6533b82efe1ef96bd129327f

RESEARCH PRODUCT

A Safe and Effective Magnetic Labeling Protocol for MRI-Based Tracking of Human Adult Neural Stem Cells

Albrecht StrohAlbrecht StrohJenny KresselJenny KresselRoland CorasAntje Y. DreyerWenke FröhlichAnnette FörschlerDonald LobsienIngmar BlümckeSaida ZoubaaJürgen SchlegelClaus ZimmerJohannes BoltzeJohannes Boltze

subject

Cell physiologyImmunocytochemistryImaging phantomlcsh:RC321-57103 medical and health sciences0302 clinical medicineMedizinische FakultätIn vivomedicinemagnetic resonance imagingddc:610lcsh:Neurosciences. Biological psychiatry. NeuropsychiatryCNS – disorderOriginal Research030304 developmental biology0303 health sciencesmedicine.diagnostic_testChemistryQHGeneral Neurosciencemagnetic labelingCNS-disorderMagnetic resonance imagingVSOPR1Neural stem cellQRddc:Human Adult Stem Cells ; Magnetic Labeling ; Mri ; Cell Tracking ; Cns - DisorderCell biologycell trackingCNS – disorder ; human adult stem cells ; magnetic labeling ; MRI ; cell trackingStem cell030217 neurology & neurosurgeryNeuroscienceRChuman adult stem cellsMRI

description

Magnetic resonance imaging (MRI) provides a unique tool for in vivo visualization and tracking of stem cells in the brain. This is of particular importance when assessing safety of experimental cell treatments in the preclinical or clinical setup. Yet, specific imaging requires an efficient and non-perturbing cellular magnetic labeling which precludes adverse effects of the tag, e.g., the impact of iron-oxide-nanoparticles on the critical differentiation and integration processes of the respective stem cell population investigated. In this study we investigated the effects of very small superparamagnetic iron oxide particle (VSOP) labeling on viability, stemness, and neuronal differentiation potential of primary human adult neural stem cells (haNSCs). Cytoplasmic VSOP incorporation massively reduced the transverse relaxation time T2, an important parameter determining MR contrast. Cells retained cytoplasmic label for at least a month, indicating stable incorporation, a necessity for long-term imaging. Using a clinical 3T MRI, 1 × 10<sup>3</sup> haNSCs were visualized upon injection in a gel phantom, but detection limit was much lower (5 × 10<sup>4</sup> cells) in layer phantoms and using an imaging protocol feasible in a clinical scenario. Transcriptional analysis and fluorescence immunocytochemistry did not reveal a detrimental impact of VSOP labeling on important parameters of cellular physiology with cellular viability, stemness and neuronal differentiation potential remaining unaffected. This represents a pivotal prerequisite with respect to clinical application of this method.

https://doi.org/10.3389/fnins.2019.01092