| Literature DB >> 26753925 |
Johannes Leibacher1, Reinhard Henschler2,3.
Abstract
Mesenchymal stem/stromal cells (MSCs) are increasingly used as an intravenously applied cellular therapeutic. They were found to be potent in situations such as tissue repair or severe inflammation. Still, data are lacking with regard to the biodistribution of MSCs, their cellular or molecular target structures, and the mechanisms by which MSCs reach these targets. This review discusses current hypotheses for how MSCs can reach tissue sites. Both preclinical and clinical studies using MSCs applied intravenously or intra-arterially are discussed in the context of our current understanding of how MSCs might work in physiological and pathological situations.Entities:
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Year: 2016 PMID: 26753925 PMCID: PMC4709937 DOI: 10.1186/s13287-015-0271-2
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Common themes in MSC biodistribution research
| Theme | Targeted tissues (possible mechanism) | References |
|---|---|---|
| Increased homing after intra-arterial delivery compared with intravenous delivery? | Kidney | [ |
| Joints | [ | |
| Stroke | [ | |
| Other (many) tissues | [ | |
| Side effects of intra-arterial versus intravenous delivery? | Incorporation into vessel wall | [ |
| Obstruction of microvessels | [ | |
| Vascular occlusion | [ | |
| Targeting of vessel wall and vessel-associated tissues? | Lungs, lymph nodes, intestine | [ |
| Targeting of tissues for regeneration | Myocardium | [ |
| Beta1 integrins | [ | |
| CCL2, monocytes | [ | |
| Kidney | [ | |
| Gut and liver | [ | |
| Skin | [ | |
| CCL21 | [ | |
| JAM-A | [ | |
| Brain | [ | |
| P/E selectin (CD44) | [ | |
| CXCR4/flk-1/EPO-R | [ | |
| Homing to bone marrow | Bone marrow | [ |
| HCELL/E-selectin | [ | |
| Subendothelial localization | [ | |
| Biodistribution to the immune system? | Macrophages | [ |
| Dendritic cells | [ | |
| T cells | [ | |
| Unknown target cells | ||
| Idoleamine desoxygenase | [ | |
| Prostaglandin E2 | [ | |
| Elimination mechanisms? | Antibody formation | [ |
| Phagocytes | [ | |
| Influence of radiation on homing? | Increased in brain, heart, bone marrow, and muscles | [ |
| Homing in malignancies? | Tumor | [ |
| Mediated by CCL25 | [ | |
| Mediated by sodium iodide symporter under the control of RANTES/CCL-5 promoter | [ | |
| Homed MSCs form tumor-associated fibroblasts | [ | |
| Formation of microvesicles | Microvesicles may contribute to/be part of MSC biodistribution | [ |
| Mediated by horizontal transfer of microRNAs | [ |
MSC Mesenchymal stromal/stem cell
Fig. 1Possible ways that MSCs interact within the local environment of the bloodstream. Descriptions of cell types are shown below and the possible interactions are circled in green. APC antigen-presenting cell, EC endothelial cell, IBMIR instant blood mediated inflammatory response, IFN interferon, MHC major histocompatibility complex, MSC mesenchymal stem/stromal cell, NK natural killer, Treg regulatory T cell