Molecular Mechanism of Silver Nanoparticles-Induced Human Osteoblast Cell Death: Protective Effect of Inducible Nitric Oxide Synthase Inhibitor

被引:49
作者
Zielinska, Ewelina [1 ]
Tukaj, Cecylia [2 ]
Radomski, Marek Witold [3 ,4 ]
Inkielewicz-Stepniak, Iwona [1 ]
机构
[1] Med Univ Gdansk, Dept Med Chem, Gdansk, Poland
[2] Med Univ Gdansk, Dept Electron Microscopy, Gdansk, Poland
[3] Univ Saskatchewan, Coll Med, Saskatoon, SK, Canada
[4] Kardiomed Silesia, Zabrze, Poland
关键词
OXIDATIVE STRESS; FUNCTIONAL-ROLE; APOPTOSIS; TOXICITY; BONE; CYTOTOXICITY; DIFFERENTIATION; EXPRESSION; AUTOPHAGY; ANTIBACTERIAL;
D O I
10.1371/journal.pone.0164137
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background Silver nanoparticles (AgNPs) show strong antibacterial properties, making them excellent candidates to be used in orthopaedic repair and regeneration. However, there are concerns regarding the cytotoxicity of AgNPs and molecular mechanisms underlying AgNPs-induced bone cells toxicity have not been elucidated. Therefore, the aim of our study was to explore mechanisms of AgNPs-induced osteoblast cell death with particular emphasis on the role of nitric oxide (NO) generated by inducible nitric oxide synthase (iNOS). Methods and Result Silver nanoparticles used in this study were 18.3+/-2.6 nm in size, uncoated, spherical, regular shape and their zeta potential was -29.1+/-2.4 mV as measured by transmission electron microscopy (TEM) and zetasizer. The release of silver (Ag) from AgNPs was measured in cell culture medium by atomic absorption spectroscopy (AAS). The exposure of human osteoblast cells (hFOB 1.19) to AgNPs at concentration of 30 or 60 mu g/mL for 24 or 48 hours, respectively resulted in cellular uptake of AgNPs and changes in cell ultrastructure. These changes were associated with apoptosis and necrosis as shown by flow cytometry and lactate dehydrogenase (LDH) assay as well as increased levels of pro-apoptotic Bax and decreased levels of anti-apoptotic Bcl-2 mRNA and protein. Importantly, we have found that AgNPs elevated the levels of nitric oxide (NO) with concomitant upregulation of inducible nitric oxide synthase (iNOS) mRNA and protein. A significant positive correlation was observed between the concentration of AgNPs and iNOS at protein and mRNA level (r = 0.837, r = 0.721, respectively; p< 0.001). Finally, preincubation of osteoblast cells with N-iminoethyl-L-lysine (L-NIL), a selective iNOS inhibitor, as well as treating cells with iNOS small interfering RNAs (siRNA) significantly attenuated AgNPs-induced apoptosis and necrosis. Moreover, we have found that AgNPs-induced cells death is not related to Ag dissolution is cell culture medium. Conclusion These results unambiguously demonstrate that increased expression of iNOS and generation of NO as well as NO-derived reactive species is involved in AgNPs-induced osteoblast cell death. Our findings may help in development of new strategies to protect bone from AgNPs-induced cytotoxicity and increase the safety of orthopaedic tissue repair.
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页数:25
相关论文
共 77 条
[1]   Silver nanoparticles induced heat shock protein 70, oxidative stress and apoptosis in Drosophila melanogaster [J].
Ahamed, Maqusood ;
Posgai, Ryan ;
Gorey, Timothy J. ;
Nielsen, Mark ;
Hussain, Saber M. ;
Rowe, John J. .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 2010, 242 (03) :263-269
[2]   In vitro cytotoxicity of silver nanoparticles on osteoblasts and osteoclasts at antibacterial concentrations [J].
Albers, Christoph E. ;
Hofstetter, Wilhelm ;
Siebenrock, Klaus A. ;
Landmann, Regine ;
Klenke, Frank M. .
NANOTOXICOLOGY, 2013, 7 (01) :30-36
[3]   Toxicity of silver nanoparticles-Nanoparticle or silver ion? [J].
Beer, Christiane ;
Foldbjerg, Rasmus ;
Hayashi, Yuya ;
Sutherland, Duncan S. ;
Autrup, Herman .
TOXICOLOGY LETTERS, 2012, 208 (03) :286-292
[4]   Inhibition of inducible nitric oxide synthase prevents lipid peroxidation in osteoarthritic chondrocytes [J].
Bentz, Mireille ;
Zaouter, Charlotte ;
Shi, Qin ;
Fahmi, Hassan ;
Moldovan, Florina ;
Fernandes, Julio C. ;
Benderdour, Mohamed .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2012, 113 (07) :2256-2267
[5]   RETRACTED: Nuclear localization of HIV-1 tat functionalized gold nanoparticles (Retracted Article) [J].
Berry, C. C. ;
de la Fuente, J. M. ;
Mullin, M. ;
Chu, S. Wai Ling ;
Curtis, A. S. G. .
IEEE TRANSACTIONS ON NANOBIOSCIENCE, 2007, 6 (04) :262-269
[6]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[7]   Nitric oxide (NO):: an effector of apoptosis [J].
Brüne, B ;
von Knethen, A ;
Sandau, KB .
CELL DEATH AND DIFFERENTIATION, 1999, 6 (10) :969-975
[8]   Nitric oxide protects osteoblasts from oxidative stress-induced apoptotic insults via a mitochondria-dependent mechanism [J].
Chang, Chia-Chen ;
Liao, Yi-Shyan ;
Lin, Yi-Ling ;
Chen, Ruei-Ming .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2006, 24 (10) :1917-1925
[9]   Molecular mechanism of nitric oxide-induced osteoblast apoptosis [J].
Chen, RM ;
Chen, TL ;
Chiu, WT ;
Chang, CC .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2005, 23 (02) :462-468
[10]   Nitric oxide induces osteoblast apoptosis through the de novo synthesis of Bax protein [J].
Chen, RM ;
Liu, HC ;
Lin, YL ;
Jean, WC ;
Chen, JS ;
Wang, JH .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2002, 20 (02) :295-302