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Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells

BACKGROUND: Solar ultraviolet radiation A (UVA, 320-400 nm) is a significant risk factor leading to various human skin conditions such as premature aging or photoaging. This condition is enhanced by UVA-mediated iron release from cellular iron proteins affecting huge populations across the globe. PU...

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Autores principales: Nisar, Muhammad Farrukh, Yousaf, Maryam, Saleem, Muhammad, Khalid, Hamad, Niaz, Kamal, Yaqub, Mustansara, Waqas, Muhammad Yasir, Ahmed, Arsalan, Abaid-Ullah, Muhammad, Chen, Jinyin, Chen, Chuying, Rengasamy, Kannan R. R., Wan, Chunpeng (Craig)
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8413031/
https://www.ncbi.nlm.nih.gov/pubmed/34484566
http://dx.doi.org/10.1155/2021/6072631
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author Nisar, Muhammad Farrukh
Yousaf, Maryam
Saleem, Muhammad
Khalid, Hamad
Niaz, Kamal
Yaqub, Mustansara
Waqas, Muhammad Yasir
Ahmed, Arsalan
Abaid-Ullah, Muhammad
Chen, Jinyin
Chen, Chuying
Rengasamy, Kannan R. R.
Wan, Chunpeng (Craig)
author_facet Nisar, Muhammad Farrukh
Yousaf, Maryam
Saleem, Muhammad
Khalid, Hamad
Niaz, Kamal
Yaqub, Mustansara
Waqas, Muhammad Yasir
Ahmed, Arsalan
Abaid-Ullah, Muhammad
Chen, Jinyin
Chen, Chuying
Rengasamy, Kannan R. R.
Wan, Chunpeng (Craig)
author_sort Nisar, Muhammad Farrukh
collection PubMed
description BACKGROUND: Solar ultraviolet radiation A (UVA, 320-400 nm) is a significant risk factor leading to various human skin conditions such as premature aging or photoaging. This condition is enhanced by UVA-mediated iron release from cellular iron proteins affecting huge populations across the globe. PURPOSE: Quercetin-loaded zinc oxide nanoparticles (quercetin@ZnO NPs) were prepared to examine its cellular iron sequestration ability to prevent the production of reactive oxygen species (ROS) and inflammatory responses in HaCaT cells. METHODS: Quercetin@ZnO NPs were synthesized through a homogenous precipitation method, and the functional groups were characterized by Fourier transform infrared (FTIR) spectroscopy, whereas scanning electron microscopy (SEM) described the morphologies of NPs. MTT and qRT-PCR assays were used to examine cell viability and the expression levels of various inflammatory cytokines. The cyclic voltammetry (CV) was employed to evaluate the redox potential of quercetin-Fe(3+)/quercetin-Fe(2+) complexes. RESULTS: The material characterization results supported the loading of quercetin molecules on ZnO NPs. The CV and redox potential assays gave Fe-binding capability of quercetin at 0.15 mM and 0.3 mM of Fe(NO(3))(3). Cytotoxicity assays using quercetin@ZnO NPs with human HaCaT cells showed no cytotoxic effects and help regain cell viability loss following UVA (150 kJ/m(2)). CONCLUSION: Quercetin@ZnO NPs showed that efficient quercetin release action is UV-controlled, and the released quercetin molecules have excellent antioxidant, anti-inflammatory, and iron sequestration potential. Quercetin@ZnO NPs have superior biocompatibility to provide UVA protection and medication at once for antiphotoaging therapeutics.
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spelling pubmed-84130312021-09-03 Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells Nisar, Muhammad Farrukh Yousaf, Maryam Saleem, Muhammad Khalid, Hamad Niaz, Kamal Yaqub, Mustansara Waqas, Muhammad Yasir Ahmed, Arsalan Abaid-Ullah, Muhammad Chen, Jinyin Chen, Chuying Rengasamy, Kannan R. R. Wan, Chunpeng (Craig) Oxid Med Cell Longev Research Article BACKGROUND: Solar ultraviolet radiation A (UVA, 320-400 nm) is a significant risk factor leading to various human skin conditions such as premature aging or photoaging. This condition is enhanced by UVA-mediated iron release from cellular iron proteins affecting huge populations across the globe. PURPOSE: Quercetin-loaded zinc oxide nanoparticles (quercetin@ZnO NPs) were prepared to examine its cellular iron sequestration ability to prevent the production of reactive oxygen species (ROS) and inflammatory responses in HaCaT cells. METHODS: Quercetin@ZnO NPs were synthesized through a homogenous precipitation method, and the functional groups were characterized by Fourier transform infrared (FTIR) spectroscopy, whereas scanning electron microscopy (SEM) described the morphologies of NPs. MTT and qRT-PCR assays were used to examine cell viability and the expression levels of various inflammatory cytokines. The cyclic voltammetry (CV) was employed to evaluate the redox potential of quercetin-Fe(3+)/quercetin-Fe(2+) complexes. RESULTS: The material characterization results supported the loading of quercetin molecules on ZnO NPs. The CV and redox potential assays gave Fe-binding capability of quercetin at 0.15 mM and 0.3 mM of Fe(NO(3))(3). Cytotoxicity assays using quercetin@ZnO NPs with human HaCaT cells showed no cytotoxic effects and help regain cell viability loss following UVA (150 kJ/m(2)). CONCLUSION: Quercetin@ZnO NPs showed that efficient quercetin release action is UV-controlled, and the released quercetin molecules have excellent antioxidant, anti-inflammatory, and iron sequestration potential. Quercetin@ZnO NPs have superior biocompatibility to provide UVA protection and medication at once for antiphotoaging therapeutics. Hindawi 2021-08-25 /pmc/articles/PMC8413031/ /pubmed/34484566 http://dx.doi.org/10.1155/2021/6072631 Text en Copyright © 2021 Muhammad Farrukh Nisar et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Nisar, Muhammad Farrukh
Yousaf, Maryam
Saleem, Muhammad
Khalid, Hamad
Niaz, Kamal
Yaqub, Mustansara
Waqas, Muhammad Yasir
Ahmed, Arsalan
Abaid-Ullah, Muhammad
Chen, Jinyin
Chen, Chuying
Rengasamy, Kannan R. R.
Wan, Chunpeng (Craig)
Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title_full Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title_fullStr Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title_full_unstemmed Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title_short Development of Iron Sequester Antioxidant Quercetin@ZnO Nanoparticles with Photoprotective Effects on UVA-Irradiated HaCaT Cells
title_sort development of iron sequester antioxidant quercetin@zno nanoparticles with photoprotective effects on uva-irradiated hacat cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8413031/
https://www.ncbi.nlm.nih.gov/pubmed/34484566
http://dx.doi.org/10.1155/2021/6072631
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