The review presented here lays out the present state of the art in the field of radionuclide therapies specifically targeted against the nucleus of cancer cells, focussing on the use of Auger-electron-emitters. Nuclear localisation of radionuclides increases DNA damage and cell kill, and, in the case of Auger-electron therapy, is deemed necessary for therapeutic effect. Several strategies will be discussed to direct radionuclides to the nucleoplasm, even to specific protein targets within the nucleus. An overview is given of the applications of Auger-electron-emitting radionuclide therapy targeting the nucleus. Finally, a few suggestions are made as how radioimmunotherapy with nuclear targets can be improved, and the challenges that might b...
Recently, targeted radionuclide therapy (TRT) with radionuclide-derived short-range radiation has be...
Objective: Auger electrons have a potential for effective cell killing when the radionuclide is deli...
Targeted radiotherapy is an evolving and promising modality of cancer treatment. The killing of canc...
The review presented here lays out the present state of the art in the field of radionuclide therapi...
Abstract. Background: Auger electron emitters that can be targeted into DNA of tumour cells represen...
Auger electron emitters (AEEs) are attractive tools in targeted radionuclide therapy to specifically...
Abstract Background Auger electrons (AEs) are very lo...
Recently, targeted radionuclide therapy (TRT) with radionuclide-derived short-range radiation has be...
Auger electrons emitted in nuclear decay offer a unique tool to treat cancer cells at the scale of a...
Targeted radionuclide therapy is one of the most intensively developing directions of nuclear medici...
Targeted radionuclide therapy is one of the most intensively developing directions of nuclear medici...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
This review highlights recent progress in the development of anticancer radiopharmaceuticals. Molecu...
Objective Radionuclide therapy with low-energy auger electron emitters may provide high antitumor ef...
This review highlights recent progress in the development of anticancer radiopharmaceuticals. Molecu...
Recently, targeted radionuclide therapy (TRT) with radionuclide-derived short-range radiation has be...
Objective: Auger electrons have a potential for effective cell killing when the radionuclide is deli...
Targeted radiotherapy is an evolving and promising modality of cancer treatment. The killing of canc...
The review presented here lays out the present state of the art in the field of radionuclide therapi...
Abstract. Background: Auger electron emitters that can be targeted into DNA of tumour cells represen...
Auger electron emitters (AEEs) are attractive tools in targeted radionuclide therapy to specifically...
Abstract Background Auger electrons (AEs) are very lo...
Recently, targeted radionuclide therapy (TRT) with radionuclide-derived short-range radiation has be...
Auger electrons emitted in nuclear decay offer a unique tool to treat cancer cells at the scale of a...
Targeted radionuclide therapy is one of the most intensively developing directions of nuclear medici...
Targeted radionuclide therapy is one of the most intensively developing directions of nuclear medici...
Auger-electron-emitting radioisotopes provide a unique tool that enables the targeted irradiation of...
This review highlights recent progress in the development of anticancer radiopharmaceuticals. Molecu...
Objective Radionuclide therapy with low-energy auger electron emitters may provide high antitumor ef...
This review highlights recent progress in the development of anticancer radiopharmaceuticals. Molecu...
Recently, targeted radionuclide therapy (TRT) with radionuclide-derived short-range radiation has be...
Objective: Auger electrons have a potential for effective cell killing when the radionuclide is deli...
Targeted radiotherapy is an evolving and promising modality of cancer treatment. The killing of canc...