Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

iNOS Induces Vascular Endothelial Cell Migration and Apoptosis Via Autophagy in Ischemia/Reperfusion Injury

View through CrossRef
Background/Aims: Inducible nitric oxide synthase (iNOS) plays a crucial role in ischemia/reperfusion (I/R). Autophagy is involved in irreversible cell injury and death under extreme conditions. However, whether iNOS mediates myocardial ischemia/reperfusion (I/R) injury in endothelial cells via autophagy remains ill-defined. In this study, we examined whether I/R-mediated up-regulation of iNOS is critical in the modulation of cell migration and apoptosis via autophagy in human umbilical vein endothelial cells (HUVECs). Methods: iNOS expression was detected in HUVECs using Western blotting analyses and immunocytochemistry. An in vitro scratch assay was performed to detect cell migration. The autophagy markers ATG5, LC3B and BECN were detected using Western blotting analysis and adenovirus-mRFP-GFP-LC3. The pharmacological inhibitor of autophagy 3-MA was also applied to confirm the role of autophagy in I/R. Results: I/R induced the expression of iNOS, which subsequently increased the migration and apoptosis of HUVECs and was associated with the up-regulation of autophagy. The iNOS specific inhibitor L-NAME abolished I/R-induced autophagy, while L-NAME and 3-MA both attenuated cell apoptosis and migration induced by I/R. Conclusion: These findings suggested that I/R-induced iNOS regulates migration and apoptosis in HUVECs via autophagy, which indicates a new therapeutic strategy for individuals with I/R injury.
Title: iNOS Induces Vascular Endothelial Cell Migration and Apoptosis Via Autophagy in Ischemia/Reperfusion Injury
Description:
Background/Aims: Inducible nitric oxide synthase (iNOS) plays a crucial role in ischemia/reperfusion (I/R).
Autophagy is involved in irreversible cell injury and death under extreme conditions.
However, whether iNOS mediates myocardial ischemia/reperfusion (I/R) injury in endothelial cells via autophagy remains ill-defined.
In this study, we examined whether I/R-mediated up-regulation of iNOS is critical in the modulation of cell migration and apoptosis via autophagy in human umbilical vein endothelial cells (HUVECs).
Methods: iNOS expression was detected in HUVECs using Western blotting analyses and immunocytochemistry.
An in vitro scratch assay was performed to detect cell migration.
The autophagy markers ATG5, LC3B and BECN were detected using Western blotting analysis and adenovirus-mRFP-GFP-LC3.
The pharmacological inhibitor of autophagy 3-MA was also applied to confirm the role of autophagy in I/R.
Results: I/R induced the expression of iNOS, which subsequently increased the migration and apoptosis of HUVECs and was associated with the up-regulation of autophagy.
The iNOS specific inhibitor L-NAME abolished I/R-induced autophagy, while L-NAME and 3-MA both attenuated cell apoptosis and migration induced by I/R.
Conclusion: These findings suggested that I/R-induced iNOS regulates migration and apoptosis in HUVECs via autophagy, which indicates a new therapeutic strategy for individuals with I/R injury.

Related Results

Effects of simulated ischemia-reperfusion and atorvastatin on INa in rat left ventricular myocytes.
Effects of simulated ischemia-reperfusion and atorvastatin on INa in rat left ventricular myocytes.
Objective To observe time dependent effects of simulated ischemia-reperfusion on transient sodium currents (INa) in rat left ventricular myocytes, and effects of ...
Effect of exosomes from nasopharyngeal carcinoma on endothelium pyroptosis and metastasis.
Effect of exosomes from nasopharyngeal carcinoma on endothelium pyroptosis and metastasis.
93 Background: Nasopharyngeal carcinoma (NPC) is a malignant tumor occurring in the epithelium of nasopharyngeal mucosa. Radiotherapy can achieve a good therapeutic effect for NPC...
GABAergic Signaling during Spinal Cord Stimulation Reduces Cardiac Arrhythmias in a Porcine Model
GABAergic Signaling during Spinal Cord Stimulation Reduces Cardiac Arrhythmias in a Porcine Model
Background Neuraxial modulation, including spinal cord stimulation, reduces cardiac sympathoexcitation and ventricular arrhythmogenesis. There is an incomplete understa...

Back to Top