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Original Research

New silver nanoparticles induce apoptosis-like process in E. coli and interfere with mammalian copper metabolism

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Pages 6561-6574 | Published online: 15 Dec 2016

References

  • GeLLiQWangMOuyangJLiXXingMNanosilver particles in medical applications: synthesis, performance, and toxicityInt J Nanomedicine2014423992407
  • FranciGFalangaAGaldieroSPalombaLRaiMSilver nanoparticles as potential antibacterial agentsMolecules20152058856887425993417
  • NaqviSZKiranUAliMICombined efficacy of biologically synthesized silver nanoparticles and different antibiotics against multidrug-resistant bacteriaInt J Nanomedicine201383187319523986635
  • MarkowskaKGrudniakAMWolskaKISilver nanoparticles as an alternative strategy against bacterial biofilmsActa Biochim Pol201360452353024432308
  • KhaliliFJJafariSEghbalMAA review of molecular mechanisms involved in toxicity of nanoparticlesAdv Pharm Bull20155444745426819915
  • ZatulovskaiaYAIlyechovaEYPuchkovaLVThe features of copper metabolism in the rat liver during developmentPLoS One20151010e014079726474410
  • AldridgeGMPodrebaracDMGreenoughWTWeilerIJThe use of total protein stains as loading controls: an alternative to high-abundance single protein controls in semi-quantitative immunoblottingJ Neurosci Methods2008172225025418571732
  • OwenJASmithHDetection of ceruloplasmin after zone electrophoresisClin Chim Acta196163441444
  • Vives-BauzaCStarkovAGarcia-ArumiEMeasurements of the antioxidant enzyme activities of superoxide dismutase, catalase, and glutathione peroxidaseMethods Cell Biol20078037939317445705
  • ÖhrvikHThieleDJHow copper traverses cellular membranes through the mammalian copper transporter 1, Ctr1Ann N Y Acad Sci20141314324124697869
  • KittlerSGreulichCDiendorfJKöllerMEppleMToxicity of silver nanoparticles increases during storage because of slow dissolution under release of silver ionsChemistry of Materials2010221645484554
  • BertinatoJCheungLHoqueRPlouffeLJCtr1 transports silver into mammalian cellsTrace Elem Med Biol2010243178184
  • ChwalibogASawoszEHotowyAVisualization of interaction between inorganic nanoparticles and bacteria or fungiInt J Nanomedicine201051085109421270959
  • BaoHYuXXuCNew toxicity mechanism of silver nanoparticles: Promoting apoptosis and inhibiting proliferationPLoS One2015103e012253525822182
  • HuangJChengJYiJImpact of silver nanoparticles on marine diatom Skeletonema costatumJ Appl Toxicol201636101343135427080522
  • RamalingamBParandhamanTDasSKAntibacterial effects of biosynthesized silver nanoparticles on surface ultrastructure and nanomechanical properties of gram-negative bacteria viz. Escherichia coli and Pseudomonas aeruginosaACS Appl Mater Interfaces2016874963497626829373
  • LeeMJLeeSJYunSJSilver nanoparticles affect glucose metabolism in hepatoma cells through production of reactive oxygen speciesInt J Nanomedicine201511556826730190
  • GurunathanSJeongJKHanJWZhangXFParkJHKimJHMultidimensional effects of biologically synthesized silver nanoparticles in Helicobacter pylori, Helicobacter felis, and human lung (L132) and lung carcinoma A549 cellsNanoscale Res Lett2015103525852332
  • LiXZNikaidoHWilliamsKESilver-resistant mutants of Escherichia coli display active efflux of Ag1 and are deficient in porinsJ Bacteriol199717919612761329324262
  • GaetkeLMChow-JohnsonHSChowCKCopper: toxicological relevance and mechanismsArch Toxicol201488111929193825199685
  • RensingCGrassGEscherichia coli mechanisms of copper homeostasis in a changing environmentFEMS Microbiology2013272–3197213
  • FanBRosenBPBiochemical characterization of CopA, the Escherichia coli Cu(I)-translocating P-type ATPaseJ Biol Chem200227749469874699212351646
  • InesiGPilankattaRTadini-BuoninsegniFBiochemical characterization of P-type copper ATPasesBiochem J2014463216717625242165
  • SinghSKRobertsSAMcDevittSFCrystal structures of multicopper oxidase CueO bound to copper(I) and silver(I): functional role of a methionine-rich sequenceJ Biol Chem201128643378493785721903583
  • DelmarJASuCCYuEWHeavy metal transport by the CusCFBA efflux systemProtein Sci201524111720173626258953
  • LongFSuCCLeiHTBollaJRDoSVYuEWStructure and mechanism of the tripartite CusCBA heavy-metal efflux complexPhilos Trans R Soc Lond B Biol Sci201236715421047105822411977
  • GudipatySAMcEvoyMMThe histidine kinase CusS senses silver ions through direct binding by its sensor domainBiochim Biophys Acta2014184491656166124948475
  • RandallCPGuptaAJacksonNBusseDO’NeillAJSilver resistance in Gram-negative bacteria: a dissection of endogenous and exogenous mechanismsJ Antimicrob Chemother20157041037104625567964
  • VasinAKlotchenkoSPuchkovaLPhylogenetic analysis of six-domain multi-copper blue proteinsPLoS Curr20135 pii:ecurrents. tol.574bcb0f133fe52835911abc4e296141
  • ErentalAKalderonZSaadaASmithYEngelberg-KulkaHApoptosis-like death, an extreme SOS response in Escherichia coliMBio201454e014261425028428
  • LeeWKimKJLeeDGA novel mechanism for the antibacterial effect of silver nanoparticles on Escherichia coliBioMetals20142761191120125104311
  • RecordatiCDe MaglieMBianchessiSTissue distribution and acute toxicity of silver after single intravenous administration in mice: nano-specific and size-dependent effectsPart Fibre Toxicol2016131226926244
  • Win-ShweTTFujimakiHNanoparticles and neurotoxicityInt J Mol Sci20111296267628022016657
  • SankovaTPSosninIMKarpenkoMNOn the biological activity of silver nanoparticlesMPM201524289296
  • DurànNSilveiraCPDurànMMartinezTSilver nanoparticle protein corona and toxicity: a mini-reviewJ Nanobiotechnol20151355
  • DasguptaNRanjanSPatraDSrivastavaPKumarARamalingamCBovine serum albumin interacts with silver nanoparticles with a “side-on” or “end on” conformationChem Biol Interact201625310011127180205
  • HellmanNEGitlinJDCeruloplasmin metabolism and functionAnnu Rev Nutr20022243945812055353
  • RamosDMarDIshidaMMechanism of copper uptake from blood plasma ceruloplasmin by mammalian cellsPLoS One2016113e014951626934375
  • HealyJTiptonKCeruloplasmin and what it might doJ Neural Transm2007114677778117406962
  • ArmstrongNRamamoorthyMLyonDJonesKDuttaroyAMechanism of silver nanoparticles action on insect pigmentation reveals intervention of copper homeostasisPLoS One201381e5318623308159
  • RohJYSimSJYiJEcotoxicity of silver nanoparticles on the soil nematode Caenorhabditis elegans using functional ecotoxicogenomicsEnviron Sci Technol200943103933394019544910
  • EasterRNQilinCLaiBRitmanELCarusoJAZhenyuQVascular metallomics: copper in the vasculatureVasc Med20111516169
  • KrohnKALinkJMMasonRPMolecular Imaging of HypoxiaJ Nucl Med200849Suppl 2S129S148
  • ArcielloMLongoAViscomiCCore domain mutant Y220C of p53 protein has a key role in copper homeostasis in case of free fatty acids overloadBiometals20152861017102926438057
  • BartuziPHofkerMHvan de SluisBTuning NF-κB activity: a touch of COMMD proteinsBiochim Biophys Acta20131832122315232124080195
  • TurskiMThieleDJNew roles for copper metabolism in cell proliferation, signaling, and diseaseJ Biol Chem2009284271772118757361
  • TurskiMLBradyDCKimHJA novel role for copper in Ras/mitogen-activated protein kinase signalingMol Cell Biol20123271284129522290441
  • BradyDCCroweMSTurskiMLCopper is required for oncogenic BRAF signalling and tumorigenesisNature2014509750149249624717435
  • OpazoKMGreenoughMABushAICopper: from neurotransmission to neuroproteostasisFront Aging Neurosci2014614325071552