Small hypoxia-primed mesenchymal stem cells attenuate graft-versus-host disease.
YongHwan KimHye Jin JinJinbeom HeoHyein JuHye-Yeon LeeSujin KimSeungun LeeJisun LimSang Young JeongJiHye KwonMiyeon KimSoo Jin ChoiWonil OhYoon Sun YangHyun Ho HwangHwan Yeul YuChae-Min RyuHong Bae JeonDong-Myung ShinPublished in: Leukemia (2018)
Mesenchymal stem cells (MSCs) are of particular interest for the treatment of immune-related diseases due to their immunosuppressive capacity. Here, we show that Small MSCs primed with Hypoxia and Calcium ions (SHC-MSCs) exhibit enhanced stemness and immunomodulatory functions for treating allogeneic conflicts. Compared with naïve cultured human umbilical cord blood-derived MSCs, SHC-MSCs were resistant to passage-dependent senescence mediated via the monocyte chemoattractant protein-1 and p53/p21 cascade and secreted large amounts of pro-angiogenic and immunomodulatory factors, resulting in suppression of T-cell proliferation. SHC-MSCs showed DNA demethylation in pluripotency, germline, and imprinted genes similarly to very small embryonic-like stem cells, suggesting a potential mutual relationship. Genome-wide DNA methylome and transcriptome analyses indicated that genes related to immune modulation, cell adhesion, and the cell cycle were up-regulated in SHC-MSCs. Particularly, polo-like kinase-1 (PLK1), zinc-finger protein-143, dehydrogenase/reductase-3, and friend-of-GATA2 play a key role in the beneficial effects of SHC-MSCs. Administration of SHC-MSCs or PLK1-overexpressing MSCs significantly ameliorated symptoms of graft-versus-host disease (GVHD) in a humanized mouse model, resulting in significantly improved survival, less weight loss, and reduced histopathologic injuries in GVHD target organs compared with naïve MSC-infused mice. Collectively, our findings suggest that SHC-MSCs can improve the clinical treatment of allogeneic conflicts, including GVHD.
Keyphrases
- mesenchymal stem cells
- umbilical cord
- bone marrow
- genome wide
- cell cycle
- stem cells
- cell proliferation
- cell therapy
- cord blood
- endothelial cells
- weight loss
- mouse model
- type diabetes
- transcription factor
- stem cell transplantation
- gene expression
- dna methylation
- cell adhesion
- circulating tumor
- epithelial mesenchymal transition
- adipose tissue
- allogeneic hematopoietic stem cell transplantation
- signaling pathway
- dna damage
- low dose
- dendritic cells
- cell free
- amino acid
- single molecule
- depressive symptoms
- oxidative stress
- body mass index
- gastric bypass
- anti inflammatory
- replacement therapy
- liquid chromatography
- copy number
- rna seq
- bioinformatics analysis
- hematopoietic stem cell
- water soluble
- smoking cessation
- climate change