ВинаР - Репозиторијум Института за нуклеарне науке Винча
    • English
    • Српски
    • Српски (Serbia)
  • Српски (ћирилица) 
    • Енглески
    • Српски (ћирилица)
    • Српски (латиница)
  • Пријава
Преглед записа 
  •   ВинаР
  • Vinča
  • Radovi istraživača
  • Преглед записа
  •   ВинаР
  • Vinča
  • Radovi istraživača
  • Преглед записа
JavaScript is disabled for your browser. Some features of this site may not work without it.

Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents

Thumbnail
2025
Преузимање 🢃
Main article [PDF] (1.740Mb)
Аутори
Sitarica, Pavle
Vukadinović, Aleksandar
Marić, Miloš
Vranješ-Đurić, Sanja
Stanković, Dalibor M.
Perić, Marko
Janković, Drina
Stanković, Dragana
Mirković, Marija D.
Radović, Magdalena
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
Two diphosphonates, etidronic acid (HEDP) and zoledronic acid (ZOL), were radiolabelled with 161Tb and evaluated as potential bone-targeting radiopharmaceuticals. Radiolabeling was performed at pH 7, achieving high radiolabeling yields (greater than 98%) and demonstrating excellent in vitro stability in saline and human serum. Both radiolabeled complexes exhibited hydrophilic behavior, a strong binding affinity to hydroxyapatite, and moderate to high plasma protein binding. Biodistribution studies in healthy Wistar rats demonstrated that 161Tb-HEDP and 161Tb-ZOL achieve high and stable skeletal uptake with rapid blood clearance and minimal soft tissue accumulation. 161Tb-HEDP favored higher initial bone localization, while 161Tb-ZOL showed lower renal and hepatic accumulation, indicating higher safety and selectivity. Compared to unchelated 161TbCl3, both diphosphonate complexes exhibited significantly higher bone-to-kidney and bone-to-liver ratios, resulting in superior targe...ting. Complementary experiments with non-radioactive terbium were performed to investigate the redox behavior and confirm complex formation, providing valuable insight into the stability and binding modes of the ligands. Both terbium and the ligands displayed well-defined redox behavior within the potential range of −1 to 1.7 V, with complex formation evidenced by shifts in the oxidation peaks. Density functional theory (DFT) calculations further supported these findings, showing that both phosphonate groups of a ligand coordinate to Tb3+, while the hydroxyl groups in HEDP enable intermolecular hydrogen bonding, contributing to additional structural stabilization. Results encourage further investigations of 161Tb-labeled diphosphonates as promising candidates for radionuclide therapy of bone metastases and other skeletal diseases.

Кључне речи:
HEDP / ZOL / 161Tb-labeled diphosphonates / hydroxyapatite binding / biodistribution / bone-targeting / electrochemical behavior / DFT
Извор:
International Journal of Molecular Sciences, 2025, 26, 21, 10392-
Финансирање / пројекти:
  • Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200017 (Универзитет у Београду, Институт за нуклеарне науке Винча, Београд-Винча) (RS-MESTD-inst-2020-200017)
  • 2023-07-17 RadioMag - Design of RADIOactive MAGnetic nanoconstructs for tumour therapy by synergy of nanobrachytherapy and magnetic hyperthermia (RS-ScienceFundRS-Prizma2023_TT-7282)
  • Bilateral Serbia-NR China project [No. 003417078 2024 013440 003 000 620 021]

DOI: 10.3390/ijms262110392

ISSN: 1422-0067

[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/15724
Колекције
  • Radovi istraživača
  • RadioMag
Институција/група
Vinča
TY  - JOUR
AU  - Sitarica, Pavle
AU  - Vukadinović, Aleksandar
AU  - Marić, Miloš
AU  - Vranješ-Đurić, Sanja
AU  - Stanković, Dalibor M.
AU  - Perić, Marko
AU  - Janković, Drina
AU  - Stanković, Dragana
AU  - Mirković, Marija D.
AU  - Radović, Magdalena
PY  - 2025
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/15724
AB  - Two diphosphonates, etidronic acid (HEDP) and zoledronic acid (ZOL), were radiolabelled
with 161Tb and evaluated as potential bone-targeting radiopharmaceuticals. Radiolabeling was performed at pH 7, achieving high radiolabeling yields (greater than 98%) and
demonstrating excellent in vitro stability in saline and human serum. Both radiolabeled
complexes exhibited hydrophilic behavior, a strong binding affinity to hydroxyapatite, and
moderate to high plasma protein binding. Biodistribution studies in healthy Wistar rats
demonstrated that 161Tb-HEDP and 161Tb-ZOL achieve high and stable skeletal uptake
with rapid blood clearance and minimal soft tissue accumulation. 161Tb-HEDP favored
higher initial bone localization, while 161Tb-ZOL showed lower renal and hepatic accumulation, indicating higher safety and selectivity. Compared to unchelated 161TbCl3, both
diphosphonate complexes exhibited significantly higher bone-to-kidney and bone-to-liver
ratios, resulting in superior targeting. Complementary experiments with non-radioactive
terbium were performed to investigate the redox behavior and confirm complex formation,
providing valuable insight into the stability and binding modes of the ligands. Both terbium and the ligands displayed well-defined redox behavior within the potential range of
−1 to 1.7 V, with complex formation evidenced by shifts in the oxidation peaks. Density
functional theory (DFT) calculations further supported these findings, showing that both
phosphonate groups of a ligand coordinate to Tb3+, while the hydroxyl groups in HEDP
enable intermolecular hydrogen bonding, contributing to additional structural stabilization.
Results encourage further investigations of 161Tb-labeled diphosphonates as promising
candidates for radionuclide therapy of bone metastases and other skeletal diseases.
T2  - International Journal of Molecular Sciences
T1  - Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents
VL  - 26
IS  - 21
SP  - 10392
DO  - 10.3390/ijms262110392
ER  - 
@article{
author = "Sitarica, Pavle and Vukadinović, Aleksandar and Marić, Miloš and Vranješ-Đurić, Sanja and Stanković, Dalibor M. and Perić, Marko and Janković, Drina and Stanković, Dragana and Mirković, Marija D. and Radović, Magdalena",
year = "2025",
abstract = "Two diphosphonates, etidronic acid (HEDP) and zoledronic acid (ZOL), were radiolabelled
with 161Tb and evaluated as potential bone-targeting radiopharmaceuticals. Radiolabeling was performed at pH 7, achieving high radiolabeling yields (greater than 98%) and
demonstrating excellent in vitro stability in saline and human serum. Both radiolabeled
complexes exhibited hydrophilic behavior, a strong binding affinity to hydroxyapatite, and
moderate to high plasma protein binding. Biodistribution studies in healthy Wistar rats
demonstrated that 161Tb-HEDP and 161Tb-ZOL achieve high and stable skeletal uptake
with rapid blood clearance and minimal soft tissue accumulation. 161Tb-HEDP favored
higher initial bone localization, while 161Tb-ZOL showed lower renal and hepatic accumulation, indicating higher safety and selectivity. Compared to unchelated 161TbCl3, both
diphosphonate complexes exhibited significantly higher bone-to-kidney and bone-to-liver
ratios, resulting in superior targeting. Complementary experiments with non-radioactive
terbium were performed to investigate the redox behavior and confirm complex formation,
providing valuable insight into the stability and binding modes of the ligands. Both terbium and the ligands displayed well-defined redox behavior within the potential range of
−1 to 1.7 V, with complex formation evidenced by shifts in the oxidation peaks. Density
functional theory (DFT) calculations further supported these findings, showing that both
phosphonate groups of a ligand coordinate to Tb3+, while the hydroxyl groups in HEDP
enable intermolecular hydrogen bonding, contributing to additional structural stabilization.
Results encourage further investigations of 161Tb-labeled diphosphonates as promising
candidates for radionuclide therapy of bone metastases and other skeletal diseases.",
journal = "International Journal of Molecular Sciences",
title = "Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents",
volume = "26",
number = "21",
pages = "10392",
doi = "10.3390/ijms262110392"
}
Sitarica, P., Vukadinović, A., Marić, M., Vranješ-Đurić, S., Stanković, D. M., Perić, M., Janković, D., Stanković, D., Mirković, M. D.,& Radović, M.. (2025). Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents. in International Journal of Molecular Sciences, 26(21), 10392.
https://doi.org/10.3390/ijms262110392
Sitarica P, Vukadinović A, Marić M, Vranješ-Đurić S, Stanković DM, Perić M, Janković D, Stanković D, Mirković MD, Radović M. Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents. in International Journal of Molecular Sciences. 2025;26(21):10392.
doi:10.3390/ijms262110392 .
Sitarica, Pavle, Vukadinović, Aleksandar, Marić, Miloš, Vranješ-Đurić, Sanja, Stanković, Dalibor M., Perić, Marko, Janković, Drina, Stanković, Dragana, Mirković, Marija D., Radović, Magdalena, "Evaluation of 161Tb-Labeled Diphosphonates as Potential Bone-Targeting Agents" in International Journal of Molecular Sciences, 26, no. 21 (2025):10392,
https://doi.org/10.3390/ijms262110392 . .

DSpace software copyright © 2002-2015  DuraSpace
О репозиторијуму ВинаР | Пошаљите запажања

re3dataOpenAIRERCUB
 

 

Комплетан репозиторијумГрупеАуториНасловиТемеОва институцијаАуториНасловиТеме

Статистика

Преглед статистика

DSpace software copyright © 2002-2015  DuraSpace
О репозиторијуму ВинаР | Пошаљите запажања

re3dataOpenAIRERCUB