Heparin prevents oxidative stress-induced apoptosis in human decidualized endometrial stromal cells.
Shunsuke TamaruTakeshi KajiharaYumi MizunoNatsuko TakanoHideno TochigiTomomi SatoOsamu IshiharaPublished in: Medical molecular morphology (2019)
Clinical trials have shown that administering heparin during the luteal phase has beneficial effects on implantation and live birth rates. Heparin exerts direct effects on decidual human endometrial stromal cells (HESCs), which are independent of its anticoagulant effect. However, the accurate effects of heparin on the decidualization process remain unidentified. Here, we demonstrate that HESCs become dramatically resistant to oxidative stress upon decidualization, and we hypothesize a possible direct action of heparin on the decidualization of HESCs, which would lead to improved implantation. To test this hypothesis, we established primary HESC cultures and propagated them, and then we decidualized confluent cultures with 8-bromo-cAMP, with medroxyprogesterone acetate, and with or without heparin. We treated the cells with hydrogen peroxide (H2O2) as a source of reactive oxygen species (ROS). Adding heparin to decidualized HESCs induced prolactin secretion. Decidualized HESCs treated with heparin were prevented from undergoing apoptosis induced by oxidative stress. Heparin induced nuclear accumulation of the forkhead transcription factor FOXO1 and expression of its downstream target, the ROS scavenger superoxide dismutase 2. These results demonstrate that heparin-treated decidualized HESCs acquired further resistance to oxidative stress, suggesting that heparin may improve the implantation environment.
Keyphrases
- oxidative stress
- venous thromboembolism
- induced apoptosis
- growth factor
- hydrogen peroxide
- diabetic rats
- endoplasmic reticulum stress
- transcription factor
- dna damage
- signaling pathway
- reactive oxygen species
- clinical trial
- endothelial cells
- ischemia reperfusion injury
- cell death
- cell cycle arrest
- poor prognosis
- nitric oxide
- drug induced
- study protocol
- long non coding rna
- protein kinase
- newly diagnosed
- pluripotent stem cells
- heat shock
- stress induced