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Erschienen in: Journal of Nanoparticle Research 6/2010

01.08.2010 | Review Paper

Occupational exposure limits for nanomaterials: state of the art

verfasst von: P. A. Schulte, V. Murashov, R. Zumwalde, E. D. Kuempel, C. L. Geraci

Erschienen in: Journal of Nanoparticle Research | Ausgabe 6/2010

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Abstract

Assessing the need for and effectiveness of controlling airborne exposures to engineered nanomaterials in the workplace is difficult in the absence of occupational exposure limits (OELs). At present, there are practically no OELs specific to nanomaterials that have been adopted or promulgated by authoritative standards and guidance organizations. The vast heterogeneity of nanomaterials limits the number of specific OELs that are likely to be developed in the near future, but OELs could be developed more expeditiously for nanomaterials by applying dose–response data generated from animal studies for specific nanoparticles across categories of nanomaterials with similar properties and modes of action. This article reviews the history, context, and approaches for developing OELs for particles in general and nanoparticles in particular. Examples of approaches for developing OELs for titanium dioxide and carbon nanotubes are presented and interim OELs from various organizations for some nanomaterials are discussed. When adequate dose–response data are available in animals or humans, quantitative risk assessment methods can provide estimates of adverse health risk of nanomaterials in workers and, in conjunction with workplace exposure and control data, provide a basis for determining appropriate exposure limits. In the absence of adequate quantitative data, qualitative approaches to hazard assessment, exposure control, and safe work practices are prudent measures to reduce hazards in workers.

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Literatur
Zurück zum Zitat ABPI, Association of the British Pharmaceutical Industry (1995), London, UK ABPI, Association of the British Pharmaceutical Industry (1995), London, UK
Zurück zum Zitat ACGIH (1984) Particle size-selective sampling in the workplace, Report on the ACGIH Technical Committee on Air Sampling Procedures. Ann Am Conf Gov Ind Hyg 11:23–100 ACGIH (1984) Particle size-selective sampling in the workplace, Report on the ACGIH Technical Committee on Air Sampling Procedures. Ann Am Conf Gov Ind Hyg 11:23–100
Zurück zum Zitat ACGIH (2001) Particulates (insoluble) not otherwise specific (PNOS). In: Documentation of the threshold limit values for chemical substances, 7th ed. American Conference of Governmental Industrial Hygienists, Cincinnati, OH ACGIH (2001) Particulates (insoluble) not otherwise specific (PNOS). In: Documentation of the threshold limit values for chemical substances, 7th ed. American Conference of Governmental Industrial Hygienists, Cincinnati, OH
Zurück zum Zitat ACGIH (2009) TLVs® AND BEIs® based on the documentation of the threshold limit values for chemical substances and physical agents and biological exposure indices. American Conference of Governmental Industrial Hygienists, Cincinnati, OH ACGIH (2009) TLVs® AND BEIs® based on the documentation of the threshold limit values for chemical substances and physical agents and biological exposure indices. American Conference of Governmental Industrial Hygienists, Cincinnati, OH
Zurück zum Zitat Akiyama I, Ogami A, Oyabu T, Yamato H, Morimoto Y, Tanaka I (2007) Pulmonary effects and biopersistence of deposited silicon carbide whisker after 1-year inhalation in rats. Inhal Toxicol 19:141–147CrossRefPubMed Akiyama I, Ogami A, Oyabu T, Yamato H, Morimoto Y, Tanaka I (2007) Pulmonary effects and biopersistence of deposited silicon carbide whisker after 1-year inhalation in rats. Inhal Toxicol 19:141–147CrossRefPubMed
Zurück zum Zitat Brandys RC, Brandys Gm (2008) Global occupational exposure limits for over 6,000 specific chemicals. OEHCS Inc. Hinsdale, IL 60521 Brandys RC, Brandys Gm (2008) Global occupational exposure limits for over 6,000 specific chemicals. OEHCS Inc. Hinsdale, IL 60521
Zurück zum Zitat BSI (2007) Guide to Safe Handling and Disposal of Manufactured Nanomaterials. BSI PD6699-2 BSI (2007) Guide to Safe Handling and Disposal of Manufactured Nanomaterials. BSI PD6699-2
Zurück zum Zitat CEN (1993) Workplace atmospheres—size fraction determination for measurement of airborne particles. CEN EN 481. CEN, Brussels CEN (1993) Workplace atmospheres—size fraction determination for measurement of airborne particles. CEN EN 481. CEN, Brussels
Zurück zum Zitat CIIT and RIVM (2002) Multiple-path paticle deposition: a model for human and rat airway particle dosimetry, v. 1.0. CIIT, Research Triangle Park, NC; National Insitute for Public Health and the Environment (RIVM), Bilthoven, The Netherlands CIIT and RIVM (2002) Multiple-path paticle deposition: a model for human and rat airway particle dosimetry, v. 1.0. CIIT, Research Triangle Park, NC; National Insitute for Public Health and the Environment (RIVM), Bilthoven, The Netherlands
Zurück zum Zitat Cook WA (1945) Maximum allowable concentrations of industrial contaminants. Ind Med 14:936–946 Cook WA (1945) Maximum allowable concentrations of industrial contaminants. Ind Med 14:936–946
Zurück zum Zitat Cook WA (1987) Occupational exposure limits—worldwide. American Industrial Hygiene Association, Akron Cook WA (1987) Occupational exposure limits—worldwide. American Industrial Hygiene Association, Akron
Zurück zum Zitat Crump KS (1984) A new method for determining allowable daily intakes. Fund Appl Toxicol 4(5):854–871CrossRef Crump KS (1984) A new method for determining allowable daily intakes. Fund Appl Toxicol 4(5):854–871CrossRef
Zurück zum Zitat Dankovic D, Kuempel E, Wheeler M (2007) An approach to risk assessment for titanium dioxide. Inhal Toxicol 19(Suppl 1):205–212CrossRefPubMed Dankovic D, Kuempel E, Wheeler M (2007) An approach to risk assessment for titanium dioxide. Inhal Toxicol 19(Suppl 1):205–212CrossRefPubMed
Zurück zum Zitat Dressen WC, Dallavale JM, Edwards JI, Miller JW, Sayers RR (1938). A study of asbestosis in the asbestos textile industry. Public Health Bulletin No. 241 Dressen WC, Dallavale JM, Edwards JI, Miller JW, Sayers RR (1938). A study of asbestosis in the asbestos textile industry. Public Health Bulletin No. 241
Zurück zum Zitat Drew R, Frangos J, Hagen T (2009) Engineered nanomaterials: a review of the toxicology and health hazards. Safe Work Australia, Barton ACT Drew R, Frangos J, Hagen T (2009) Engineered nanomaterials: a review of the toxicology and health hazards. Safe Work Australia, Barton ACT
Zurück zum Zitat Galer DM, Leung HW, Sussman G, Trzos RJ (1992) Scientific and practical considerations for the development of occupational exposure limits (OELs) for chemical substances. Reg Toxicol Pharmacol 15:291–306CrossRef Galer DM, Leung HW, Sussman G, Trzos RJ (1992) Scientific and practical considerations for the development of occupational exposure limits (OELs) for chemical substances. Reg Toxicol Pharmacol 15:291–306CrossRef
Zurück zum Zitat Greim H, Zeigler-Skylakakis K (1997) Strategies for setting occupational exposure limits for particles. Environ Health Perspect 105(Suppl 5):1357–1361CrossRefPubMed Greim H, Zeigler-Skylakakis K (1997) Strategies for setting occupational exposure limits for particles. Environ Health Perspect 105(Suppl 5):1357–1361CrossRefPubMed
Zurück zum Zitat Gruber M (1883) Über den Nachweis und die Gifigkeit des Kohlenoxyds und sein Vorkommeu in Wohnrăumen. Arch Hyg 1:145–168 Gruber M (1883) Über den Nachweis und die Gifigkeit des Kohlenoxyds und sein Vorkommeu in Wohnrăumen. Arch Hyg 1:145–168
Zurück zum Zitat Hansen SF, Larsen BH, Olsen SI et al (2007) Categorization framework to aid hazard identification of nanomaterials. Nanotoxicology 1:243–250CrossRef Hansen SF, Larsen BH, Olsen SI et al (2007) Categorization framework to aid hazard identification of nanomaterials. Nanotoxicology 1:243–250CrossRef
Zurück zum Zitat Heinrich U, Fuhst R, Rittinghausen S, Creutzenberg O, Bellmann B, Koch W, Levsen K (1995) Chronic inhalation exposure of Wistar rats and 2 different strains of mice to diesel-engine exhaust, carbon-black, and titanium-dioxide. Inhal Toxicol 7(4):466–533 Heinrich U, Fuhst R, Rittinghausen S, Creutzenberg O, Bellmann B, Koch W, Levsen K (1995) Chronic inhalation exposure of Wistar rats and 2 different strains of mice to diesel-engine exhaust, carbon-black, and titanium-dioxide. Inhal Toxicol 7(4):466–533
Zurück zum Zitat Higgins E et al (1917) Siliceous Dust in Relation to Pulmonary Diseases among Miners in the Joplin District, Missouri. Bulletin 132. U.S.Dept. of Interior. Bureau of Mines, Washington, DC Higgins E et al (1917) Siliceous Dust in Relation to Pulmonary Diseases among Miners in the Joplin District, Missouri. Bulletin 132. U.S.Dept. of Interior. Bureau of Mines, Washington, DC
Zurück zum Zitat Howard J, Murashov V (2009) National nanotechnology partnership to protect workers. J Nanopart Res 11(7):1673–1683CrossRef Howard J, Murashov V (2009) National nanotechnology partnership to protect workers. J Nanopart Res 11(7):1673–1683CrossRef
Zurück zum Zitat Hubbs AF, Mercer RR, Coad JE, Battelli LA, Willard P, Sriram K, Wolfarth M, Castranova V, Porter D (2009) Persistent pulmonary inflammation, airway mucous metaplasia and migration of multi-walled carbon nanotubes from the lung after subchronic exposure. Toxicol 108:A2193 Hubbs AF, Mercer RR, Coad JE, Battelli LA, Willard P, Sriram K, Wolfarth M, Castranova V, Porter D (2009) Persistent pulmonary inflammation, airway mucous metaplasia and migration of multi-walled carbon nanotubes from the lung after subchronic exposure. Toxicol 108:A2193
Zurück zum Zitat ICRP (1994) Human respiratory tract model for radiological protection. In: Smith H (ed) Annals of the ICRP, ICRP Publication No. 66. International Commission on Radiological Protection, Tarrytown, New York ICRP (1994) Human respiratory tract model for radiological protection. In: Smith H (ed) Annals of the ICRP, ICRP Publication No. 66. International Commission on Radiological Protection, Tarrytown, New York
Zurück zum Zitat Illing HP (1991) Extrapolating from toxicity data to some occupational exposure limits: some considerations. Ann Occup Hyg 35:569–580CrossRefPubMed Illing HP (1991) Extrapolating from toxicity data to some occupational exposure limits: some considerations. Ann Occup Hyg 35:569–580CrossRefPubMed
Zurück zum Zitat ISO (1995) Air Quality- Particle size fraction definitions for health-related sampling, ISO 7708: 1995. International Organization for Standardization, Geneva, Switzerland ISO (1995) Air Quality- Particle size fraction definitions for health-related sampling, ISO 7708: 1995. International Organization for Standardization, Geneva, Switzerland
Zurück zum Zitat ISO (2007) Workplace atmospheres—ultrafine nanoparticle and nano-structured aerosols—inhalation, exposure characterization and assessment. Document No. ISO/TR 27628:2007. International Organization for Standardization, Geneva ISO (2007) Workplace atmospheres—ultrafine nanoparticle and nano-structured aerosols—inhalation, exposure characterization and assessment. Document No. ISO/TR 27628:2007. International Organization for Standardization, Geneva
Zurück zum Zitat ISO (2009) ISO/TC 229 Nanotechnologies Working Group 3–Health, Safety and the Environment, Project Group 6, “Guide to safe handling and disposal of manufactured nanomaterials”, Draft Report, 9 June 2009, Seattle, Washington, U.S.A. NANO TC229 WG 3/PG 6 012–2009. International Organization for Standardization, Geneva ISO (2009) ISO/TC 229 Nanotechnologies Working Group 3–Health, Safety and the Environment, Project Group 6, “Guide to safe handling and disposal of manufactured nanomaterials”, Draft Report, 9 June 2009, Seattle, Washington, U.S.A. NANO TC229 WG 3/PG 6 012–2009. International Organization for Standardization, Geneva
Zurück zum Zitat Jackson N, Lopata A, Elms T, Wright P (2009) Engineered nanomaterials: evidence on the effectiveness of workplace controls to prevent exposures. Safe Work Australia, Barton ACT Jackson N, Lopata A, Elms T, Wright P (2009) Engineered nanomaterials: evidence on the effectiveness of workplace controls to prevent exposures. Safe Work Australia, Barton ACT
Zurück zum Zitat Jaurand MCF, Renier A, Daubriac J (2009) Mesothelioma: do asbestos and carbon nanotubes pose the same health risk? Part Fibre Toxicol 6:16–29CrossRefPubMed Jaurand MCF, Renier A, Daubriac J (2009) Mesothelioma: do asbestos and carbon nanotubes pose the same health risk? Part Fibre Toxicol 6:16–29CrossRefPubMed
Zurück zum Zitat Johnson NF, Hoover MD, Thomassen DG, Cheng YS, Balley A, Brooks Al (1992) In vitro activity of silicon carbide whiskers in comparison to other industrial fibers using four cell culture systems. Am J Ind Med 21(6):807–823CrossRefPubMed Johnson NF, Hoover MD, Thomassen DG, Cheng YS, Balley A, Brooks Al (1992) In vitro activity of silicon carbide whiskers in comparison to other industrial fibers using four cell culture systems. Am J Ind Med 21(6):807–823CrossRefPubMed
Zurück zum Zitat Kamrin MA (1988) Toxicology. Lewis Publishing, Chelsea, p 82 Kamrin MA (1988) Toxicology. Lewis Publishing, Chelsea, p 82
Zurück zum Zitat Karlsson HL, Cronholm P, Gustafsson J, Moller L (2008) Copper oxide nanoparticles are highly toxic: a comparison between metal oxide nanoparticles and carbon nanotubes. Chem Res Toxicol 21(9):1726–1732CrossRefPubMed Karlsson HL, Cronholm P, Gustafsson J, Moller L (2008) Copper oxide nanoparticles are highly toxic: a comparison between metal oxide nanoparticles and carbon nanotubes. Chem Res Toxicol 21(9):1726–1732CrossRefPubMed
Zurück zum Zitat Kisin ER, Murray AR, Keane MJ, Shi XC, Schwegler-Berry D, Gorelik O (2007) Single-walled carbon nanotubes: geno- and cytotoxic effects in lung fibroblast V79cells. J Toxicol Environ Health A 70(24):2071–2079CrossRefPubMed Kisin ER, Murray AR, Keane MJ, Shi XC, Schwegler-Berry D, Gorelik O (2007) Single-walled carbon nanotubes: geno- and cytotoxic effects in lung fibroblast V79cells. J Toxicol Environ Health A 70(24):2071–2079CrossRefPubMed
Zurück zum Zitat Ku RH (2000) An overview of setting occupational exposure limits (OELs) for pharmaceuticals. Chemical Health Saf January/February:34–47 Ku RH (2000) An overview of setting occupational exposure limits (OELs) for pharmaceuticals. Chemical Health Saf January/February:34–47
Zurück zum Zitat Kuempel ED, Tran CL, Castranova V, Bailer AJ (2006) Lung dosimetry and risk assessment of nanoparticles: evaluating and extending current models in rats and humans. Inhal Toxicol 18:717–724CrossRefPubMed Kuempel ED, Tran CL, Castranova V, Bailer AJ (2006) Lung dosimetry and risk assessment of nanoparticles: evaluating and extending current models in rats and humans. Inhal Toxicol 18:717–724CrossRefPubMed
Zurück zum Zitat Kuempel ED, Geraci CL, Schulte PA (2007) Risk assessment approaches and research needs for nanoparticles: an examination of data and information from current studies. In: Simeonova PP, Opopol N, Luster MI (eds) Nanotechnology—toxicological issues and environmental safety. Springer, New York, pp 119–145CrossRef Kuempel ED, Geraci CL, Schulte PA (2007) Risk assessment approaches and research needs for nanoparticles: an examination of data and information from current studies. In: Simeonova PP, Opopol N, Luster MI (eds) Nanotechnology—toxicological issues and environmental safety. Springer, New York, pp 119–145CrossRef
Zurück zum Zitat Lee KP, Trochimowicz HJ, Reinhardt CF (1985) Pulmonary response of rats exposed to titanium dioxide (TiO2) by inhalation for two years. Toxicol Appl Pharmacol 79:179–192CrossRefPubMed Lee KP, Trochimowicz HJ, Reinhardt CF (1985) Pulmonary response of rats exposed to titanium dioxide (TiO2) by inhalation for two years. Toxicol Appl Pharmacol 79:179–192CrossRefPubMed
Zurück zum Zitat Lehman KB, Flury F (1938) Toxikologie und hygiene der technischen losungsmittel. Julius Springer, Berlin Lehman KB, Flury F (1938) Toxikologie und hygiene der technischen losungsmittel. Julius Springer, Berlin
Zurück zum Zitat Ma-Hock I, Treumann S, Strauss V, Brill S, Luizi I, Martiee M, Wiench K et al (2009) Inhalation of multiwall carbon nanotubes in rats exposed for 3 months. Toxicol Sci 112(2):468–481CrossRef Ma-Hock I, Treumann S, Strauss V, Brill S, Luizi I, Martiee M, Wiench K et al (2009) Inhalation of multiwall carbon nanotubes in rats exposed for 3 months. Toxicol Sci 112(2):468–481CrossRef
Zurück zum Zitat Maynard A (2007) Nanotechnology: the next big thing or much ado about nothing. Ann Occup Hyg 51:1–12CrossRefPubMed Maynard A (2007) Nanotechnology: the next big thing or much ado about nothing. Ann Occup Hyg 51:1–12CrossRefPubMed
Zurück zum Zitat Maynard AD, Kuempel ED (2005) Airborne nanostructured particles and occupational health. J Nanopart Res 7(6):587–614CrossRef Maynard AD, Kuempel ED (2005) Airborne nanostructured particles and occupational health. J Nanopart Res 7(6):587–614CrossRef
Zurück zum Zitat McGarity TO (1992) Some thoughts on “deossifying” the rulemaking process. Duke Law J 41:1385–1462CrossRef McGarity TO (1992) Some thoughts on “deossifying” the rulemaking process. Duke Law J 41:1385–1462CrossRef
Zurück zum Zitat McHattie GV, Rackham M, Teasdale EL (1988) The derivation of occupational exposure limits in the pharmaceutical-industry. J Soc Occup Med 38(4):105–108CrossRefPubMed McHattie GV, Rackham M, Teasdale EL (1988) The derivation of occupational exposure limits in the pharmaceutical-industry. J Soc Occup Med 38(4):105–108CrossRefPubMed
Zurück zum Zitat Merchant JA (1990) Human epidemiology: a review of fiber types and characteristics in the development of malignant and nonmalignant disease. Environ Health Perspect 88:287–293CrossRefPubMed Merchant JA (1990) Human epidemiology: a review of fiber types and characteristics in the development of malignant and nonmalignant disease. Environ Health Perspect 88:287–293CrossRefPubMed
Zurück zum Zitat Muller J, Decordier I, Hoet PH, Lombaert N, Thomassen L, Hauax F, Lison D, Kirsch-Volders M (2008a) Clastogenic and aneugenic effects of multi-wall carbon nanotubes in epithelial cells. Carcinogenesis 29(2):427–433CrossRefPubMed Muller J, Decordier I, Hoet PH, Lombaert N, Thomassen L, Hauax F, Lison D, Kirsch-Volders M (2008a) Clastogenic and aneugenic effects of multi-wall carbon nanotubes in epithelial cells. Carcinogenesis 29(2):427–433CrossRefPubMed
Zurück zum Zitat Muller J, Hauax F, Fonseca A, Nagy JB, Moreau N, Delos M (2008b) Structural defects play a major role in the acute lung toxicity of multiwall carbon nanotubes: toxicological aspects. Chem Res Toxicol 21:1698–1705CrossRefPubMed Muller J, Hauax F, Fonseca A, Nagy JB, Moreau N, Delos M (2008b) Structural defects play a major role in the acute lung toxicity of multiwall carbon nanotubes: toxicological aspects. Chem Res Toxicol 21:1698–1705CrossRefPubMed
Zurück zum Zitat Muller J, Delos M, Panin N, Rabolli V, Huaux F, Lison D (2009) Absence of carcinogenic response to multiwall carbon nanotubes in 2-year bioassay in the periotoneal cavity of the rat. Toxicol Sci 110(2):442–448CrossRefPubMed Muller J, Delos M, Panin N, Rabolli V, Huaux F, Lison D (2009) Absence of carcinogenic response to multiwall carbon nanotubes in 2-year bioassay in the periotoneal cavity of the rat. Toxicol Sci 110(2):442–448CrossRefPubMed
Zurück zum Zitat National Research Council (2008) Science and decisions: advancing risk assessment. National Research Council of the National Academies, Washington, DC National Research Council (2008) Science and decisions: advancing risk assessment. National Research Council of the National Academies, Washington, DC
Zurück zum Zitat Naumann BD, Sargent EV, Starkman BS, Fraser WJ, Becker GT, Kirk GD (1996) Performance-based exposure control limits for pharmaceutically active ingredients. Am Ind Hyg Assoc J 57:33–42PubMed Naumann BD, Sargent EV, Starkman BS, Fraser WJ, Becker GT, Kirk GD (1996) Performance-based exposure control limits for pharmaceutically active ingredients. Am Ind Hyg Assoc J 57:33–42PubMed
Zurück zum Zitat Nel AE, Xia T, Madler L, Li N (2006) Toxic potential of materials at the nanolevel. Science 311(5761):622–627CrossRefPubMedADS Nel AE, Xia T, Madler L, Li N (2006) Toxic potential of materials at the nanolevel. Science 311(5761):622–627CrossRefPubMedADS
Zurück zum Zitat NIOSH (1994) In: Schlecht PC, O’Conner PF (eds) NIOSH manual of analytical methods (NMAM®), 4th ed. DHHS (NIOSH) Publication No. 1994-113. U.S. Department of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH. (http://www.cdc.gov/niosh/nmam/). Accessed 7 Oct 2009 NIOSH (1994) In: Schlecht PC, O’Conner PF (eds) NIOSH manual of analytical methods (NMAM®), 4th ed. DHHS (NIOSH) Publication No. 1994-113. U.S. Department of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH. (http://​www.​cdc.​gov/​niosh/​nmam/​). Accessed 7 Oct 2009
Zurück zum Zitat NIOSH (2005) NIOSH Current Intelligence Bulletin: Evaluation of Health Hazard and Recommendations for Occupational Exposure to Titanium dioxide. Unpublished Public Review Draft. November 22, 2005. U.S. Department of Health and Human Services, Public Health Service Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH. http://www.cdc.gov/niosh/docs/preprint/tio2/pdfs/TIO2Draft.pdf NIOSH (2005) NIOSH Current Intelligence Bulletin: Evaluation of Health Hazard and Recommendations for Occupational Exposure to Titanium dioxide. Unpublished Public Review Draft. November 22, 2005. U.S. Department of Health and Human Services, Public Health Service Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH. http://​www.​cdc.​gov/​niosh/​docs/​preprint/​tio2/​pdfs/​TIO2Draft.​pdf
Zurück zum Zitat NIOSH (2009a) Approaches to Safe Nanotechnology: Managing the Health and Safety Concerns with Engineered Nanomaterials.: U.S. DHHS (NIOSH) Publication No. 2009-125. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH NIOSH (2009a) Approaches to Safe Nanotechnology: Managing the Health and Safety Concerns with Engineered Nanomaterials.: U.S. DHHS (NIOSH) Publication No. 2009-125. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Cincinnati, OH
Zurück zum Zitat NIOSH (2009b) Qualitative Risk Characterization and Management of Occupational Hazards: Control Banding (CB). A literature review and critical analysis. Publication No. 2009-152. U.S. Department of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, DHHS (NIOSH), Cincinnati, OH NIOSH (2009b) Qualitative Risk Characterization and Management of Occupational Hazards: Control Banding (CB). A literature review and critical analysis. Publication No. 2009-152. U.S. Department of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, DHHS (NIOSH), Cincinnati, OH
Zurück zum Zitat Oberdörster G, Stone V, Donaldson K (2007) Toxicology of nanoparticles: a historical perspective. Nanotoxicology 1(1):2–25CrossRef Oberdörster G, Stone V, Donaldson K (2007) Toxicology of nanoparticles: a historical perspective. Nanotoxicology 1(1):2–25CrossRef
Zurück zum Zitat Occupational Safety and Health Act of 1970, 29 USC § 667:2000 Occupational Safety and Health Act of 1970, 29 USC § 667:2000
Zurück zum Zitat Paik SY, Zalk DM, Swuste P (2008) Application of a pilot control banding tool for risk level assessment and control of nanoparticle exposures. Ann Occup Hyg 52:419–428CrossRefPubMed Paik SY, Zalk DM, Swuste P (2008) Application of a pilot control banding tool for risk level assessment and control of nanoparticle exposures. Ann Occup Hyg 52:419–428CrossRefPubMed
Zurück zum Zitat Park RM, Stayner LT (2006) A search for thresholds and other nonlinearities in the relationship between hexavalent chromium and lung cancer. Risk Anal 26(1):79–88CrossRefPubMed Park RM, Stayner LT (2006) A search for thresholds and other nonlinearities in the relationship between hexavalent chromium and lung cancer. Risk Anal 26(1):79–88CrossRefPubMed
Zurück zum Zitat Paul JM (1989) The origin and basis of threshold limit values. Am J Ind Medicine 5:227–238CrossRef Paul JM (1989) The origin and basis of threshold limit values. Am J Ind Medicine 5:227–238CrossRef
Zurück zum Zitat Pauluhn J (2010a) Subchronic 13-week inhalation exposure to rats to multiwalled carbon nanotubes: toxic effects are determined by density of agglomerate structures, not fibrillar structures. Toxicol Sci 113(1):226–242CrossRefPubMed Pauluhn J (2010a) Subchronic 13-week inhalation exposure to rats to multiwalled carbon nanotubes: toxic effects are determined by density of agglomerate structures, not fibrillar structures. Toxicol Sci 113(1):226–242CrossRefPubMed
Zurück zum Zitat Paustenbach DJ (1998) Occupational exposure limits. In: Stellman J (ed) Encyclopedia of occupational health and safety. International Labour Office, Geneva, pp 30.27–30.34 Paustenbach DJ (1998) Occupational exposure limits. In: Stellman J (ed) Encyclopedia of occupational health and safety. International Labour Office, Geneva, pp 30.27–30.34
Zurück zum Zitat Paustenbach DJ, Langner RR (1986) Setting corporate exposure limits: state of the art. Am Ind Hyg Assoc J 47:809–818 Paustenbach DJ, Langner RR (1986) Setting corporate exposure limits: state of the art. Am Ind Hyg Assoc J 47:809–818
Zurück zum Zitat Piegorsch WW, Bailer AJ (2005) Quantitative risk assessment with stimulus-response data. In: Analyzing environmental data. Wiley, Chichester, West Sussex, UK, pp 171–214 Piegorsch WW, Bailer AJ (2005) Quantitative risk assessment with stimulus-response data. In: Analyzing environmental data. Wiley, Chichester, West Sussex, UK, pp 171–214
Zurück zum Zitat Poland CA, Duffin R, Kinloch I, Maynard A, Wallace WAH, Seaton A, Stone V, Brown S, MacNee W, Donaldson K (2008) Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study. Nat Nanotechnol 3(7):423–428CrossRefPubMed Poland CA, Duffin R, Kinloch I, Maynard A, Wallace WAH, Seaton A, Stone V, Brown S, MacNee W, Donaldson K (2008) Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study. Nat Nanotechnol 3(7):423–428CrossRefPubMed
Zurück zum Zitat Porter DW, Hubbs AF, Mercer RR, Nianqiang Wu, Wolfarth MG, Sriram K, Leonard SS, Batelli L, Schwegler-Gerry D, Friend S, Andrew M, Chen BT, Tsuruoka S, Endo M, Castranova V (2009) Mouse pulmonary dose-and time course-response induced by exposure to multi-walled carbon nanotubes. Toxicology 269:136–147CrossRefPubMed Porter DW, Hubbs AF, Mercer RR, Nianqiang Wu, Wolfarth MG, Sriram K, Leonard SS, Batelli L, Schwegler-Gerry D, Friend S, Andrew M, Chen BT, Tsuruoka S, Endo M, Castranova V (2009) Mouse pulmonary dose-and time course-response induced by exposure to multi-walled carbon nanotubes. Toxicology 269:136–147CrossRefPubMed
Zurück zum Zitat Sargent EV, Kirk GD (1988) Establishing airborne exposure control limits in the pharmaceutical industry. Am Ind Hyg Assoc J 4996:309–313 Sargent EV, Kirk GD (1988) Establishing airborne exposure control limits in the pharmaceutical industry. Am Ind Hyg Assoc J 4996:309–313
Zurück zum Zitat Sargent LM, Shvedova AA, Hubbs AF, Salisbury JL, Benkovic SA, Kashon ML, Lowry DT, Murray AR, Kisin ER, Friend S, McKinstry KT, Battelli L, Reynolds SH (2009) Induction of aneuploidy by single-walled carbon nanotubes. Environ Mol Mutagen 50(8):708–717. doi:10:1002/em.25029 CrossRefPubMed Sargent LM, Shvedova AA, Hubbs AF, Salisbury JL, Benkovic SA, Kashon ML, Lowry DT, Murray AR, Kisin ER, Friend S, McKinstry KT, Battelli L, Reynolds SH (2009) Induction of aneuploidy by single-walled carbon nanotubes. Environ Mol Mutagen 50(8):708–717. doi:10:​1002/​em.​25029 CrossRefPubMed
Zurück zum Zitat Sayers RR(1927) Toxicology of gases and vapors. In: International critical tables of numerical data, physics, chemistry, and toxicology, vol 2. McGraw-Hill, New York, pp 318–321 Sayers RR(1927) Toxicology of gases and vapors. In: International critical tables of numerical data, physics, chemistry, and toxicology, vol 2. McGraw-Hill, New York, pp 318–321
Zurück zum Zitat Schulte P, Geraci C, Zumwalde R, Hoover M, Kuempel E (2008) Occupational risk management of engineered nanoparticles. J Occup Environ Med 5:239–249 Schulte P, Geraci C, Zumwalde R, Hoover M, Kuempel E (2008) Occupational risk management of engineered nanoparticles. J Occup Environ Med 5:239–249
Zurück zum Zitat Schulte PA, Schubauer-Berigan MK, Mayweather C, Geraci CL, Zumwalde R, McKernan JL (2009) Issues in the development of epidemiological studies of workers exposed to engineered nanoparticles. J Occup Environ Health 51:323–335CrossRef Schulte PA, Schubauer-Berigan MK, Mayweather C, Geraci CL, Zumwalde R, McKernan JL (2009) Issues in the development of epidemiological studies of workers exposed to engineered nanoparticles. J Occup Environ Health 51:323–335CrossRef
Zurück zum Zitat Selcuk ZT, Coplu L, Emri S, Kalyoncu AF, Sahin AA, Baris YI (1992) Malignant pleural mesothelioma due to environmental mineral fiber exposure in Turkey—analysis of 135 cases. Chest 102(3):790–796CrossRefPubMed Selcuk ZT, Coplu L, Emri S, Kalyoncu AF, Sahin AA, Baris YI (1992) Malignant pleural mesothelioma due to environmental mineral fiber exposure in Turkey—analysis of 135 cases. Chest 102(3):790–796CrossRefPubMed
Zurück zum Zitat Shvedova AA, Kisin ER, Mercer R, Murray AR, Johnson VJ, Potapovich AI, Tyurina YY, Gorelik O, Arepalli S, Schwegler-Berry D (2005) Unusual inflammatory and fibrogenic pulmonary responses to single walled carbon nanotubes in mice. Am J Phys Lung Cell Mol Phys 289(5):L698–L708CrossRef Shvedova AA, Kisin ER, Mercer R, Murray AR, Johnson VJ, Potapovich AI, Tyurina YY, Gorelik O, Arepalli S, Schwegler-Berry D (2005) Unusual inflammatory and fibrogenic pulmonary responses to single walled carbon nanotubes in mice. Am J Phys Lung Cell Mol Phys 289(5):L698–L708CrossRef
Zurück zum Zitat Shvedova AA et al (2008) Inhalation vs. aspiration of single walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress and mutagenesis. Am J Physiol Lung Cell Mol Physiol 295(4):L552–L565 CrossRefPubMed Shvedova AA et al (2008) Inhalation vs. aspiration of single walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress and mutagenesis. Am J Physiol Lung Cell Mol Physiol 295(4):L552–L565 CrossRefPubMed
Zurück zum Zitat Shvedova AA, Kisin ER, Porter D, Schulte P, Kagan VE, Fadeel B, Castranova V (2009) Mechanisms of pulmonary toxicity and medical applications of carbon nanotubes: two faces of Janus. Pharmacol Ther 121:192–204CrossRefPubMed Shvedova AA, Kisin ER, Porter D, Schulte P, Kagan VE, Fadeel B, Castranova V (2009) Mechanisms of pulmonary toxicity and medical applications of carbon nanotubes: two faces of Janus. Pharmacol Ther 121:192–204CrossRefPubMed
Zurück zum Zitat Takagi A, Hirose A, Nishimura T, Fukumori N, Ogata A, Ohashi N, Kitajima S, Kanno J (2008) Induction of mesothelioma in p53± mouse by intraperitoneal application of multiwall carbon nanotubes. J Toxicol Sci 33:105–116CrossRefPubMed Takagi A, Hirose A, Nishimura T, Fukumori N, Ogata A, Ohashi N, Kitajima S, Kanno J (2008) Induction of mesothelioma in p53± mouse by intraperitoneal application of multiwall carbon nanotubes. J Toxicol Sci 33:105–116CrossRefPubMed
Zurück zum Zitat Tran CL, Cullen RT, Buchanan D, Jones AD, Miller BG, Searl A, Davis JMG, Donaldson K (1999) Litigation and prediction of pulmonary responses to dust. Part II. In: Investigations into the Pulmonary Effects of Low Toxicity Dusts. Parts I and II. Contract Research Report 216/1999. Health and Safety Executive, Suffolk Tran CL, Cullen RT, Buchanan D, Jones AD, Miller BG, Searl A, Davis JMG, Donaldson K (1999) Litigation and prediction of pulmonary responses to dust. Part II. In: Investigations into the Pulmonary Effects of Low Toxicity Dusts. Parts I and II. Contract Research Report 216/1999. Health and Safety Executive, Suffolk
Zurück zum Zitat U.S. EPA (1996) Benchmark Dose Technical Guidance Document. U.S. Environmental Protection Agency, Risk Assessment Forum, EPA/600/P-96/002A. U.S. Supreme Court (1980). U.S. Environmental Protection Agency, Washington, DC U.S. EPA (1996) Benchmark Dose Technical Guidance Document. U.S. Environmental Protection Agency, Risk Assessment Forum, EPA/600/P-96/002A. U.S. Supreme Court (1980). U.S. Environmental Protection Agency, Washington, DC
Zurück zum Zitat U.S. EPA (2005) Guidelines for Carcinogen Risk Assessment, Risk Assessment Forum, epa/630/P-03/001F. U.S. Environmental Protection Agency, Washington, DC U.S. EPA (2005) Guidelines for Carcinogen Risk Assessment, Risk Assessment Forum, epa/630/P-03/001F. U.S. Environmental Protection Agency, Washington, DC
Zurück zum Zitat U.S. Supreme Court (1980) Industrial Union Department, AFL-CIO v. American Petroleum Institute et al., Case Nos. 78-911, 78-1036. Supreme Court Register 100:2844–2905 U.S. Supreme Court (1980) Industrial Union Department, AFL-CIO v. American Petroleum Institute et al., Case Nos. 78-911, 78-1036. Supreme Court Register 100:2844–2905
Zurück zum Zitat van Leeuwen CJ, Vermeire TG (2007) Risk assessment of chemicals: an introduction. Springer, DordrechtCrossRef van Leeuwen CJ, Vermeire TG (2007) Risk assessment of chemicals: an introduction. Springer, DordrechtCrossRef
Zurück zum Zitat Wheeler MW, Bailer AJ (2007) Properties of model-averaged BMDLs: a study of model averaging in dichotomous response risk estimation. Risk Anal 27(3):659–670CrossRefPubMed Wheeler MW, Bailer AJ (2007) Properties of model-averaged BMDLs: a study of model averaging in dichotomous response risk estimation. Risk Anal 27(3):659–670CrossRefPubMed
Zurück zum Zitat World Health Organization (1994) Environmental Health Criteria Document No. 170 assessing human health risks of chemicals: derivation of guidance values for health-based exposure limits. World Health Organization, Geneva World Health Organization (1994) Environmental Health Criteria Document No. 170 assessing human health risks of chemicals: derivation of guidance values for health-based exposure limits. World Health Organization, Geneva
Zurück zum Zitat Zalk DM, Paik SY, Swuste P (2009) Evaluating the control banding nanotool: a qualitative risk assessment method for controlling nanoparticle exposures. J Nanopart Res 11:1685–1704CrossRef Zalk DM, Paik SY, Swuste P (2009) Evaluating the control banding nanotool: a qualitative risk assessment method for controlling nanoparticle exposures. J Nanopart Res 11:1685–1704CrossRef
Zurück zum Zitat Zhu L, Chang DW, Dai L, Hong Y (2007) DNA damage induced by multi-walled carbon nanotubes in mouse embryonic stem cells. Nano Lett 7(12):3592–3597CrossRefPubMedADS Zhu L, Chang DW, Dai L, Hong Y (2007) DNA damage induced by multi-walled carbon nanotubes in mouse embryonic stem cells. Nano Lett 7(12):3592–3597CrossRefPubMedADS
Metadaten
Titel
Occupational exposure limits for nanomaterials: state of the art
verfasst von
P. A. Schulte
V. Murashov
R. Zumwalde
E. D. Kuempel
C. L. Geraci
Publikationsdatum
01.08.2010
Verlag
Springer Netherlands
Erschienen in
Journal of Nanoparticle Research / Ausgabe 6/2010
Print ISSN: 1388-0764
Elektronische ISSN: 1572-896X
DOI
https://doi.org/10.1007/s11051-010-0008-1

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