82
Views
12
CrossRef citations to date
0
Altmetric
Original Research

Environmental impact of multi-wall carbon nanotubes in a novel model of exposure: systemic distribution, macrophage accumulation, and amyloid deposition

, , , , , , , , , , & show all
Pages 6133-6145 | Published online: 29 Sep 2015

References

  • LiuZTabakmanSWelsherKDaiHCarbon nanotubes in biology and medicine: in vitro and in vivo detection, imaging and drug deliveryNano Res2009228512020174481
  • HristozovDRGottardoSCinelliMApplication of a quantitative weight of evidence approach for ranking and prioritising occupational exposure scenarios for titanium dioxide and carbon nanomaterialsNanotoxicology20148211713123244341
  • JohnstonHPojanaGZuinSEngineered nanomaterial risk. Lessons learnt from completed nanotoxicology studies: potential solutions to current and future challengesCrit Rev Toxicol201343112023126553
  • WinklerDAMombelliEPietroiustiAApplying quantitative structure-activity relationship approaches to nanotoxicology: current status and future potentialToxicology20133131152323165187
  • GuadagniniRHalamoda KenzaouiBWalkerLToxicity screenings of nanomaterials: challenges due to interference with assay processes and components of classic in vitro testsNanotoxicology20159132423889211
  • DonaldsonKStoneVTranCLKreylingWBormPJNanotoxicologyOccup Environ Med200461972772815317911
  • DonaldsonKMurphyFSchinwaldADuffinRPolandCAIdentifying the pulmonary hazard of high aspect ratio nanoparticles to enable their safety-by-designNanomedicine (Lond)20116114315621182425
  • ElgrabliDFlorianiMAbella-GallartSBiodistribution and clearance of instilled carbon nanotubes in rat lungPart Fibre Toxicol200852019068117
  • Osmond-McLeodMJPolandCAMurphyFDurability and inflammogenic impact of carbon nanotubes compared with asbestos fibresPart Fibre Toxicol201181521569450
  • InoueKKoikeEYanagisawaRHiranoSNishikawaMTakanoHEffects of multi-walled carbon nanotubes on a murine allergic airway inflammation modelToxicol Appl Pharmacol2009237330631619371758
  • InoueKYanagisawaRKoikeENishikawaMTakanoHRepeated pulmonary exposure to single-walled carbon nanotubes exacerbates allergic inflammation of the airway: possible role of oxidative stressFree Radic Biol Med201048792493420093178
  • LamCWJamesJTMcCluskeyRHunterRLPulmonary toxicity of single-wall carbon nanotubes in mice 7 and 90 days after intratracheal instillationToxicol Sci200477112613414514958
  • PoulsenSSSaberATWilliamsAMWCNTs of different physicochemical properties cause similar inflammatory responses, but differences in transcriptional and histological markers of fibrosis in mouse lungsToxicol Appl Pharmacol20142841163225554681
  • ShvedovaAAKisinEMurrayARInhalation vs aspiration of single-walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress, and mutagenesisAm J Physiol Lung Cell Mol Physiol20082954L552L56518658273
  • JiZZhangDLiLThe hepatotoxicity of multi-walled carbon nanotubes in miceNanotechnology2009204444510119801780
  • YangSTWangXJiaGLong-term accumulation and low toxicity of single-walled carbon nanotubes in intravenously exposed miceToxicol Lett2008181318218918760340
  • PatlollaAMcGinnisBTchounwouPBiochemical and histopathological evaluation of functionalized single-walled carbon nanotubes in Swiss-Webster miceJ Appl Toxicol2011311758320737426
  • PatlollaAKBerryATchounwouPBStudy of hepatotoxicity and oxidative stress in male Swiss-Webster mice exposed to functionalized multi-walled carbon nanotubesMol Cell Biochem20113581–218919921725842
  • RittinghausenSHackbarthACreutzenbergOThe carcinogenic effect of various multi-walled carbon nanotubes (MWCNTs) after intraperitoneal injection in ratsPart Fibre Toxicol20141115925410479
  • LamCWJamesJTMcCluskeyRArepalliSHunterRLA review of carbon nanotube toxicity and assessment of potential occupational and environmental health risksCrit Rev Toxicol200636318921716686422
  • WarheitDBLaurenceBRReedKLRoachDHReynoldsGAWebbTRComparative pulmonary toxicity assessment of single-wall carbon nanotubes in ratsToxicol Sci200477111712514514968
  • ShvedovaAAKisinERMercerRUnusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in miceAm J Physiol Lung Cell Mol Physiol20052895L698L70815951334
  • MullerJHuauxFMoreauNRespiratory toxicity of multi-wall carbon nanotubesToxicol Appl Pharmacol2005207322123116129115
  • PulskampKDiabateSKrugHFCarbon nanotubes show no sign of acute toxicity but induce intracellular reactive oxygen species in dependence on contaminantsToxicol Lett20071681587417141434
  • BrownDKinlochIBangertUAn in vitro study of the potential of carbon nanotubes and nanofibres to induce inflammatory mediators and frustrated phagocytosisCarbon N Y20074517431756
  • DonaldsonKSchinwaldAMurphyFThe biologically effective dose in inhalation nanotoxicologyAcc Chem Res201346372373223003923
  • HussainSSangtianSAndersonSMInflammasome activation in airway epithelial cells after multi-walled carbon nanotube exposure mediates a profibrotic response in lung fibroblastsPart Fibre Toxicol2014112824915862
  • JessopFHolianAExtracellular HMGB1 regulates multi-walled carbon nanotube-induced inflammation in vivoNanotoxicology2014918
  • GirtsmanTABeamerCAWuNBufordMHolianAIL-1R signalling is critical for regulation of multi-walled carbon nanotubes-induced acute lung inflammation in C57Bl/6 miceNanotoxicology201481172723094697
  • MeunierECosteAOlagnierDDouble-walled carbon nanotubes trigger IL-1beta release in human monocytes through Nlrp3 inflammasome activationNanomedicine20128698799522100755
  • GeCDuJZhaoLBinding of blood proteins to carbon nanotubes reduces cytotoxicityProc Natl Acad Sci U S A201110841169681697321969544
  • WalkeyCDChanWCUnderstanding and controlling the interaction of nanomaterials with proteins in a physiological environmentChem Soc Rev20124172780279922086677
  • ChitiFDobsonCMProtein misfolding, functional amyloid, and human diseaseAnnu Rev Biochem20067533336616756495
  • KooEHLansburyPTJrKellyJWAmyloid diseases: abnormal protein aggregation in neurodegenerationProc Natl Acad Sci U S A199996189989999010468546
  • BaglioniSCasamentiFBucciantiniMPrefibrillar amyloid aggregates could be generic toxins in higher organismsJ Neurosci200626318160816716885229
  • KowalewskiTHoltzmanDMIn situ atomic force microscopy study of Alzheimer’s beta-amyloid peptide on different substrates: new insights into mechanism of beta-sheet formationProc Natl Acad Sci U S A19999673688369310097098
  • GuoJLiJZhangYJinXLiuHYaoXExploring the influence of carbon nanoparticles on the formation of beta-sheet-rich oligomers of IAPP(2)(2)(-)(2)(8) peptide by molecular dynamics simulationPLoS One201386e6557923755253
  • LiHLuoYDerreumauxPWeiGCarbon nanotube inhibits the formation of beta-sheet-rich oligomers of the Alzheimer’s amyloid-beta(16–22) peptideBiophys J201110192267227622067167
  • LinseSCabaleiro-LagoCXueWFNucleation of protein fibrillation by nanoparticlesProc Natl Acad Sci U S A2007104218691869617485668
  • LuoJWarmlanderSKYuCHMuhammadKGraslundAPieter AbrahamsJThe Abeta peptide forms non-amyloid fibrils in the presence of carbon nanotubesNanoscale20146126720672624820873
  • PalomäkiJVälimäkiESundJLong, needle-like carbon nanotubes and asbestos activate the NLRP3 inflammasome through a similar mechanismACS Nano2011596861687021800904
  • LawlorKEVinceJEAmbiguities in NLRP3 inflammasome regulation: is there a role for mitochondria?Biochim Biophys Acta2014184041433144023994495
  • BossùPCiaramellaASalaniFInterleukin-18, from neuroinflammation to Alzheimer’s diseaseCurr Pharm Des201016384213422421184660
  • OjalaJAlafuzoffIHerukkaSKvan GroenTTanilaHPirttilaTExpression of interleukin-18 is increased in the brains of Alzheimer’s disease patientsNeurobiol Aging200930219820917658666
  • SutinenEMPirttilaTAndersonGSalminenAOjalaJOPro-inflammatory interleukin-18 increases Alzheimer’s disease-associated amyloid-beta production in human neuron-like cellsJ Neuroinflammation2012919922898493
  • SwardfagerWLanctotKRothenburgLWongACappellJHerrmannNA meta-analysis of cytokines in Alzheimer’s diseaseBiol Psychiatry2010681093094120692646
  • FalabellaPRivielloLPascaleMFunctional amyloids in insect immune responseInsect Biochem Mol Biol201242320321122207151
  • GrimaldiATettamantiGCongiuTThe main actors involved in parasitization of Heliothis virescens larvaCell Tissue Res2012350349150223053052
  • GrimaldiAGirardelloRMalagoliDAmyloid/Melanin distinctive mark in invertebrate immunityInvertebrate Surviv J20129153162
  • FowlerDMKoulovAVAlory-JostCMarksMSBalchWEKellyJWFunctional amyloid formation within mammalian tissuePLoS Biol200641e616300414
  • PorterDWHubbsAFMercerRRMouse pulmonary dose- and time course-responses induced by exposure to multi-walled carbon nanotubesToxicology20102692–313614719857541
  • NIOSHServicesDoHAHOccupation Exposure to Carbon Nanotubes and Nanofibers65AtlantaCenters for Disease Control and Prevention and National Institute for Occupational Safety and Health2013 Available from: http://www.cdc.gov/niosh/docs/2013-145/pdfs/2013-145.pdf
  • LeVineH3rdQuantification of beta-sheet amyloid fibril structures with thioflavin TMethods Enzymol199930927428410507030
  • DonaldsonKMurphyFADuffinRPolandCAAsbestos, carbon nanotubes and the pleural mesothelium: a review of the hypothesis regarding the role of long fibre retention in the parietal pleura, inflammation and mesotheliomaPart Fibre Toxicol20107520307263
  • DostertCPetrilliVVan BruggenRSteeleCMossmanBTTschoppJInnate immune activation through Nalp3 inflammasome sensing of asbestos and silicaScience2008320587667467718403674
  • GreccoACPaulaRFMizutaniEUp-regulation of T lymphocyte and antibody production by inflammatory cytokines released by macrophage exposure to multi-walled carbon nanotubesNanotechnology2011222626510321576788
  • MaynardAAitkenRAssessing exposure to airborne nanomaterials: current abilities and future requirementsNanotoxicology200712641
  • LeeJSChoiYCShinJHHealth surveillance study of workers who manufacture multi-walled carbon nanotubesNanotoxicology20149110
  • OberdörsterGSharpZAtudoreiVTranslocation of inhaled ultrafine particles to the brainInhal Toxicol2004166–743744515204759
  • DongJMaQAdvances in mechanisms and signaling pathways of carbon nanotube toxicityNanotoxicology20159119
  • PolandCADuffinRKinlochICarbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot studyNat Nanotechnol20083742342818654567
  • SakamotoYNakaeDFukumoriNInduction of mesothelioma by a single intrascrotal administration of multi-wall carbon nanotube in intact male Fischer 344 ratsJ Toxicol Sci2009341657619182436
  • SunBWangXJiZNADPH oxidase-dependent NLRP3 inflammasome activation and its important role in lung fibrosis by multiwalled carbon nanotubesSmall201511172087209725581126
  • TakagiAHiroseAFutakuchiMTsudaHKannoJDose-dependent mesothelioma induction by intraperitoneal administration of multi-wall carbon nanotubes in p53 heterozygous miceCancer Sci201210381440144422537085
  • TakagiAHiroseANishimuraTInduction of mesothelioma in p53+/− mouse by intraperitoneal application of multi-wall carbon nanotubeJ Toxicol Sci200833110511618303189
  • VargaCSzendiKCarbon nanotubes induce granulomas but not mesotheliomasIn Vivo201024215315620363987
  • KotcheyGPZhaoYKaganVEStarAPeroxidase-mediated biodegradation of carbon nanotubes in vitro and in vivoAdv Drug Deliv Rev201365151921193223856412
  • ZhaoYAllenBLStarAEnzymatic degradation of multiwalled carbon nanotubesJ Phys Chem A2011115349536954421348486
  • AlbiniAMussiVParodiAInteractions of single-wall carbon nanotubes with endothelial cellsNanomedicine20106227728819699323
  • PalomäkiJSundJVippolaMA secretomics analysis reveals major differences in the macrophage responses towards different types of carbon nanotubesNanotoxicology2014811023092443
  • LaiAYMcLaurinJClearance of amyloid-beta peptides by microglia and macrophages: the issue of what, when and whereFuture Neurol20127216517622737039