Over the past 20 years, 68Ga-labelled radiopharmaceuticals have become an important part in clinical routine. However, the worldwide supply with 68Ge/68Ga generators is limited as well as the number of patient doses per batch of 68Ga radiopharmaceutical. In the recent years, a new technique appeared, making use of the ease of aqueous labelling via chelators as with 68Ga but using 18F instead. This technique takes advantage of the strong coordinative bond between aluminium and fluoride, realized in the aqueous cation [Al18F]2+. Most applications to date make use of one-pot syntheses with free Al(III) ions in the system. In contrast, we investigated the labelling approach split into two steps: generating the Al-bearing precursor in pure form ...
The AlF labeling method is a relatively new approach that allows radiofluorination of biomolecules s...
© 2020 Hui Jing KoayPositron emission tomography (PET) is a molecular imaging technique that produce...
Positron emission tomography (PET) is a non\u2010invasive molecular imaging technology that is const...
Over the past 20 years, Ga-68-labelled radiopharmaceuticals have become an important part in clinica...
International audienceAimFluorine-18 (18F) is the most favorable positron emitter for tumor imaging....
International audienceFluorine-18 (18F) is the most favorable positron emitter for tumor imaging. Ho...
Due to its ideal physical properties, fluorine-18 turns out to be a key radionuclide for positron em...
International audienceDue to its ideal physical properties, fluorine-18 turns out to be a key radion...
Fluorine‐18 (18F) is the most favorable positron emitter for radiolabeling Positron Emission Tomogra...
The Al(18)F labeling method is a relatively new approach that allows radiofluorination of biomolecul...
International audienceFluorine-18 (18F) is the most favorable positron emitter for tumor imaging. Ho...
Abstract The aluminium-[18F]fluoride ([18F]AlF) radiolabelling method combines the favourable decay ...
Small biomolecules are typically radiolabeled with (18)F by binding it to a carbon atom, a process t...
Small biomolecules are typically radiolabeled with 18F by binding it to a carbon atom, a process tha...
Item does not contain fulltextRadiolabeled receptor-binding peptides and proteins have emerged as an...
The AlF labeling method is a relatively new approach that allows radiofluorination of biomolecules s...
© 2020 Hui Jing KoayPositron emission tomography (PET) is a molecular imaging technique that produce...
Positron emission tomography (PET) is a non\u2010invasive molecular imaging technology that is const...
Over the past 20 years, Ga-68-labelled radiopharmaceuticals have become an important part in clinica...
International audienceAimFluorine-18 (18F) is the most favorable positron emitter for tumor imaging....
International audienceFluorine-18 (18F) is the most favorable positron emitter for tumor imaging. Ho...
Due to its ideal physical properties, fluorine-18 turns out to be a key radionuclide for positron em...
International audienceDue to its ideal physical properties, fluorine-18 turns out to be a key radion...
Fluorine‐18 (18F) is the most favorable positron emitter for radiolabeling Positron Emission Tomogra...
The Al(18)F labeling method is a relatively new approach that allows radiofluorination of biomolecul...
International audienceFluorine-18 (18F) is the most favorable positron emitter for tumor imaging. Ho...
Abstract The aluminium-[18F]fluoride ([18F]AlF) radiolabelling method combines the favourable decay ...
Small biomolecules are typically radiolabeled with (18)F by binding it to a carbon atom, a process t...
Small biomolecules are typically radiolabeled with 18F by binding it to a carbon atom, a process tha...
Item does not contain fulltextRadiolabeled receptor-binding peptides and proteins have emerged as an...
The AlF labeling method is a relatively new approach that allows radiofluorination of biomolecules s...
© 2020 Hui Jing KoayPositron emission tomography (PET) is a molecular imaging technique that produce...
Positron emission tomography (PET) is a non\u2010invasive molecular imaging technology that is const...