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Homing of neural stem cells from the venous compartment into a brain infarct does not involve conventional interactions with vascular endothelium.
- Source :
-
Stem cells translational medicine [Stem Cells Transl Med] 2014 Feb; Vol. 3 (2), pp. 229-40. Date of Electronic Publication: 2014 Jan 06. - Publication Year :
- 2014
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Abstract
- Human neural stem cells (hNSCs) hold great potential for treatment of a wide variety of neurodegenerative and neurotraumatic conditions. Heretofore, administration has been through intracranial injection or implantation of cells. Because neural stem cells are capable of migrating to the injured brain from the intravascular space, it seemed feasible to administer them intravenously if their ability to circumvent the blood-brain barrier was enhanced. In the present studies, we found that interactions of hNSCs in vitro on the luminal surface of human umbilical vein endothelial cells was enhanced following enforced expression of cutaneous lymphocyte antigen on cell surface moieties by incubation of hNSCs with fucosyltransferase VI and GDP-fucose (fhNSCs). Interestingly, ex vivo fucosylation of hNSCs not only did not improve the cells homing into the brain injured by stroke following intravenous administration but also increased mortality of rats compared with the nonfucosylated hNSC group. Efforts to explain these unexpected findings using a three-dimensional flow chamber device revealed that transmigration of fhNSCs (under conditions of physiological shear stress) mediated by stromal cell-derived factor 1α was significantly decreased compared with controls. Further analysis revealed that hNSCs poorly withstand physiological shear stress, and their ability is further decreased following fucosylation. In addition, fhNSCs demonstrated a higher frequency of cellular aggregate formation as well as a tendency for removal of fucose from the cell surface. In summary, our findings suggest that the behavior of hNSCs in circulation is different from that observed with other cell types and that, at least for stroke, intravenous administration is a suboptimal route, even when the in vitro rolling ability of hNSCs is optimized by enforced fucosylation.
- Subjects :
- Animals
Cell Communication
Cell Movement physiology
Cell Survival physiology
Diffusion Chambers, Culture
Disease Models, Animal
Endothelial Cells physiology
Female
Fucose metabolism
Human Umbilical Vein Endothelial Cells
Humans
Injections, Intravenous
Neural Stem Cells physiology
Rats
Rats, Sprague-Dawley
Stress, Mechanical
Stroke pathology
Veins physiology
Blood-Brain Barrier cytology
Endothelial Cells cytology
Neural Stem Cells cytology
Neural Stem Cells transplantation
Stroke therapy
Veins cytology
Subjects
Details
- Language :
- English
- ISSN :
- 2157-6564
- Volume :
- 3
- Issue :
- 2
- Database :
- MEDLINE
- Journal :
- Stem cells translational medicine
- Publication Type :
- Academic Journal
- Accession number :
- 24396034
- Full Text :
- https://doi.org/10.5966/sctm.2013-0052