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A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography
Liposomal nanoparticles are versatile drug delivery vehicles that show great promise in cancer therapy. In an effort to quantitatively measure their in vivo pharmacokinetics, we developed a highly efficient (89)Zr liposome-labeling method based on a rapid ligand exchange reaction between the membran...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5404495/ https://www.ncbi.nlm.nih.gov/pubmed/28458546 http://dx.doi.org/10.2147/IJN.S134379 |
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author | Li, Nan Yu, Zilin Pham, Truc Thuy Blower, Philip J Yan, Ran |
author_facet | Li, Nan Yu, Zilin Pham, Truc Thuy Blower, Philip J Yan, Ran |
author_sort | Li, Nan |
collection | PubMed |
description | Liposomal nanoparticles are versatile drug delivery vehicles that show great promise in cancer therapy. In an effort to quantitatively measure their in vivo pharmacokinetics, we developed a highly efficient (89)Zr liposome-labeling method based on a rapid ligand exchange reaction between the membrane-permeable (89)Zr(8-hydroxyquinolinate)(4) complex and the hydrophilic liposomal cavity-encapsulated deferoxamine (DFO). This novel (89)Zr-labeling strategy allowed us to prepare radiolabeled forms of a folic acid (FA)-decorated active targeting (89)Zr-FA-DFO-liposome, a thermosensitive (89)Zr-DFO-liposome, and a renal avid (89)Zr-PEG-DFO-liposome at room temperature with near-quantitative isolated radiochemical yields of 98%±1% (n=6), 98%±2% (n=5), and 97%±1% (n=3), respectively. These (89)Zr-labeled liposomal nanoparticles showed remarkable stability in phosphate-buffered saline and serum at 37°C without leakage of radioactivity for 48 h. The uptake of (89)Zr-FA-DFO-liposome by the folate receptor-overexpressing KB cells was almost 15-fold higher than the (89)Zr-DFO-liposome in vitro. Positron emission tomography imaging and ex vivo biodistribution studies enabled us to observe the heterogeneous distribution of the (89)Zr-FA-DFO-liposome and (89)Zr-DFO-liposome in the KB tumor xenografts, the extensive kidney accumulation of the (89)Zr-FA-DFO-liposome and (89)Zr-PEG-DFO-liposome, and the different metabolic fate of the free and liposome-encapsulated (89)Zr-DFO. It also unveiled the poor resistance of all three liposomes against endothelial uptake resulting in their catabolism and high uptake of free (89)Zr in the skeleton. Thus, this technically simple (89)Zr-labeling method would find widespread use to guide the development and clinical applications of novel liposomal nanomedicines. |
format | Online Article Text |
id | pubmed-5404495 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-54044952017-04-28 A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography Li, Nan Yu, Zilin Pham, Truc Thuy Blower, Philip J Yan, Ran Int J Nanomedicine Original Research Liposomal nanoparticles are versatile drug delivery vehicles that show great promise in cancer therapy. In an effort to quantitatively measure their in vivo pharmacokinetics, we developed a highly efficient (89)Zr liposome-labeling method based on a rapid ligand exchange reaction between the membrane-permeable (89)Zr(8-hydroxyquinolinate)(4) complex and the hydrophilic liposomal cavity-encapsulated deferoxamine (DFO). This novel (89)Zr-labeling strategy allowed us to prepare radiolabeled forms of a folic acid (FA)-decorated active targeting (89)Zr-FA-DFO-liposome, a thermosensitive (89)Zr-DFO-liposome, and a renal avid (89)Zr-PEG-DFO-liposome at room temperature with near-quantitative isolated radiochemical yields of 98%±1% (n=6), 98%±2% (n=5), and 97%±1% (n=3), respectively. These (89)Zr-labeled liposomal nanoparticles showed remarkable stability in phosphate-buffered saline and serum at 37°C without leakage of radioactivity for 48 h. The uptake of (89)Zr-FA-DFO-liposome by the folate receptor-overexpressing KB cells was almost 15-fold higher than the (89)Zr-DFO-liposome in vitro. Positron emission tomography imaging and ex vivo biodistribution studies enabled us to observe the heterogeneous distribution of the (89)Zr-FA-DFO-liposome and (89)Zr-DFO-liposome in the KB tumor xenografts, the extensive kidney accumulation of the (89)Zr-FA-DFO-liposome and (89)Zr-PEG-DFO-liposome, and the different metabolic fate of the free and liposome-encapsulated (89)Zr-DFO. It also unveiled the poor resistance of all three liposomes against endothelial uptake resulting in their catabolism and high uptake of free (89)Zr in the skeleton. Thus, this technically simple (89)Zr-labeling method would find widespread use to guide the development and clinical applications of novel liposomal nanomedicines. Dove Medical Press 2017-04-20 /pmc/articles/PMC5404495/ /pubmed/28458546 http://dx.doi.org/10.2147/IJN.S134379 Text en © 2017 Li et al. This work is published by Dove Medical Press Limited, and licensed under a Creative Commons Attribution License The full terms of the License are available at http://creativecommons.org/licenses/by/4.0/. The license permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Original Research Li, Nan Yu, Zilin Pham, Truc Thuy Blower, Philip J Yan, Ran A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title | A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title_full | A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title_fullStr | A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title_full_unstemmed | A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title_short | A generic (89)Zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
title_sort | generic (89)zr labeling method to quantify the in vivo pharmacokinetics of liposomal nanoparticles with positron emission tomography |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5404495/ https://www.ncbi.nlm.nih.gov/pubmed/28458546 http://dx.doi.org/10.2147/IJN.S134379 |
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