ArticleStem cell research & therapy2024
Impact of mesenchymal stem cell size and adhesion modulation on in vivo distribution: insights from quantitative PET imaging.
Article in Stem cell research & therapy, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Bridging the gap to clinical translation: the advanced role of PET molecular imaging in stem cell therapy.European journal of nuclear medicine and molecular imaging · 2026Article
- A rapidly fabricated bone marrow enrichment material with a controllable pore size promotes osteogenesis close to autogenous bone graft in clinic.Journal of advanced research · 2026Article
- Mesenchymal Stromal/Stem Cells (MSCs) in Cancer Therapy: Advanced Therapeutic Strategies Towards Future Clinical Translation.Molecules (Basel, Switzerland) · 2025Review
- Review
- Alternating 2D and 3D culture reduces cell size and extends the lifespan of placenta-derived mesenchymal stem cells.Frontiers in bioengineering and biotechnology · 2025Article
- Targeted peptide modification of mesenchymal stem cells enhances their therapeutic efficacy in the treatment of idiopathic pulmonary fibrosis.Frontiers in cell and developmental biology · 2025Article
Corrections and comments
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Authors and funding
14 authors.
Funding
Abstract
backgroundSuccessful engraftment and localization of mesenchymal stem cells (MSCs) within target tissues are critical factors influencing their therapeutic efficacy for tissue repair and regeneration. However, the relative contributions of biophysical factors like cell size and adhesion capacity in regulating MSC distribution in vivo remain incompletely understood.
methodsCell adhesion peptides and hanging drop method were used to modify the adhesive capacity and size of MSCs. To quantitatively track the real-time biodistribution of transplanted MSCs with defined size and adhesion profiles in living mice and rats, the non-invasive positron emission tomography (PET) imaging was applied.
resultsSurface modification with integrin binding peptides like RGD, GFOGER, and HAVDI reduced MSC adhesion capacity in vitro by up to 43.5% without altering cell size, but did not significantly decrease lung entrapment in vivo. In contrast, culturing MSCs as 3D spheroids for 48 h reduced their cell diameter by 34.6% and markedly enhanced their ability to pass through the lungs and migrate to other organs like the liver after intravenous administration. This size-dependent effect on MSC distribution was more pronounced in rats compared to mice, likely due to differences in pulmonary microvessel diameters between species.
conclusionOur findings reveal that cell size is a predominant biophysical regulator of MSC localization in vivo compared to adhesion capacity, providing crucial insights to guide optimization of MSC delivery strategies for enhanced therapeutic efficacy.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.