/Akt, NF-κB signaling pathways modulation

被引:46
作者
Gholinejad, Zafar [1 ]
Ansari, Mohammad Hasan Khadem [1 ]
Rasmi, Yousef [1 ,2 ]
机构
[1] Urmia Univ Med Sci, Fac Med, Dept Biochem, Orumiyeh, Iran
[2] Urmia Univ Med Sci, Cellular & Mol Res Ctr, Orumiyeh, Iran
关键词
Titanium dioxide nanoparticles; Endothelial cell; Apoptosis; Cell membrane; Oxidative stress; Signaling pathways; NITRIC-OXIDE SYNTHASE; TIO2; NANOPARTICLES; IN-VITRO; ACTIVATION; STRESS; TOXICITY; DYSFUNCTION; MECHANISMS; MODEL;
D O I
10.1016/j.jtemb.2019.03.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Titanium dioxide nanoparticles (TiO2 NPs) are widely used nanoparticles. Despite, several studies investigated the toxic effects of TiO2 NPs on HUVECs, the results are contradictory and the possible underlying mechanisms remain unclear. Methods: In the present study, we conducted an in vitro study to re-evaluate the possible toxic effects of TiO2 NPs on HUVECs including cell viability, lipids peroxidation, intracellular signaling pathways and nitric oxide syntheses enzymes. Results: Our results demonstrated that, TiO2 NPs were internalized to HUVECs and induce intracellular reactive oxygen species production and cell membrane oxidative damage at the higher concentration. TiO2 NPs induce IKK alpha/beta and Akt phosphorylation and p38 dephosphorylation. After 24 h treatment, pro-inflammatory cytokines, adhesion molecules and chemokine upregulated significantly. TiO2 NPs have no significant effects on eNOS enzymatic activation and iNOS gene expression. At cellular level, apoptosis is the main process that occur in response to TiO2 NPs treatment. HUVECs pretreatment with N-acetyl-c-cysteine (NAC) ameliorate the toxic effects of TiO2 NPs that indicate the oxidative stress is essential in TiO2 NPs -induced toxicity. Total antioxidant capacity show a trend to increase in response to TiO2 NPs exposure. Conclusions: Taken together, this study confirmed the effects of TiO2 NPs on endothelial cells and proposed multiple underlying mechanisms including cell membrane oxidative damage and intracellular processes.
引用
收藏
页码:27 / 35
页数:9
相关论文
共 49 条
[1]   Activation of endothelial nitric-oxide synthase by the p38 MAPK in response to black tea polyphenols [J].
Anter, E ;
Thomas, SR ;
Schulz, E ;
Shapira, OM ;
Vita, JA ;
Keaney, JF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (45) :46637-46643
[2]   Lipid Peroxidation: Production, Metabolism, and Signaling Mechanisms of Malondialdehyde and 4-Hydroxy-2-Nonenal [J].
Ayala, Antonio ;
Munoz, Mario F. ;
Argueelles, Sandro .
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2014, 2014
[3]   Mechanisms of Nanoparticle Internalization and Transport Across an Intestinal Epithelial Cell Model: Effect of Size and Surface Charge [J].
Bannunah, Azzah M. ;
Vllasaliu, Driton ;
Lord, Jennie ;
Stolnik, Snjezana .
MOLECULAR PHARMACEUTICS, 2014, 11 (12) :4363-4373
[4]   Vascular toxicity of ultra-small TiO2 nanoparticles and single walled carbon nanotubes in vitro and in vivo [J].
Bayat, Narges ;
Lopes, Viviana R. ;
Schoelermann, Julia ;
Jensen, Lasse Dahl ;
Cristobal, Susana .
BIOMATERIALS, 2015, 63 :1-13
[5]   The ferric reducing ability of plasma (FRAP) as a measure of ''antioxidant power'': The FRAP assay [J].
Benzie, IFF ;
Strain, JJ .
ANALYTICAL BIOCHEMISTRY, 1996, 239 (01) :70-76
[6]   Superparamagnetic iron oxide nanoparticles change endothelial cell morphology and mechanics via reactive oxygen species formation [J].
Buyukhatipoglu, Kivilcim ;
Clyne, Alisa Morss .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2011, 96A (01) :186-195
[7]   The use of human umbilical vein endothelial cells (HUVECs) as an in vitro model to assess the toxicity of nanoparticles to endothelium: a review [J].
Cao, Yi ;
Gong, Yu ;
Liu, Liangliang ;
Zhou, Yiwei ;
Fang, Xin ;
Zhang, Cao ;
Li, Yining ;
Li, Juan .
JOURNAL OF APPLIED TOXICOLOGY, 2017, 37 (12) :1359-1369
[8]   Epigenetic basis for the transcriptional hyporesponsiveness of the human inducible nitric oxide synthase gene in vascular endothelial cells [J].
Chan, GC ;
Fish, JE ;
Mawji, IA ;
Leung, DD ;
Rachlis, AC ;
Marsden, PA .
JOURNAL OF IMMUNOLOGY, 2005, 175 (06) :3846-3861
[9]   Metal Nanoparticles as Heterogeneous Fenton Catalysts [J].
Dhakshinamoorthy, Amarajothi ;
Navalon, Sergio ;
Alvaro, Mercedes ;
Garcia, Hermenegildo .
CHEMSUSCHEM, 2012, 5 (01) :46-64
[10]   Activation of nitric oxide synthase in endothelial cells by Akt-dependent phosphorylation [J].
Dimmeler, S ;
Fleming, I ;
Fisslthaler, B ;
Hermann, C ;
Busse, R ;
Zeiher, AM .
NATURE, 1999, 399 (6736) :601-605