Javascript must be enabled to continue!
Chemical Inhibition of Mitochondrial Fission Improves Mitochondrial Function and Subdues Hyperglycemia Induced Stress in Placental Trophoblast Cells
View through CrossRef
Abstract
Gestational diabetes mellitus (GDM) is a metabolic complication that affects millions of pregnant women in the world. Placental tissue function is endangered by hyperglycemia during GDM, which is correlated to increased incidences of pregnancy complications. Recently we showed that due to a significant decrease in mitochondrial fusion, mitochondrial dynamics equilibrium is altered in placental tissues from GDM patients. It is not known whether the decrease in mitochondrial fusion causes a decrease in mitochondrial function in placental cells. Here we show that chemical inhibition of mitochondrial fission in cultured placental trophoblast cells leads to an increase in mitochondrial fusion and improves the physiological state of these cells and hence, their capacity to cope in a hyperglycemic environment. Specifically, mitochondrial fission inhibition led to a reduction in reactive oxygen species (ROS) generation, mitochondrial unfolded protein marker expressions, and mitochondrial depolarization. It supported the increase in mitochondrial antioxidant enzyme expressions as well. Mitochondrial fission inhibition also increases the placental cell insulin sensitivity during hyperglycemia. Our results suggest that mitochondrial fusion/fission equilibrium is critical for placental cell function and signify the therapeutic potential of small molecule inhibitors of fission during GDM.
Title: Chemical Inhibition of Mitochondrial Fission Improves Mitochondrial Function and Subdues Hyperglycemia Induced Stress in Placental Trophoblast Cells
Description:
Abstract
Gestational diabetes mellitus (GDM) is a metabolic complication that affects millions of pregnant women in the world.
Placental tissue function is endangered by hyperglycemia during GDM, which is correlated to increased incidences of pregnancy complications.
Recently we showed that due to a significant decrease in mitochondrial fusion, mitochondrial dynamics equilibrium is altered in placental tissues from GDM patients.
It is not known whether the decrease in mitochondrial fusion causes a decrease in mitochondrial function in placental cells.
Here we show that chemical inhibition of mitochondrial fission in cultured placental trophoblast cells leads to an increase in mitochondrial fusion and improves the physiological state of these cells and hence, their capacity to cope in a hyperglycemic environment.
Specifically, mitochondrial fission inhibition led to a reduction in reactive oxygen species (ROS) generation, mitochondrial unfolded protein marker expressions, and mitochondrial depolarization.
It supported the increase in mitochondrial antioxidant enzyme expressions as well.
Mitochondrial fission inhibition also increases the placental cell insulin sensitivity during hyperglycemia.
Our results suggest that mitochondrial fusion/fission equilibrium is critical for placental cell function and signify the therapeutic potential of small molecule inhibitors of fission during GDM.
Related Results
FAIR fission track analysis with geochron@home
FAIR fission track analysis with geochron@home
Abstract. Fission track thermochronology is based on the visual analysis of optical images. This visual process is prone to observer bias. Fission track datasets are currently repo...
Mitochondria Fusion and Fission
Mitochondria Fusion and Fission
Abstract
Mitochondrial structural dynamics is regulated by the fusion or fission of these organelles. Recently published evidence indicates the ...
Deciphering the maternal uterine signals that shape placenta development
Deciphering the maternal uterine signals that shape placenta development
Abstract
In brief: Proper placental development depends not only on fetal trophoblast signaling but also on critical maternal uterine signals. This review highlig...
Not just a barrier : deciphering molecular and cellular signatures of placental villi in health and endocrine diseases
Not just a barrier : deciphering molecular and cellular signatures of placental villi in health and endocrine diseases
<p dir="ltr">Maternal obesity, intermediate hyperglycaemia, and PCOS can disrupt placental transport, endocrine, and immune functions, increasing the risk of adverse pregnanc...
Not just a barrier : deciphering molecular and cellular signatures of placental villi in health and endocrine diseases
Not just a barrier : deciphering molecular and cellular signatures of placental villi in health and endocrine diseases
<p dir="ltr">Maternal obesity, intermediate hyperglycaemia, and PCOS can disrupt placental transport, endocrine, and immune functions, increasing the risk of adverse pregnanc...
Effects Of Aryl Hydrocarbon Receptor Ligand TCDD On Human Trophoblast Cell Development
Effects Of Aryl Hydrocarbon Receptor Ligand TCDD On Human Trophoblast Cell Development
STUDY QUESTION How does activation of AHR signaling affect human trophoblast cell development and differentiation? SUMMARY ANSWER AHR activation leads to altered gene expression bu...
Degradation of extracellular matrix by mouse trophoblast outgrowths: a model for implantation
Degradation of extracellular matrix by mouse trophoblast outgrowths: a model for implantation
During implantation the embryo attaches to the endometrial surface and trophoblast traverses the uterine epithelium, anchoring in the uterine connective tissue. To determine whethe...
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
GW24-e3762 Role Of mitochondrial fission In cardiac microvascular endothelial cells after ischaemia/reperfusion
Objectives
This study is aimed to establish a simulated ischaemia/reperfusion (SI/R) model in cultured CMECs from adult rat, and investigate the role of mitochond...

