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PMID: 14741669 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Mapping transplanted stem cell migration after a stroke: a serial, in vivo magnetic resonance imaging study.

NeuroImage ·Vol. 21 ·No. 1 ·2004-01-00 ·Pages 311-7

Modo M, Mellodew K, Cash D, Fraser SE, Meade TJ, Price J, Williams SC

Abstract

Preferential migration of stem cells toward the site of a lesion is a highly desirable property of stem cells that allows flexibility in the site of graft implantation in the damaged brain. In rats with unilateral stroke damage, neural stem cells transplanted into the contralateral hemisphere migrate across to the lesioned hemisphere and populate the area around the ischaemic infarct. To date, the migration of neural stem cells in the damaged brain has been mainly inferred from snapshot histological images. In this study, we demonstrate that by pre-labelling neural stem cells with the bimodal contrast agent Gadolinium-RhodamIne Dextran [GRID, detectable by both magnetic resonance imaging (MRI) and fluorescent microscopy], the transhemispheric migration of transplanted neural stem cells contralateral to a stroke lesion can be followed in vivo by serial MRI and corroborated by subsequent histological analyses. Our results indicate that neural stem cells migrated from the injection tract mainly along the corpus callosum within 7 days of transplantation and extensively re-populated the peri-lesion area by 14 days following implantation. In contrast, neural stem cells transplanted into sham controls did not show any substantial migration outside of the injection tract, suggesting that the transcallosal migration observed in the stroke-lesioned animals is due to neural stem cells being attracted by the lesion site. In vivo tracking of the migration of neural stem cells responding to damage will greatly enhance our understanding of optimal transplantation strategies as well as how neural stem cells promote functional and anatomical recovery in neurological disorders.

MeSH Terms
Animals Brain Damage, Chronic/pathology,physiopathology Cell Differentiation Cell Line Cell Movement/physiology Contrast Media/administration & dosage Corpus Callosum/pathology Dextrans Dominance, Cerebral/physiology Gadolinium DTPA Hippocampus/cytology Image Enhancement/methods Infarction, Middle Cerebral Artery/pathology,physiopathology Magnetic Resonance Imaging/methods Microscopy, Confocal Microscopy, Fluorescence Neurons/transplantation Rats Rats, Sprague-Dawley Rhodamines Stem Cell Transplantation
Chemicals
Contrast Media Dextrans Rhodamines Gadolinium DTPA
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Modo Michel
Neuroimaging Research Group-Neurology P042, Institute of Psychiatry, King's College London, SE5 8AF, London, UK. m.modo@iop.kcl.ac.uk
Mellodew Karen
Cash Diana
Fraser Scott E
Meade Thomas J
Price Jack
Williams Steven C R
Article Info
Journal
NeuroImage
Abbr.
Neuroimage
ISSN
1053-8119
Published
2004-01-00
Pages
311-7
Language
English
Region
United States
NLM ID
9215515
Subset
IM
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