RETRACTED: Biochemical and Physiological Effect of Silver Bioaccumulation

Abstract

Short Retraction Notice

The paper does not meet the standards of "Open Journal Pathology".

This article has been retracted to straighten the academic record. In making this decision the Editorial Board follows COPE's Retraction Guidelines. The aim is to promote the circulation of scientific research by offering an ideal research publication platform with due consideration of internationally accepted standards on publication ethics. The Editorial Board would like to extend its sincere apologies for any inconvenience this retraction may have caused.

Editor guiding this retraction: Prof. Takuji Tanaka (EiC of OJPathology)

The full retraction notice in PDF is preceding the original paper, which is marked "RETRACTED".

Share and Cite:

  

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] Andren, A.W. and Bober, T.W. (1999) Transport, Fate and Effects of Silver in the Environment.
[2] Lanceleur, L., Sch?fer, J., Chiffoleau, J.F., Blanc, G., Auger, D., Renault, S., Baudrimont, M. and Audry, S. (2011) Long-Term Records of Cadmium and Silver Contamination in Sediments and Oysters from the Gironde Fluvial-Estuarine Continuum—Evidence of Changing Silver Sources.
[3] Eastman Kodak Company: 1997 Annual Report.
[4] Stromsoe, N. (2013) Environmental Fate of Silver and Indium used for Cloud-seeding in the Snowy Mountains, New South Wales.
[5] Maillard, J.Y. and Hartemann, P. (2013) Silver as an Antimicrobial: Facts and Gaps in Knowledge.
[6] Ratte, H.T. (1999) Bioaccumulation and Toxicity of Silver Compounds: A Review. Environmental Toxicology and Chemistry, 18, 89-108. http://dx.doi.org/10.1002/etc.5620180112
[7] Biddinger, G.R. and Gloss, S.P. (1984) The Importance of Trophic Transfer in the Bioaccumulation of Chemical Contaminants in Aquatic Ecosystems. Residue Reviews, 91, 103-145.
http://dx.doi.org/10.1007/978-1-4612-5258-0_4
[8] Terhaar, C.J., Ewell, W.S., Dziuba, S.P., White, W.W. and Murphy, P.J. (1977) A Laboratory Model for Evaluating the Behavior of Heavy Metals in an Aquatic Environment. Water Research, 11, 101-110. http://dx.doi.org/10.1016/0043-1354(77)90190-7
[9] Purcell, T.W. and Peters, J.J. (1998) Sources of Silver in the Environment. Environmental Toxicology and Chemistry, 17, 539-546. http://dx.doi.org/10.1002/etc.5620170404
[10] Gorsuch, J.W. and Klaine, S.J. (1998) Toxicity and Fate of Silver in the Environment. Environmental Toxicology and Chemistry, 17, 537-538. http://dx.doi.org/10.1002/etc.5620170403
[11] Aberoumand, A. (2011) A Review Article on Edible Pigments Properties and Sources as Natural Biocolorants in Foodstuff and Food Industry. World Journal of Dairy & Food Sciences, 6, 71-78.
[12] Blanchette, S. (2014) Copy of Multiple Sclerosis.
[13] Sondi, I. and Salopek-Sondi B. (2004) Silver Nanoparticles as Antimicrobial Agent: A Case Study on E. coli as a Model for Gram-Negative Bacteria. Journal of Colloid and Interface Science, 275, 177-182. http://dx.doi.org/10.1016/j.jcis.2004.02.012
[14] Morones, J.R., Elechiguerra, J.L., Camach, A., Holt, K., Kouri, J.B., Ramírez, J.T. and Yacaman, M.J. (2005) The Bactericidal Effect of Silver Nanoparticles. Nanotechnology, 16, 2346-2353.
http://dx.doi.org/10.1088/0957-4484/16/10/059
[15] Gonzalez, C., Rosas-Hernandez, H., Ramirez-Lee, M.A., Salazar-García, S. and Ali, S.F. (2014) Role of Silver Nanoparticles (AgNPs) on the Cardiovascular System.
[16] Rackoff, E.M., Benbenisty, K.M., Maize, J.C. and Maize Jr., J.C. (2007) Localized Cutaneous Argyria from an Acupuncture Needle Clinically Concerning for Metastatic Melanoma. Cutis, 80, 423-426.
[17] Price, W.R. and Wood, M.D. (1966) Silver Nitrate Burn Dressing: Treatment of Seventy Burned Persons. American Journal of Surgery, 112, 674-680. http://dx.doi.org/10.1016/0002-9610(66)90103-6
[18] Elechiguerra, J.L., Burt, J.L., Morones, J.R., Camacho-Bragado, A., Gao, X., Lara, H.H. and Yacaman, M.J. (2005) Interaction of Silver Nanoparticles with HIV-1. Journal of Nanobiotechnology, 3, 6.
http://dx.doi.org/10.1186/1477-3155-3-6
[19] Shafer, M.M., Overdier, J.T. and Armstrong, D.E. (1998) Removal, Partitioning, and Fate of Silver and Other Metals in Wastewater Treatment Plants and Effluent-Receiving Streams. Environmental Toxicology and Chemistry, 17, 630-641. http://dx.doi.org/10.1002/etc.5620170416
[20] Langston, W.J. and Spence, S.K. (1995) Biological Factors Involved in Metal Concentrations Observed in Aquatic Organisms. In: Tessier, A. and Turner, D.R., Eds., Metal Speciation and Bioavailability in Aquatic Systems, John Wiley & Sons, London, 407-478.
[21] Ewell, W.S., Gorsuch, J.W., Ritter, M. and Ruffing, C.J. (1993) Ecotoxicological Effects of Silver Compounds. Proceedings of 1st Argentum International Conference on the Transport, Fate, and Effects of Silver in the Environment, Madison, 8-10 August 1993, 9.
[22] Klein, D.A. (1978) Plant Effects. In: Klein, D.A., Ed., Environmental Impacts of Artificial Ice Nucleating Agents, Hutchinson and Ross, Stoutsburg, 109-126.
[23] Kramer, J.R., Adams, N.W.H., Manolopoulos, H. and Collins, P.V. (1996) Fate of Silver in Sediments and Plant Material in an Old Mining Camp, Cobalt, Ontario. Proceedings of 4th Argentum International Conference on the Transport, Fate, and Effects of Silver in the Environment, Madison, 25-28 August 1996, 79-88.
[24] Hirsch, M.P. (1998) Availability of Sludge-Borne Silver to Agricultural Crops. Environmental Toxicology and Chemistry, 17, 610-624. http://dx.doi.org/10.1002/etc.5620170413
[25] Falandysz, J., Bona, H. and Danisiewicz, D. (1994) Silver Uptake by Agaricus bisporus from an Artificially Enriched Substrate. Zeitschrift für Lebensmittel-Untersuchung und -Forschung, 199, 225-228. http://dx.doi.org/10.1007/BF01193450
[26] Doudoroff, P. and Katz, M. (1953) Critical Review of Literature on the Toxicity of Industrial Wastes and Their Components to Fish, II: The Metals, as Salts. Sewage and Industrial Wastes, 25, 802-812.
[27] Hogstrand, C., Galvez, F. and Wood, C.M. (1996) Toxicity, Silver Accumulation and Metallothionein Induction in Freshwater Rainbow Trout during Exposure to Different Silver Salts. Environmental Toxicology and Chemistry, 15, 1102-1108. http://dx.doi.org/10.1002/etc.5620150713
[28] Fisher, N.S. and Wang, W.X. (1998) Trophic Transfer of Silver to Marine Herbivores: A Review of Recent Studies. Environmental Toxicology and Chemistry, 17, 562-571.
http://dx.doi.org/10.1002/etc.5620170406
[29] Garnier, J. and Baudin, J.P. (1989) Accumulation and Depuration of 110mAg by a Planktonic Alga, Scenedesmus obliquus. Water, Air, & Soil Pollution, 45, 287-299. http://dx.doi.org/10.1007/BF00283459
[30] Bertine, K.K. and Goldberg, E.D. (1972) Trace Elements in Clams, Mussels, and Shrimp. Limnology and Oceanography, 17, 877-884. http://dx.doi.org/10.4319/lo.1972.17.6.0877
[31] Fisher, N.S. (1995) A Comparison of Sediment, Water and Food as Sources of Silver for Marine Bivalve Molluscs. Proceedings of 3rd Argentum International Conference on the Transport, Fate, and Effects of Silver in the Environment, Washington DC, 6-9 August 1995, 209-212.
[32] Campbell, P.G.C. (1995) Interactions between Trace Metals and Aquatic Organisms: A Critique of the Free-Ion Activity Model. In: Tessier, A. and Turner, D.R., Eds., Metal Speciation and Bioavailability in Aquatic Systems, John Wiley & Sons, London, 45-102.
[33] Fisher, N.S., Wang, W.X. and Luoma, S.N. (1996) Application of Radiotracers for Studying Trace Element Accumulation in Mussels. Proceedings of 4th Argentum International Conference on the Transport, Fate, and Effects of Silver in the Environment, Madison, 25-28 August 1996, 57-59.
[34] Connell, D.B., Sanders, J.G., Riedel, G.F. and Abbe, G.R. (1991) Pathways of Silver Uptake and Trophic Transfer in Estuarine Organisms. Environmental Science & Technology, 25, 921-924.
http://dx.doi.org/10.1021/es00017a014
[35] Ribeyre, F., Amiard-Triquet, C., Boudou, A. and Amiard, J.C. (1995) Experimental Study of Interactions between Five Trace Elements—Cu, Ag, Se, Zn and Hg—Toward Their Bioaccumulation by Fish (Brachydanio rerio) from the dIrect Route. Ecotoxicology and Environmental Safety, 32, 1-11.
http://dx.doi.org/10.1006/eesa.1995.1078
[36] Fisher, N.S. and Reinfelder, J.R. (1995) The Trophic Transfer of Metals in Marine Systems. In: Tessier, A. and Turner, D.R., Eds., Metal Speciation and Bioavailability in Aquatic Systems, John Wiley & Sons, London, 363-406.
[37] Matuk, Y., Gosh, M. and McCulloch, C. (1981) Distribution of Silver in the Eyes and Plasma Proteins of the Albino Rat. Canadian Journal of Ophthalmology, 16, 145-150.
[38] Saeki, K., Nakajima, M., Loughlin, T.R., Calkins, D.C., Baba, N., Kiyota, M. and Tatsukawa, R. (2001) Accumulation of Silver in the Liver of Three Species of Pinnipeds. Environmental Pollution, 112, 19-25. http://dx.doi.org/10.1016/S0269-7491(00)00103-2
[39] Eisler, R. (1996) Silver Hazards to Fish, Wildlife and Invertebrates: A Synoptic Review. Contaminant Hazard Reviews Report 32. National Biological Service, US Department of the Interior, Washington DC.
[40] Atkins, P. (2009) Physical Chemistry. 9th Edition, Oxford University Press, New York, 330-338.
[41] Feng, Q.L., Wu, J., Chen, G.Q., Cui, F.Z., Kim, T.N. and 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.
http://dx.doi.org/10.1002/1097-4636(20001215)52:4<662::AID-JBM10>3.0.CO;2-3
[42] Pagenkopf, G.K. (1983) Gill Surface Interaction Model for Tracemetal Toxicity to Fishes: Role of Complexation, pH, and Water Hardness. Environmental Science & Technology, 17, 342-347.
http://dx.doi.org/10.1021/es00112a007
[43] Galvez, F., Hogstrand, C., McGeer, J., Bureau, D. and Wood, C.M. (1996) The Physiological Effects of Dietary Silver Exposure in Juvenile Rainbow Trout (Oncorhynchus mykiss). Proceedings of 4th Argentum International Conference on the Transport, Fate, and Effects of Silver in the Environment, Madison, 25-28 August 1996, 165-174.
[44] Bryan, G.W. (1984) Pollution Due to Heavy Metals and Their Compounds. Marine Ecology, 5, 1290-1331.
[45] Jiang, H.S., Qiu, X.N., Li, G.B., Li, W. and Yin, L.Y. (2014) Silver Nanoparticles Induced Accumulation of Reactive Oxygen Species and Alteration of Antioxidant Systems in the Aquatic Plant Spirodela polyrhiza. Environmental Toxicology and Chemistry, 33, 1398-1405. http://dx.doi.org/10.1002/etc.2577
[46] Jing, K., Song, K.S., Shin, S., Kim, N., Jeong, S., Oh, H.R., Park, J.H., Seo, K.S., Heo, J.Y., Han, J., Park, J.I., Han, C., Wu, T., Kweon, G.R., Park, S.K., Yoon, W.H., Hwang, B.D. and Lim, K. (2011) Docosahexaenoic Acid Induces Autophagy through p53/AMPK/mTOR Signaling and Promotes Apoptosis in Human Cancer Cells Harboring Wild-Type p53. Autophagy, 7, 1348-1358.
http://dx.doi.org/10.4161/auto.7.11.16658
[47] Kim, Y.S., Kim, J.S., Cho, H.S., Rha, D.S., Kim, J.M., Park, J.D., Choi, B.S., Lim, R., Chang, H.K., Chung, Y.H., Kwon, I.H., Jeong, J., Han, B.S. and Yu, I.J. (2008) Twenty-Eight-Day Oral Toxicity, Genotoxicity, and Gender-Related Tissue Distribution of Silver Nanoparticles in Sprague-Dawley Rats. Inhalation Toxicology, 20, 575-583. http://dx.doi.org/10.1080/08958370701874663
[48] Piao, M.J., Kang, K.A., Lee, I.K., Kim, H.S., Kim, S., Choi, J.Y., Choi, J. and Hyun, J.W. (2011) Silver Nanoparticles Induce Oxidative Cell Damage in Human Liver Cells through Inhibition of Reduced Glutathione and Induction of Mitochondria-Involved Apoptosis. Toxicology Letters, 201, 92-100.
http://dx.doi.org/10.1016/j.toxlet.2010.12.010
[49] Simpson, W.S. and Mason, P.C.R. (1968) Absorption of Silver Ions by Wool. Textile Research Journal, 39, 434-441.
[50] Ramírez-Lee, M.A., Rosas-Hernández, H., Salazar-García, S., Gutiérrez-Hernández, J.M., Espinosa-Tanguma, R., González, F.J., Ali, S.F. and González, C. (2014) Silver Nanoparticles Induce Anti-Proliferative Effects on Airway Smooth Muscle Cells. Role of Nitric Oxide and Muscarinic Receptor Signaling Pathway. Toxicology Letters, 224, 246-256. http://dx.doi.org/10.1016/j.toxlet.2013.10.027
[51] Shi, J., Sun, X., Lin, Y., Zou, X., Li, Z., Liao, Y., Du, M. and Zhang, H. (2014) Endothelial Cell Injury and Dysfunction Induced by Silver Nanoparticles through Oxidative Stress via IKK/NF-κB Pathways. Biomaterials, 35, 6657-6666. http://dx.doi.org/10.1016/j.biomaterials.2014.04.093
[52] Kang, K., Lim, D.H., Choi, I.H., Kang, T., Lee, K., Moon, E.Y., Yang, Y., Lee, M.S. and Lim, J.S. (2011) Vascular Tube Formation and Angiogenesis Induced by Polyvinylpyrrolidone-Coated Silver Nanoparticles. Toxicology Letters, 205, 227-234. http://dx.doi.org/10.1016/j.toxlet.2011.05.1033
[53] Lankveld, D.P.K., Oomen, A.G., Krystek, P., Neigh, A., Troost-de-Jong, A., Noorlander, C.W., Van-Eijkeren, J.C., Geertsma, R.E. and De-Jong, W.H. (2010) The Kinetics of the Tissue Distribution of Silver Nanoparticles of Different Sizes. Biomaterials, 31, 8350-8361.
http://dx.doi.org/10.1016/j.biomaterials.2010.07.045
[54] Chen, X. and Schluesener, H.J. (2008) Nanosilver: A Nanoproduct in Medical Application. Toxicology Letters, 176, 1-12. http://dx.doi.org/10.1016/j.toxlet.2007.10.004
[55] Olcott, C.T. (1950) Experimental Argyrosis; Hypertrophy of the Left Ventricle of the Heart in Rats Ingesting Silver Salts. AMA Archives of Pathology, 49, 138-149.
[56] Peterson, R.P., Jensen, L.S. and Harrison, P.C. (1973) Effect of Silver-Induced Enlarged Hearts during the First Four Weeks of Life on Subsequent Performance of Turkeys. Avian Diseases, 17, 802-806. http://dx.doi.org/10.2307/1589048
[57] Jensen, L.S., Peterson, R.P. and Falen, L. (1974) Inducement of Enlarged Hearts and Muscular Dystrophy in Turkey Poults with Dietary Silver. Poultry Science, 53, 57-64. http://dx.doi.org/10.3382/ps.0530057
[58] Krajewski, S., Prucek, R., Panacek, A., Krajewski, S., Prucek, R., Panacek, A., Avci-Adali, M., Nolte, A., Straub, A., Zboril, R., Wendel, H.P. and Kvitek, L. (2013) Hemocompatibility Evaluation of Different Silver Nanoparticle Concentrations Employing a Modified Chandler-Loop in Vitro Assay on Human Blood. Acta Biomaterialia, 9, 7460-7468. http://dx.doi.org/10.1016/j.actbio.2013.03.016
[59] Zhang, W., Zhang, Q., Wang, F., Yuan, L., Jiang, F. and Liu, Y. (2014) Comparison of Interactions between Human Serum Albumin and Silver Nanoparticles of Different Sizes Using Spectroscopic Methods. Luminescence, 30, 397-404. http://dx.doi.org/10.1002/bio.2748
[60] Bandyopadhyay, D., Baruah, H., Gupta, B. and Sharma, S. (2012) Silver Nano Particles Prevent Platelet Adhesion on Immobilized Fibrinogen. Indian Journal of Clinical Biochemistry, 27, 164-170.
http://dx.doi.org/10.1007/s12291-011-0169-4
[61] Xu, Y., Tang, H., Liu, J.H., Wang, H. and Liu, Y. (2013) Evaluation of the Adjuvant Effect of Silver Nanoparticles both in Vitro and in Vivo. Toxicology Letters, 219, 42-48.
http://dx.doi.org/10.1016/j.toxlet.2013.02.010
[62] Guyton, A.C. and Hall, J.E. (2010) Guyton and Hall Textbook of Medical Physiology. 12th Edition, Saunders Elsevier Publications, Philadelphia, 213-226, 303-340.
[63] Klabunde, R.E. (2013). http://www.cvphysiology.com/Blood%20Pressure/BP001.htm
[64] Sung, J., Ji, J., Park, J.D., Yoon, J.U., Kim, D.S., Jeon, K.S., Song, M.Y., Jeong, J., Han, B.S., Han, J.H., Chung, Y.H., Chang, H.K., Lee, J.H., Cho, M.H., Kelman, B.J. and Yu, I.J. (2009) Subchronic Inhalation Toxicity of Silver Nanoparticles. Toxicological Sciences, 108, 452-461.
http://dx.doi.org/10.1093/toxsci/kfn246
[65] Takahashi, K., Sugiyama, T. and Tokoro, S. (2013) Inhibitory Effect of 10-Hydroxydecanoic Acid on Lipopolysaccharide-Induced Nitric Oxide Production via Translational Downregulation of Interferon Regulatory Factor-1 in RAW264 Murine Macrophages. Biomedical Research, 34, 205-214.
http://dx.doi.org/10.2220/biomedres.34.205
[66] Ramírez-Lee, M.A., Rosas-Hernández, H., Salazar-García, S., Gutiérrez-Hernández, J.M., Espinosa-Tanguma, R., González, F.J., Ali, S.F. and González, C. (2014) Silver Nanoparticles Induce Anti-Proliferative Effects on Airway Smooth Muscle Cells. Role of Nitric Oxide and Muscarinic Receptor Signaling Pathway. Toxicology Letters, 224, 246-256. http://dx.doi.org/10.1016/j.toxlet.2013.10.027
[67] Zlokovic, B.V. (2008) The Blood-Brain Barrier in Health and Chronic Neurodegenerative Disorders. Neuron, 57, 178-201. http://dx.doi.org/10.1016/j.neuron.2008.01.003
[68] Boop, S.K. and Lettieri, T. (2008) Comparison of Four Different Colorimetric and Fluorometric Cytotoxicity Assays in a Zebrafish Liver Cell Line. BMC Pharmacology, 8, 8. http://dx.doi.org/10.1186/1471-2210-8-8
[69] Sharma, H.S. and Sharma, A. (2012) Neurotoxicity of Engineered Nanoparticles from Metals. CNS & Neurological Disorders Drug Targets, 11, 65-80. http://dx.doi.org/10.2174/187152712799960817
[70] Walker, F. (1971) Experimental Argyria: A Model for Basement Membrane Studies. British Journal of Experimental Pathology, 52, 589-593.
[71] Gulbranson, S.H., Hud, J.A. and Hansen, R.C. (2000) Argyria Following the Use of Dietary Supplements Containing Colloidal Silver Protein. Cutis, 66, 373-374.
[72] Trop, M., Novak, M., Rodl, S., Hellbom, B., Kroell, W. and Goessler, W. (2006) Silver-Coated Dressing Acticoat Caused Raised Liver Enzymes and Argyria-Like Symptoms in Burn Patient. The Journal of Trauma, 60, 648-652. http://dx.doi.org/10.1097/01.ta.0000208126.22089.b6
[73] Muir, R. (2014) Muir’s Textbook of Pathology. Fifteenth Edition, CRC Press, Boca Raton, 105-165.
[74] He, D., Dorantes-Aranda, J.J. and Waite, T.D. (2012) Silver Nanoparticle—Algae Interactions: Oxidative Dissolution, Reactive Oxygen Species Generation and Synergistic Toxic Effects. Environmental Science & Technology, 46, 8731-8738. http://dx.doi.org/10.1021/es300588a
[75] Garnier-Laplace, J., Baudin, J.P. and Foulquier, L. (1992) Experimental Study of 110mAg Transfer from Sediment to Biota in a Simplified Freshwater Ecosystem. Hydrobiologia, 235/236, 393-406.
http://dx.doi.org/10.1007/BF00026229

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.