Effect of Silver Nanoparticles on Protein Composition of Rat Liver Microsomal Fraction

被引:0
作者
V. A. Shipelin
P. V. Kudan
V. G. Zgoda
I. V. Gmoshinskii
S. A. Khotimchenko
机构
[1] Federal Research Center of Nutrition and Biotechnology,
[2] V. M. Ore-khovich Institute of Biomedical Chemistry,undefined
来源
Bulletin of Experimental Biology and Medicine | 2018年 / 166卷
关键词
silver nanoparticles; proteomics; heat shock proteins; proteasomes; toxicity;
D O I
暂无
中图分类号
学科分类号
摘要
We studied the effect of oral administration of metallic silver nanoparticles to rats on the proteome of the liver microsomal fraction. Nanoparticles (5-80 nm) were administered daily to growing Wistar male rats over 92 days. Controls received pure water. To control the effect of the carrier, the rats were administered aqueous solution of a stabilizer polyvinylpyrrolidone. The protein composition (proteome) of the liver microsomal fraction was analyzed by 2D-electrophoresis with identification of variable protein spots using the high-resolution nanoHPLC-MS/MS. Eight, 6, and 8 proteins absent in the control groups appeared in the microsomal fraction under the action of nanoparticles in doses of 0.1, 1, and 10 mg/kg body weight, among these, proteasome activator complex subunit 1 (Psme1 gene), and the heat shock protein HSP60 (Hspd1 gene) were reliably identified. The consumption of silver nanoparticles led to disappearance of protein of β2a tubulin chain (Tuba1b gene) from the microsomal fraction. The expression of catalase, present in the proteome of the liver microsomal fraction in animals of all groups was significantly decreased after consumption of silver nanoparticles in doses of 0.1 and 10 mg/kg. The observed changes in the proteome are considered as manifestations of hepatotoxicity of silver nanoparticles and can be related to the antagonistic effect of silver on the status of the essential trace element selenium.
引用
收藏
页码:80 / 85
页数:5
相关论文
共 115 条
  • [1] Zaytseva NV(2016)Toxicological evaluation of nanosized colloidal silver, stabilized with polyvinylpyrrolidone, in 92-day experiment on rats. II. Internal organs morphology Vopr. Pitaniya. 85 47-55
  • [2] Zemlyanova MA(2015)Toxicological evaluation of nanosized colloidal silver, stabilized with polyvinylpyrrolidone. I. Characterization of nanomaterial, integral, hematological parameters, level of thiol compounds and liver cell apoptosis Vopr. Pitaniya. 84 46-57
  • [3] Zvezdin VN(2017)Disulfiram moderately restores impaired hepatic redox status of rats subchronically exposed to cadmium J. Enzyme Inhib. Med. Chem. 32 478-489
  • [4] Dovbysh AA(2011)Silver nanoparticles: behaviour and effects in the aquatic environment Environ. Int. 37 517-531
  • [5] Gmoshinsky IV(2013)Reduction in ATP levels triggers immunoproteasome activation by the 11S (PA28) regulator during early antiviral response mediated by IFNb in mouse pancreatic b-cells PLoS One. 8 e52408-652
  • [6] Khotimchenko SA(2016)Influence of orally introduced silver nanoparticles on content of essential and toxic trace elements in organism Nanotechnol. Russ. 11 646-35
  • [7] Akafieva TI(2017)27-Hydroxycholesterol upregulates the production of heat shock protein 60 of monocytic cells J. Steroid Biochem. Mol. Biol. 172 29-113
  • [8] Shumakova AA(2018)Effect of low-selenium/high-fat diet on pig peripheral blood lymphocytes: perspectives from selenoproteins, heat shock proteins, and cytokines Biol. Trace Elem. Res. 183 102-3238
  • [9] Shipelin VA(2017)Modulatory effects of arginine, glutamine and branched-chain amino acids on heat shock proteins, immunity and antioxidant response in exercised rats Food Funct. 8 3228-1383
  • [10] Sidorova YS(2003)Abnormally high expression of proteasome activator-gamma in thyroid neoplasm J. Clin. Endocrinol. Metab. 88 1374-10,031