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Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs

PURPOSE: This investigation focuses on biodistribution of irradiated dendrimer encapsulated ytterbium-175 ((175)Yb) and to estimate the absorbed dose from intravenous injection of PAMAM encapsulated (175)Yb to human organs. METHODS: A dendrimer compound containing an average of 55 Yb(+3) ions per de...

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Autores principales: Aghaei-Amirkhizi, Navideh, Sadjadi, Sodeh, Moghaddam-Banaem, Leila, Athari-Allaf, Mitra, Johari-Deha, Fariba
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6172863/
https://www.ncbi.nlm.nih.gov/pubmed/30305775
http://dx.doi.org/10.4103/jmp.JMP_8_18
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author Aghaei-Amirkhizi, Navideh
Sadjadi, Sodeh
Moghaddam-Banaem, Leila
Athari-Allaf, Mitra
Johari-Deha, Fariba
author_facet Aghaei-Amirkhizi, Navideh
Sadjadi, Sodeh
Moghaddam-Banaem, Leila
Athari-Allaf, Mitra
Johari-Deha, Fariba
author_sort Aghaei-Amirkhizi, Navideh
collection PubMed
description PURPOSE: This investigation focuses on biodistribution of irradiated dendrimer encapsulated ytterbium-175 ((175)Yb) and to estimate the absorbed dose from intravenous injection of PAMAM encapsulated (175)Yb to human organs. METHODS: A dendrimer compound containing an average of 55 Yb(+3) ions per dendrimer was prepared and irradiated with neutrons for 2h at 3×10(11) n.cm-(2)s-(1) neutron flux. The resulting mixture was injected into a group of tumor bearing mice and the mice were excised, weighed and counted at certain times to study the biodistribution. The human organs absorbed dose was assessed by MIRD schema and MCNP simulation. RESULTS: The specific activity and radiochemical purity of the irradiated nano-composite were 7MBq/mg and >99% respectively. The rapid up take of dendrimer was in liver, lung, and, spleen. MIRD and MCNPX were applied for dose estimation. The human absorbed dose in liver, lung, spleen, kidney and bone that simulated by MCNP are 1.266, 0.8081, 0.8347, 0.03979 and 0.01706 mGy/MBq respectively and these values for MIRD schema are 1.351, 0.73, 1.03, 0.039, and 0.0097 mGy/MBq respectively. CONCLUSION: The results showed that (175)Yb-PAMAM nano-radiopharmaceutical has potential of application for liver and lung tumors.
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spelling pubmed-61728632018-10-10 Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs Aghaei-Amirkhizi, Navideh Sadjadi, Sodeh Moghaddam-Banaem, Leila Athari-Allaf, Mitra Johari-Deha, Fariba J Med Phys Original Article PURPOSE: This investigation focuses on biodistribution of irradiated dendrimer encapsulated ytterbium-175 ((175)Yb) and to estimate the absorbed dose from intravenous injection of PAMAM encapsulated (175)Yb to human organs. METHODS: A dendrimer compound containing an average of 55 Yb(+3) ions per dendrimer was prepared and irradiated with neutrons for 2h at 3×10(11) n.cm-(2)s-(1) neutron flux. The resulting mixture was injected into a group of tumor bearing mice and the mice were excised, weighed and counted at certain times to study the biodistribution. The human organs absorbed dose was assessed by MIRD schema and MCNP simulation. RESULTS: The specific activity and radiochemical purity of the irradiated nano-composite were 7MBq/mg and >99% respectively. The rapid up take of dendrimer was in liver, lung, and, spleen. MIRD and MCNPX were applied for dose estimation. The human absorbed dose in liver, lung, spleen, kidney and bone that simulated by MCNP are 1.266, 0.8081, 0.8347, 0.03979 and 0.01706 mGy/MBq respectively and these values for MIRD schema are 1.351, 0.73, 1.03, 0.039, and 0.0097 mGy/MBq respectively. CONCLUSION: The results showed that (175)Yb-PAMAM nano-radiopharmaceutical has potential of application for liver and lung tumors. Medknow Publications & Media Pvt Ltd 2018 /pmc/articles/PMC6172863/ /pubmed/30305775 http://dx.doi.org/10.4103/jmp.JMP_8_18 Text en Copyright: © 2018 Journal of Medical Physics http://creativecommons.org/licenses/by-nc-sa/4.0 This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Original Article
Aghaei-Amirkhizi, Navideh
Sadjadi, Sodeh
Moghaddam-Banaem, Leila
Athari-Allaf, Mitra
Johari-Deha, Fariba
Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title_full Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title_fullStr Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title_full_unstemmed Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title_short Dosimetry of (175)Ytterbium-poly (amidoamine) Therapy for Humans' Organs
title_sort dosimetry of (175)ytterbium-poly (amidoamine) therapy for humans' organs
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6172863/
https://www.ncbi.nlm.nih.gov/pubmed/30305775
http://dx.doi.org/10.4103/jmp.JMP_8_18
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