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Functional impairment of MSC induced by transient warming events: Correlation with loss of adhesion and altered cell
Dominique Chabot1, Antoine Lewin2, Lionel Loubaki1
1Medical Affairs and Innovation, Héma-Québec, Québec (Qc), Canada; Department of Biochemistry, Microbiology and Bioinformatics, Laval University, Québec (Qc), Canada.
Background:
We recently showed that transient warming effects decreased the functional and adhesion properties of mesenchymal stromal cells (MSC) while post-thaw viability remained high. In an attempt to better predict functional impairment of cryopreserved MSC, we further analysed the correlation between viability, immunosuppressive activity and adhesion of cells exposed or not to warming events.
Methods:
MSC prepared from six umbilical cords were frozen to -130°C and immediately transferred in a dry ice container or exposed to room temperature for 2 to 10 min (warming events) prior to storage in liquid nitrogen. Viability, functionality (inhibition of T-cell proliferation), adhesion and expression of various integrins were evaluated.
Results:
The monotonic loss of functional activity with time was proportional to the length of warming events to which MSC were subjected and correlated with the monotonic loss of adhesion capacity. In contrast, post-thaw viability assessment did not predict functional impairment. Interestingly, flow cytometry analyses revealed the emergence of a FSClow population present in the viable cell fraction of freshly thawed MSC, which displayed poor adhesion capacity and expressed low levels of integrin β5. The prevalence of this FSClow population increased with the length of warming events and correlated with impaired functional and adhesion properties.
Discussion:
Our results reveal that loss of functional activity (4-day test) induced by transient warming events could be predicted by evaluating adhesion (2-hr test) or FSC profile (10-min test) of MSC immediately post-thaw. These observations could lead to the development of surrogate tests for rapidly assessing the functional quality of cryopreserved MSC.
Insights
Transient warming events impair mesenchymal stromal cells (MSC) function and adhesion, but not viability. Adhesion and FSC profiles, not viability, can predict functional loss in cryopreserved MSC.
Area of Science:
- Cell Biology
- Biotechnology
- Regenerative Medicine
Background:
- Transient warming events negatively impact mesenchymal stromal cells (MSC) functional and adhesion properties.
- Post-thaw viability of MSC does not accurately reflect their functional impairment after warming.
- Understanding these effects is crucial for optimizing MSC cryopreservation and therapeutic applications.
Purpose of the Study:
- To analyze the correlation between viability, immunosuppressive activity, and adhesion of cryopreserved MSC.
- To identify reliable predictors of functional impairment in MSC exposed to warming events.
- To develop surrogate tests for assessing the quality of cryopreserved MSC.
Main Methods:
- Mesenchymal stromal cells (MSC) from umbilical cords were subjected to controlled warming events before cryopreservation.
- Evaluated parameters included cell viability, T-cell proliferation inhibition (functionality), adhesion capacity, and integrin expression.
- Flow cytometry was used to identify cell populations based on forward scatter (FSC) properties.
Main Results:
- Functional activity loss correlated with the duration of warming events and decreased adhesion capacity.
- Post-thaw viability was not a reliable indicator of functional impairment.
- A FSClow population emerged after warming, correlating with reduced adhesion and impaired function.
Conclusions:
- Adhesion capacity and FSC profile are reliable predictors of MSC functional loss after warming.
- These findings enable the development of rapid surrogate tests for MSC quality assessment.
- Optimized cryopreservation protocols can be informed by these predictive markers.
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