Stem Cell Tracking

Stem cell tracking is the use of labels, genetic reporters, or imaging methods to locate transplanted or endogenous stem cells and follow their survival, movement, and fate over time. Depending on the strategy, cells may be marked before administration with fluorescent or magnetic labels, engineered to express reporter genes, or detected through tissue-specific molecular signals; imaging then reveals their distribution and persistence in living systems or fixed specimens. In medicine, tracking helps assess cell homing, engraftment, differentiation, and safety in regenerative therapies. These measurements connect cell behavior with treatment outcomes and guide the design of more reliable transplantation and tissue-repair approaches.

Stem Cell Tracking - Related Videos

Research

JoVE EoE - Neuroimaging

Live Imaging and Single-Cell Tracking to Monitor Neural Lineage in Adult Neural Stem Cells

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2025

Source: Gómez-Villafuertes, R., et. al., Live Imaging Followed by Single Cell Tracking to Monitor Cell Biology and the Lineage Progression of Multiple Neural Populations. J. Vis. Exp. (2017) The video demonstrates the process of preparing, imaging, and tracking adult neural stem cells in real time to study cellular behaviors, including division and differentiation.

Derivation of Hematopoietic Stem Cells from Murine Embryonic Stem Cells

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Cited by 7 •

2007

This protocol details the derivation of transplantable hematopoietic stem cells from mouse embryonic stem cells (ESC) and their subsequent injection into lethally irradiated recipient mice. Briefly, ESC are differentiated as embryoid bodies, which are then infected with retroviral HoxB4 and co-cultured with OP9 stromal cells and hematopoietic cytokines.

In Vivo Imaging and Tracking of Technetium-99m Labeled Bone Marrow Mesenchymal Stem Cells in Equine Tendinopathy

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Cited by 17 •

2015

This protocol describes the radiolabeling of equine mesenchymal stem cells and their implantation into tendon injuries in the horse in order to determine cell survival and tissue distribution using gamma scintigraphy.

In vivo Clonal Tracking of Hematopoietic Stem and Progenitor Cells Marked by Five Fluorescent Proteins using Confocal and Multiphoton Microscopy

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Cited by 11 •

2014

Combinatorial 5 fluorescent proteins marking of hematopoietic stem and progenitor cells allows in vivo clonal tracking via confocal and two-photon microscopy, providing insights into bone marrow hematopoietic architecture during regeneration. This method allows non-invasive fate mapping of spectrally-coded HSPCs-derived cells in intact tissues for extensive periods of time following transplantation.

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