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Hydroxypyridinones as a Very Promising Platform for Targeted Diagnostic and Therapeutic Radiopharmaceuticals
by
Zhou, Xu
, Shen, Langtao
, Dong, Linlin
in
Cancer therapies
/ Chelating agents
/ Chelating Agents - chemistry
/ Chelating Agents - therapeutic use
/ Drug Delivery Systems
/ Drug dosages
/ FDA approval
/ Gallium Radioisotopes - chemistry
/ Gallium Radioisotopes - therapeutic use
/ gallium-68
/ Humans
/ hydroxypyridinone
/ Iron
/ Ligands
/ Monoclonal antibodies
/ Neuroendocrine tumors
/ Nuclear medicine
/ Positrons
/ Prostate cancer
/ Pyridones - chemistry
/ Pyridones - therapeutic use
/ Radioisotopes - chemistry
/ Radioisotopes - therapeutic use
/ radiopharmaceutical
/ Radiopharmaceuticals - chemistry
/ Radiopharmaceuticals - therapeutic use
/ Review
/ theranostic
/ Thorium - chemistry
/ Thorium - therapeutic use
/ thorium-227
/ Zirconium - chemistry
/ Zirconium - therapeutic use
/ zirconium-89
2021
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Hydroxypyridinones as a Very Promising Platform for Targeted Diagnostic and Therapeutic Radiopharmaceuticals
by
Zhou, Xu
, Shen, Langtao
, Dong, Linlin
in
Cancer therapies
/ Chelating agents
/ Chelating Agents - chemistry
/ Chelating Agents - therapeutic use
/ Drug Delivery Systems
/ Drug dosages
/ FDA approval
/ Gallium Radioisotopes - chemistry
/ Gallium Radioisotopes - therapeutic use
/ gallium-68
/ Humans
/ hydroxypyridinone
/ Iron
/ Ligands
/ Monoclonal antibodies
/ Neuroendocrine tumors
/ Nuclear medicine
/ Positrons
/ Prostate cancer
/ Pyridones - chemistry
/ Pyridones - therapeutic use
/ Radioisotopes - chemistry
/ Radioisotopes - therapeutic use
/ radiopharmaceutical
/ Radiopharmaceuticals - chemistry
/ Radiopharmaceuticals - therapeutic use
/ Review
/ theranostic
/ Thorium - chemistry
/ Thorium - therapeutic use
/ thorium-227
/ Zirconium - chemistry
/ Zirconium - therapeutic use
/ zirconium-89
2021
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Hydroxypyridinones as a Very Promising Platform for Targeted Diagnostic and Therapeutic Radiopharmaceuticals
by
Zhou, Xu
, Shen, Langtao
, Dong, Linlin
in
Cancer therapies
/ Chelating agents
/ Chelating Agents - chemistry
/ Chelating Agents - therapeutic use
/ Drug Delivery Systems
/ Drug dosages
/ FDA approval
/ Gallium Radioisotopes - chemistry
/ Gallium Radioisotopes - therapeutic use
/ gallium-68
/ Humans
/ hydroxypyridinone
/ Iron
/ Ligands
/ Monoclonal antibodies
/ Neuroendocrine tumors
/ Nuclear medicine
/ Positrons
/ Prostate cancer
/ Pyridones - chemistry
/ Pyridones - therapeutic use
/ Radioisotopes - chemistry
/ Radioisotopes - therapeutic use
/ radiopharmaceutical
/ Radiopharmaceuticals - chemistry
/ Radiopharmaceuticals - therapeutic use
/ Review
/ theranostic
/ Thorium - chemistry
/ Thorium - therapeutic use
/ thorium-227
/ Zirconium - chemistry
/ Zirconium - therapeutic use
/ zirconium-89
2021
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Hydroxypyridinones as a Very Promising Platform for Targeted Diagnostic and Therapeutic Radiopharmaceuticals
Journal Article
Hydroxypyridinones as a Very Promising Platform for Targeted Diagnostic and Therapeutic Radiopharmaceuticals
2021
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Overview
Hydroxypyridinones (HOPOs) have been used in the chelation therapy of iron and actinide metals. Their application in metal-based radiopharmaceuticals has also been increasing in recent years. This review article focuses on how multidentate HOPOs can be used in targeted radiometal-based diagnostic and therapeutic radiopharmaceuticals. The general structure of radiometal-based targeted radiopharmaceuticals, a brief description of siderophores, the basic structure and properties of bidentate HOPO, some representative HOPO multidentate chelating agents, radiopharmaceuticals based on HOPO multidentate bifunctional chelators for gallium-68, thorium-227 and zirconium-89, as well as the future prospects of HOPO multidentate bifunctional chelators in other metal-based radiopharmaceuticals are described and discussed in turn. The HOPO metal-based radiopharmaceuticals that have shown good prospects in clinical and preclinical studies are gallium-68, thorium-227 and zirconium-89 radiopharmaceuticals. We expect HOPO multidentate bifunctional chelators to be a very promising platform for building novel targeted radiometal-based diagnostic and therapeutic radiopharmaceuticals.
Publisher
MDPI AG,MDPI
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