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Assessment of the Immunomodulatory Properties of Human Mesenchymal Stem Cells MSCs
Published on: December 24, 2015
Assessing the Effects of Dasatinib on Mesenchymal Stem/Stromal Cells
David P Heinrichs1, Vitali V Maldonado1, I Kade K Ardana2
1Department of Biomedical Engineering, Engineering Research Center, College of Engineering, University of Arkansas, 700 W Research Center Boulevard, Fayetteville, AR 72701 USA.
Introduction:
Progressive aging, or senescence, of mesenchymal stem/stromal cells (MSCs) is a major obstacle faced when trying to culture potent stem cells for use in therapy. Senescent cells are irreversibly nondividing cells that cease performing critical functional effects. Elimination of senescent cells using biochemical means, such as the use of senolytic drugs like dasatinib, may be useful in retaining the viable and proliferating populations of the cells.
Methods:
An in vitro approach was used to investigate the effect of dasatinib on phenotypic, genotypic, and immunomodulatory functionality of osteogenic and adipogenic differentiated MSCs. Replicative senescence was achieved through multiple sub-culturing in vitro, then senescent and non-senescent cultures were treated with a standard dosage of dasatinib. MSCs were then differentiated into osteogenic, adipogenic or chondrogenic cultures using conditioned media to be tested for the three criteria being investigated.
Results:
Significant changes were observed in these criteria, indicated by evidence gathered from proliferation and indoleamine 2,3 dioxygenase activity assays. Phenotypic results of dasatinib were shown to reduce the population of senescent MSCs while allowing non-senescent MSCs to continue differentiating and proliferating without interference from senescent cells. Genotypic results showed no change to upregulation in markers associated with osteogenic and adipogenic cells when exposed to dasatinib. Indoleamine Dioxygenase activity showed insignificant differences in cells exposed to dasatinib versus control groups, providing evidence against compromised cellular immune function.
Conclusion:
This investigation provides insight into how dasatinib effects MSCs functional ability and provides a better understanding of the function of senolytic agents.
Insights
Senolytic drug dasatinib effectively clears senescent mesenchymal stem/stromal cells (MSCs), preserving functional MSC populations for therapeutic use. This preserves cell proliferation and differentiation capabilities without compromising immune function.
Area of Science:
- Stem Cell Biology
- Cellular Senescence
- Regenerative Medicine
Background:
- Mesenchymal stem/stromal cells (MSCs) are crucial for therapy but lose potency due to senescence.
- Senescent cells are non-dividing and impair critical functions.
- Senolytic drugs offer a potential strategy to eliminate senescent cells and maintain viable MSC populations.
Purpose of the Study:
- To investigate the effect of dasatinib on the phenotypic, genotypic, and immunomodulatory functionality of senescent and non-senescent MSCs.
- To assess dasatinib's impact on osteogenic and adipogenic differentiated MSCs.
- To determine if dasatinib can selectively eliminate senescent MSCs without harming functional cells.
Main Methods:
- In vitro induction of replicative senescence in MSCs.
- Treatment of senescent and non-senescent MSCs with dasatinib.
- Differentiation of MSCs into osteogenic, adipogenic, and chondrogenic lineages.
- Assays for proliferation, indoleamine 2,3 dioxygenase activity, and genotypic markers.
Main Results:
- Dasatinib reduced the population of senescent MSCs.
- Non-senescent MSCs continued to differentiate and proliferate without interference.
- No significant genotypic changes were observed in osteogenic or adipogenic markers.
- Indoleamine 2,3 dioxygenase activity showed no significant difference, indicating preserved immune function.
Conclusions:
- Dasatinib effectively clears senescent MSCs, preserving functional cell populations.
- The study provides insight into senolytic agents' effects on MSCs.
- Dasatinib supports MSC-based therapies by maintaining cell viability and function.

