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    I.

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    IV.

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  • 194 49(2010)

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    , NaBH4 .

    ,

    (aggregation) .

    , (capping material) (Olenin, 2008; Si, 2007).

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    (SDS) . /, Klebsiella pneumoniae

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  • 195

    1234567891011121314

    Silver nanoparticlesSingle-walled carbon nanotubes (SWCNTs)Multi-walled carbon nanotubes (MWCNTs)Fullerenes (C60)Iron nanoparticlesCarbon blackTitanium dioxideAluminum oxideCerium oxideZinc oxideSilicon dioxidePolystyreneDendrimersNanoclays

    OECD

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    : (2009).

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  • 196 49(2010)

    ( , 2009).

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    (Yoon et al., 2004).

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  • 197

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  • 198 49(2010)

    : Scientific Committee on Emerging and Newly Identified Health Risks (SCENIHR), 2006.

    .

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    0.000 0.01 0.1 1.0 10.0

    Pacle Diameter (microns)

  • 199

    .

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    OECD () .

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    1)

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    , . Kreyling (2002)

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    2)

    Donaldson (2002)

    . , ,

    . , (broncho-alveolar fluid, BAL)

    (Shvedova et al., 2007).

    3)

    DNA ,

    (Li et al., 2007). ,

    . In vitro ,

    , - (Cunningham, 2007).

  • 200 49(2010)

    4)

    (Takagi et al., 2008). ,

    , (granuloma),1) (fibrosis) ,

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    (Muller et al., 2008).

    5)

    (Nurkiewicz et al., 2008).

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  • 201

    .

    1)

    ,

    . ,

    . ,

    . OECD (WPMN)

    . OECD

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    100nm .

    .

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    . fullerene

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  • 202 49(2010)

    (Physical-Chemical Properties and Material Characterization)

    /(Agglomeration/aggregation) (Water solubility) (Crystalline phase)(Dustiness)(Crystallite size)TEM (Representative TEM picture(s)) (Particle size distribution)(Specific surface area) / (Zeta potentiall; surface charge) (Surface chemistry, where appropriate) (Photocatalytic activity) (Pour density)(Porosity)/ (Octanol-water partition coefficient, where relevant) (Redox potential) (Radical formation potential)

    (Environmental Fate)

    (Dispersion stability in water) (Biotic degradability)(Ready biodegradability) (Simulation testing on ultimate degradation in surface water)(Soil simulation testing) (Sediment simulation testing) (Sewage treatment simulation testing) (Identification of degradation product(s)) ( Further testing of degradation product(s) as required) (Abiotic degradability and fate) (Hydrolysis, for surface modified nanomaterials)-(Adsorption-desorption) (Adsorption to soil or sediment) (Bioaccumulation potential)

    (Environmental Toxicology)

    / (Effects on pelagic species; short term/long term) / (Effects on sediment species; short term/long term)/ (Effects on soil species; short term/long term) (Effects on terrestrial species) (Effects on microorganisms)

    (Mammalian Toxicology)

    (Pharmacokinetics; ADME) (Acute toxicity)(Repeated dose toxicity)(Chronic toxicity)(Reproductive toxicity)(Developmental toxicity)(Genetic toxicity)

    : OECD, GUIDANCE MANUAL FOR THE TESTING OF MANUFACTURED NANOMATERIALS: OECD SPONSORSHIP PROGRAMME; FIRST REVISION, ENV/JM/MONO(2009) 20/REV, 2010.

  • 203

    .

    ,

    .

    ,

    .

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    ,

    . , , ,

    , , .

    .

    1)

    .

    .

    , QA/QC .

    2) .

    , (, ,

    , (, , ), ) .

    3)

    . ,

    , . ,

    .

    4)

    . .

    , ,

    .

    5) - (quantitative

  • 204 49(2010)

    structure-toxicity relationship, QSTR) .

    , . ,

    . ,

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    .

    .

    .

    , QSTR

    .

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    - ,

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    , 2009, , , 12(3): 98-107.

    , 2009,

    , , 12(2): 59-73.

  • 205

    Cunningham, M.J., 2007, Genecellular interactions of nanomaterials: genotoxicity to genomics. In:

    N.A. Monteiro-Riviere and C.L. Tran, Editors, Nanotoxicology Characterization, Dosing and

    Health Effects, Informa healthcare, New York, USA.

    Donaldson, K., D. Brown, A. Clouter, R. Duffin, W. MacNee, L. Renwick, V. Stone, 2002, The

    pulmonary toxicology of ultrafine particles, J. Aerosol Med., 15: 213-220.

    Elder, A., R. Gelein, V. Silva, T. Feikert, L. Opanashuk, J. Carter, R. Potter, A. Maynard, Y. Ito, J.

    Finkelstein, G. Oberdrster, 2006, Translocation of inhaled ultrafine manganese oxide particles

    to the central nervous system, Environ. Health Persp., 114: 1172-1178.

    Hewett, P., 1995, The particle size distribution, density and specific surface are of welding fumes

    from SMAW and GMAW mild and stainless steel consumables, American Industrial Hygiene

    Association Journal, 56(2): 128-135.

    Khanna, P., D. Kulkarni, R. Beri, 2008, Synthesis and characterization of myristic acid capped silver

    nanoparticles, J. Nanoparticle Research, 10: 1059-1062.

    Kreyling, W.G., M. Semmler, F. Erbe, P. Mayer, S. Takenaka, H. Schulz, G. Oberdrster, A.

    Ziesenis, 2002, Translocation of ultrafine insoluble iridium particles from lung epithelium to

    extrapulmonary organs is size dependent but very low, J. Toxicol. Environ. Health, Part A. 65:

    1513-1530.

    Li, W.X., J.Y. Xu, X.Q. Cai, R.L. Liu, Y.J. Li, Q.F. Zhao, Q.N. Li, 2007, Comparative study of

    pathological lesions induced by multiwalled carbon nanotubes in lungs of mice by intratracheal

    instillation and inhalation, Environ. Toxicol., 22(4): 415-421.

    Muller, J., I. Decordier, P.H. Hoet, N. Lombaert, L. Thomassen, F. Huaux, D. Lison, M.

    Kirsch-Volders, 2008, Clastogenic and aneugenic effects of multi-wall carbon nanotubes in

    epithelial cells, Carcinogenesis, 29: 427-433.

    Nurkiewicz, T.R., D.W. Porter, A.F. Hubbs, J.L. Cumpston, B.T. Chen, D.G. Frazer, V. Castranova,

    2008, Nanoparticle inhalation augments particle-dependent systemic microvascular dysfunction,

    Particle and Fibre Toxicology, 5: 1-12.

    Olenin A.Y., Y.A. Krutyakov, A.A. Kudrinskii, G.V. Lisichkin, 2008, Formation of surface layers on

    silver nanoparticles in aqueous and water-organic media, Colloid J, 70: 71-6.

    Radomski, A., P. Jurasz, D. Alonso-Escolano, M. Drews, M. Morandi, T. Malinski, M.W. Radomski,

    2005, Nanoparticle-induced platelet aggregation and vascular thrombosis, Brit. J. Pharmacol.,

    146(6): 882-893.

    Ryman-Rasmussen, J.P., J.E. Riviere, N.A. Monteiro-Riviere, 2006, Penetration of intact skin by

    quantum dots with diverse physicochemical properties, Toxicol. Sci., 91(1): 159-165.

  • 206 49(2010)

    Scientific Committee on Emerging and Newly Identified Health Risks (SCENIHR), The

    appropriateness of existing methodologies to assess the potential risks associated with engineered

    and adventitious products of nanotechnologies (2006).

    Shvedova, A.A., T. Sager, A.R. Murray, E. Kisin, D.W. Porter, S.S. Leonard et al., 2007, Critical

    issues in the evaluation of possible adverse pulmonary effects resulting from airborne

    nanoparticles. In: N.A. Monteiro-Riviere and C.L. Tran, Editors, Nanotoxicology

    Characterization, Dosing and Health Effects, Informa Healthcare, New York, USA.

    Si S, T.K. Mandal, 2007, Tryptophan-based peptides to synthesize gold and silver nanoparticles: a

    mechanistic and kinetic study, Chem Eur J, 13: 3160-8.

    Takagi, A., A. Hirose, T. Nishimura, N. Fukumori, A. Ogata, N. Ohashi, S. Kitajima, J. Kanno, 2008,

    Induction of mesothelioma in p53+/- mouse by intraperitoneal application of multi-wall carbon

    nanotube, J. Toxicol. Sci., 33(1): 105-116.

    Yamamoto, M., M. Nakamoto, 2003, Novel Preparation of Monodispersed Silver Nanoparticles Via

    Amine Adducts Derived from Insoluble Silver Myristate in Tertiary Alkylamine, J. Mat. Chem.,

    13: 2064-65.

    Yoon, C.S., 2004, Welding fume and others from welding processes, Korean Journal of

    Environmental Health, 30(4): 320-328.

    : . . . . . .