Literature DB >> 32483993

The Effects of Polymer Coating of Gold Nanoparticles on Oxidative Stress and DNA Damage.

Gamze Tilbe Sen1, Gizem Ozkemahli2,3, Reza Shahbazi4, Pınar Erkekoglu2, Kezban Ulubayram4,5, Belma Kocer-Gumusel6.   

Abstract

Gold nanoparticles (AuNPs) have been widely used in many biological and biomedical applications. In this regard, their surface modification is of paramount importance in order to increase their cellular uptake, delivery capability, and optimize their distribution inside the body. The aim of this study was to examine the effects of AuNPs on cytotoxicity, oxidant/antioxidant parameters, and DNA damage in HepG2 cells and investigate the potential toxic effects of different surface modifications such as polyethylene glycol (PEG) and polyethyleneimine (PEI; molecular weights of 2,000 (low molecular weight [LMW]) and 25,000 (high molecular weight [HMW]). The study groups were determined as AuNPs, PEG-coated AuNPs (AuNPs/PEG), low-molecular weight polyethyleneimine-coated gold nanoparticles (AuNPs/PEI LMW), and high-molecular weight polyethyleneimine-coated gold nanoparticles (AuNPs/PEI HMW). After incubating HepG2 cells with different concentrations of nanoparticles for 24 hours, half maximal inhibitory concentrations (the concentration that kills 50% of the cells) were determined as 166.77, 257.73, and 198.44 µg/mL for AuNPs, AuNPs/PEG, and AuNPs/PEI LMW groups, respectively. Later, inhibitory concentration 30 (IC30, the concentration that kills 30% of the cells) doses were calculated, and further experiments were performed on cells that were exposed to IC30 doses. Although intracellular reactive oxygen species levels significantly increased in all nanoparticles, AuNPs as well as AuNPs/PEG did not cause any changes in oxidant/antioxidant parameters. However, AuNPs/PEI HMW particularly induced oxidative stress as evidence of alterations in lipid peroxidation and protein oxidation. These results suggest that at IC30 doses, AuNPs do not affect oxidative stress and DNA damage significantly. Polyethylene glycol coating does not have an impact on toxicity, however PEI coating (particularly HMW) can induce oxidative stress.

Entities:  

Keywords:  DNA damage; gold nanoparticles; oxidative stress; polyethylene glycol; polyethyleneimine; reactive oxygen species; surface modification

Mesh:

Substances:

Year:  2020        PMID: 32483993     DOI: 10.1177/1091581820927646

Source DB:  PubMed          Journal:  Int J Toxicol        ISSN: 1091-5818            Impact factor:   2.032


  5 in total

Review 1.  Surface Engineering of Nanomaterials with Polymers, Biomolecules, and Small Ligands for Nanomedicine.

Authors:  Ana M Díez-Pascual
Journal:  Materials (Basel)       Date:  2022-04-30       Impact factor: 3.748

2.  Assessment of the Potential Health Risk of Gold Nanoparticles Used in Nanomedicine.

Authors:  Monika Dvorakova; Lubomir Kuracka; Ingrid Zitnanova; Sona Scsukova; Jozef Kollar; Katarina Konarikova; Lucia Laubertova
Journal:  Oxid Med Cell Longev       Date:  2022-07-29       Impact factor: 7.310

3.  Strategies for accelerating osteogenesis through nanoparticle-based DNA/mitochondrial damage repair.

Authors:  Hye Jin Kim; Hui Bang Cho; Sujin Lee; Jiyon Lyu; Hye-Ryoung Kim; Sujeong Lee; Ji-In Park; Keun-Hong Park
Journal:  Theranostics       Date:  2022-08-29       Impact factor: 11.600

4.  Neuroprotective Effect of Gold Nanoparticles and Alpha-Lipoic Acid Mixture against Radiation-Induced Brain Damage in Rats.

Authors:  Noha F Abdelkader; Ahmed I El-Batal; Yara M Amin; Asrar M Hawas; Seham H M Hassan; Nihad I Eid
Journal:  Int J Mol Sci       Date:  2022-08-25       Impact factor: 6.208

5.  Magnetoelectric core-shell CoFe2O4@BaTiO3 nanorods: their role in drug delivery and effect on multidrug resistance pump activity in vitro.

Authors:  Sadaf Mushtaq; Khuram Shahzad; Muhammad Rizwan; Anwar Ul-Hamid; Bilal Haider Abbasi; Waqas Khalid; Muhammad Atif; Nafees Ahmad; Zulqurnain Ali; Rashda Abbasi
Journal:  RSC Adv       Date:  2022-09-01       Impact factor: 4.036

  5 in total

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