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Aluminum doping tunes band gap energy level as well as oxidative stress-mediated cytotoxicity of ZnO nanoparticles in MCF-7 cells
by
Alhadlaq, Hisham A.
, Ahamed, Maqusood
, Alshamsan, Aws
, Akhtar, Mohd Javed
, Majeed Khan, M.A.
in
639/925/352/2733
/ 639/925/928/1069
/ Aluminum
/ Animals
/ Apoptosis
/ Apoptosis - genetics
/ Band gap
/ Benign
/ Breast cancer
/ Caspase
/ Caspase 3 - metabolism
/ Caspase 9 - metabolism
/ Caspase-3
/ Caspase-9
/ Cell Survival - drug effects
/ Crystals
/ Cytotoxicity
/ Energy
/ Gene regulation
/ Hepatocytes - drug effects
/ Hepatocytes - metabolism
/ Humanities and Social Sciences
/ Humans
/ MCF-7 Cells
/ Membrane potential
/ Membrane Potential, Mitochondrial - drug effects
/ Mitochondria
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanoparticles - toxicity
/ Nanoparticles - ultrastructure
/ Oxidative Stress
/ p53 Protein
/ Rats
/ RNA, Messenger - genetics
/ Science
/ Transcription, Genetic
/ X-Ray Diffraction
/ Zinc Oxide
2015
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Aluminum doping tunes band gap energy level as well as oxidative stress-mediated cytotoxicity of ZnO nanoparticles in MCF-7 cells
by
Alhadlaq, Hisham A.
, Ahamed, Maqusood
, Alshamsan, Aws
, Akhtar, Mohd Javed
, Majeed Khan, M.A.
in
639/925/352/2733
/ 639/925/928/1069
/ Aluminum
/ Animals
/ Apoptosis
/ Apoptosis - genetics
/ Band gap
/ Benign
/ Breast cancer
/ Caspase
/ Caspase 3 - metabolism
/ Caspase 9 - metabolism
/ Caspase-3
/ Caspase-9
/ Cell Survival - drug effects
/ Crystals
/ Cytotoxicity
/ Energy
/ Gene regulation
/ Hepatocytes - drug effects
/ Hepatocytes - metabolism
/ Humanities and Social Sciences
/ Humans
/ MCF-7 Cells
/ Membrane potential
/ Membrane Potential, Mitochondrial - drug effects
/ Mitochondria
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanoparticles - toxicity
/ Nanoparticles - ultrastructure
/ Oxidative Stress
/ p53 Protein
/ Rats
/ RNA, Messenger - genetics
/ Science
/ Transcription, Genetic
/ X-Ray Diffraction
/ Zinc Oxide
2015
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Aluminum doping tunes band gap energy level as well as oxidative stress-mediated cytotoxicity of ZnO nanoparticles in MCF-7 cells
by
Alhadlaq, Hisham A.
, Ahamed, Maqusood
, Alshamsan, Aws
, Akhtar, Mohd Javed
, Majeed Khan, M.A.
in
639/925/352/2733
/ 639/925/928/1069
/ Aluminum
/ Animals
/ Apoptosis
/ Apoptosis - genetics
/ Band gap
/ Benign
/ Breast cancer
/ Caspase
/ Caspase 3 - metabolism
/ Caspase 9 - metabolism
/ Caspase-3
/ Caspase-9
/ Cell Survival - drug effects
/ Crystals
/ Cytotoxicity
/ Energy
/ Gene regulation
/ Hepatocytes - drug effects
/ Hepatocytes - metabolism
/ Humanities and Social Sciences
/ Humans
/ MCF-7 Cells
/ Membrane potential
/ Membrane Potential, Mitochondrial - drug effects
/ Mitochondria
/ multidisciplinary
/ Nanoparticles
/ Nanoparticles - chemistry
/ Nanoparticles - toxicity
/ Nanoparticles - ultrastructure
/ Oxidative Stress
/ p53 Protein
/ Rats
/ RNA, Messenger - genetics
/ Science
/ Transcription, Genetic
/ X-Ray Diffraction
/ Zinc Oxide
2015
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Aluminum doping tunes band gap energy level as well as oxidative stress-mediated cytotoxicity of ZnO nanoparticles in MCF-7 cells
Journal Article
Aluminum doping tunes band gap energy level as well as oxidative stress-mediated cytotoxicity of ZnO nanoparticles in MCF-7 cells
2015
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Overview
We investigated whether Aluminum (Al) doping tunes band gap energy level as well as selective cytotoxicity of ZnO nanoparticles in human breast cancer cells (MCF-7). Pure and Al-doped ZnO nanoparticles were prepared by a simple sol-gel method. Characterization study confirmed the formation of single phase of Al
x
Zn
1-x
O nanocrystals with the size range of 33–55 nm. Al-doping increased the band gap energy of ZnO nanoparticles (from 3.51 eV for pure to 3.87 eV for Al-doped ZnO). Al-doping also enhanced the cytotoxicity and oxidative stress response of ZnO nanoparticles in MCF-7 cells. The IC50 for undoped ZnO nanoparticles was 44 μg/ml while for the Al-doped ZnO counterparts was 31 μg/ml. Up-regulation of apoptotic genes (e.g. p53, bax/bcl2 ratio, caspase-3 & caspase-9) along with loss of mitochondrial membrane potential suggested that Al-doped ZnO nanoparticles induced apoptosis in MCF-7 cells through mitochondrial pathway. Importantly, Al-doping did not change the benign nature of ZnO nanoparticles towards normal cells suggesting that Al-doping improves the selective cytotoxicity of ZnO nanoparticles toward MCF-7 cells without affecting the normal cells. Our results indicated a novel approach through which the inherent selective cytotoxicity of ZnO nanoparticles against cancer cells can be further improved.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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