| Literature DB >> 28500782 |
Fan Yang1,2, Lei Yang3, Yuan Li1, Gege Yan1, Chao Feng1, Tianyi Liu1, Rui Gong1, Ye Yuan1,2, Ning Wang1, Elina Idiiatullina2,4, Timur Bikkuzin2,4, Valentin Pavlov4, Yang Li5, Chaorun Dong2, Dawei Wang3, Yang Cao3, Zhenbo Han1, Lai Zhang1, Qi Huang1, Fengzhi Ding1, Zhengang Bi3, Benzhi Cai1,6,7,2.
Abstract
Bone marrow mesenchymal stem cells (BMSCs) are an expandable population of stem cells which can differentiate into osteoblasts, chondrocytes and adipocytes. Dysfunction of BMSCs in response to pathological stimuli contributes to bone diseases. Melatonin, a hormone secreted from pineal gland, has been proved to be an important mediator in bone formation and mineralization. The aim of this study was to investigate whether melatonin protected against iron overload-induced dysfunction of BMSCs and its underlying mechanisms. Here, we found that iron overload induced by ferric ammonium citrate (FAC) caused irregularly morphological changes and markedly reduced the viability in BMSCs. Consistently, osteogenic differentiation of BMSCs was significantly inhibited by iron overload, but melatonin treatment rescued osteogenic differentiation of BMSCs. Furthermore, exposure to FAC led to the senescence in BMSCs, which was attenuated by melatonin as well. Meanwhile, melatonin was able to counter the reduction in cell proliferation by iron overload in BMSCs. In addition, protective effects of melatonin on iron overload-induced dysfunction of BMSCs were abolished by its inhibitor luzindole. Also, melatonin protected BMSCs against iron overload-induced ROS accumulation and membrane potential depolarization. Further study uncovered that melatonin inhibited the upregulation of p53, ERK and p38 protein expressions in BMSCs with iron overload. Collectively, melatonin plays a protective role in iron overload-induced osteogenic differentiation dysfunction and senescence through blocking ROS accumulation and p53/ERK/p38 activation.Entities:
Keywords: bone marrow mesenchymal stem cells; differentiation; iron overload; melatonin; senescence
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Year: 2017 PMID: 28500782 DOI: 10.1111/jpi.12422
Source DB: PubMed Journal: J Pineal Res ISSN: 0742-3098 Impact factor: 13.007