339
Views
9
CrossRef citations to date
0
Altmetric
Original Article

Low-dose AgNPs reduce lung mechanical function and innate immune defense in the absence of cellular toxicity

, , , , , , , , , , & show all
Pages 118-127 | Received 13 Aug 2014, Accepted 31 Mar 2015, Published online: 07 Jul 2015

References

  • Allen G, Bates J. 2004. Dynamic mechanical consequences of deep inflation in mice depend on type and degree of lung injury. J Appl Physiol 96:293–300
  • Andreeva AV, Kutuzov MA, Voyno-Yasenetskaya TA. 2007. Regulation of surfactant secretion in alveolar type II cells. Am J Respir Cell Mol Biol 293:L259–71
  • Asharani PV, Low Kah Mun G, Hande MP, Valiyaveettil S. 2008. Cytotoxicity and genotoxicity of silver nanoparticles in human cells. ACS Nano 3:279–90
  • Atochina-Vasserman EN, Gow AJ, Abramova H, Guo CJ, Tomer Y, Preston AM, et al. 2009. Immune reconstitution during Pneumocystis lung infection: disruption of surfactant component expression and function by S-nitrosylation. J Immunol 182:2277–87
  • Bakshi MS, Zhao L, Smith R, Possmayer F, Petersen NO. 2008. Metal nanoparticle pollutants interfere with pulmonary surfactant function in vitro. Biophys J 94:855–68
  • Bates JH, Allen GB. 2006. The estimation of lung mechanics parameters in the presence of pathology: a theoretical analysis. Ann Biomed Eng 34:384–92
  • Bligh EG, Dyer WJ. 1959. A rapid method of total lipid extraction and purification. Can J Biochem Physiol 37:911–17
  • Bouwmeester H, Poortman J, Peters RJ, Wijma E, Kramer E, Makama S, et al. 2011. Characterization of translocation of silver nanoparticles and effects on whole-genome gene expression using an in vitro intestinal epithelium coculture model. ACS Nano 5:4091–103
  • Casey J, Kaplan J, Atochina-Vasserman EN, Gow AJ, Kadire H, Tomer Y, et al. 2005. Alveolar surfactant protein D content modulates bleomycin-induced lung injury. Am J Respir Crit Care Med 172:869–77
  • Clement JL, Jarrett PS. 1994. Antibacterial silver. Metal-Based Drugs 1:467–82
  • Demokritou P, Gass S, Pyrgiotakis G, Cohen JM, Goldsmith W, Mckinney W, et al. 2013. An in vivo and in vitro toxicological characterisation of realistic nanoscale CeO2 inhalation exposures. Nanotoxicology 7:1338–50
  • Dhaliwal K, Scholefield E, Ferenbach D, Gibbons M, Duffin R, Dorward DA, et al. 2012. Monocytes control second-phase neutrophil emigration in established lipopolysaccharide-induced murine lung injury. Am J Resp Crit Care 186:514–24
  • Dhar P, Eck E, Israelachvili J, Lee D, Min Y, Ramachandran A, et al. 2012. Lipid–protein interactions alter line tensions and domain size distributions in lung surfactant monolayers. Biophys J 102:56–65
  • Ding N, Kunugita N, Ichinose T, Song Y, Yokoyama M, Arashidani K, Yoshida Y. 2011. Intratracheal administration of fullerene nanoparticles activates splenic CD11b+ cells. J Hazard Mater 194:324–30
  • Foldbjerg R, Dang D, Autrup H. 2011. Cytotoxicity and genotoxicity of silver nanoparticles in the human lung cancer cell line, A549. Arch Toxicol 85:743–50
  • Groves AM, Gow AJ, Massa CB, Hall L, Laskin JD, Laskin DL. 2013. Age-related increases in ozone-induced injury and altered pulmonary mechanics in mice with progressive lung inflammation. Am J Physiol Lung Cell Mol Physiol 305:L555–68
  • Groves AM, Gow AJ, Massa CB, Laskin JD, Laskin DL. 2012. Prolonged injury and altered lung function after ozone inhalation in mice with chronic lung inflammation. Am J Respir Cell Mol Biol 47:776–83
  • Leo BF, Chen S, Kyo Y, Herpoldt KL, Terrill NJ, Dunlop IE, et al. 2013. The stability of silver nanoparticles in a model of pulmonary surfactant. Environ Sci Technol 47:11232–40
  • Massa CB, Scott P, Abramova E, Gardner C, Laskin DL, Gow AJ. 2014. Acute chlorine gas exposure produces transient inflammation and a progressive alteration in surfactant composition with accompanying mechanical dysfunction. Toxicol Appl Pharmacol 278:53–64
  • Moriya H, Moraes J, Bates J. 2003. Nonlinear and frequency-dependent mechanical behavior of the mouse respiratory system. Ann Biomed Eng 31:318–26
  • Mu Q, Jiang G, Chen L, Zhou H, Fourches D, Tropsha A, Yan B. 2014. Chemical basis of interactions between engineered nanoparticles and biological systems. Chem Rev 114:7740–81
  • Park MVDZ, Neigh AM, Vermeulen JP, De La Fonteyne LJJ, Verharen HW, Briedé JJ, et al. 2011. The effect of particle size on the cytotoxicity, inflammation, developmental toxicity and genotoxicity of silver nanoparticles. Biomaterials 32:9810–17
  • Ruge CA, Schaefer UF, Herrmann J, Kirch J, Canadas O, Echaide M, et al. 2012. The interplay of lung surfactant proteins and lipids assimilates the macrophage clearance of nanoparticles. PLoS One 7:e40775
  • Salvador-Morales C, Townsend P, Flahaut E, Vénien-Bryan C, Vlandas A, Green MLH, Sim RB. 2007. Binding of pulmonary surfactant proteins to carbon nanotubes; potential for damage to lung immune defense mechanisms. Carbon 45:607–17
  • Sarkar S, Song Y, Sarkar S, Kipen H, Laumbach R, Zhang J, et al. 2012. Suppression of the NF-kB pathway by diesel exhaust particles impairs human antimycobacterial immunity. J Immunol 188:2778–93
  • Shang L, Nienhaus K, Nienhaus GU. 2014. Engineered nanoparticles interacting with cells: size matters. J Nanobiotechnol 12:5
  • Shim I-K, Lee YI, Lee KJ, Joung J. 2008. An organometallic route to highly monodispersed silver nanoparticles and their application to ink-jet printing. Mater Chem Phys 110:316–21
  • Tatur S, Badia A. 2012. Influence of hydrophobic alkylated gold nanoparticles on the phase behavior of monolayers of DPPC and clinical lung surfactant. Langmuir 28:628–39
  • Tejamaya M, Romer I, Merrifield R, Lead J. 2012. Stability of citrate, PVP, and PEG coated silver nanoparticles in ecotoxicology media. Environ Sci Technol 46:7011–17
  • Thacker S, Moran A, Lionakis M, Mastrangelo M, Halder T, Huby MDP, et al. 2014. Restoration of lung surfactant protein D by IL-6 protects against secondary pneumonia following hemorrhagic shock. J Infect 68:231–41
  • Tolaymat TM, El Badawy AM, Genaidy A, Scheckel KG, Luxton TP, Suidan M. 2010. An evidence-based environmental perspective of manufactured silver nanoparticle in syntheses and applications: a systematic review and critical appraisal of peer-reviewed scientific papers. Sci Total Environ 408:999–1006
  • Vuk-Pavlovic Z, Standing JE, Crouch EC, Limper AH. 2001. Carbohydrate recognition domain of surfactant protein d mediates interactions with Pneumocystis carinii glycoprotein A. Am J Respir Cell Mol Biol 24:475–84
  • Warheit DB, Reed KL, Delorme MP. 2013. Embracing a weight-of-evidence approach for establishing NOAELs for nanoparticle inhalation toxicity studies. Toxicol Pathol 41:387–94

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.