Methylglyoxal Impairs the Pro-Angiogenic Ability of Mouse Adipose-Derived Stem Cells (mADSCs) via a Senescence-Associated Mechanism

被引:3
作者
Leone, Alessia
Nicolo, Antonella
Prevenzano, Immacolata
Zatterale, Federica
Longo, Michele
Desiderio, Antonella
Spinelli, Rosa
Campitelli, Michele
Conza, Domenico
Raciti, Gregory Alexander
Beguinot, Francesco
Nigro, Cecilia [1 ]
Miele, Claudia
机构
[1] Federico II Univ Naples, URT Genom Diabet, Inst Expt Endocrinol & Oncol, Natl Res Council, I-80131 Naples, Italy
关键词
adipose-derived stem cells; advanced glycation end-products; angiogenesis; cell migration; dicarbonyl stress; endothelial cells; methylglyoxal; senescence; CONDITIONED MEDIA; STROMAL CELLS; DYSFUNCTION; CONTRIBUTE; MIGRATION; GLYCATION; CULTURE;
D O I
10.3390/cells12131741
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Adipose-derived stem cells (ADSCs) play a crucial role in angiogenesis and repair of damaged tissues. However, in pathological conditions including diabetes, ADSC function is compromised. This work aims at evaluating the effect of Methylglyoxal (MGO), a product of chronic hyperglycemia, on mouse ADSCs' (mADSCs) pro-angiogenic function and the molecular mediators involved. The mADSCs were isolated from C57bl6 mice. MGO-adducts and p-p38 MAPK protein levels were evaluated by Western Blot. Human retinal endothelial cell (hREC) migration was analyzed by transwell assays. Gene expression was measured by qRT-PCR, and SA-& beta;Gal activity by cytofluorimetry. Soluble factor release was evaluated by multiplex assay. MGO treatment does not impair mADSC viability and induces MGO-adduct accumulation. hREC migration is reduced in response to both MGO-treated mADSCs and conditioned media from MGO-treated mADSCs, compared to untreated cells. This is associated with an increase of SA-& beta;Gal activity, SASP factor release and p53 and p21 expression, together with a VEGF- and PDGF-reduced release from MGO-treated mADSCs and a reduced p38-MAPK activation in hRECs. The MGO-induced impairment of mADSC function is reverted by senolytics. In conclusion, MGO impairs mADSCs' pro-angiogenic function through the induction of a senescent phenotype, associated with the reduced secretion of growth factors crucial for hREC migration.
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页数:18
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