88
Views
39
CrossRef citations to date
0
Altmetric
Original Research

Systemic distribution of single-walled carbon nanotubes in a novel model: alteration of biochemical parameters, metabolic functions, liver accumulation, and inflammation in vivo

, , , , , , , , , , , , & show all
Pages 4299-4316 | Published online: 01 Sep 2016

References

  • LiuZTabakmanSWelsherKDaiHCarbon nanotubes in biology and medicine: in vitro and in vivo detection, imaging and drug deliveryNano Res2009228512020174481
  • BiancoAKostarelosKPartidosCDPratoMBiomedical applications of functionalised carbon nanotubesChem Commun (Camb)2005557157715672140
  • BiancoAKostarelosKPratoMApplications of carbon nanotubes in drug deliveryCurr Opin Chem Biol20059667467916233988
  • KlumppCKostarelosKPratoMBiancoAFunctionalized carbon nanotubes as emerging nanovectors for the delivery of therapeuticsBiochim Biophys Acta20061758340441216307724
  • WuWWieckowskiSPastorinGTargeted delivery of amphotericin B to cells by using functionalized carbon nanotubesAngew Chem Int Ed Engl200544396358636216138384
  • KamNWDaiHCarbon nanotubes as intracellular protein transporters: generality and biological functionalityJ Am Chem Soc2005127166021602615839702
  • KamNWLiuZDaiHFunctionalization of carbon nanotubes via cleavable disulfide bonds for efficient intracellular delivery of siRNA and potent gene silencingJ Am Chem Soc200512736124921249316144388
  • PantarottoDBriandJPPratoMBiancoATranslocation of bioactive peptides across cell membranes by carbon nanotubesChem Commun (Camb)20041161714737310
  • LiuYWuDCZhangWDPolyethylenimine-grafted multiwalled carbon nanotubes for secure noncovalent immobilization and efficient delivery of DNAAngew Chem Int Ed Engl200544304782478515995988
  • MadaniSYNaderiNDissanayakeOTanASeifalianAMA new era of cancer treatment: carbon nanotubes as drug delivery toolsInt J Nanomedicine201162963297922162655
  • LiuZCaiWHeLIn vivo biodistribution and highly efficient tumour targeting of carbon nanotubes in miceNat Nanotechnol200721475218654207
  • GwinnMRTranLRisk management of nanomaterialsWiley Interdiscip Rev Nanomed Nanobiotechnol20102213013720077523
  • LamCWJamesJTMcCluskeyRArepalliSHunterRLA review of carbon nanotube toxicity and assessment of potential occupational and environmental health risksCrit Rev Toxicol200636318921716686422
  • MullerJHuauxFMoreauNRespiratory toxicity of multi-wall carbon nanotubesToxicol Appl Pharmacol2005207322123116129115
  • ShvedovaAAKisinEMurrayARInhalation vs aspiration of single-walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress, and mutagenesisAm J Physiol Lung Cell Mol Physiol20082954L552L56518658273
  • ShvedovaAAKisinERMercerRUnusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in miceAm J Physiol Lung Cell Mol Physiol20052895L698L70815951334
  • WarheitDBLaurenceBRReedKLRoachDHReynoldsGAWebbTRComparative pulmonary toxicity assessment of single-wall carbon nanotubes in ratsToxicol Sci200477111712514514968
  • LiuDMoriAHuangLRole of liposome size and RES blockade in controlling biodistribution and tumor uptake of GM1-containing liposomesBiochim Biophys Acta199211041951011550858
  • LiuZDavisCCaiWHeLChenXDaiHCirculation and long-term fate of functionalized, biocompatible single-walled carbon nanotubes in mice probed by Raman spectroscopyProc Natl Acad Sci U S A200810551410141518230737
  • RiviereJEPharmacokinetics of nanomaterials: an overview of carbon nanotubes, fullerenes and quantum dotsWiley Interdiscip Rev Nanomed Nanobiotechnol200911263420049776
  • AlbiniAPaganiAPulzeLEnvironmental impact of multi-wall carbon nanotubes in a novel model of exposure: systemic distribution, macrophage accumulation, and amyloid depositionInt J Nanomedicine2015106133614526457053
  • AlbiniAMussiVParodiAInteractions of single-wall carbon nanotubes with endothelial cellsNanomedicine20106227728819699323
  • GoemanFManniIArtusoSMolecular imaging of nuclear factor-Y transcriptional activity maps proliferation sites in live animalsMol Biol Cell20122381467147422379106
  • LiMAl-JamalKTKostarelosKReinekeJPhysiologically based pharmacokinetic modeling of nanoparticlesACS Nano20104116303631720945925
  • HurtRMonthiouxMKaneAToxicology of carbon nano materials: status, trends and prospective on the special issueCarbon N Y20064410281033
  • WurdenSHombergUA simple method for immunofluorescent double staining with primary antisera from the same speciesJ Histochem Cytochem19934146276308450202
  • GirardelloRTasselliSBaranziniNValvassoriRde EguileorMGrimaldiAEffects of carbon nanotube environmental dispersion on an aquatic invertebrate, Hirudo medicinalisPLoS One20151012e014436126636582
  • YangSTWangXJiaGLong-term accumulation and low toxicity of single-walled carbon nanotubes in intravenously exposed miceToxicol Lett2008181318218918760340
  • SicaAMantovaniAMacrophage plasticity and polarization: in vivo veritasJ Clin Invest2012122378779522378047
  • ArmstrongRAWhen to use the Bonferroni correctionOphthalmic Physiol Opt201434550250824697967
  • StreinerDLNormanGRCorrection for multiple testing: is there a resolution?Chest20111401161821729890
  • BergamaschiEMurphyFPolandCAImpact and effectiveness of risk mitigation strategies on the insurability of nanomaterial production: evidences from industrial case studiesWiley Interdiscip Rev Nanomed Nanobiotechnol20157683985525808636
  • DusinskaMBolandSSaundersMTowards an alternative testing strategy for nanomaterials used in nanomedicine: lessons from NanoTESTNanotoxicology20159suppl 111813225923349
  • PorterDWHubbsAFMercerRRMouse pulmonary dose- and time course-responses induced by exposure to multi-walled carbon nanotubesToxicology20102692–313614719857541
  • GannonCJCherukuriPYakobsonBICarbon nanotube-enhanced thermal destruction of cancer cells in a noninvasive radiofrequency fieldCancer2007110122654266517960610
  • LacerdaLHerreroMAVennerKBiancoAPratoMKostarelosKCarbon-nanotube shape and individualization critical for renal excretionSmall2008481130113218666166
  • MehraNKPalakurthiSInteractions between carbon nanotubes and bioactives: a drug delivery perspectiveDrug Discov Today201621458559726657088
  • BrownDKinlochIBangertUAn in vitro study of the potential of carbon nanotubes and nanofibres to induce inflammatory mediators and frustrated phagocytosisCarbon N Y20074517431756
  • KotcheyGPZhaoYKaganVEStarAPeroxidase-mediated biodegradation of carbon nanotubes in vitro and in vivoAdv Drug Deliv Rev201365151921193223856412
  • MurrayARKisinELeonardSSOxidative stress and inflammatory response in dermal toxicity of single-walled carbon nanotubesToxicology2009257316117119150385
  • WangPWangYNieXBrainiCBaiRChenCMultiwall carbon nanotubes directly promote fibroblast-myofibroblast and epithelial-mesenchymal transitions through the activation of the TGF-beta/smad signaling pathwaySmall201511444645525255886
  • LawlorKEVinceJEAmbiguities in NLRP3 inflammasome regulation: is there a role for mitochondria?Biochim Biophys Acta2014184041433144023994495
  • SunBWangXJiZNADPH oxidase-dependent NLRP3 inflammasome activation and its important role in lung fibrosis by multiwalled carbon nanotubesSmall201511172087209725581126
  • FufaMOMihaiescuDEMogoantaLIn vivo biodistribution of CNTs using a BALB/c mouse experimental modelRom J Morphol Embryol20155641481149326743298
  • ZhaoYAllenBLStarAEnzymatic degradation of multiwalled carbon nanotubesJ Phys Chem A2011115349536954421348486
  • PolandCADuffinRKinlochICarbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot studyNat Nanotechnol20083742342818654567
  • BuzeaCPachecoIIRobbieKNanomaterials and nanoparticles: sources and toxicityBiointerphases200724MR17MR7120419892