Next Article in Journal
Non-Invasive Differentiation of Benign Renal Tumors from Clear Cell Renal Cell Carcinomas Using Clinically Translatable Hyperpolarized 13C Pyruvate Magnetic Resonance
Previous Article in Journal
Gradient-Based Algorithm for Determining Tumor Volumes in Small Animals Using Planar Fluorescence Imaging Platform
 
 
Tomography is published by MDPI from Volume 7 Issue 1 (2021). Previous articles were published by another publisher in Open Access under a CC-BY (or CC-BY-NC-ND) licence, and they are hosted by MDPI on mdpi.com as a courtesy and upon agreement with Grapho, LLC.
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Pre-Labeling of Immune Cells in Normal Bone Marrow and Spleen for Subsequent Cell Tracking by MRI

by
Gabrielle M. Siegers
1,
Shruti Krishnamoorthy
1,2,
Laura E. Gonzalez-Lara
1,
Catherine McFadden
1,
Yuhua Chen
1 and
Paula J. Foster
1,2,*
1
Imaging Research Laboratories, Robarts Research Institute, London, ON, Canada
2
Department of Medical Biophysics, Western University, London, ON, Canada
*
Author to whom correspondence should be addressed.
Tomography 2016, 2(1), 26-34; https://doi.org/10.18383/j.tom.2016.00103
Submission received: 4 December 2015 / Revised: 8 January 2016 / Accepted: 12 February 2016 / Published: 1 March 2016

Abstract

Iron particles are intravenously (IV) administered to label cells in vivo during magnetic resonance imaging. This technique has been extensively used to monitor immune cells in the context of inflammatory diseases. Here, we have investigated whether resting immune cells can be labeled in vivo in healthy mice before disease onset or injury, thus allowing visualization of critical early cellular events. Using 1.5 T magnetic resonance imaging, we were able to detect signal loss in bone marrow, liver, and spleen as early as 1 hour after the IV injection of superparamagnetic iron oxide nanoparticles (Feridex; 80 to 120 nm in diameter) or larger micron-sized iron oxide particles (Bangs; 0.9 μm in diameter). Results were confirmed via histology. Further, flow cytometric analysis confirmed the presence of iron-labeled CD19+ B cells, CD3+ T cells, and CD11b+ myeloid cells within the spleen and the bone marrow. Extending this work to a murine model of multiple sclerosis, we IV administered superparamagnetic iron oxide to healthy mice 1 week before inducing experimental autoimmune encephalomyelitis. Images acquired 1 week after the onset of hindlimb paralysis showed regions of signal hypointensity in the mouse brain that corresponded with iron-labeled macrophages. In summary, we show that resting immune cells in the healthy mouse liver, spleen, and bone marrow can be prelabeled with iron oxide nanoparticles. Furthermore, iron oxide preloading of immune cells in the reticuloendothelial system can be used to detect cellular infiltration in the brains of experimental autoimmune encephalomyelitis mice.
Keywords: MRI; mice; iron; macrophage; inflammation MRI; mice; iron; macrophage; inflammation

Share and Cite

MDPI and ACS Style

Siegers, G.M.; Krishnamoorthy, S.; Gonzalez-Lara, L.E.; McFadden, C.; Chen, Y.; Foster, P.J. Pre-Labeling of Immune Cells in Normal Bone Marrow and Spleen for Subsequent Cell Tracking by MRI. Tomography 2016, 2, 26-34. https://doi.org/10.18383/j.tom.2016.00103

AMA Style

Siegers GM, Krishnamoorthy S, Gonzalez-Lara LE, McFadden C, Chen Y, Foster PJ. Pre-Labeling of Immune Cells in Normal Bone Marrow and Spleen for Subsequent Cell Tracking by MRI. Tomography. 2016; 2(1):26-34. https://doi.org/10.18383/j.tom.2016.00103

Chicago/Turabian Style

Siegers, Gabrielle M., Shruti Krishnamoorthy, Laura E. Gonzalez-Lara, Catherine McFadden, Yuhua Chen, and Paula J. Foster. 2016. "Pre-Labeling of Immune Cells in Normal Bone Marrow and Spleen for Subsequent Cell Tracking by MRI" Tomography 2, no. 1: 26-34. https://doi.org/10.18383/j.tom.2016.00103

Article Metrics

Back to TopTop