Biological Effects of Manganese Oxide Nanoparticles after Peroral Intake
DOI:
https://doi.org/10.6000/1927-5951.2013.03.04.3Keywords:
Manganese oxide, nanoparticles, hepatotoxity,digestive tract.Abstract
Nanodispersed manganese oxide is a unique substance with a high application potential in nanoelectronics and nanooptics. The scientific literature contains little information about the biological effects and toxic action of this substance after it enters a human body. The biological effects were studied in Wistar rats after intragastric administration of manganese oxide for 30 days. The effects included loss in the body mass, activation of oxidation processes (increased level of lipid hydroperoxides, MDA in the blood serum), decrease in the antioxidant activity (inhibited antioxidant activity in the blood serum), damaged hepatocyte membranes (higher serum AST and ALT levels), and protein synthesizing liver function abnormalities (low albumins, high gamma globulins in the blood serum).
References
Amatucci GG, Nathalie P. Fluoride based electrode materials for advanced energy storage devices. J Fluorine Chem 2007; 128: 243-62. http://dx.doi.org/10.1016/j.jfluchem.2006.11.016
Ming H, Shujuan Z, Bingcai P, Weiming Z, Lu Lv, Quanxing Z. Heavy metal removal from water/wastewater by nanosized metal oxides: A review. J Hazardous Mater 2012; 211: 317-31. http://dx.doi.org/10.1016/j.jhazmat.2011.10.016
Zaytseva NV, May IV, Kleyn SV. K voprosu ustanovleniya i dokazatelstva vreda zdorovyu naseleniya pri vyyavlenii nepriyemlemogo riska, obuslovlennogo faktorami sredy obitaniya [To the question of establishing and evidence of harm to public health in identifying unacceptable risk due to environmental factors
Caudle WM, Guillot TS, Lazo CR, Miller GW. Industrial toxicants and Parkinson's disease. Neurotoxicology 2012; 33: 78-88. http://dx.doi.org/10.1016/j.neuro.2012.01.010
Borah D, Deka P, Bhattacharjee P, Changmai A, Yadav RNS. Ocimum sanctum mediated silver nano particles showed better antimicrobial activities compared to citrate stabilized silver nano particles against multidrug resistant bacteria. J Pharm Res 2013; 7: 478-82. http://dx.doi.org/10.1016/j.jopr.2013.06.018
Borah D, Buragohain P, Saikia A, Yadav RNS. Synthesis and Evaluation of Antimicrobial Silver Nanoparticles on Multidrug-Resistant Bacterial Isolates from Urine Samples of Diabetic Patients and Infected Human Soft Tissues. BioNanoScience 2012; 2: 322-28. http://dx.doi.org/DOI 10.1007/s12668-012-0053-6
Oszlánczi G, Horváth E, Szabó A, Horváth E. Subacute exposure of rats by metal oxide nanoparticles through the airways: general toxicity and neuro-functional effects. Acta Biol Szegediensis 2010; 54: 165-70. Available from: http://doktori.bibl.u-szeged.hu/769/1/og_phd_thesis.pdf
Sárközi L, Horváth E, Kónya Z, Kiricsi I. Subacute intratracheal exposure of rats to manganese nanoparticles: behavioral, electrophysiological, and general toxicological effects. Inhalation Toxicol 2009; 21: 83-91. http://informahealthcare.com/doi/abs/10.1080/08958370902939406
Elder A, Gelein R, Silva V. Translocation of inhaled ultrafine manganese oxide particles to the central nervous system. Environ Health Perspect 2006; 114: 1172-78. http://dx.doi.org/10.1289/ehp.9030
Hussain SM, Javorina AK, Schrand AM, Duhart HM. The interaction of manganese nanoparticles with PC-12 cells induces dopamine depletion. Toxicol Sci 2006; 92: 456-63. Available from: http://www.ncbi.nlm.nih.gov/pubmed/ 16714391.
Tseng MT, Lu X, Duan X, Hardas SS, Sultana R, Wu P, et al. Alteration of hepatic structure and oxidative stress induced by intravenous nanoceria. Toxicol Appl Pharmacol 2012; 260: 173-82. http://dx.doi.org/10.1016/j.taap.2012.02.008
Chen Q, Xue Y, Sun J. Kupffer cell-mediated hepatic injury induced by silica nanoparticles in vitro and in vivo. Int J Nanomed 2013; 8: 1129-40. http://dx.doi.org/10.2147/IJN.S42242
Zaytseva NV, Zemlyanova MA, Zvezdin VN, Sayenko YV, Tarantin AV, Makhmudov RR, et al. Toksikologo-gigiyenicheskaya otsenka bezopasnosti nano- i mikrodispersnogo oksida margantsa (III,IV) [Toxicological and hygienic safety assessment of nano-and microfine manganese oxide (III, IV)
Zaytseva NV, Zemlyanova MA, Zvezdin VN, Lebedinskaya OV, Melekhin SV, Sayenko YV, et al. Morfologicheskiye osobennosti tkaney vnutrennikh organov i sistem pri vozdeystvii nanodispersnogo oksida margantsa (III, IV) [Morphological properties of tissues of the internal organs and systems under the influence of nanosized oxide of manganese (III, IV)
Tsuda M, Arai H, Sakurai YJ. Improved cyclability of Na-birnessite partially substituted by cobalt. Power Sources 2002; 110: 52-56. http://dx.doi.org/10.1016/S0378-7753(02)00217-3
Meynen V, Cool P, Vansant EF. Verified syntheses of mesoporous materials. Microporous Mesoporous Materials 2009; 125: 170-23. http://dx.doi.org/10.1016/j.micromeso.2009.03.046
Jeng HA, Swanson J. Toxicity of metal oxide nanoparticles in mammalian cells. J Environ Sci Health Part A 2006; 41: 2699-11. http://dx.doi.org/10.1080/10934520600966177
Elder A, Vidyasagar S, DeLouise L. Physicochemical factors that affect metal and metal oxide nanoparticle passage across epithelial barriers. Wiley Interdisciplinary Reviews: Nanomed Nanobiotechnol 2009; 1: 1434-50. http://dx.doi.org/10.1002/wnan.44
Tseng MT, Lu X, Duan X, Hardas SS, Sultana R, Wu P, et al. Alteration of hepatic structure and oxidative stress induced by intravenous nanoceria. Toxicol Appl Pharmacol 2012; 260: 173-82. http://dx.doi.org/10.1016/j.taap.2012.02.008
Downloads
Published
Issue
Section
License
Copyright (c) 2013 N.V. Zaitseva, M.A. Zemlyanova, V.N. Zvezdin , T.I. Akafieva

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
How to Cite
Similar Articles
- Safaa William Mdawar , Shaza Anwar Al Laham , Ahmad Izzat Al-Manadili, Evaluation of Protective Effect of Methyl Sulfonyl Methane on Colon Ulcer Induced by Alendronate , Journal of Pharmacy and Nutrition Sciences : Vol. 7 No. 3 (2017)
- Mohammed Seid, Aman Dekebo, Neelaiah Babu, Phytochemical Investigation and Antimicrobial Evaluation of Foeniculum vulgare Leaves Extract Ingredient of Ethiopian Local Liquor , Journal of Pharmacy and Nutrition Sciences : Vol. 8 No. 1 (2018)
- Tanvir Halim , Nilufa Haque , Md. Didaruzzaman Sohel , Rajibul Islam Khan , Mohammad Menhaj Ovi , Labiba Amal , Md. Hassan Kawsar, Study of Dissolution Enhancement of Furosemide by Solid Dispersion Technique Using Different Polymer , Journal of Pharmacy and Nutrition Sciences : Vol. 9 No. 6 (2019)
- Betilija Fadi Sekošan , Daniela Kenjeri, Observational Cross-Sectional Study on Dietary Supplementation among Adults in Eastern Croatia , Journal of Pharmacy and Nutrition Sciences : Vol. 7 No. 2 (2017)
- Zingisa Thinyane , Alfred Maroyi, Medicinal Plants Used by the Inhabitants of Alfred Nzo District Municipality in the Eastern Cape Province, South Africa , Journal of Pharmacy and Nutrition Sciences : Vol. 9 No. 3 (2019)
- Suhair Albassit, Shaza Al Laham, Ahmad Al-Manadili, Histological Assessment of Selenium Protective Effect Against Diclofenac Sodium-Induced Nephrotoxicity in Rats , Journal of Pharmacy and Nutrition Sciences : Vol. 13 (2023)
- Mariantonietta Succi, Elena Sorrentino, Tiziana Di Renzo, Patrizio Tremonte, Anna Reale, Luca Tipaldi, Gianfranco Pannella, Antonio Russo , Raffaele Coppola, Lactic Acid Bacteria in Pharmaceutical Formulations: Presence and Viability of “Healthy Microorganisms” , Journal of Pharmacy and Nutrition Sciences : Vol. 4 No. 1 (2014)
- Seth Kwabena Amponsah , Nana Nim Dwumfour, In Vitro Activity of Cocoa Powder Extracts on Some Biomarkers Implicated in P. falciparum Malaria Pathogenesis , Journal of Pharmacy and Nutrition Sciences : Vol. 5 No. 1 (2015)
- Krishna Sailaja, A. Saritha Reddy, V. Sreelola, P. Swathi , Ch. Vineela, Nanotechnology-An Overview , Journal of Pharmacy and Nutrition Sciences : Vol. 4 No. 4 (2014)
- Ragnar Rylander, Bioavailability of Magnesium Salts – A Review , Journal of Pharmacy and Nutrition Sciences : Vol. 4 No. 1 (2014)
You may also start an advanced similarity search for this article.