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An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging

Cell labelling agents that enable longitudinal in vivo tracking of administered cells will support the clinical development of cell-based therapies. Radionuclide imaging with gamma and positron-emitting radioisotopes can provide quantitative and longitudinal mapping of cells in vivo. To make this wi...

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Autores principales: Pruller, Johanna, Pham, Truc Thuy, Blower, Julia E., Charoenphun, Putthiporn, Volpe, Alessia, Sunassee, Kavitha, Mullen, Gregory E. D., Blower, Philip J., Smith, Richard A. G., Ma, Michelle T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9811519/
https://www.ncbi.nlm.nih.gov/pubmed/36685254
http://dx.doi.org/10.1039/d2cb00164k
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author Pruller, Johanna
Pham, Truc Thuy
Blower, Julia E.
Charoenphun, Putthiporn
Volpe, Alessia
Sunassee, Kavitha
Mullen, Gregory E. D.
Blower, Philip J.
Smith, Richard A. G.
Ma, Michelle T.
author_facet Pruller, Johanna
Pham, Truc Thuy
Blower, Julia E.
Charoenphun, Putthiporn
Volpe, Alessia
Sunassee, Kavitha
Mullen, Gregory E. D.
Blower, Philip J.
Smith, Richard A. G.
Ma, Michelle T.
author_sort Pruller, Johanna
collection PubMed
description Cell labelling agents that enable longitudinal in vivo tracking of administered cells will support the clinical development of cell-based therapies. Radionuclide imaging with gamma and positron-emitting radioisotopes can provide quantitative and longitudinal mapping of cells in vivo. To make this widely accessible and adaptable to a range of cell types, new, versatile and simple methods for directly radiolabelling cells are required. We have developed [(111)In]In-DTPA-CTP, the first example of a radiolabelled peptide that binds to the extracellular membrane of cells, for tracking cell distribution in vivo using Single Photon Emission Computed Tomography (SPECT). [(111)In]In-DTPA-CTP consists of (i) myristoyl groups for insertion into the phospholipid bilayer, (ii) positively charged lysine residues for electrostatic association with negatively charged phospholipid groups at the cell surface and (iii) a diethylenetriamine pentaacetate derivative that coordinates the γ-emitting radiometal, [(111)In]In(3+). [(111)In]In-DTPA-CTP binds to 5T33 murine myeloma cells, enabling qualitative SPECT tracking of myeloma cells’ accumulation in lungs immediately after intravenous administration. This is the first report of a radiolabelled cell-membrane binding peptide for use in cell tracking.
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spelling pubmed-98115192023-01-20 An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging Pruller, Johanna Pham, Truc Thuy Blower, Julia E. Charoenphun, Putthiporn Volpe, Alessia Sunassee, Kavitha Mullen, Gregory E. D. Blower, Philip J. Smith, Richard A. G. Ma, Michelle T. RSC Chem Biol Chemistry Cell labelling agents that enable longitudinal in vivo tracking of administered cells will support the clinical development of cell-based therapies. Radionuclide imaging with gamma and positron-emitting radioisotopes can provide quantitative and longitudinal mapping of cells in vivo. To make this widely accessible and adaptable to a range of cell types, new, versatile and simple methods for directly radiolabelling cells are required. We have developed [(111)In]In-DTPA-CTP, the first example of a radiolabelled peptide that binds to the extracellular membrane of cells, for tracking cell distribution in vivo using Single Photon Emission Computed Tomography (SPECT). [(111)In]In-DTPA-CTP consists of (i) myristoyl groups for insertion into the phospholipid bilayer, (ii) positively charged lysine residues for electrostatic association with negatively charged phospholipid groups at the cell surface and (iii) a diethylenetriamine pentaacetate derivative that coordinates the γ-emitting radiometal, [(111)In]In(3+). [(111)In]In-DTPA-CTP binds to 5T33 murine myeloma cells, enabling qualitative SPECT tracking of myeloma cells’ accumulation in lungs immediately after intravenous administration. This is the first report of a radiolabelled cell-membrane binding peptide for use in cell tracking. RSC 2022-10-19 /pmc/articles/PMC9811519/ /pubmed/36685254 http://dx.doi.org/10.1039/d2cb00164k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Pruller, Johanna
Pham, Truc Thuy
Blower, Julia E.
Charoenphun, Putthiporn
Volpe, Alessia
Sunassee, Kavitha
Mullen, Gregory E. D.
Blower, Philip J.
Smith, Richard A. G.
Ma, Michelle T.
An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title_full An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title_fullStr An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title_full_unstemmed An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title_short An indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
title_sort indium-111-labelled membrane-targeted peptide for cell tracking with radionuclide imaging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9811519/
https://www.ncbi.nlm.nih.gov/pubmed/36685254
http://dx.doi.org/10.1039/d2cb00164k
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