Magnetodendrimers allow endosomal magnetic labeling and in vivo tracking of stem cells
Top Cited Papers
- 1 December 2001
- journal article
- Published by Springer Nature in Nature Biotechnology
- Vol. 19 (12) , 1141-1147
- https://doi.org/10.1038/nbt1201-1141
Abstract
Magnetic resonance (MR) tracking of magnetically labeled stem and progenitor cells is an emerging technology, leading to an urgent need for magnetic probes that can make cells highly magnetic during their normal expansion in culture. We have developed magnetodendrimers as a versatile class of magnetic tags that can efficiently label mammalian cells, including human neural stem cells (NSCs) and mesenchymal stem cells (MSCs), through a nonspecific membrane adsorption process with subsequent intracellular (non-nuclear) localization in endosomes. The superparamagnetic iron oxide nanocomposites have been optimized to exhibit superior magnetic properties and to induce sufficient MR cell contrast at incubated doses as low as 1 microg iron/ml culture medium. When containing between 9 and 14 pg iron/cell, labeled cells exhibit an ex vivo nuclear magnetic resonance (NMR) relaxation rate (1/T2) as high as 24-39 s-1/mM iron. Labeled cells are unaffected in their viability and proliferating capacity, and labeled human NSCs differentiate normally into neurons. Furthermore, we show here that NSC-derived (and LacZ-transfected), magnetically labeled oligodendroglial progenitors can be readily detected in vivo at least as long as six weeks after transplantation, with an excellent correlation between the obtained MR contrast and staining for beta-galactosidase expression. The availability of magnetodendrimers opens up the possibility of MR tracking of a wide variety of (stem) cell transplants.Keywords
This publication has 37 references indexed in Scilit:
- Stem cells — hype and hopeNature, 2000
- Tat peptide-derivatized magnetic nanoparticles allow in vivo tracking and recovery of progenitor cellsNature Biotechnology, 2000
- Neurotransplantation of magnetically labeled oligodendrocyte progenitors: Magnetic resonance tracking of cell migration and myelinationProceedings of the National Academy of Sciences, 1999
- Transplanted embryonic stem cells survive, differentiate and promote recovery in injured rat spinal cordNature Medicine, 1999
- Embryonic Stem Cell-Derived Glial Precursors: A Source of Myelinating TransplantsScience, 1999
- High-Efficiency Intracellular Magnetic Labeling with Novel Superparamagnetic-Tat Peptide ConjugatesBioconjugate Chemistry, 1999
- Derivation of pluripotent stem cells from cultured human primordial germ cellsProceedings of the National Academy of Sciences, 1998
- Embryonic Stem Cell Lines Derived from Human BlastocystsScience, 1998
- Magnetic Nanoparticles as Contrast Agents for MR ImagingPublished by Springer Nature ,1997
- Monocrystalline iron oxide nanocompounds (MION): Physicochemical propertiesMagnetic Resonance in Medicine, 1993