Literature DB >> 31588348

Study of mitochondrial swelling, membrane fluidity and ROS production induced by nano-TiO2 and prevented by Fe incorporation.

Tejal Barkhade1, Santosh Kumar Mahapatra2, Indrani Banerjee1.   

Abstract

The potential impact of TiO2 and Fe incorporated TiO2 nanoparticles at the organelle level has been reported. The toxicity of the samples on mitochondria isolated from chicken liver tissue has been examined through mitochondrial swelling, membrane fluidity, ROS generation capacity, and activity of complex II. The toxic effect of TiO2 was prevented by incorporating Fe into the TiO2 matrix at different concentrations. The activity of the succinate dehydrogenase enzyme complex was affected and permeabilization of the mitochondrial inner membrane to H+ and K+ and its alteration in membrane fluidity at 100 μg mL-1 of nano-TiO2 dosage were investigated, which showed significant changes in the anisotropy of DPH-labeled mitochondria. Fe incorporation into the TiO2 matrix makes it more biocompatible by changing its structure and morphology. This journal is © The Royal Society of Chemistry 2019.

Entities:  

Year:  2019        PMID: 31588348      PMCID: PMC6764469          DOI: 10.1039/c9tx00143c

Source DB:  PubMed          Journal:  Toxicol Res (Camb)        ISSN: 2045-452X            Impact factor:   3.524


  45 in total

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4.  In vitro cytotoxicity and genotoxicity studies of titanium dioxide (TiO2) nanoparticles in Chinese hamster lung fibroblast cells.

Authors:  Mahsa Hamzeh; Geoffrey I Sunahara
Journal:  Toxicol In Vitro       Date:  2012-12-28       Impact factor: 3.500

5.  In vitro effects of silver nanoparticles on the mitochondrial respiratory chain.

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Journal:  Mol Cell Biochem       Date:  2010-04-22       Impact factor: 3.396

Review 6.  Mitochondrial copper metabolism and delivery to cytochrome c oxidase.

Authors:  Darryl Horn; Antoni Barrientos
Journal:  IUBMB Life       Date:  2008-07       Impact factor: 3.885

7.  Titanium dioxide nanoparticles induce DNA damage and genetic instability in vivo in mice.

Authors:  Benedicte Trouiller; Ramune Reliene; Aya Westbrook; Parrisa Solaimani; Robert H Schiestl
Journal:  Cancer Res       Date:  2009-11-03       Impact factor: 12.701

8.  Evaluation of Mitochondrial Respiratory Chain on the Generation of Reactive Oxygen Species and Cytotoxicity in HaCaT Cells Induced by Nanosized Titanium Dioxide Under UVA Irradiation.

Authors:  Chengbin Xue; Xiaonan Li; Guozhen Liu; Wei Liu
Journal:  Int J Toxicol       Date:  2016-08-08       Impact factor: 2.032

9.  Genotoxic and cytotoxic potential of titanium dioxide (TiO2) nanoparticles on fish cells in vitro.

Authors:  William F Vevers; Awadhesh N Jha
Journal:  Ecotoxicology       Date:  2008-05-20       Impact factor: 2.823

10.  TiO2 nanoparticles cause mitochondrial dysfunction, activate inflammatory responses, and attenuate phagocytosis in macrophages: A proteomic and metabolomic insight.

Authors:  Qun Chen; Ningning Wang; Mingjiang Zhu; Jianhong Lu; Huiqin Zhong; Xinli Xue; Shuoyuan Guo; Min Li; Xinben Wei; Yongzhen Tao; Huiyong Yin
Journal:  Redox Biol       Date:  2017-12-28       Impact factor: 11.799

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  3 in total

1.  Safety assessment of titanium dioxide (E171) as a food additive.

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Journal:  EFSA J       Date:  2021-05-06

Review 2.  Current Updates on Potential Role of Flavonoids in Hypoxia/Reoxygenation Cardiac Injury Model.

Authors:  Shafreena Shaukat Ali; Liza Noordin; Ruzilawati Abu Bakar; Satirah Zainalabidin; Zakiah Jubri; Wan Amir Nizam Wan Ahmad
Journal:  Cardiovasc Toxicol       Date:  2021-06-10       Impact factor: 3.231

3.  Oxidative Stress and Apoptotic Responses Elicited by Nostoc-Synthesized Silver Nanoparticles against Different Cancer Cell Lines.

Authors:  Reham Samir Hamida; Gadah Albasher; Mashael Mohammed Bin-Meferij
Journal:  Cancers (Basel)       Date:  2020-07-28       Impact factor: 6.639

  3 in total

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