2,778
Views
30
CrossRef citations to date
0
Altmetric
Articles

Inflammation and (secondary) genotoxicity of Ni and NiO nanoparticles

, , , &
Pages 1060-1072 | Received 11 Nov 2018, Accepted 22 May 2019, Published online: 19 Jul 2019

References

  • Akerlund, E., F. Cappellini, S. Di Bucchianico, S. Islam, S. Skoglund, R. Derr, I. Odnevall Wallinder, G. Hendriks, and H. L. Karlsson. 2017. “Genotoxic and Mutagenic Properties of Ni and NiO Nanoparticles Investigated by Comet Assay, gamma-H2AX Staining, Hprt Mutation Assay and ToxTracker Reporter Cell Lines.” Environmental and Molecular Mutagenesis 59 (3): 211–222. doi:10.1002/em.22163.
  • Bai, K. J., K. J. Chuang, J. K. Chen, H. E. Hua, Y. L. Shen, W. N. Liao, C. H. Lee, et al. 2017. “Investigation into the Pulmonary Inflammopathology of Exposure to Nickel Oxide Nanoparticles in Mice.” Nanomedicine 14 (7): 2329–2339. doi:10.1016/j.nano.2017.10.003.
  • Barlow, P. G., A. Clouter-Baker, K. Donaldson, J. Maccallum, and V. Stone. 2005. “Carbon Black Nanoparticles Induce Type II Epithelial Cells to Release Chemotaxins for Alveolar Macrophages.” Particle and Fibre Toxicology 2 (1): 11. doi:10.1186/1743-8977-2-11.
  • Borm, P. J. A., P. Fowler, and D. Kirkland. 2018. “An Updated Review of the Genotoxicity of Respirable Crystalline Silica.” Particle and Fibre Toxicology 15 (1): 23. doi:10.1186/s12989-018-0259-z.
  • Cao, Z. W., Y. L. Fang, Y. H. Lu, F. H. Qian, Q. L. Ma, M. D. He, H. F. Pi, Z. P. Yu, and Z. Zhou. 2016. “Exposure to Nickel Oxide Nanoparticles Induces Pulmonary Inflammation through NLRP3 Inflammasome Activation in Rats.” International Journal of Nanomedicine 11: 3331–3346. doi:10.2147/IJN.S106912.
  • Capasso, L., M. Camatini, and M. Gualtieri. 2014. “Nickel Oxide Nanoparticles Induce Inflammation and Genotoxic Effect in Lung Epithelial Cells.” Toxicology Letters 226 (1): 28–34. doi:10.1016/j.toxlet.2014.01.040.
  • Catalán, J., K. M. Siivola, P. Nymark, H. Lindberg, S. Suhonen, H. Järventaus, A. J. Koivisto, et al. 2016. “In Vitro and in Vivo Genotoxic Effects of Straight versus Tangled Multi-Walled Carbon Nanotubes.” Nanotoxicology 10 (6): 794–806. doi:10.3109/17435390.2015.1132345.
  • Catalán, J., H. Stockmann-Juvala, and H. Norppa. 2017. “A Theoretical Approach for a Weighted Assessment of the Mutagenic Potential of Nanomaterials.” Nanotoxicology 11 (8): 964–977. doi:10.1080/17435390.2017.1382601.
  • Chesney, J., C. Metz, M. Bacher, T. Peng, A. Meinhardt, and R. Bucala. 1999. “An Essential Role for Macrophage Migration Inhibitory Factor (MIF) in Angiogenesis and the Growth of a Murine Lymphoma.” Molecular Medicine 5 (3): 181–191.
  • Cho, W. S., R. Duffin, M. Bradley, I. L. Megson, W. Macnee, S. E. Howie, and K. Donaldson. 2012. “NiO and Co3O4 Nanoparticles Induce Lung DTH-like Responses and Alveolar Lipoproteinosis”. The European Respiratory Journal 39 (3): 546–557. doi:10.1183/09031936.00047111.
  • Di Bucchianico, S., F. Cappellini, F. Le Bihanic, Y. N. Zhang, K. Dreij, and H. L. Karlsson. 2017. “Genotoxicity of TiO2 Nanoparticles Assessed by Mini-Gel Comet Assay and Micronucleus Scoring with Flow Cytometry.” Mutagenesis 32 (1): 127–137. doi:10.1093/mutage/gew030.
  • Di Bucchianico, S., A. R. Gliga, E. Akerlund, S. Skoglund, I. O. Wallinder, B. Fadeel, and H. L. Karlsson. 2018. “ Calcium-dependent Cyto- and Genotoxicity of Nickel Metal and Nickel Oxide Nanoparticles in Human Lung Cells .” Particle and Fibre Toxicology 15 (1): 32.doi:10.1186/s12989-018-0268-y.
  • Evans, S. J., M. J. Clift, N. Singh, J. de Oliveira Mallia, M. Burgum, J. W. Wills, T. S. Wilkinson, G. J. Jenkins, and S. H. Doak. 2017. “Critical Review of the Current and Future Challenges Associated with Advanced in Vitro Systems towards the Study of Nanoparticle (Secondary) Genotoxicity.” Mutagenesis 32 (1): 233–241. doi:10.1093/mutage/gew054.
  • Evans, S. J., M. J. Clift, N. Singh, J. W. Wills, N. Hondow, T. S. Wilkinson, M. J. Burgum, A. P. Brown, G. J. Jenkins, and S. H. Doak. 2019. “In Vitro Detection of in Vitro Secondary Mechanisms of Genotoxicity Induced by Engineered Nanomaterials.” Particle and Fibre Toxicology 16 (1): 8. doi:10.1186/s12989-019-0291-7.
  • Feghali, C. A., and T. M. Wright. 1997. “Cytokines in Acute and Chronic Inflammation.” Frontiers in Bioscience: A Journal and Virtual Library 2: d12–d26.
  • Ferrara, N., H. P. Gerber, and J. LeCouter. 2003. “The Biology of VEGF and Its Receptors.” Nature Medicine 9 (6): 669–676. doi:10.1038/nm0603-669.
  • Forman, H. J., and M. Torres. 2002. “Reactive Oxygen Species and Cell Signaling: Respiratory Burst in Macrophage Signaling.” American Journal of Respiratory and Critical Care Medicine 166 (Supplement_1): S4–S8. doi:10.1164/rccm.2206007.
  • Gillespie, P. A., G. S. Kang, A. Elder, R. Gelein, L. Chen, A. L. Moreira, J. Koberstein, K. M. Tchou-Wong, T. Gordon, and L. C. Chen. 2010. “Pulmonary Response after Exposure to Inhaled Nickel Hydroxide Nanoparticles: Short and Long-Term Studies in Mice.” Nanotoxicology 4 (1): 106–119. doi:10.3109/17435390903470101.
  • Green, S. J., L. F. Scheller, M. A. Marletta, M. C. Seguin, F. W. Klotz, M. Slayter, B. J. Nelson, and C. A. Nacy. 1994. “Nitric-Oxide – Cytokine-Regulation of Nitric-Oxide in Host-Resistance to Intracellular Pathogens.” Immunology Letters 43 (1–2): 87–94. doi:10.1016/0165-2478(94)00158-8.
  • IARC. 1990. IARC monographs on the evaluation of carcinogenic risks to humans.
  • IARC. 2012. “IARC monographs on nickel and nickel compounds”. 100C.
  • Kain, J., H. L. Karlsson, and L. Moller. 2012. “DNA Damage Induced by Micro- and Nanoparticles–Interaction with FPG Influences the Detection of DNA Oxidation in the Comet Assay.” Mutagenesis 27 (4): 491–500. doi:10.1093/mutage/ges010.
  • Kang, K., D. H. Lim, I. H. Choi, T. Kang, K. Lee, E. Y. Moon, Y. Yang, M. S. Lee, and J. S. Lim. 2011. “Vascular Tube Formation and Angiogenesis Induced by Polyvinylpyrrolidone-Coated Silver Nanoparticles.” Toxicology Letters 205 (3): 227–234. doi:10.1016/j.toxlet.2011.05.1033.
  • Kessler, R. 2011. “Engineered Nanoparticles in Consumer Products: Understanding a New Ingredient.” Environmental Health Perspectives 119 (3): a120–a125. doi:10.1289/ehp.119-a120.
  • Kim, I., S. O. Moon, S. H. Kim, H. J. Kim, Y. S. Koh, and G. Y. Koh. 2001. “Vascular Endothelial Growth Factor Expression of Intercellular Adhesion Molecule 1 (ICAM-1), Vascular Cell Adhesion Molecule 1 (VCAM-1), and E-Selectin through Nuclear Factor-Kappa B Activation in Endothelial Cells.” Journal of Biological Chemistry 276 (10): 7614–7620. doi:10.1074/jbc.M009705200.
  • Knaapen, A. M., P. J. Borm, C. Albrecht, and R. P. Schins. 2004. “Inhaled Particles and Lung Cancer. Part A: Mechanisms.” International Journal of Cancer 109 (6): 799–809. doi:10.1002/ijc.11708.
  • Latvala, S., J. Hedberg, S. Di Bucchianico, L. Moller, I. Odnevall Wallinder, K. Elihn, and H. L. Karlsson. 2016. “Nickel Release, ROS Generation and Toxicity of Ni and NiO Micro- and Nanoparticles.” PLoS One 11 (7): e0159684. doi:10.1371/journal.pone.0159684.
  • Li, J. X., G. Davidson, Y. Huang, B. H. Jiang, X. L. Shi, M. Costa, and C. S. Huang. 2004. “Nickel Compounds Act through Phosphatidylinositol-3-Kinase/Akt-Dependent, p70(S6k)-Independent Pathway to Induce Hypoxia Inducible Factor Transactivation and Cap43 Expression in Mouse Epidermal Cl41 Cells.” Cancer Research 64 (1): 94–101. doi:10.1158/0008-5472.CAN-03-0737.
  • Liberda, E. N., A. K. Cuevas, P. A. Gillespie, G. Grunig, Q. Qu, and L. C. Chen. 2010. “Exposure to Inhaled Nickel Nanoparticles Causes a Reduction in Number and Function of Bone Marrow Endothelial Progenitor Cells.” Inhalation Toxicology 22 (Sup2): 95–99. doi:10.3109/08958378.2010.515269.
  • Liu, L. Z., M. Ding, J. Z. Zheng, Y. X. Zhu, B. A. Fenderson, B. Y. Li, J. J. Yu, and B. H. Jiang. 2015. “Tungsten Carbide-Cobalt Nanoparticles Induce Reactive Oxygen Species, AKT, ERK, AP-1, NF-Kappa B, VEGF, and Angiogenesis.” Biological Trace Element Research 166 (1): 57–65. doi:10.1007/s12011-015-0331-6.
  • Magdolenova, Z., A. Collins, A. Kumar, A. Dhawan, V. Stone, and M. Dusinska. 2014. “Mechanisms of Genotoxicity. A Review of in Vitro and in Vivo Studies with Engineered Nanoparticles.” Nanotoxicology 8 (3): 233–278. doi:10.3109/17435390.2013.773464.
  • Marumo, T., V. B. Schini-Kerth, and R. Busse. 1999. “Vascular Endothelial Growth Factor Activates Nuclear Factor-kappaB and Induces Monocyte Chemoattractant Protein-1 in Bovine Retinal Endothelial Cells.” Diabetes 48 (5): 1131–1137. doi:10.2337/diabetes.48.5.1131.
  • M'Bemba-Meka, P., N. Lemieux, and S. K. Chakrabarti. 2005. “Nickel Compound-Induced DNA Single-Strand Breaks in Chromosomal and Nuclear Chromatin in Human Blood Lymphocytes in Vitro: Role of Oxidative Stress and Intracellular Calcium.” Mutation ResearchGenetic Toxicology and Environmental Mutagenesis 586: 124–137. doi:10.1016/j.mrgentox.2005.06.001.
  • Mitchell, R. A. 2004. “Mechanisms and Effectors of MIF-Dependent Promotion of Tumourigenesis.” Cellular Signalling 16 (1): 13–19. doi:10.1016/j.cellsig.2003.07.002.
  • Monaghan-Benson, E., and K. Burridge. 2009. “The Regulation of Vascular Endothelial Growth Factor-Induced Microvascular Permeability Requires Rac and Reactive Oxygen Species.” Journal of Biological Chemistry 284 (38): 25602–25611. doi:10.1074/jbc.M109.009894.
  • Morimoto, Y., A. Ogami, M. Todoroki, M. Yamamoto, M. Murakami, M. Hirohashi, T. Oyabu, et al. 2010. “Expression of Inflammation-Related Cytokines following Intratracheal Instillation of Nickel Oxide Nanoparticles.” Nanotoxicology 4 (2): 161–176. doi:10.3109/17435390903518479.
  • Murphy, F. A., A. Schinwald, C. A. Poland, and K. Donaldson. 2012. “The Mechanism of Pleural Inflammation by Long Carbon Nanotubes: Interaction of Long Fibres with Macrophages Stimulates Them to Amplify Pro-Inflammatory Responses in Mesothelial Cells.” Particle and Fibre Toxicology 9: 8. doi:10.1186/1743-8977-9-8.
  • Nishi, K., Y. Morimoto, A. Ogami, M. Murakami, T. Myojo, T. Oyabu, C. Kadoya, et al. 2009. “Expression of Cytokine-Induced Neutrophil Chemoattractant in Rat Lungs by Intratracheal Instillation of Nickel Oxide Nanoparticles.” Inhalation Toxicology 21 (12): 1030–1039. doi:10.1080/08958370802716722.
  • OECD. 2014. “Genotoxicity of Manufactured Nanomaterials: Report of the OECD Expert Meeting. Series on the Safety of Manufactured Nanomaterials. No. 43”.
  • Ouyang, W., J. X. Li, X. L. Shi, M. Costa, and C. S. Huang. 2005. “Essential Role of PI-3K, ERKs and Calcium Signal Pathways in Nickel-Induced VEGF Expression.” Molecular and Cellular Biochemistry 279 (1–2): 35–43. doi:10.1007/s11010-005-8214-3.
  • Paur, H. F., F. R. Cassee, J. Teeguarden, H. Fissan, S. Diabate, M. Aufderheide, W. Kreyling, et al. 2011. “In-Vitro Cell Exposure Studies for the Assessment of Nanoparticle Toxicity in the lung – A Dialog between Aerosol Science and Biology.” Journal of Aerosol Science 42 (10): 668–692. doi:10.1016/j.jaerosci.2011.06.005.
  • Pietruska, J. R., X. Y. Liu, A. Smith, K. McNeil, P. Weston, A. Zhitkovich, R. Hurt, and A. B. Kane. 2011. “Bioavailability, Intracellular Mobilization of Nickel, and HIF-1 Alpha Activation in Human Lung Epithelial Cells Exposed to Metallic Nickel and Nickel Oxide Nanoparticles.” Toxicological Sciences 124 (1): 138–148. doi:10.1093/toxsci/kfr206.
  • Priya, B. A., K. Senthilguru, T. Agarwal, S. N. Gautham Hari Narayana, S. Giri, K. Pramanik, K. Pal, I. Banerjee. 2015. “Nickel Doped Nanohydroxyapatite: Vascular Endothelial Growth Factor Inducing Biomaterial for Bone Tissue Engineering.” RSC Advances 5: 72515–72528. doi:10.1039/C5RA09560C.
  • Shaw, C. A., S. Robertson, M. R. Miller, R. Duffin, C. M. Tabor, K. Donaldson, D. E. Newby, and P. Hadoke. 2011. “Diesel Exhaust Particulate-Exposed Macrophages Cause Marked Endothelial Cell Activation.” American Journal of Respiratory Cell and Molecular Biology 44 (6): 840–851. doi:10.1165/rcmb.2010-0011OC.
  • Shweiki, D., A. Itin, D. Soffer, and E. Keshet. 1992. “Vascular Endothelial Growth-Factor Induced by Hypoxia May Mediate Hypoxia-Initiated Angiogenesis.” Nature 359 (6398): 843–845. doi:10.1038/359843a0.
  • Steinbrech, D. S., B. J. Mehrara, P. B. Saadeh, J. A. Greenwald, J. A. Spector, G. K. Gittes, and M. T. Longaker. 2000. “VEGF Expression in an Osteoblast-like Cell Line Is Regulated by a Hypoxia Response Mechanism.” American Journal of Physiology. Cell Physiology 278 (4): C853–C860. doi:10.1152/ajpcell.2000.278.4.C853.
  • Thannickal, V. J., and B. L. Fanburg. 2000. “Reactive Oxygen Species in Cell Signaling.” American Journal of Physiology-Lung Cellular and Molecular Physiology 279 (6): L1005–L1028. doi:10.1152/ajplung.2000.279.6.L1005.
  • van Berlo, D., A. Wessels, A. W. Boots, V. Wilhelmi, A. M. Scherbart, K. Gerloff, F. J. van Schooten, C. Albrecht, and R. P. Schins. 2010. “Neutrophil-Derived ROS Contribute to Oxidative DNA Damage Induction by Quartz Particles.” Free Radical Biology & Medicine 49: 1685–1693. doi:10.1016/j.freeradbiomed.2010.08.031.
  • Wang, X., Z. Ji, C. H. Chang, H. Zhang, M. Wang, Y. P. Liao, S. Lin, et al. 2014. “Use of Coated Silver Nanoparticles to Understand the Relationship of Particle Dissolution and Bioavailability to Cell and Lung Toxicological Potential.” Small 10 (2): 385–398. doi:10.1002/smll.201301597.
  • White, E. S., S. R. B. Strom, N. L. Wys, and D. A. Arenberg. 2001. “Non-Small Cell Lung Cancer Cells Induce Monocytes to Increase Expression of Angiogenic Activity.” The Journal of Immunology 166 (12): 7549–7555. doi:10.4049/jimmunol.166.12.7549.
  • Winner, M., A. C. Koong, B. E. Rendon, W. Zundel, and R. A. Mitchell. 2007. “Amplification of Tumor Hypoxic Responses by Macrophage Migration Inhibitory Factor-Dependent Hypoxia-Inducible Factor Stabilization.” Cancer Research 67 (1): 186–193. doi:10.1158/0008-5472.CAN-06-3292.