| Literature DB >> 28446224 |
Madeleine C Killer1, Philipp Nold1, Katharina Henkenius1, Lea Fritz1, Tabea Riedlinger2, Christina Barckhausen3, Miriam Frech1, Holger Hackstein4, Andreas Neubauer3, Cornelia Brendel5.
Abstract
BACKGROUND: Mesenchymal stem cells (MSCs) have entered the clinic as an Advanced Therapy Medicinal Product and are currently evaluated in a wide range of studies for tissue regeneration or in autoimmune disorders. Various efforts have been made to standardize and optimize expansion and manufacturing processes, but until now reliable potency assays for the final MSC product are lacking. Because recent findings suggest superior therapeutic efficacy of freshly administered MSCs in comparison with frozen cells, we sought to correlate the T-cell suppressive capacity of MSCs with their metabolic activity.Entities:
Keywords: Cryopreservation; Immunosuppression; Mesenchymal stem cells; T-cell; Valproic acid
Mesh:
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Year: 2017 PMID: 28446224 PMCID: PMC5406996 DOI: 10.1186/s13287-017-0553-y
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1MSC-induced T-cell suppression depends on MSC and T-cell donors. Proliferation of CFSE-labeled CD4+ as well as CD8+ T-cell subpopulations was induced with CD3/28 antibodies and the CFSE intensity was measured via flow cytometry. The exemplary result of one representative experiment is shown (n = 1). a PBMCs from three different donors were cocultured with MSCs from one batch. T-cells responded differently to MSC-mediated suppression. b PBMCs from one donor were cocultured with MSCs from four different batches. Extent of T-cell suppression varied distinctly between different MSC batches. CFSE carboxyfluorescein succinimidyl ester, MSC mesenchymal stem cell
Fig. 2Immunosuppressive capacity of MSCs correlates with glycolytic and respiratory activity. MSCs were cocultured with PBMCs from different donors and subjected to T-cell proliferation assays as well as metabolic measurements simultaneously. PBMC-dependent increase of a ECAR and b OCR of MSCs after 24 h of coculture with two different PBMC donors (donor A and donor B) in comparison with MSCs in monoculture (n = 1 in sixfold repetition). ECAR and OCR of PBMCs in monoculture were measured as a control. c ECAR and d OCR of MSCs correlate with their T-cell suppressive capacity (n = 9). ECAR extracellular acidification rate, MSC mesenchymal stem cell, OCR oxygen consumption rate, PBMC peripheral blood mononuclear cell, r Pearson’s r value. *p ≤ 0.05, **p ≤ 0.01, ***p ≤ 0.001
Fig. 3Dimethyl sulfoxide impairs the T-cell suppressive capacity, glycolysis and cellular respiration of MSCs. MSCs of various batches were pretreated with 1 or 5% DMSO for 24 h, cocultured with PBMCs from different donors and subjected to T-cell proliferation assays. Metabolic measurements were performed simultaneously. a DMSO impairs MSC-mediated CD4+ T-cell inhibition in a dose-dependent manner (n ≥ 4). Data were normalized to untreated MSCs. DMSO diminishes b ECAR and c OCR of MSCs dose dependently (n ≥ 4). d ECAR and e OCR of DMSO-treated MSCs correlate with their suppressive capacity toward CD4+ T-cells (n = 13). DMSO dimethyl sulfoxide, ECAR extracellular acidification rate, OCR oxygen consumption rate, r Pearson’s r value. *p ≤ 0.05, **p ≤ 0.01, ***p ≤ 0.001
Fig. 4Valproic acid enhances the immunosuppressive activity as well as the glycolysis and cellular respiration of MSCs. MSCs of various batches were pretreated with 1 mM VPA for 6 days and were either subjected to T-cell proliferation assays with PBMCs or to metabolic measurements in monoculture. a VPA increases the MSC-mediated T-cell inhibition. Suppressive capacity toward CD4+ T-cells is shown for MSCs seeded at densities of 2.5 × 104 (n = 7) and 5 × 104 (n = 3) cells. VPA (1 mM) was used either for pretreatment of MSCs before onset of the assay or directly in coculture of PBMCs with untreated MSCs. Data were normalized to T-cell proliferation without the presence of MSCs. VPA-dependent increase of MSC b ECAR and c OCR after 6 days of VPA pretreatment (n = 1 in eightfold repetition). ECAR extracellular acidification rate, MSC mesenchymal stem cells, OCR oxygen consumption rate, VPA valproic acid. *p ≤ 0.05, **p ≤ 0.01, ***p ≤ 0.001