Mechanism of oxidative stress involved in the toxicity of ZnO nanoparticles against eukaryotic cells

Publish Year: 1395
نوع سند: مقاله ژورنالی
زبان: English
View: 288

This Paper With 14 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_NAMJ-3-1_001

تاریخ نمایه سازی: 18 تیر 1398

Abstract:

ZnO NPs (zinc oxide nanoparticles) has generated significant scientific interest as a novel antibacterial and anticancer agent. Since oxidative stress is a critical determinant of ZnO NPs-induced damage, it is necessary to characterize their underlying mode of action. Different structural and physicochemical properties of ZnO NPs such as particle surface, size, shape, crystal structure, chemical position, and presence of metals can lead to changes in biological activities including ROS (reactive oxygen species) production. However, there are some inconsistencies in the literature on the relation between the physicochemical features of ZnO NPs and their plausible oxidative stress mechanism. Herein, the possible oxidative stress mechanism of ZnO NPs was reviewed. This is worthy of further detailed evaluations in order to improve our understanding of vital NPs characteristics governing their toxicity. Therefore, this study focuses on the different reported oxidative stress paradigms induced by ZnO NPs including ROS generated by NPs, oxidative stress due to the NPs-cell interaction, and role of the particle dissolution in the oxidative damage. Also, this study tries to characterize and understand the multiple pathways involved in oxidative stress induced by ZnO NPs. Knowledge about different cellular signaling cascades stimulated by ZnO NPs lead to the better interpretation of the toxic influences induced by the cellular and acellular parameters. Regarding the potential benefits of toxic effects of ZnO NPs, in-depth evaluation of their toxicity mechanism and various effects of these nanoparticles would facilitate their implementation for biomedical applications.

Authors

M. Saliani

Department of Chemistry, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran

R. Jalal

Department of Chemistry, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran|Cell and Molecular Biotechnology Research Group, Institute of Biotechnology, Ferdowsi University of Mashhad, Mashhad, Iran

E. K. Goharshadi

Department of Chemistry, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Nair S, Sasidharan A, Rani VD, Menon D, Nair S, ...
  • De Berardis B, Civitelli G, Condello M, Lista P, Pozzi ...
  • Deng X, Luan Q, Chen W, Wang Y, Wu M, ...
  • Huang C-C, Aronstam RS, Chen D-R, Huang Y-W. Oxidative stress, ...
  • Premanathan M, Karthikeyan K, Jeyasubramanian K, Manivannan G. Selective toxicity ...
  • Hanley C, Layne J, Punnoose A, Reddy K, Coombs I, ...
  • Wang H, Wingett D, Engelhard MH, Feris K, Reddy K, ...
  • Ostrovsky S, Kazimirsky G, Gedanken A, Brodie C. Selective cytotoxic ...
  • Akhtar MJ, Ahamed M, Kumar S, Khan MM, Ahmad J, ...
  • Ahamed M, Akhtar M, Raja M, Ahmad I, Siddiqui M, ...
  • Rasmussen JW, Martinez E, Louka P, Wingett DG. Zinc oxide ...
  • Zhang H, Shan Y, Dong L. A comparison of TiO2 ...
  • Goharshadi EK, Abareshi M, Mehrkhah R, Samiee S, Moosavi M, ...
  • Goharshadi EK, Ding Y, Jorabchi MN, Nancarrow P. Ultrasound-assisted green ...
  • Goharshadi EK, Ding Y, Nancarrow P. Green synthesis of ZnO ...
  • Jalal R, Goharshadi EK, Abareshi M, Moosavi M, Yousefi A, ...
  • Moosavi M, Goharshadi EK, Youssefi A. Fabrication, characterization, and measurement ...
  • AshaRani P, Low Kah Mun G, Hande MP, Valiyaveettil S. ...
  • Nel A, Xia T, Mädler L, Li N. Toxic potential ...
  • Xia T, Kovochich M, Liong M, Madler L, Gilbert B, ...
  • Sharma V, Shukla RK, Saxena N, Parmar D, Das M, ...
  • Singh N, Manshian B, Jenkins GJ, Griffiths SM, Williams PM, ...
  • Xia T, Kovochich M, Brant J, Hotze M, Sempf J, ...
  • Gong KW, Zhao W, Li N, Barajas B, Kleinman M, ...
  • Darroudi M, Sabouri Z, Kazemi Oskuee R, Kargar H, Hosseini ...
  • Oberdörster G, Oberdörster E, Oberdörster J. Nanotoxicology: an emerging discipline ...
  • Manke A, Wang L, Rojanasakul Y. Mechanisms of nanoparticle-induced oxidative ...
  • Hsiao I-L, Huang Y-J. Effects of various physicochemical characteristics on ...
  • Lin W, Xu Y, Huang C-C, Ma Y, Shannon KB, ...
  • Yang H, Liu C, Yang D, Zhang H, Xi Z. ...
  • Zhu X, Wang J, Zhang X, Chang Y, Chen Y. ...
  • Moos PJ, Chung K, Woessner D, Honeggar M, Cutler NS, ...
  • Sharma V, Anderson D, Dhawan A. Zinc oxide nanoparticles induce ...
  • Park SJ, Park YC, Lee SW, Jeong MS, Yu K-N, ...
  • Valdiglesias V, Costa C, Kiliç G, Costa S, Pásaro E, ...
  • Kim YH, Fazlollahi F, Kennedy IM, Yacobi NR, Hamm-Alvarez SF, ...
  • Sahu D, Kannan G, Vijayaraghavan R, Anand T, Khanum F. ...
  • Yu K-N, Yoon T-J, Minai-Tehrani A, Kim J-E, Park SJ, ...
  • Guan R, Kang T, Lu F, Zhang Z, Shen H, ...
  • Alarifi S, Ali D, Alkahtani S, Verma A, Ahamed M, ...
  • Yin Y, Lin Q, Sun H, Chen D, Wu Q, ...
  • Li N, Xia T, Nel AE. The role of oxidative ...
  • Yang Z, Xie C. Zn 2+ release from zinc and ...
  • Knaapen AM, Borm PJ, Albrecht C, Schins RP. Inhaled particles ...
  • Donaldson K, Brown D, Clouter A, Duffin R, MacNee W, ...
  • Ma H, Williams PL, Diamond SA. Ecotoxicity of manufactured ZnO ...
  • Boonstra J, Post JA. Molecular events associated with reactive oxygen ...
  • Zabirnyk O, Yezhelyev M, Seleverstov O. Nanoparticles as a novel ...
  • Yu L, Lu Y, Man N, Yu SH, Wen LP. ...
  • Chen Y, Yang L, Feng C, Wen L-P. Nano neodymium ...
  • Lanone S, Boczkowski J. Biomedical applications and potential health risks ...
  • Hubbard AK, Timblin CR, Shukla A, Rincón M, Mossman BT. ...
  • Murray AR, Kisin ER, Tkach AV, Yanamala N, Mercer R, ...
  • Pujalté I, Passagne I, Brouillaud B, Tréguer M, Durand E, ...
  • Jeng HA, Swanson J. Toxicity of metal oxide nanoparticles in ...
  • Song W, Zhang J, Guo J, Zhang J, Ding F, ...
  • Syama S, Sreekanth P, Varma H, Mohanan P. Zinc oxide ...
  • Fukui H, Horie M, Endoh S, Kato H, Fujita K, ...
  • Nel AE, Mädler L, Velegol D, Xia T, Hoek EM, ...
  • Brown AM, Kristal BS, Effron MS, Shestopalov AI, Ullucci PA, ...
  • Frazzini V, Rockabrand E, Mocchegiani E, Sensi S. Oxidative stress ...
  • Wiseman DA, Wells SM, Hubbard M, Welker JE, Black SM. ...
  • Wiseman DA, Wells SM, Wilham J, Hubbard M, Welker JE, ...
  • Martinez GR, Loureiro APM, Marques SA, Miyamoto S, Yamaguchi LF, ...
  • Valko M, Leibfritz D, Moncol J, Cronin MT, Mazur M, ...
  • Toyokuni S. Oxidative stress and cancer: the role of redox ...
  • Marnett LJ. Oxy radicals, lipid peroxidation and DNA damage. Toxicology. ...
  • Niedernhofer LJ, Daniels JS, Rouzer CA, Greene RE, Marnett LJ. ...
  • Zhao X, Wang S, Wu Y, You H, Lv L. ...
  • Gojova A, Guo B, Kota RS, Rutledge JC, Kennedy IM, ...
  • Peters K, Unger RE, Kirkpatrick CJ, Gatti AM, Monari E. ...
  • Jaiswal M, LaRusso NF, Burgart LJ, Gores GJ. Inflammatory cytokines ...
  • Valinluck V, Sowers LC. Inflammation-mediated cytosine damage: a mechanistic link ...
  • Dufour EK, Kumaravel T, Nohynek GJ, Kirkland D, Toutain H. ...
  • Gopalan RC, Osman IF, Amani A, De Matas M, Anderson ...
  • Sharma V, Singh P, Pandey AK, Dhawan A. Induction of ...
  • Karlsson HL, Cronholm P, Gustafsson J, Moller L. Copper oxide ...
  • Chen M, von Mikecz A. Formation of nucleoplasmic protein aggregates ...
  • Shukla RK, Sharma V, Pandey AK, Singh S, Sultana S, ...
  • Min K-S. [Physiological significance of metallothionein in oxidative stress. Yakugaku ...
  • Griffitt RJ, Weil R, Hyndman KA, Denslow ND, Powers K, ...
  • Bishop GM, Dringen R, Robinson SR. Zinc stimulates the production ...
  • Horie M, Nishio K, Fujita K, Endoh S, Miyauchi A, ...
  • Stone V, Tuinman M, Vamvakopoulos J, Shaw J, Brown D, ...
  • Moller W, Brown DM, Kreyling L, Stone V. Ultrafine particles ...
  • Wang L, Bowman L, Lu Y, Rojanasakul Y, Mercer RR, ...
  • Harrison R. Structure and function of xanthine oxidoreductase: where are ...
  • Nicotera P, Bellomo G, Orrenius S. Calcium-mediated mechanisms in chemically ...
  • Dong Z, Saikumar P, Weinberg JM, Venkatachalam MA. Calcium in ...
  • Rizzuto R, Giorgi C, Romagnoli A, Pinton P. Ca2+ signaling, ...
  • Brown JL. Zinc fume fever. Br. J. Radiol. 1988; 61(724): ...
  • Jeong SH, Kim HJ, Ryu HJ, Ryu WI, Park Y-H, ...
  • Xiong D, Fang T, Yu L, Sima X, Zhu W. ...
  • Lipovsky A, Nitzan Y, Gedanken A, Lubart R. Antifungal activity ...
  • Manna P, Ghosh M, Ghosh J, Das J, Sil PC. ...
  • Shi Y, Wang F, He J, Yadav S, Wang H. ...
  • Li Y, Xu Y, Ling M, Yang Y, Wang S, ...
  • Wang J, Deng X, Zhang F, Chen D, Ding W. ...
  • Franklin NM, Rogers NJ, Apte SC, Batley GE, Gadd GE, ...
  • Moreau JW, Weber PK, Martin MC, Gilbert B, Hutcheon ID, ...
  • Talalay P, Dinkova-Kostova AT, Holtzclaw WD. Importance of phase 2 ...
  • نمایش کامل مراجع