Environmental microplastics (EMPs) exposure alter the differentiation potential of mesenchymal stromal cells

间充质干细胞 间质细胞 脂肪组织 细胞生物学 化学 干细胞 骨髓 人口 祖细胞 成骨细胞 生物 内分泌学 内科学 癌症研究 免疫学 医学 生物化学 体外 环境卫生
作者
Hana Najahi,Nicola Alessio,Tiziana Squillaro,Gea Oliveri Conti,Margherita Ferrante,Giovanni Di Bernardo,Umberto Galderisi,Imed Messaoudi,Sergio Minucci,Mohamed Bannı
出处
期刊:Environmental Research [Elsevier BV]
卷期号:214 (Pt 4): 114088-114088 被引量:53
标识
DOI:10.1016/j.envres.2022.114088
摘要

Humans are exposed to environmental microplastic (MPs) that can be frequent in surrounding environment. The mesenchymal stromal cells are a heterogeneous population, which contain fibroblasts and stromal cells, progenitor cells and stem cells. They are part of the stromal component of most tissue and organs in our organisms. Any injury to their functions may impair tissue renewal and homeostasis. We evaluated the effects of different size MPs that could be present in water bottles on human bone marrow mesenchymal stromal cells (BMMSCs) and adipose mesenchymal stromal cells (AMSCs). MPs of polyethylene terephthalate (MPs-PET) (<1 μm and <2.6 μm) were tested in this study. PET treatments induced a reduction in proliferating cells (around 30%) associated either with the onset of senescence or increase in apoptosis. The AMSCs and BMMSCs exposed to PET showed an alteration of differentiation potential. AMSCs remained in an early stage of adipocyte differentiation as shown by high levels of mRNA for Peroxisome Proliferator Activated Receptor Gamma (PPARG) (7.51 vs 1.00) and reduction in Lipoprotein Lipase (LPL) mRNA levels (0.5 vs 1.0). A loss of differentiation capacity was also observed for the osteocyte phenotype in BMMSCs. In particular, we observed a reduction in Bone Gamma-Carboxy glutamate Protein (BGLAP) (0.4 for PET1 and 0.6 for PET2.6 vs 0.1 CTRL) and reduction in Osteopontin (SPP1) (0.3 for PET 1 and 0.64 for PET 2.6 vs 0.1 CTRL). This pioneering mesenchymal cell response study demonstrated that environmental microplastic could be bioavailable for cell uptake and may further lead to irreversible diseases.
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