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Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations

BACKGROUND: A new approach for evaluating the optical penetration depth and testing its validity with Monte Carlo simulations and Kubelka-Munk theory is used for artificial semi-rigid tissue sensitized with natural pigments. Photodynamic therapy is a promising cancer treatment in which a photosensit...

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Autores principales: Jaradat, Adnan, Al-Akhras, M-Ali H., Makhadmeh, G., Aljarrah, K., Al-omari, A., Ababneh, Z., Masadeh, Majed M., Al-Khateeb, H. M., Albiss, B. A., Alshorman, M.
Formato: Texto
Lenguaje:English
Publicado: Medknow Publications Pvt Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3103923/
https://www.ncbi.nlm.nih.gov/pubmed/21687357
http://dx.doi.org/10.4103/0975-7406.80781
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author Jaradat, Adnan
Al-Akhras, M-Ali H.
Makhadmeh, G.
Aljarrah, K.
Al-omari, A.
Ababneh, Z.
Masadeh, Majed M.
Al-Khateeb, H. M.
Albiss, B. A.
Alshorman, M.
author_facet Jaradat, Adnan
Al-Akhras, M-Ali H.
Makhadmeh, G.
Aljarrah, K.
Al-omari, A.
Ababneh, Z.
Masadeh, Majed M.
Al-Khateeb, H. M.
Albiss, B. A.
Alshorman, M.
author_sort Jaradat, Adnan
collection PubMed
description BACKGROUND: A new approach for evaluating the optical penetration depth and testing its validity with Monte Carlo simulations and Kubelka-Munk theory is used for artificial semi-rigid tissue sensitized with natural pigments. Photodynamic therapy is a promising cancer treatment in which a photosensitizing drug concentrates in malignant cells and is activated by visible light at certain wavelength. MATERIALS AND METHODS: Cheap artificial semi-rigid tissue incorporated with scattering and absorbing materials along with some other composites comparable to normal human tissue has been performed. The optical parameters as measured with different conditions and calculated with various techniques are investigated. RESULTS: The probability of interaction of light with tissue is very high when exposed to light in presence of Cichorium pumilum and RBCs followed by photohemolysis or/and photodegradation. The optical penetration depth calculated by linear absorption coefficient ranges from 0.63 to 2.85 mm is found to be comparable to those calculated using Kubelka–Munk theory or Monte Carlo simulation (range from 0.78 to 2.42 mm). The ratio of absorption to the scattering is independent of thickness and decreases with increasing irradiation time. Moreover, the optical parameters as well as their ratios are in very good agreement in the two approaches of calculation. The values of absorption and scattering coefficients are independent of thickness. Furthermore, the average photon ranges in the samples containing no scattering and absorbing materials are about three times greater than those samples containing scattering materials. CONCLUSION: Our results suggest that light propagation with optical properties presented in this work could be applicable in diagnostic and therapeutic of the human biological tissue for photodynamic therapy.
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spelling pubmed-31039232011-06-16 Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations Jaradat, Adnan Al-Akhras, M-Ali H. Makhadmeh, G. Aljarrah, K. Al-omari, A. Ababneh, Z. Masadeh, Majed M. Al-Khateeb, H. M. Albiss, B. A. Alshorman, M. J Pharm Bioallied Sci Original Article BACKGROUND: A new approach for evaluating the optical penetration depth and testing its validity with Monte Carlo simulations and Kubelka-Munk theory is used for artificial semi-rigid tissue sensitized with natural pigments. Photodynamic therapy is a promising cancer treatment in which a photosensitizing drug concentrates in malignant cells and is activated by visible light at certain wavelength. MATERIALS AND METHODS: Cheap artificial semi-rigid tissue incorporated with scattering and absorbing materials along with some other composites comparable to normal human tissue has been performed. The optical parameters as measured with different conditions and calculated with various techniques are investigated. RESULTS: The probability of interaction of light with tissue is very high when exposed to light in presence of Cichorium pumilum and RBCs followed by photohemolysis or/and photodegradation. The optical penetration depth calculated by linear absorption coefficient ranges from 0.63 to 2.85 mm is found to be comparable to those calculated using Kubelka–Munk theory or Monte Carlo simulation (range from 0.78 to 2.42 mm). The ratio of absorption to the scattering is independent of thickness and decreases with increasing irradiation time. Moreover, the optical parameters as well as their ratios are in very good agreement in the two approaches of calculation. The values of absorption and scattering coefficients are independent of thickness. Furthermore, the average photon ranges in the samples containing no scattering and absorbing materials are about three times greater than those samples containing scattering materials. CONCLUSION: Our results suggest that light propagation with optical properties presented in this work could be applicable in diagnostic and therapeutic of the human biological tissue for photodynamic therapy. Medknow Publications Pvt Ltd 2011 /pmc/articles/PMC3103923/ /pubmed/21687357 http://dx.doi.org/10.4103/0975-7406.80781 Text en Copyright: © Journal of Pharmacy and Bioallied Sciences http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Jaradat, Adnan
Al-Akhras, M-Ali H.
Makhadmeh, G.
Aljarrah, K.
Al-omari, A.
Ababneh, Z.
Masadeh, Majed M.
Al-Khateeb, H. M.
Albiss, B. A.
Alshorman, M.
Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title_full Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title_fullStr Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title_full_unstemmed Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title_short Artificial semi-rigid tissue sensitized with natural pigments: Effect of photon radiations
title_sort artificial semi-rigid tissue sensitized with natural pigments: effect of photon radiations
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3103923/
https://www.ncbi.nlm.nih.gov/pubmed/21687357
http://dx.doi.org/10.4103/0975-7406.80781
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