Review Article

Nanotargeted Radionuclides for Cancer Nuclear Imaging and Internal Radiotherapy

Table 5

Selected actively nanotargeted tumor nuclear imaging and radiotherapeutic applications.

NanoparticlesRadionuclidesImaging or RadiotherapeuticsApplicationsReference

Immunoliposome111InGamma imaging and therapeutics111In-liposome-2C5(mAb) nucleosome-specific monoclonal 2C5 targeting delivery vehicles for tumor visualization of murine lewis lung carcinoma and human HT-29 tumors[4547]

Perfluorocarbon nanoparticles111InGamma imagingImaging of targeted tumor angiogenesis of 𝛼 v 𝛽 3 -integrin in Vx-2 rabbit tumors[48]

Carbon nanotubes111InGamma or SPECT imagingMultifunctional targeted delivery and imaging with. functionalized and bioconjugated 111In-DOTA-CNT-Rituximab nanoconstructs[40]

Quantum dots64CuBifunctional PET/NIRF imagingDual-functional targeted delivery with amine functionalized 64Cu-DOTA-QD-RGD for tumor angiogenesis PET/NIRF imaging[37]

Quantum dots64CuBifunctional PET/NIRF imagingDual-functional targeted delivery with amine functionalized 64Cu-DOTA-QD-VEGF for tumor angiogenesis PET/NIRF imaging[38]

Quantum dots18FBifunctional PET/optical imaging18F labeled phospholipids quantum dot micelles for in vivo multimodal imaging[39]

Iron oxide64CuBifunctional PET/MRI imagingPET/MRI dual-modality tumor angiogenesis imaging with 64Cu-DOTA-IO-RGD nanoconstructs[32, 33]

Iron oxide18FTrimodel MRI/PET-CT/optical imaging18F labeled iron oxide for in vivo PET-CT imaging[34]

Polymer 9 9 m T c Scintigraphic images of tumor targetingTargeting tumor angiogenesis: comparison of 9 9 m T c -peptide and 9 9 m T c -polymer-peptide conjugates[35]

Dendrimers76BrRGD directed-demdrimers PET imaging76Br labeled RGD-directed-dendritic nanoprobes for PET imaging of angiogenesis[36]

Streptavidin111InRadiotherapeutics111In labeled 3-component streptavidin (111In-MORF/tat/trastuzmab) nanoparticles for auger electron induced antisense-mediated cytoxicity of tumor cells[50]

Immunoliposomes90YRadiotherapeuticsTargeted antiangiogenesis of 𝛼 v 𝛽 3 -integrin or VEGFR2 anti-FLK-1 therapy with nanotargeted therapeutics of 90Y-DTPA-liposome-IA(integrin antagonist) or 90Y-DTPA-liposome-mAb[49]

Immunoliposomes225AcRadiotherapeuticsTargeted 𝛼 -particles emitters of 225Ac-generators encapsulated in liposomes as therapeutic agents for micrometastases cancer[8284]

Immunoiposomes and Folate-dendrimers10BRadiotherapeutics10B-immunoliposomes-anti-EGFR and 10B-PAMAM dendrimers-anti-folate nanotargeted therapeutics for boron neutron capture therapy (BNCT)[51, 52]