2016
DOI: 10.18869/acadpub.pbr.2.2.31
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Preparation and preliminary studies of [64Cu]-antiMUC-1 for breast cancer targeting

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“…The radio-immunoconjugate displayed a high radiochemical efficiency, high in vitro stability, and a minimum loss of immunoreactivity. Compared to its high immunoreactivity toward MCF7 expressing MUC1 antigen, 64 Cu-DOTA-PR81 did not interact with CHO cell line as the control. The maximum internalized radioactivity was seen after a 4−8 h incubation that was reduced at 48 h. The authors explained the falloff in cell-related activity by a proteolytic degradation of the antibody in lysosomes, which results in a copper transchelatation of biomolecules containing internal copper such as superoxide dismutase (SOD).…”
Section: ■ Pr81mentioning
confidence: 88%
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“…The radio-immunoconjugate displayed a high radiochemical efficiency, high in vitro stability, and a minimum loss of immunoreactivity. Compared to its high immunoreactivity toward MCF7 expressing MUC1 antigen, 64 Cu-DOTA-PR81 did not interact with CHO cell line as the control. The maximum internalized radioactivity was seen after a 4−8 h incubation that was reduced at 48 h. The authors explained the falloff in cell-related activity by a proteolytic degradation of the antibody in lysosomes, which results in a copper transchelatation of biomolecules containing internal copper such as superoxide dismutase (SOD).…”
Section: ■ Pr81mentioning
confidence: 88%
“…For single photon-emission tomography (SPECT), γ-emitters with energies in the range from 100 to 250 keV are optimal and are mainly represented by 99m Tc, 123 I, and 111 In. High-energy positron-emitters such as 18 F, 68 Ga, 64 Cu, and 11 C can be used for positron-emission tomography (PET) by emitting 511 keV photons. 55−58 For therapeutic purposes, αor β-particles or low-energy electron emitters are ideal radioisotopes for the treatment of tumor cells.…”
Section: ■ Radiopharmaceuticalsmentioning
confidence: 99%
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