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Updated: Jan 23, 2026

Detection of Mitochondria Membrane Potential to Study CLIC4 Knockdown-induced HN4 Cell Apoptosis In Vitro
Published on: July 17, 2018
Targeting mitochondria-associated membranes as a potential therapy against endothelial injury induced by hypoxia
Yi-Dong Yang1,2,3, Man-Man Li4, Gang Xu1,2,3
1Institute of Medicine and Hygienic Equipment for High Altitude Region, College of High Altitude Military Medicine, Army Medical University (Third Military Medical University), Chongqing, China.
Abstract:
Mitochondrial dysfunction plays a principal role in hypoxia-induced endothelial injury, which is involved in hypoxic pulmonary hypertension and ischemic cardiovascular diseases. Recent studies have identified mitochondria-associated membranes (MAMs) that modulate mitochondrial function under a variety of pathophysiological conditions such as high-fat diet-mediated insulin resistance, hypoxia reoxygenation-induced myocardial death, and hypoxia-evoked vascular smooth muscle cell proliferation. However, the role of MAMs in hypoxia-induced endothelial injury remains unclear. To explore this further, human umbilical vein endothelial cells and human pulmonary artery endothelial cells were exposed to hypoxia (1% O2 ) for 24 hours. An increase in MAM formation was uncovered by immunoblotting and immunofluorescence. Then, we performed small interfering RNA transfection targeted to MAM constitutive proteins and explored the biological effects. Knockdown of MAM constitutive proteins attenuated hypoxia-induced elevation of mitochondrial Ca2+ and repressed mitochondrial impairment, leading to an increase in mitochondrial membrane potential and ATP production and a decline in reactive oxygen species. Then, we found that MAM disruption mitigated cell apoptosis and promoted cell survival. Next, other protective effects, such as those pertaining to the repression of inflammatory response and the promotion of NO synthesis, were investigated. With the disruption of MAMs under hypoxia, inflammatory molecule expression was repressed, and the eNOS-NO pathway was enhanced. This study demonstrates that the disruption of MAMs might be of therapeutic value for treating endothelial injury under hypoxia, suggesting a novel strategy for preventing hypoxic pulmonary hypertension and ischemic injuries.
Insights
Disrupting mitochondria-associated membranes (MAMs) protects against hypoxia-induced endothelial injury. This finding offers a new therapeutic strategy for conditions like pulmonary hypertension and ischemic diseases.
Area of Science:
- Cell Biology
- Cardiovascular Research
- Mitochondrial Biology
Background:
- Mitochondrial dysfunction is key in hypoxia-induced endothelial injury, relevant to pulmonary hypertension and ischemic diseases.
- Mitochondria-associated membranes (MAMs) regulate mitochondrial function in various conditions, but their role in hypoxia-induced endothelial injury is unknown.
Purpose of the Study:
- To investigate the role of MAMs in hypoxia-induced endothelial injury.
- To explore the therapeutic potential of MAM disruption in this context.
Main Methods:
- Human endothelial cells were exposed to hypoxia (1% O2).
- MAM formation was assessed using immunoblotting and immunofluorescence.
- MAM constitutive proteins were targeted with small interfering RNA (siRNA) to assess functional effects.
Main Results:
- Hypoxia increased MAM formation.
- Knockdown of MAM proteins reduced mitochondrial calcium overload, improved mitochondrial function (membrane potential, ATP production), and decreased reactive oxygen species.
- MAM disruption mitigated endothelial cell apoptosis, enhanced cell survival, repressed inflammatory responses, and promoted nitric oxide (NO) synthesis via the eNOS-NO pathway.
Conclusions:
- Disruption of MAMs protects endothelial cells from hypoxia-induced injury.
- Targeting MAMs represents a potential therapeutic strategy for hypoxic pulmonary hypertension and ischemic cardiovascular diseases.
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