The increasing application of positron emission tomography (PET) in nuclear medicine has stimulated the extensive development of a multitude of novel and versatile bioorthogonal conjugation techniques especially for the radiolabeling of biologically active high molecular weight compounds like peptides, proteins or antibodies. Taking into consideration that the introduction of fluorine-18 (t1/2 = 109.8 min) proceeds under harsh conditions, radiolabeling of these biologically active molecules represents an outstanding challenge and is of enormous interest. Special attention has to be paid to the method of 18F-introduction. It should proceed in a regioselective manner under mild physiological conditions, in an acceptable time span, with high y...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Radiopharmaceuticals for nuclear imaging are essentially targeting molecules, labeled with short-liv...
Molecular imaging has been defined as the in vivo characterization and measurement of biological pro...
Due to expanding applications of positron emission tomography (PET) there is a demand for developing...
Positron Emission Tomography is a highly sensitive imaging technique currently available in nuclear ...
Conventional methods for radiolabelling biomolecules such as proteins and peptides with fluorine-18 ...
Fox, JosephThe rapid bioorthogonal reaction between tetrazines and trans-cyclooctenes has been used ...
Click chemistry reactions have had a considerable impact in the effort to develop efficient syntheti...
Novel probe development for positron emission tomography (PET) is leading to expanding the scope of ...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Click chemistry : radiolabelling of oligonucleotides with fluorine-18 for PET imaging Oligonucleo...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Radiopharmaceuticals for nuclear imaging are essentially targeting molecules, labeled with short-liv...
Molecular imaging has been defined as the in vivo characterization and measurement of biological pro...
Due to expanding applications of positron emission tomography (PET) there is a demand for developing...
Positron Emission Tomography is a highly sensitive imaging technique currently available in nuclear ...
Conventional methods for radiolabelling biomolecules such as proteins and peptides with fluorine-18 ...
Fox, JosephThe rapid bioorthogonal reaction between tetrazines and trans-cyclooctenes has been used ...
Click chemistry reactions have had a considerable impact in the effort to develop efficient syntheti...
Novel probe development for positron emission tomography (PET) is leading to expanding the scope of ...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Click chemistry : radiolabelling of oligonucleotides with fluorine-18 for PET imaging Oligonucleo...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Fluorine-18 radiolabeling of biologics is a challenge in radiochemistry due to their increasing inte...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Fluorine-18 is the most widely used positron emission tomography (PET) radionuclide currently in cli...
Radiopharmaceuticals for nuclear imaging are essentially targeting molecules, labeled with short-liv...