Inflammation Alters the Secretome and Immunomodulatory Properties of Human Skin-Derived Precursor Cells.
Joery De KockRobim Marcelino RodriguesSteven BransonLieven VerhoyeHaaike Colemonts-VroninksMatthias RombautJoost BoeckmansJessie NeuckermansSien LequeueKarolien BuylMakram MerimiDouaa Moussa AghaVeerle De BoeLaurence LagneauxPhilip MeulemanTamara VanhaeckeMehdi NajarPublished in: Cells (2020)
Human skin-derived precursors (SKP) represent a group of somatic stem/precursor cells that reside in dermal skin throughout life that harbor clinical potential. SKP have a high self-renewal capacity, the ability to differentiate into multiple cell types and low immunogenicity, rendering them key candidates for allogeneic cell-based, off-the-shelf therapy. However, potential clinical application of allogeneic SKP requires that these cells retain their therapeutic properties under all circumstances and, in particular, in the presence of an inflammation state. Therefore, in this study, we investigated the impact of pro-inflammatory stimulation on the secretome and immunosuppressive properties of SKP. We demonstrated that pro-inflammatory stimulation of SKP significantly changes their expression and the secretion profile of chemo/cytokines and growth factors. Most importantly, we observed that pro-inflammatory stimulated SKP were still able to suppress the graft-versus-host response when cotransplanted with human PBMC in severe-combined immune deficient (SCID) mice, albeit to a much lesser extent than unstimulated SKP. Altogether, this study demonstrates that an inflammatory microenvironment has a significant impact on the immunological properties of SKP. These alterations need to be taken into account when developing allogeneic SKP-based therapies.
Keyphrases
- induced apoptosis
- stem cell transplantation
- oxidative stress
- cell cycle arrest
- bone marrow
- single cell
- endothelial cells
- stem cells
- cell therapy
- endoplasmic reticulum stress
- gene expression
- metabolic syndrome
- cell death
- skeletal muscle
- hematopoietic stem cell
- risk assessment
- early onset
- copy number
- genome wide
- cell proliferation
- radiation therapy
- drug delivery
- wound healing
- human health
- wild type
- single molecule
- locally advanced
- pluripotent stem cells