252
Views
73
CrossRef citations to date
0
Altmetric
Original Research

Biosynthesized silver and gold nanoparticles are potent antimycotics against opportunistic pathogenic yeasts and dermatophytes

, , , , , , , , , & show all
Pages 695-703 | Published online: 01 Feb 2018

References

  • HavlickovaBCzaikaVAFriedrichMEpidemiological trends in skin mycoses worldwideMycoses200851Suppl 421518783559
  • ThomasJJacobsonGANarkowiczCKPetersonGMBurnetHSharpeCToenail onychomycosis: an important global disease burdenJ Clin Pharm Ther201035549751920831675
  • Vander StratenMRHossainMAGhannoumMACutaneous infections: dermatophytosis, onychomycosis, and tinea versicolorInfect Dis Clin North Am20031718711212751262
  • PerfectJRCasadevallACryptococcosisInfect Dis Clin North Am200216483787412512184
  • NeuvilleSDromerFMorinODupontBRoninOLortholaryOPrimary cutaneous cryptococcosis: a distinct clinical entityClin Infect Dis200336333734712539076
  • TranQHNguyenVQLeATSilver nanoparticles: synthesis, properties, toxicology, applications and perspectivesAdv Nat Sci Nanosci Nanotechnol201343033001
  • MohanpuriaPRanaNKYadavSKBiosynthesis of nanoparticles: technological concepts and future applicationsJ Nanopart Res2008103507517
  • VimbelaGVNgoSMFrazeCYangLStoutDAAntibacterial properties and toxicity from metallic nanomaterialsInt J Nanomedicine2017123941396528579779
  • RaoCNKulkarniGUThomasPJEdwardsPPSize-dependent chemistry: properties of nanocrystalsChemistry200281283511826864
  • KovácsDIgazNKeskenyCSilver nanoparticles defeat p53-positive and p53-negative osteosarcoma cells by triggering mitochondrial stress and apoptosisSci Rep201662790227291325
  • KovácsDSzőkeKIgazNSilver nanoparticles modulate ABC transporter activity and enhance chemotherapy in multidrug resistant cancerNanomedicine201612360161026656631
  • IvaskAElBadawyAKaweeteerawatCToxicity mechanisms in Escherichia coli vary for silver nanoparticles and differ from ionic silverACS Nano20148137438624341736
  • HebbalaluDLalleyJNadagoudaMNVarmaRSGreener techniques for the synthesis of silver nanoparticles using plant extracts, enzymes, bacteria, biodegradable polymers, and microwavesACS Sustainable Chem Eng201317703712
  • RonavariAKovacsDIgazNBiological activity of green-synthesized silver nanoparticles depends on the applied natural extracts: a comprehensive studyInt J Nanomedicine20171287188328184158
  • LiXXuHChenZ-SChenGBiosynthesis of nanoparticles by microorganisms and their applicationsJ Nanomaterials20112011270974
  • NarayananKBSakthivelNBiological synthesis of metal nanoparticles by microbesAdv Colloid Interface Sci20101561–211320181326
  • JhaAKPrasadKKulkarniARYeast mediated synthesis of silver nanoparticlesInt J Nanosci Nanotechnol2008411722
  • TingYTeoWSohCGold uptake by Chlorella vulgarisJ Appl Phycol19957197100
  • JohnsonEAPhaffia rhodozyma: colorful odysseyInt Microbiol20036316917412898396
  • RonavariAKovacsDVagvolgyiCKonyaZKiricsiMPfeifferIIon exchange defines the biological activity of titanate nanotubesJ Basic Microbiol201656555756526972521
  • SunYXiaYShape-controlled synthesis of gold and silver nanoparticlesScience200229856012176217912481134
  • ChenYGuXNieC-GJiangZ-YXieZ-XLinCJShape controlled growth of gold nanoparticles by a solution synthesisChem Comm (Camb)20053341814183
  • SrinivasanALopez-RibotJLRamasubramanianAKOvercoming antifungal resistanceDrug Discovery Today Technol2014116571
  • GhannoumMARiceLBAntifungal agents: mode of action, mechanisms of resistance, and correlation of these mechanisms with bacterial resistanceClin Microbiol Rev199912450151710515900
  • Edwards-JonesVThe benefits of silver in hygiene, personal care and healthcareLett Appl Microbiol200949214715219515146
  • KonKRaiMThe Microbiology of Skin, Soft Tissue, Bone and Joint Infections Volume 2AmsterdamElsevier Science2017
  • PatraJKBaekK-HGreen nanobiotechnology: factors affecting synthesis and characterization techniquesJ Nanomaterials20142014417305
  • ParasharVParasharRSharmaBPandeyACParthenium leaf extract mediated synthesis of silver nanoparticles: a novel approach towards weed utilizationDig J Nanomater Biostruct2009414550
  • KharissovaOVDiasHVRKharisovBIPérezBOPérezVMJThe greener synthesis of nanoparticlesTrends Biotechnol201331424024823434153
  • MakarovVVLoveAJSinitsynaOV“Green” nanotechnologies: synthesis of metal nanoparticles using plantsActa Naturae201461354424772325
  • BharathirajaSManivasaganPQuang BuiNCytotoxic induction and photoacoustic imaging of breast cancer cells using astaxanthin-reduced gold nanoparticlesNanomaterials (Basel)201664E7828335206
  • BindhuMRUmadeviMAntibacterial activities of green synthesized gold nanoparticlesMaterials Lett2014120122125
  • BindhuMRVijaya RekhaPUmamaheswariTUmadeviMAntibacterial activities of Hibiscus cannabinus stem-assisted silver and gold nanoparticlesMaterials Lett2014131194197
  • LeeKDNagajyothiPCSreekanthTVMParkSEco-friendly synthesis of gold nanoparticles (AuNPs) using Inonotus obliquus and their antibacterial, antioxidant and cytotoxic activitiesJ Industr Eng Chem2015266772
  • YuQLiJZhangYWangYLiuLLiMInhibition of gold nanoparticles (AuNPs) on pathogenic biofilm formation and invasion to host cellsScientific Rep2016626667
  • ChwalibogASawoszEHotowyAVisualization of interaction between inorganic nanoparticles and bacteria or fungiInt J Nanomedicine201051085109521270959
  • VallabhaneniSModyRKWalkerTChillerTThe global burden of fungal diseasesInfect Dis Clin North Am201630111126739604