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      KCI등재후보

      Estimation of the Biological Effectiveness of Auger Electron-Emitting Radiopharmaceuticals for Targeted Radiotherapy

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      https://www.riss.kr/link?id=A109907476

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      Relative biological effectiveness (RBE) plays an important role in relating physical dose to cell-killing biological dose. The calculation of the RBE is an important basic task in realization of radionuclide therapy using 64Cu. In this study, the method of calculating the RBE of emitted particles from 64Cu is presented using Monte Carlo simulation. U-87 MG cell model is designed to perform Monte Carlo simulation. The Geant4 simulation tool kit was used to simulate the secondary particles for transport into media. The specific energy in the cell nucleus and the domain was estimated. The Microdosimetric Kinetic model (MK model) is used to estimate RBE. The method presented in this study may be helpful to estimate biological dose in treatment with 64Cu.
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      Relative biological effectiveness (RBE) plays an important role in relating physical dose to cell-killing biological dose. The calculation of the RBE is an important basic task in realization of radionuclide therapy using 64Cu. In this study, the meth...

      Relative biological effectiveness (RBE) plays an important role in relating physical dose to cell-killing biological dose. The calculation of the RBE is an important basic task in realization of radionuclide therapy using 64Cu. In this study, the method of calculating the RBE of emitted particles from 64Cu is presented using Monte Carlo simulation. U-87 MG cell model is designed to perform Monte Carlo simulation. The Geant4 simulation tool kit was used to simulate the secondary particles for transport into media. The specific energy in the cell nucleus and the domain was estimated. The Microdosimetric Kinetic model (MK model) is used to estimate RBE. The method presented in this study may be helpful to estimate biological dose in treatment with 64Cu.

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      참고문헌 (Reference)

      1 Andreas P, "[64Cu]NOTA-pentixather enables high resolution PET imaging of CXCR4 expression in a preclinical lymphoma model" 2 : 1-14, 2017

      2 Thomas F, "Update of the particle irradiation data ensemble(PIDE)for cell survival" 62 (62): 645-655, 2021

      3 INTERNATIONAL ATOMIC ENERGY AGENCY, "Relative Biological Effectiveness in Ion Beam Therapy" IAEA 2008

      4 Wang W, "Modelling of Cellular Survival Following Radiation-Induced DNA Double-St rand Breaks" 8 : 16202-, 2018

      5 Yuki K, "Microdosimetric measurements and estimation of human cell survival for heavy-ion beams" 166 (166): 629-638, 2006

      6 Tengzhi L, "Hypoxia imaging and theranostic potential of [64Cu][Cu(ATSM)]and ionic Cu(II)salts : a review of current evidence and discussion of the retention mechanisms" 10 : 33-, 2020

      7 Incerti S, "Geant4-DNA example applications for track structure simulations in liquid water : A report from the Geant4-DNA Project" 45 : e722-e739, 2018

      8 Agostinelli S, "Geant4 – a simulation toolkit" 506 (506): 250-303, 2003

      9 Kouwenberg JJM, "Fluorescent nuclear track detectors for alpha radiation microdosimetry" 13 : 1-11, 2018

      10 Kusumoto T, "Estimation of biological effect of Cu-64radiopharmaceuticals with Geant4-DNA simulation" 12 : 8957-, 2022

      1 Andreas P, "[64Cu]NOTA-pentixather enables high resolution PET imaging of CXCR4 expression in a preclinical lymphoma model" 2 : 1-14, 2017

      2 Thomas F, "Update of the particle irradiation data ensemble(PIDE)for cell survival" 62 (62): 645-655, 2021

      3 INTERNATIONAL ATOMIC ENERGY AGENCY, "Relative Biological Effectiveness in Ion Beam Therapy" IAEA 2008

      4 Wang W, "Modelling of Cellular Survival Following Radiation-Induced DNA Double-St rand Breaks" 8 : 16202-, 2018

      5 Yuki K, "Microdosimetric measurements and estimation of human cell survival for heavy-ion beams" 166 (166): 629-638, 2006

      6 Tengzhi L, "Hypoxia imaging and theranostic potential of [64Cu][Cu(ATSM)]and ionic Cu(II)salts : a review of current evidence and discussion of the retention mechanisms" 10 : 33-, 2020

      7 Incerti S, "Geant4-DNA example applications for track structure simulations in liquid water : A report from the Geant4-DNA Project" 45 : e722-e739, 2018

      8 Agostinelli S, "Geant4 – a simulation toolkit" 506 (506): 250-303, 2003

      9 Kouwenberg JJM, "Fluorescent nuclear track detectors for alpha radiation microdosimetry" 13 : 1-11, 2018

      10 Kusumoto T, "Estimation of biological effect of Cu-64radiopharmaceuticals with Geant4-DNA simulation" 12 : 8957-, 2022

      11 Schaarschmidt T, "Estimation of DNA Damage in Human Fibroblast Cell from Radiopharmaceuticals by using Monte Carlo Simulation" 9 (9): 75-80, 2023

      12 Fourie H, "Estimating the Relative Biological Effectiveness of Auger Electron Emitter 123I in Human Lymphocytes" 8 : 567732-, 2020

      13 adashi K, "Carbon ion radiotherapy in Japan : an assessment of 20 years of clinical experience" 16 (16): e93-e100, 2015

      14 Hawkins RB, "A statistical theory of cell killing by radiation of varying linear energy transfer" 140 : 366-374, 1994

      15 Hawkins RB, "A microdosimetric-kinetic model for the effect of non-Poisson distribution of lethal lesions on the variation of RBE with LET" 160 (160): 61-69, 2003

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