Magnetic resonance tracking of dendritic cells in melanoma patients for monitoring of cellular therapy

The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and subsequent migration of cells to regional lymph nodes is essential for effective stimulation of the immune system. We show here that in vivo ma...

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Published inNature biotechnology Vol. 23; no. 11; pp. 1407 - 1413
Main Authors Bulte, Jeff W M, Figdor, Carl G, de Vries, I Jolanda M, Lesterhuis, W Joost, Barentsz, Jelle O, Verdijk, Pauline, van Krieken, J Han, Boerman, Otto C, Oyen, Wim J G, Bonenkamp, Johannes J, Boezeman, Jan B, Adema, Gosse J, Scheenen, Tom W J, Punt, Cornelis J A, Heerschap, Arend
Format Journal Article
LanguageEnglish
Published New York, NY Nature 01.11.2005
Nature Publishing Group
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Abstract The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and subsequent migration of cells to regional lymph nodes is essential for effective stimulation of the immune system. We show here that in vivo magnetic resonance tracking of magnetically labeled cells is feasible in humans for detecting very low numbers of dendritic cells in conjunction with detailed anatomical information. Autologous dendritic cells were labeled with a clinical superparamagnetic iron oxide formulation or (111)In-oxine and were co-injected intranodally in melanoma patients under ultrasound guidance. In contrast to scintigraphic imaging, magnetic resonance imaging (MRI) allowed assessment of the accuracy of dendritic cell delivery and of inter- and intra-nodal cell migration patterns. MRI cell tracking using iron oxides appears clinically safe and well suited to monitor cellular therapy in humans.
AbstractList The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and subsequent migration of cells to regional lymph nodes is essential for effective stimulation of the immune system. We show here that in vivo magnetic resonance tracking of magnetically labeled cells is feasible in humans for detecting very low numbers of dendritic cells in conjunction with detailed anatomical information. Autologous dendritic cells were labeled with a clinical superparamagnetic iron oxide formulation or (111)In-oxine and were co-injected intranodally in melanoma patients under ultrasound guidance. In contrast to scintigraphic imaging, magnetic resonance imaging (MRI) allowed assessment of the accuracy of dendritic cell delivery and of inter- and intra-nodal cell migration patterns. MRI cell tracking using iron oxides appears clinically safe and well suited to monitor cellular therapy in humans.
The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and subsequent migration of cells to regional lymph nodes is essential for effective stimulation of the immune system. We show here that in vivo magnetic resonance tracking of magnetically labeled cells is feasible in humans for detecting very low numbers of dendritic cells in conjunction with detailed anatomical information. Autologous dendritic cells were labeled with a clinical superparamagnetic iron oxide formulation or super(111)In-oxine and were co-injected intranodally in melanoma patients under ultrasound guidance. In contrast to scintigraphic imaging, magnetic resonance imaging (MRI) allowed assessment of the accuracy of dendritic cell delivery and of inter- and intra-nodal cell migration patterns. MRI cell tracking using iron oxides appears clinically safe and well suited to monitor cellular therapy in humans.
Audience Academic
Author Bonenkamp, Johannes J
Barentsz, Jelle O
Figdor, Carl G
Lesterhuis, W Joost
Boerman, Otto C
Verdijk, Pauline
van Krieken, J Han
Heerschap, Arend
de Vries, I Jolanda M
Oyen, Wim J G
Boezeman, Jan B
Adema, Gosse J
Scheenen, Tom W J
Punt, Cornelis J A
Bulte, Jeff W M
Author_xml – sequence: 1
  givenname: Jeff W M
  surname: Bulte
  fullname: Bulte, Jeff W M
  organization: The Russell H. Morgan Department of Radiology and Radiological Science, Division of MR Research, and Institute for Cell Engineering, Johns Hopkins University School of Medicine, 217 Traylor
– sequence: 2
  givenname: Carl G
  surname: Figdor
  fullname: Figdor, Carl G
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  givenname: I Jolanda M
  surname: de Vries
  fullname: de Vries, I Jolanda M
  organization: Department of Tumor Immunology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28 Department of Pediatric Oncology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 4
  givenname: W Joost
  surname: Lesterhuis
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  organization: Department of Medical Oncology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
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  surname: Verdijk
  fullname: Verdijk, Pauline
  organization: Department of Tumor Immunology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 7
  givenname: J Han
  surname: van Krieken
  fullname: van Krieken, J Han
  organization: Department of Pathology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 8
  givenname: Otto C
  surname: Boerman
  fullname: Boerman, Otto C
  organization: Department of Nuclear Medicine, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
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  givenname: Wim J G
  surname: Oyen
  fullname: Oyen, Wim J G
  organization: Department of Nuclear Medicine, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 10
  givenname: Johannes J
  surname: Bonenkamp
  fullname: Bonenkamp, Johannes J
  organization: Department of Surgery, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 11
  givenname: Jan B
  surname: Boezeman
  fullname: Boezeman, Jan B
  organization: Central Hematological Laboratory, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
– sequence: 12
  givenname: Gosse J
  surname: Adema
  fullname: Adema, Gosse J
  organization: Department of Tumor Immunology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
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  givenname: Tom W J
  surname: Scheenen
  fullname: Scheenen, Tom W J
  organization: Department of Radiology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
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  givenname: Cornelis J A
  surname: Punt
  fullname: Punt, Cornelis J A
  organization: Department of Medical Oncology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
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  givenname: Arend
  surname: Heerschap
  fullname: Heerschap, Arend
  organization: Department of Radiology, Radboud University Nijmegen Medical Center and Nijmegen Center for Molecular Life Sciences, Geert Grooteplein 28
BackLink http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=17263137$$DView record in Pascal Francis
https://www.ncbi.nlm.nih.gov/pubmed/16258544$$D View this record in MEDLINE/PubMed
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Issue 11
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Dendritic cell
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Melanoma
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B Thurner (BFnbt1154_CR27) 1999; 190
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Snippet The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and...
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pubmed
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nature
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StartPage 1407
SubjectTerms Biological and medical sciences
Biotechnology
Cell Movement
Cell Separation
Cell Transplantation - methods
Dendritic Cells - transplantation
Ferric Compounds - chemistry
Flow Cytometry
Fundamental and applied biological sciences. Psychology
Humans
Immune system
Immunohistochemistry
Immunotherapy - methods
Indium Radioisotopes - therapeutic use
Iron oxides
Lymph nodes
Lymph Nodes - pathology
Lymphatic Metastasis
Magnetic Resonance Imaging - methods
Melanoma
Melanoma - therapy
Models, Statistical
Monocytes - metabolism
Phenotype
Radionuclide Imaging - methods
Title Magnetic resonance tracking of dendritic cells in melanoma patients for monitoring of cellular therapy
URI http://dx.doi.org/10.1038/nbt1154
https://www.ncbi.nlm.nih.gov/pubmed/16258544
https://www.proquest.com/docview/222322369
https://search.proquest.com/docview/17077061
https://search.proquest.com/docview/68768275
Volume 23
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