Effect of Silver-Graphene Oxide-Cobalt Oxide Nanocomposite on Cytotoxic Levels in MRC-5 and HepG2 Cell Lines and Molecular Docking Studies

Ilikci-Sagkan, Rahsan1, Istifli, Erman Salih2, Liman, Recep3, Atacan, Keziban4, Bas, Salih Zeki5, Ozmen, Mustafa5
1School of Medicine, Department of Medical Biology, Uşak University, Uşak, Turkey
2Faculty of Science and Literature, Department of Biology, Çukurova University, Adana, Turkey
3Faculty of Engineering and Natural Sciences, Molecular Biology and Genetics Department, Uşak University, Uşak, Turkey
4Faculty of Technology, Department of Engineering Fundamental Sciences, Sakarya University of Applied Sciences, Sakarya, Turkey
5Science Faculty, Department of Chemistry, Selçuk University, Konya, Turkey

Tóm tắt

The cytotoxic properties of cobalt oxide (Co3O4) nanoparticles (NPs), in addition to graphene oxide (GO)-Co3O4 and silver (Ag)-GO-Co3O4 nanocomposites (NCs), were evaluated against both human healthy lung fibroblast (MRC-5) and hepatocellular carcinoma (HepG2) cell lines utilizing the XTT assay. The investigation revealed that synthesized Co3O4 NPs and NCs (GO-Co3O4 and Ag-GO-Co3O4) elicited significant cytotoxic responses in MRC-5 and HepG2 cell lines in a concentration-dependent manner. Through molecular docking analyses, it was observed that all fabricated nanomaterials exhibited DNA recognition via minor groove binding, with molecular affinities ranging from − 4.82 to -11.66 kcal/mol. Furthermore, the docking outcomes illustrated that the angular conformations of GO-Co3O4 and Ag-GO-Co3O4 conferred ‘shape-selective’ characteristics as DNA minor groove binders, leading to heightened cytotoxicity, particularly in the HepG2 cell line compared to the normal MRC-5 cell line.

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citation_journal_title=International Journal of Biological Macromolecules; citation_title=Cobalt oxide nanoparticles mediate tau denaturation and cytotoxicity against PC-12 cell line; citation_author=M Nouri, N Esfahanizadeh, MG Shahpar, F Attar, N Sartipnia, K Akhtari; citation_volume=118; citation_publication_date=2018; citation_pages=1763-1772; citation_doi=10.1016/j.ijbiomac.2018.07.024; citation_id=CR1

citation_journal_title=Journal of Molecular Structure; citation_title=Facile-synthesis and characterization of cobalt oxide (Co3O4) nanoparticles by using Arishta leaves assisted biological molecules and its antibacterial and antifungal activities; citation_author=CT Anuradha, P Raji; citation_volume=1262; citation_publication_date=2022; citation_pages=133065; citation_doi=10.1016/j.molstruc.2022.133065; citation_id=CR2

citation_journal_title=Sustainable Energy Technologies and Assessments; citation_title=Solar energy harvesting by cobalt oxide nanoparticles, a nanofluid absorption based system; citation_author=V Bhalla, H Tyagi; citation_volume=24; citation_publication_date=2017; citation_pages=45-54; citation_doi=10.1016/j.seta.2017.01.011; citation_id=CR3

citation_journal_title=Acta Biomaterialia; citation_title=Cobalt oxide nanoparticle-synergized protein degradation and phototherapy for enhanced anticancer therapeutics; citation_author=X Huang, H Cai, H Zhou, T Li, H Jin, CE Evans; citation_volume=121; citation_publication_date=2021; citation_pages=605-620; citation_doi=10.1016/j.actbio.2020.11.036; citation_id=CR4

citation_journal_title=Materials Research Express; citation_title=Biogenic synthesis of green and cost effective cobalt oxide nanoparticles using Geranium wallichianum leaves extract and evaluation of in vitro antioxidant, antimicrobial, cytotoxic and enzyme inhibition properties; citation_author=J Iqbal, BA Abbasi, R Batool, AT Khalil, S Hameed, S Kanwal; citation_volume=6; citation_issue=11; citation_publication_date=2019; citation_pages=115407; citation_doi=10.1088/2053-1591/ab4f04; citation_id=CR5

citation_journal_title=Sensors and Actuators B: Chemical; citation_title=Nanocomposite of cobalt oxide nanocrystals and single-walled carbon nanotubes for a gas sensor application; citation_author=W Li, H Jung, ND Hoa, D Kim, S-K Hong, H Kim; citation_volume=150; citation_issue=1; citation_publication_date=2010; citation_pages=160-166; citation_doi=10.1016/j.snb.2010.07.023; citation_id=CR6

citation_journal_title=Environmental Research; citation_title=Green synthesized Cobalt oxide nanoparticles using Curcuma longa for anti-oxidant, antimicrobial, dye degradation and anti-cancer property; citation_author=R Shanmuganathan, S Sathiyavimal, Q Hoang Le, M Al-Ansari, M, A Al-Humaid, L Jhanani; citation_volume=236; citation_publication_date=2023; citation_pages=116747; citation_doi=10.1016/j.envres.2023.116747; citation_id=CR7

citation_journal_title=ACS Nano; citation_title=Template-Free Synthesis of Hollow-Structured Co3O4 Nanoparticles as High-Performance Anodes for Lithium-Ion Batteries; citation_author=D Wang, Y Yu, H He, J Wang, W Zhou, HD Abruña; citation_volume=9; citation_issue=2; citation_publication_date=2015; citation_pages=1775-1781; citation_doi=10.1021/nn506624g; citation_id=CR8

citation_journal_title=Accounts of Chemical Research; citation_title=Biomedical Applications of Graphene and Graphene Oxide; citation_author=C Chung, Y-K Kim, D Shin, S-R Ryoo, BH Hong, D-H Min; citation_volume=46; citation_issue=10; citation_publication_date=2013; citation_pages=2211-2224; citation_doi=10.1021/ar300159f; citation_id=CR9

citation_journal_title=Materials Science and Engineering: C; citation_title=Graphene oxide: An efficient material and recent approach for biotechnological and biomedical applications; citation_author=DP Singh, CE Herrera, B Singh, S Singh, RK Singh, R Kumar; citation_volume=86; citation_publication_date=2018; citation_pages=173-197; citation_doi=10.1016/j.msec.2018.01.004; citation_id=CR10

Alsharaeh, E., Mussa, Y., Ahmed, F., Aldawsari, Y., Al-Hindawi, M., & Sing, G. K. (2016). Novel route for the preparation of cobalt oxide nanoparticles/reduced graphene oxide nanocomposites and their antibacterial activities. Ceramics International, 42(2, Part B), 3407–3410, doi: https://doi.org/10.1016/j.ceramint.2015.10.135 .

citation_journal_title=New Journal of Chemistry; citation_title=Phytic acid-modified graphene/cobalt oxide nanocomposites: synthesis, characterization, theoretical studies, antiproliferative properties, and catalytic activities; citation_author=K Gholivand, M Sabaghian, A Babaei, R Eshaghi Malekshah, S Sadeghi-Mohammadi, H Naderi-Manesh; citation_volume=47; citation_issue=17; citation_publication_date=2023; citation_pages=8363-8380; citation_doi=10.1039/D3NJ00091E; citation_id=CR12

citation_journal_title=Materials Science and Engineering: C; citation_title=Antibacterial properties of nanoporous graphene oxide/cobalt metal organic framework; citation_author=S Hatamie, MM Ahadian, Soufi Zomorod, M Torabi, S Babaie, A Hosseinzadeh; citation_volume=104; citation_publication_date=2019; citation_pages=109862; citation_doi=10.1016/j.msec.2019.109862; citation_id=CR13

citation_journal_title=Nanomedicine: Nanotechnology, Biology and Medicine; citation_title=Improved green biosynthesis of chitosan decorated Ag- and Co3O4-nanoparticles: A relationship between surface morphology, photocatalytic and biomedical applications; citation_author=M Kiani, N Rabiee, M Bagherzadeh, AM Ghadiri, Y Fatahi, R Dinarvand; citation_volume=32; citation_publication_date=2021; citation_pages=102331; citation_doi=10.1016/j.nano.2020.102331; citation_id=CR14

citation_journal_title=Journal of Experimental Nanoscience; citation_title=Cytotoxic effect of cobalt oxide–graphene oxide nanocomposites on melanoma cell line; citation_author=A Mishra, A Singh, HR Kushwaha, A Mishra; citation_volume=17; citation_issue=1; citation_publication_date=2022; citation_pages=509-521; citation_doi=10.1080/17458080.2022.2115483; citation_id=CR15

citation_journal_title=Quantitative Biology; citation_title=Progress in molecular docking; citation_author=J Fan, A Fu, L Zhang; citation_volume=7; citation_issue=2; citation_publication_date=2019; citation_pages=83-89; citation_doi=10.1007/s40484-019-0172-y; citation_id=CR16

citation_journal_title=Nanoscale Advances; citation_title=Photocatalytic and antibacterial activity of graphene oxide/cellulose-doped TiO2 quantum dots: in silico molecular docking studies; citation_author=M Ikram, F Rasheed, A Haider, S Naz, A Ul-Hamid, A Shahzadi; citation_volume=4; citation_issue=18; citation_publication_date=2022; citation_pages=3764-3776; citation_doi=10.1039/D2NA00383J; citation_id=CR17

citation_journal_title=Environmental Research; citation_title=A reusable and sensitive electrochemical sensor for determination of idarubicin in environmental and biological samples based on NiFe2O4 nanospheres anchored N-doped graphene quantum dots composite; an electrochemical and molecular docking investigation; citation_author=M Mehmandoust, P Pourhakkak, G Tiris, H Karimi-Maleh, N Erk; citation_volume=212; citation_publication_date=2022; citation_pages=113264; citation_doi=10.1016/j.envres.2022.113264; citation_id=CR18

citation_journal_title=Journal of Chemical Information and Modeling; citation_title=Docking Studies on DNA-Ligand Interactions: Building and Application of a Protocol To Identify the Binding Mode; citation_author=CG Ricci, PA Netz; citation_volume=49; citation_issue=8; citation_publication_date=2009; citation_pages=1925-1935; citation_doi=10.1021/ci9001537; citation_id=CR19

citation_journal_title=Journal of Computational Chemistry; citation_title=AutoDock Vina: Improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading; citation_author=O Trott, AJ Olson; citation_volume=31; citation_issue=2; citation_publication_date=2010; citation_pages=455-461; citation_doi=10.1002/jcc.21334; citation_id=CR20

citation_journal_title=Journal of Cheminformatics; citation_title=Avogadro: an advanced semantic chemical editor, visualization, and analysis platform; citation_author=MD Hanwell, DE Curtis, DC Lonie, T Vandermeersch, E Zurek, GR Hutchison; citation_volume=4; citation_issue=1; citation_publication_date=2012; citation_pages=17; citation_doi=10.1186/1758-2946-4-17; citation_id=CR21

citation_journal_title=Journal of molecular graphics & modelling; citation_title=Python: a programming language for software integration and development; citation_author=MF Sanner; citation_volume=17; citation_issue=1; citation_publication_date=1999; citation_pages=57-61; citation_id=CR22

citation_journal_title=Analytical Methods; citation_title=An electrochemical sensor based on a Co3O4–ERGO nanocomposite modified screen-printed electrode for detection of uric acid in artificial saliva; citation_author=G Turkkan, SZ Bas, K Atacan, M Ozmen; citation_volume=14; citation_issue=1; citation_publication_date=2022; citation_pages=67-75; citation_doi=10.1039/D1AY01744F; citation_id=CR23

citation_journal_title=Research on Chemical Intermediates; citation_title=Synthesis of reduced graphene oxide/Co3O4 nanocomposite electrode material for sensor application; citation_author=G Vinodhkumar, R Ramya, IV Potheher, M Vimalan, AC Peter; citation_volume=45; citation_issue=5; citation_publication_date=2019; citation_pages=3033-3051; citation_doi=10.1007/s11164-019-03777-5; citation_id=CR24

citation_journal_title=New Journal of Chemistry; citation_title=Design of a new electrochemical sensing system based on MoS2–TiO2/reduced graphene oxide nanocomposite for the detection of paracetamol; citation_author=N Demir, K Atacan, M Ozmen, SZ Bas; citation_volume=44; citation_issue=27; citation_publication_date=2020; citation_pages=11759-11767; citation_doi=10.1039/D0NJ02298E; citation_id=CR25

citation_journal_title=Microchemical Journal; citation_title=Rhodamine B associated Ag/r-GO nanocomposites as ultrasensitive fluorescent sensor for Hg2+; citation_author=D Sahu, N Sarkar, P Mohapatra, SK Swain; citation_volume=154; citation_publication_date=2020; citation_pages=104577; citation_doi=10.1016/j.microc.2019.104577; citation_id=CR26

citation_journal_title=Applied Catalysis B: Environmental; citation_title=Effect of the precipitation pH on the characteristics and performance of Co3O4 catalysts in the total oxidation of toluene and propane; citation_author=W Zhang, K Lassen, C Descorme, JL Valverde, A Giroir-Fendler; citation_volume=282; citation_publication_date=2021; citation_pages=119566; citation_doi=10.1016/j.apcatb.2020.119566; citation_id=CR27

citation_journal_title=Carbon; citation_title=Graphitization of low-density amorphous carbon for electrocatalysis electrodes from ReaxFF reactive dynamics; citation_author=Md D Hossain, Q Zhang, T Cheng, WA Goddart, Z Luo; citation_volume=183; citation_publication_date=2021; citation_pages=940-947; citation_doi=10.1016/j.carbon.2021.07.080; citation_id=CR28

citation_journal_title=New Journal of Chemistry; citation_title=Silver doped reduced graphene oxide as a promising plasmonic photocatalyst for oxidative coupling of benzylamines under visible light irradiation; citation_author=A Kumar, AM Sadanandhan, SL Jain; citation_volume=43; citation_issue=23; citation_publication_date=2019; citation_pages=9116-9122; citation_doi=10.1039/C9NJ00852G; citation_id=CR29

citation_journal_title=ACS Omega; citation_title=Synthesis of Highly Efficient Bifunctional Ag/Co3O4 Catalyst for Oxygen Reduction and Oxygen Evolution Reactions in Alkaline Medium; citation_author=A Ashok, A Kumar, MA Matin, F Tarlochan; citation_volume=3; citation_issue=7; citation_publication_date=2018; citation_pages=7745-7756; citation_doi=10.1021/acsomega.8b00799; citation_id=CR30

citation_journal_title=RSC Advances; citation_title=Co3O4–Ag photocatalysts for the efficient degradation of methyl orange; citation_author=H Chen, C Xue, D Cui, M Liu, Y Chen, Y Li; citation_volume=10; citation_issue=26; citation_publication_date=2020; citation_pages=15245-15251; citation_doi=10.1039/C9RA10437B; citation_id=CR31

citation_journal_title=Nanotechnology; citation_title=Nitrogen doped RGO–Co3O4 nanograin cookies: highly porous and robust catalyst for removing nitrophenol from waste water; citation_author=E Pervaiz, M Syam Azhar Virk, Z Bingxue, C Yin, M Yang; citation_volume=28; citation_issue=38; citation_publication_date=2017; citation_pages=385703; citation_doi=10.1088/1361-6528/aa8297; citation_id=CR32

citation_journal_title=Nanomaterials; citation_title=Co3O4 Supported on Graphene-like Carbon by One-Step Calcination of Cobalt Phthalocyanine for Efficient Oxygen Reduction Reaction under Alkaline Medium; citation_author=T Huang, X Liu, M Wang, H Huang, P Huang; citation_volume=13; citation_issue=7; citation_publication_date=2023; citation_pages=1241; citation_doi=10.3390/nano13071241; citation_id=CR33

citation_journal_title=Ionics; citation_title=Nanoarchitectured Co3O4/reduced graphene oxide as anode material for lithium-ion batteries with enhanced cycling stability; citation_author=Z Chen, Y Gao, X Chen, B Xing, C Zhang, S Wang; citation_volume=25; citation_issue=12; citation_publication_date=2019; citation_pages=5779-5786; citation_doi=10.1007/s11581-019-03134-x; citation_id=CR34

citation_journal_title=Scientific Reports; citation_title=Mesoporous hexagonal Co3O4 for high performance lithium ion batteries; citation_author=D Su, X Xie, P Munroe, S Dou, G Wang; citation_volume=4; citation_issue=1; citation_publication_date=2014; citation_pages=6519; citation_doi=10.1038/srep06519; citation_id=CR35

citation_journal_title=World Academy of Science, Engineering and Technology; citation_title=Cytotoxic Effects of Engineered Nanoparticles in Human Mesenchymal Stem Cells; citation_author=AA Alshatwi, VS Periasamy, J Athinarayanan; citation_volume=3; citation_publication_date=2014; citation_pages=9999422; citation_doi=10.5281/zenodo.1096129; citation_id=CR36

citation_journal_title=International Journal of Nanomedicine; citation_title=Exploring the Interaction of Cobalt Oxide Nanoparticles with Albumin, Leukemia Cancer Cells and Pathogenic Bacteria by Multispectroscopic, Docking, Cellular and Antibacterial Approaches; citation_author=N Arsalan, E Hassan Kashi, A Hasan, M Edalat Doost, B Rasti, Ahamad Paray; citation_volume=15; citation_publication_date=2020; citation_pages=4607-4623; citation_doi=10.2147/IJN.S257711; citation_id=CR37

citation_journal_title=Journal of Applied Toxicology; citation_title=Cobalt oxide nanoparticles induced oxidative stress linked to activation of TNF-α/caspase-8/p38-MAPK signaling in human leukemia cells; citation_author=S Chattopadhyay, SK Dash, S Tripathy, B Das, S Kar Mahapatra, P Pramanik; citation_volume=35; citation_issue=6; citation_publication_date=2015; citation_pages=603-613; citation_doi=10.1002/jat.3080; citation_id=CR38

citation_journal_title=Chemico-Biological Interactions; citation_title=Toxicity of cobalt oxide nanoparticles to normal cells; an in vitro and in vivo study; citation_author=S Chattopadhyay, SK Dash, S Tripathy, B Das, D Mandal, P Pramanik; citation_volume=226; citation_publication_date=2015; citation_pages=58-71; citation_doi=10.1016/j.cbi.2014.11.016; citation_id=CR39

citation_journal_title=Biological Research; citation_title=Cobalt oxide nanoparticles aggravate DNA damage and cell death in eggplant via mitochondrial swelling and NO signaling pathway; citation_author=M Faisal, Q Saquib, AA Alatar, AA Al-Khedhairy, M Ahmed, SM Ansari; citation_volume=49; citation_issue=1; citation_publication_date=2016; citation_pages=20; citation_doi=10.1186/s40659-016-0080-9; citation_id=CR40

citation_journal_title=Journal of Alloys and Compounds; citation_title=Synthesis, characterization and evaluation of Co3O4 nanoparticles toxicological effect; synthesized by cochineal dye via environment friendly approach; citation_author=M Goudarzi, M Salavati-Niasari; citation_volume=784; citation_publication_date=2019; citation_pages=676-685; citation_doi=10.1016/j.jallcom.2019.01.028; citation_id=CR41

citation_journal_title=Mutagenesis; citation_title=Cobalt oxide (Co3O4) nanoparticles induced genotoxicity in Chinese hamster lung fibroblast (V79) cells through modulation of reactive oxygen species; citation_author=O Lugun, J Singh, RS Thakur, AK Pandey; citation_volume=37; citation_issue=1; citation_publication_date=2022; citation_pages=44-59; citation_doi=10.1093/mutage/geac005; citation_id=CR42

citation_journal_title=Toxicology Letters; citation_title=Engineered cobalt oxide nanoparticles readily enter cells; citation_author=E Papis, F Rossi, M Raspanti, I Dalle-Donne, G Colombo, A Milzani; citation_volume=189; citation_issue=3; citation_publication_date=2009; citation_pages=253-259; citation_doi=10.1016/j.toxlet.2009.06.851; citation_id=CR43

citation_journal_title=Journal of King Saud University - Science; citation_title=Cytotoxic and molecular assessment against breast (MCF-7) cancer cells with cobalt oxide nanoballs; citation_author=R Wahab, MA Siddiqui, J Ahmad, Q Saquib, AA Al-Khedhairy; citation_volume=33; citation_issue=5; citation_publication_date=2021; citation_pages=101467; citation_doi=10.1016/j.jksus.2021.101467; citation_id=CR44

citation_journal_title=Biochemical and Biophysical Research Communications; citation_title=Co3O4 nanoparticles at sublethal concentrations inhibit cell growth by impairing mitochondrial function; citation_author=H Wang, T Ren, N Zhu, Q Yu, M Li; citation_volume=505; citation_issue=3; citation_publication_date=2018; citation_pages=775-780; citation_doi=10.1016/j.bbrc.2018.10.002; citation_id=CR45

citation_journal_title=BMC Complementary and Alternative Medicine; citation_title=Antibacterial and antibiofilm activity of acetone leaf extracts of nine under-investigated south African Eugenia and Syzygium (Myrtaceae) species and their selectivity indices; citation_author=IM Famuyide, AO Aro, FO Fasina, JN Eloff, LJ McGaw; citation_volume=19; citation_issue=1; citation_publication_date=2019; citation_pages=141; citation_doi=10.1186/s12906-019-2547-z; citation_id=CR46

citation_journal_title=ACS Central Science; citation_title=Modeling Reactivity to Biological Macromolecules with a Deep Multitask Network; citation_author=TB Hughes, NL Dang, GP Miller, SJ Swamidass; citation_volume=2; citation_issue=8; citation_publication_date=2016; citation_pages=529-537; citation_doi=10.1021/acscentsci.6b00162; citation_id=CR47

citation_journal_title=Biocon Chem; citation_title=Sequence-specific DNA minor groove binders. Design and synthesis of netropsin and distamycin analogues; citation_author=C Bailly; citation_volume=9; citation_publication_date=1998; citation_pages=513-538; citation_doi=10.1021/bc980008m; citation_id=CR48

citation_journal_title=Journal of Molecular Structure: THEOCHEM; citation_title=An ab initio QM/MM study of the conformational stability of complexes formed by netropsin and DNA. The importance of van der Waals interactions and hydrogen bonding; citation_author=J Dolenc, U Borštnik, M Hodošček, J Koller, D Janežič; citation_volume=718; citation_issue=1; citation_publication_date=2005; citation_pages=77-85; citation_doi=10.1016/j.theochem.2004.12.019; citation_id=CR49