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Articles

Determination of silver release from antibacterial finished cotton and polyester fabrics into water

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Pages 1128-1135 | Received 29 Dec 2015, Accepted 05 Aug 2016, Published online: 23 Aug 2016

References

  • An, G. H., Wang, H. J., Kim, B. H., Jeong, Y. G., & Choa, Y. H. (2007). Fabrication and characterization of a hydroxyapatite nanopowder by ultrasonic spray pyrolysis with salt-assisted decomposition. Materials Science and Engineering: A, 449, 821–824. doi:10.1016/j.msea.2006.02.436
  • Benn, T. M., & Westerhoff, P. (2008). Nanoparticle silver released into water from commercially available sock fabrics. Environmental Science & Technology, 42, 4133–4139. doi:10.1021/es7032718
  • Bianco, C., Kezic, S., Crosera, M., Svetličić, V., Šegota, S., Maina, G., … Adami, G. (2015). In vitro percutaneous penetration and characterization of silver from silver-containing textiles. International Journal of Nanomedicine, 10, 1899–1908. doi:10.2147/IJN.S78345
  • Blaser, S. A., Scheringer, M., MacLeod, M., & Hungerbühler, K. (2008). Estimation of cumulative aquatic exposure and risk due to silver: Contribution of nano-functionalized plastics and textiles. Science of the Total Environment, 390, 396–409. doi:10.1016/j.scitotenv.2007.10.010
  • Drake, P. L., & Hazelwood, K. J. (2005). Exposure-related health effects of silver and silver compounds: A review. The Annals of Occupational Hygiene, 49, 575–585. doi:10.1093/annhyg/mei019
  • Durán, N., Marcato, P. D., Alves, O. L., Da Silva, J. P. S., De Souza, G. I. H., Rodrigues, F. A., & Esposito, E. (2010). Ecosystem protection by effluent bioremediation: Silver nanoparticles impregnation in a textile fabrics process. Journal of Nanoparticle Research, 12, 285–292. doi:10.1007/s11051-009-9606-1
  • El-Rafie, M. H., Ahmed, H. B., & Zahran, M. K. (2014). Characterization of nanosilver coated cotton fabrics and evaluation of its antibacterial efficacy. Carbohydrate Polymers, 107, 174–181.10.1016/j.carbpol.2014.02.024
  • Feng, Q. L., Wu, J., Chen, G. Q., Cui, F. Z., Kim, T. N., & Kim, J. O. (2000). A mechanistic study of the antibacterial effect of silver ions on Escherichia coli and Staphylococcus aureus. Journal of Biomedical Materials Research, 52, 662–668. doi:10.1002/1097-4636(20001215)52:4<662:AID-JBM10>3.0.CO;2-3
  • Fullana, S. G., Ternet, H., Freche, M., Lacout, J. L., & Rodriguez, F. (2010). Controlled release properties and final macroporosity of a pectin microspheres-calcium phosphate composite bone cement. Acta Biomaterialia, 6, 2294–2300. doi:10.1016/j.actbio.2009.11.019
  • Geranio, L., Heuberger, M., & Nowack, B. (2009). The behavior of silver nanotextiles during washing. Environmental Science & Technology, 43, 8113–8118.10.1021/es9018332
  • Goetz, N., Lorenz, C., & Windler, L. (2013). Migration of Ag- and TiO2-(Nano)particles from textiles into artificial sweat under physical stress: Experiments and exposure modelling. Environmental Science & Technology, 47, 9979–9987.10.1021/es304329w
  • Hackenberg, S., Scherzed, A., Kessler, M., Hummel, S., Technau, A., Froelich, K., … Kleinsasser, N. (2011). Silver nanoparticles: Evaluation of DNA damage, toxicity and functional impairment in human mesenchymal stem cells. Toxicology Letters, 201, 27–33. doi:10.1016/j.toxlet.2010.12.001
  • Hedberg, J., Skoglund, S., Karlsson, M. E., Wold, S., Odnevall Wallinder, I., & Hedberg, Y. (2014). Sequential studies of silver released from silver nanoparticles in aqueous media simulating sweat, laundry detergent solutions and surface water. Environmental Science & Technology, 48, 7314–7322. doi:10.1021/es500234y
  • Kim, T. N., Feng, Q. L., Kim, J. O., Wu, J., Wang, H., Chen, G. C., & Cui, F. Z. (1998). Antimicrobial effects of metal ions (Ag+, Cu2+, Zn2+) in hydroxyapatite. Journal of Materials Science-Materials in Medicine, 9, 129–134.10.1023/A:1008811501734
  • Kulthong, K., Srisung, S., Boonpavanitchakul, K., Kangwansupamonkon, W., & Maniratanachote, R. (2010). Determination of silver nanoparticle release from antibacterial fabrics into artificial sweat. Particle and Fibre Toxicology, 7 (8), 1–9. doi:10.1186/1743-8977-7-8
  • Kumar, R., Howdle, S., & Münstedt, H. (2005). Polyamide/silver antimicrobials: Effect of filler types on the silver ion release. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 75B, 311–319.10.1002/(ISSN)1552-4981
  • Liu, J. K., Yang, X. H., & Tian, X. G. (2008). Preparation of silver/hydroxyapatite nanocomposite spheres. Powder Technology, 184, 21–24.10.1016/j.powtec.2007.07.034
  • Lorenz, C., Windler, L., & von Goetz, N. (2012). Characterization of silver release from commercially available functional (nano)textiles. Chemosphere, 89, 817–824.10.1016/j.chemosphere.2012.04.063
  • Montazer, M., Alimohammadi, F., Shamei, A., & Rahimi, M. K. (2012). Durable antibacterial and cross-linking cotton with colloidal silver nanoparticles and butane tetracarboxylic acid without yellowing. Colloids and Surfaces B: Biointerfaces, 89, 196–202. doi:10.1016/j.colsurfb.2011.09.015
  • Rai, M., Yadav, A., & Gade, A. (2009). Silver nanoparticles as a new generation of antimicrobials. Biotechnology Advances, 27, 76–83.10.1016/j.biotechadv.2008.09.002
  • Ratte, H. T. (1999). Bioaccumulation and toxicity of silver compounds: A review. Environmental Toxicology and Chemistry, 18, 89–108. doi:10.1002/etc.5620180112
  • Simoncic, B., & Klemencic, D. (2016). Preparation and performance of silver as an antimicrobial agent for textiles: A review. Textile Research Journal, 86, 210–223. doi:10.1177/0040517515586157
  • Simoncic, B., & Tomsic, B. (2010). Structures of novel antimicrobial agents for textiles – A review. Textile Research Journal, 80, 1721–1737. doi:10.1177/0040517510363193
  • Som, C., Wick, P., Krug, H., & Nowack, B. (2011). Environmental and health effects of nanomaterials in nanotextiles and façade coatings. Environment International, 37, 1131–1142. doi:10.1016/j.envint.2011.02.013
  • Üreyen, M. E., Dogan, A., & Koparal, A. S. (2012). Antibacterial functionalization of cotton and polyester fabrics with a finishing agent based on silver-doped calcium phosphate powders. Textile Research Journal, 82, 1731–1742. doi:10.1177/0040517512445331
  • Uzgur, E., Bayrakci, F., Koparal, S., & Dogan, A. (2004). Applications of calcium phosphate based antibacterial ceramics on sanitary and tile wares. Key Engineering Materials, 264–268, 1573–1576. doi:10.4028/www.scientific.net/KEM.264-268.1573
  • Voelker, D., Schlich, K., Hohndorf, L., Koch, W., Kuehnen, U., Polleichtner, C., … Hund-Rinke, K. (2015). Approach on environmental risk assessment of nanosilver released from textiles. Environmental Research, 140, 661–672. doi:10.1016/j.envres.2015.05.011
  • Windler, L., Height, M., & Nowack, B. (2013). Comparative evaluation of antimicrobials for textile applications. Environment International, 53, 62–73. doi:10.1016/j.envint.2012.12.010
  • Yan, Y., Yang, H., Li, J., Lu, X., & Wang, C. (2012). Release behavior of nano-silver textiles in simulated perspiration fluids. Textile Research Journal, 82, 1422–1429. doi:10.1177/0040517512439922

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