Inhibition of iron overload-induced apoptosis and necrosis of bone marrow mesenchymal stem cells by melatonin
Fan Yang, Yuan Li, Gege Yan, Tianyi Liu, Chao Feng, Rui Gong, Ye Yuan, Fengzhi Ding, Lai Zhang, Elina Idiiatullina, Valentin Pavlov, Zhenbo Han, Wenya Ma, Qi Huang, Ying Yu, Zhengyi Bao, Xiuxiu Wang,
Journal:Oncotarget
IF:5.17
DOI:10.18632/oncotarget.16382
PMID:28415572
Published:2017-03-18
research field:药理学细胞生物学干细胞研究
Abstract
Iron overload induces severe damage to several vital organs such as the liver, heart and bone, and thus contributes to the dysfunction of these organs. The aim of this study is to investigate whether iron overload causes the apoptosis and necrosis of bone marrow mesenchymal stem cells (BMSCs) and melatonin may prevent its toxicity. Perls’ Prussion blue staining showed that exposure to increased concentrations of ferric ammonium citrate (FAC) induced a gradual increase of intracellular iron level in BMSCs. Trypan blue staining demonstrated that FAC decreased the viability of BMSCs in a concentration-dependent manner. Notably, melatonin protected BMSCs against apoptosis and necrosis induced by FAC and it was vertified by Live/Dead, TUNEL and PI/Hoechst stainings. Furthermore, melatonin pretreatment suppressed FAC-induced reactive oxygen species accumulation. Western blot showed that exposure to FAC resulted in the decrease of anti-apoptotic protein Bcl-2 and the increase of pro-apoptotic protein Bax and Cleaved Caspase-3, and necrosis-related proteins RIP1 and RIP3, which were significantly inhibited by melatonin treatment. At last, melatonin receptor blocker luzindole failed to block the protection of BMSCs apoptosis and necrosis by melatonin. Taken together, melatonin protected BMSCs from iron overload induced apoptosis and necrosis by regulating Bcl-2, Bax, Cleaved Caspase-3, RIP1 and RIP3 pathways.
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