A Novel Method to Radiolabel Stealth Liposome through 1,2- dimyristoyl-sn-glycero-3-phosphoethanolamine-N-DTPA with 99mTc and Biological Evaluation
DOI:
https://doi.org/10.6000/1927-7229.2013.02.01.1Keywords:
Liposome, nanomedicine, diagnostic oncologyAbstract
Purpose: To study surface technetium labeling of stealth DTPA-Liposomeand to evaluate its potential as a molecular imaging tracer for both normal and melanoma-bearing mice.
The radiolabeling yield of liposomes was greater than 90%and showed good chemical and biological stability. Biodistribution studies in normal mice showed blood clearance with hepatic and renal depuration. Melanoma-bearing mice showed a similar pattern of biodistribution with high tumor uptake allowing tumor imaging.
The developed method of surface radiolabeled DTPA-PEG-Liposomes with 99mTc was effective and stable in vivo.
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