Lysophosphatidylcholine Impairs the Mitochondria Homeostasis Leading to Trophoblast Dysfunction in Gestational Diabetes Mellitus.
Shao-Chi HungTe-Fu ChanHsiu-Chuan ChanChia-Ying WuMei-Lin ChanJie-Yang JhuangJi-Qin TanJia-Bin MeiShi-Hui LawVinoth Kumar PonnusamyHua-Chen ChanLiang-Yin KePublished in: Antioxidants (Basel, Switzerland) (2024)
Gestational diabetes mellitus (GDM) is a common pregnancy disorder associated with an increased risk of pre-eclampsia and macrosomia. Recent research has shown that the buildup of excess lipids within the placental trophoblast impairs mitochondrial function. However, the exact lipids that impact the placental trophoblast and the underlying mechanism remain unclear. GDM cases and healthy controls were recruited at Kaohsiung Medical University Hospital. The placenta and cord blood were taken during birth. Confocal and electron microscopy were utilized to examine the morphology of the placenta and mitochondria. We determined the lipid composition using liquid chromatography-mass spectrometry in data-independent analysis mode (LC/MS E ). In vitro studies were carried out on choriocarcinoma cells (JEG3) to investigate the mechanism of trophoblast mitochondrial dysfunction. Results showed that the GDM placenta was distinguished by increased syncytial knots, chorangiosis, lectin-like oxidized low-density lipoprotein (LDL) receptor-1 (LOX-1) overexpression, and mitochondrial dysfunction. Lysophosphatidylcholine (LPC) 16:0 was significantly elevated in the cord blood LDL of GDM patients. In vitro, we demonstrated that LPC dose-dependently disrupts mitochondrial function by increasing reactive oxygen species (ROS) levels and HIF-1α signaling. In conclusion, highly elevated LPC in cord blood plays a pivotal role in GDM, contributing to trophoblast impairment and pregnancy complications.
Keyphrases
- cord blood
- low density lipoprotein
- reactive oxygen species
- mass spectrometry
- pregnancy outcomes
- liquid chromatography
- cell death
- pregnant women
- end stage renal disease
- electron microscopy
- induced apoptosis
- preterm birth
- newly diagnosed
- healthcare
- prognostic factors
- fatty acid
- cell cycle arrest
- chronic kidney disease
- cell proliferation
- oxidative stress
- dna damage
- high resolution
- tandem mass spectrometry
- machine learning
- endothelial cells
- gestational age
- high performance liquid chromatography
- simultaneous determination
- patient reported outcomes
- raman spectroscopy