Induction of hyperandrogenism and insulin resistance differentially modulates ferroptosis in uterine and placental tissues of pregnant rats
Zhang, Y.; Hu, M.; Jia, W.; Liu, G.; Zhang, J.; Wang, B.; Li, J.; Cui, P.; Li, X.; Lager, S.; Sferruzzi-Perri, A. N.; Han, Y.; Liu, S.; Wu, X.; Brannstrom, M.; Shao, L. R.; Billig, H.
Show abstract
Ferroptosis, a form of regulated necrotic cell death, plays roles in diverse physiological processes and diseases. Women with polycystic ovary syndrome (PCOS) have hyperandrogenism and insulin resistance (HAIR) and an increased risk of miscarriage and placental dysfunction during pregnancy. However, whether maternal HAIR alters mechanisms leading to ferroptosis in the gravid uterus and placenta remains unknown. Previous studies in rats showed that maternal exposure to 5-dihydrotestosterone (DHT) and insulin (INS) from gestational day 7.5 to 13.5 induces HAIR and subsequently leads to placental insufficiency and fetal loss. We therefore hypothesized that maternal HAIR triggers ferroptosis in the uterus and placenta in association with fetal loss in pregnant rats. Compared with controls, we found that co-exposure to DHT and INS led to decreased levels of Gpx4 and glutathione (GSH), increased GSH+glutathione disulfide (GSSG) and malondialdehyde (MDA), aberrant expression of ferroptosis-associated genes (Acsl4, Tfrc, Slc7a11, and Gclc), increased iron deposition, and activated ERK/p38/JNK phosphorylation in the gravid uterus. However, in the placenta, DHT and INS exposure only partially altered the expression of ferroptosis-related markers (e.g., region-dependent Gpx4, GSH+GSSG, MDA, Gls2 and Slc7a11 mRNAs, and phosphorylated p38 levels). In the uteri co-exposed to DHT and INS, we also observed shrunken mitochondria with electron-dense cristae, which are key features of ferroptosis-related mitochondrial morphology, as well as increased expression of Dpp4, a mitochondria-encoded gene responsible for ferroptosis induction. In contrast, in placentas co-exposed to DHT and INS we found decreased expression of Dpp4 mRNA and increased expression of Cisd1 mRNA (a mitochondria-encoded iron-export factor). Further, DHT+INS-exposed pregnant rats exhibited decreased apoptosis in the uterus and increased necroptosis in the placenta. Our findings suggest that maternal HAIR causes the activation of ferroptosis in the gravid uterus and placenta, although this is mediated via different mechanisms operating at the molecular and cellular levels. Furthermore, our data suggest other cell death pathways may play a role in coordinating or compensating for HAIR-induced ferroptosis when the gravid uterus and placenta are dysfunctional. Suppl Figures: https://doi.org/10.6084/m9.figshare.11794059.v5
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Maternal RND3/RhoE deficiency impairs placental mitochondrial function in preeclampsia by modulating PPARγ-UCP2 cascade 95%
- Dynamic Transcriptome, Accessible Genome and PGR Cistrome Profiles in the Human Myometrium 94%
- Nutritionally responsive PMv DAT neurons are dynamically regulated during pubertal transition 94%
Similar papers in this journal
- The estrogen receptor α cistrome in human endometrium and epithelial organoids 94%
- Relaxin Modulates the Genomic Actions and Biological Effects of Estrogen in the Myometrium by Reducing Estrogen Receptor Alpha Phosphorylation 93%
- Cellular heterogeneity of the LH receptor and its significance for cyclic GMP signaling in mouse preovulatory follicles 93%
Similar papers in this journal
- Human Endometrial Transcriptome and Progesterone Receptor Cistrome Reveal Important Pathways and Epithelial Regulators 95%
- Increased adipose tissue indices of androgen catabolism and aromatization in women with metabolic dysfunction 94%
- Preterm birth increases placental expression of multidrug resistance (MDR) transporters irrespective of prepregnancy body mass index (BMI) 93%
Similar papers in this journal
- Insulin-like growth factor 1 signaling in the placenta requires endothelial nitric oxide synthase to support trophoblast function and normal fetal growth 95%
- GL261 glioblastoma induces delayed body weight gain and stunted skeletal muscle growth in young mice 92%
- Loss of ovarian function and estrogen therapy remodel the brain's synaptic and metabolic proteome 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.