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Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells

Some nanoscale morphologies of titanium oxide nanostructures blend with gold nanoparticles and act as satellites and targeted weapon methodologies in biomedical applications. Simultaneously, titanium oxide can play an important role when combined with gold after blending with polyethylene glycol (PE...

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Detalles Bibliográficos
Autores principales: Iqbal, Seemab, Fakhar-e-Alam, M., Alimgeer, K.S., Atif, M., Hanif, Atif, Yaqub, Nafeesah, Farooq, W.A., Ahmad, Shafiq, Chu, Yu-Ming, Suleman Rana, Muhammad, Fatehmulla, Amanullah, Ahmad, Hijaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7878829/
https://www.ncbi.nlm.nih.gov/pubmed/33613051
http://dx.doi.org/10.1016/j.sjbs.2020.11.086
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author Iqbal, Seemab
Fakhar-e-Alam, M.
Alimgeer, K.S.
Atif, M.
Hanif, Atif
Yaqub, Nafeesah
Farooq, W.A.
Ahmad, Shafiq
Chu, Yu-Ming
Suleman Rana, Muhammad
Fatehmulla, Amanullah
Ahmad, Hijaz
author_facet Iqbal, Seemab
Fakhar-e-Alam, M.
Alimgeer, K.S.
Atif, M.
Hanif, Atif
Yaqub, Nafeesah
Farooq, W.A.
Ahmad, Shafiq
Chu, Yu-Ming
Suleman Rana, Muhammad
Fatehmulla, Amanullah
Ahmad, Hijaz
author_sort Iqbal, Seemab
collection PubMed
description Some nanoscale morphologies of titanium oxide nanostructures blend with gold nanoparticles and act as satellites and targeted weapon methodologies in biomedical applications. Simultaneously, titanium oxide can play an important role when combined with gold after blending with polyethylene glycol (PEG). Our experimental approach is novel with respect to the plasmonic role of metal nanoparticles as an efficient PDT drug. The current experimental strategy floats the comprehensive and facile way of experimental strategy on the critical influence that titanium with gold nanoparticles used as novel photosensitizing agents after significant biodistribution of proposed nanostructures toward targeted site. In addition, different morphologies of PEG-coated Au-doped titanium nanostructures were shown to provide various therapeutic effects due to a wide range of electromagnetic field development. This confirms a significantly amplified population of hot electron generation adjacent to the interface between Au and TiO(2) nanostructures, leading to maximum cancerous cell injury in the MCF-7 cell line. The experimental results were confirmed by applying a least squares fit math model which verified our results with 99% goodness of fit. These results can pave the way for comprehensive rational designs for satisfactory response of performance phototherapeutic model mechanisms along with new horizons of photothermal therapy (HET) and photodynamic therapy (HET) operating under visible and near-infrared (NIR) light.
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spelling pubmed-78788292021-02-18 Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells Iqbal, Seemab Fakhar-e-Alam, M. Alimgeer, K.S. Atif, M. Hanif, Atif Yaqub, Nafeesah Farooq, W.A. Ahmad, Shafiq Chu, Yu-Ming Suleman Rana, Muhammad Fatehmulla, Amanullah Ahmad, Hijaz Saudi J Biol Sci Original Article Some nanoscale morphologies of titanium oxide nanostructures blend with gold nanoparticles and act as satellites and targeted weapon methodologies in biomedical applications. Simultaneously, titanium oxide can play an important role when combined with gold after blending with polyethylene glycol (PEG). Our experimental approach is novel with respect to the plasmonic role of metal nanoparticles as an efficient PDT drug. The current experimental strategy floats the comprehensive and facile way of experimental strategy on the critical influence that titanium with gold nanoparticles used as novel photosensitizing agents after significant biodistribution of proposed nanostructures toward targeted site. In addition, different morphologies of PEG-coated Au-doped titanium nanostructures were shown to provide various therapeutic effects due to a wide range of electromagnetic field development. This confirms a significantly amplified population of hot electron generation adjacent to the interface between Au and TiO(2) nanostructures, leading to maximum cancerous cell injury in the MCF-7 cell line. The experimental results were confirmed by applying a least squares fit math model which verified our results with 99% goodness of fit. These results can pave the way for comprehensive rational designs for satisfactory response of performance phototherapeutic model mechanisms along with new horizons of photothermal therapy (HET) and photodynamic therapy (HET) operating under visible and near-infrared (NIR) light. Elsevier 2021-02 2020-12-08 /pmc/articles/PMC7878829/ /pubmed/33613051 http://dx.doi.org/10.1016/j.sjbs.2020.11.086 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Iqbal, Seemab
Fakhar-e-Alam, M.
Alimgeer, K.S.
Atif, M.
Hanif, Atif
Yaqub, Nafeesah
Farooq, W.A.
Ahmad, Shafiq
Chu, Yu-Ming
Suleman Rana, Muhammad
Fatehmulla, Amanullah
Ahmad, Hijaz
Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title_full Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title_fullStr Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title_full_unstemmed Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title_short Mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and PEG-coated Au-doped TiO(2) nanostructures to target MCF-7 cancerous cells
title_sort mathematical modeling and experimental analysis of the efficacy of photodynamic therapy in conjunction with photo thermal therapy and peg-coated au-doped tio(2) nanostructures to target mcf-7 cancerous cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7878829/
https://www.ncbi.nlm.nih.gov/pubmed/33613051
http://dx.doi.org/10.1016/j.sjbs.2020.11.086
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