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Protection of H9c2 Myocardial Cells from Oxidative Stress by Crocetin via PINK1/Parkin Pathway-Mediated Mitophagy
Published on: May 26, 2023
Tetrandrine is a potent cell autophagy agonist via activated intracellular reactive oxygen species
Haiqing Wang1, Ting Liu1, Lu Li1
1College of Life Sciences, Wuhan University, Wuhan, 430072 P R China.
Background:
Autophagy is an evolutionarily conserved cellular process that involves the lysosomal degradation of proteins and organelles and the recycling of cellular components to ensure cellular survival under external or internal stress. Numerous data has indicated that autophagy can be successfully targeted for the treatment of multiple cancers. We have previously demonstrated that tetrandrine, a bisbenzylisoquinoline alkaloid isolated from the broadly used Chinese medicinal herb Stephaniae tetrandrae, exhibits potent antitumor effects when used either alone or in combination with other drugs.
Results:
In the present study, we showed that tetrandrine is a broad-spectrum potent autophagy agonist. Although low-dose tetrandrine treatment does not affect cell viability, it can potently induce autophagy in a variety of cell lines, including cancerous cells and nontumorigenic cells. The autophagy inhibitors 3-methyladenine (3-MA) and chloroquine (CQ), effectively blocked tetrandrine-induced autophagy. Moreover, tetrandrine significantly triggered the induction of mitophagy. The underlying mechanisms are associated with the tetrandrine-induced production of intracellular reactive oxygen species (ROS), which plays a critical role in tetrandrine-induced autophagy.
Conclusions:
Here, we report that tetrandrine is a potent cell autophagy agonist and may have a wide range of applications in the fields of antitumor therapy and basic scientific research.
Insights
Tetrandrine, a natural compound, potently activates autophagy, a cellular recycling process, across various cell types. This discovery highlights tetrandrine
Area of Science:
- Cell Biology
- Molecular Biology
- Pharmacology
Background:
- Autophagy is a conserved cellular process crucial for survival under stress.
- Autophagy modulation is a promising strategy for cancer treatment.
- Tetrandrine, derived from Stephaniae tetrandrae, shows antitumor potential.
Purpose of the Study:
- To investigate tetrandrine's role as an autophagy agonist.
- To explore the effects of tetrandrine on various cell lines.
- To elucidate the mechanisms underlying tetrandrine-induced autophagy.
Main Methods:
- Treatment of cell lines with tetrandrine.
- Assessment of autophagy induction using autophagy inhibitors (3-methyladenine and chloroquine).
- Measurement of intracellular reactive oxygen species (ROS) production.
Main Results:
- Tetrandrine acts as a broad-spectrum autophagy agonist, inducing autophagy in cancer and non-tumorigenic cells.
- Low-dose tetrandrine does not affect cell viability but significantly induces autophagy.
- Tetrandrine induces mitophagy and ROS production, which are critical for autophagy.
- Autophagy inhibitors block tetrandrine-induced autophagy.
Conclusions:
- Tetrandrine is a potent activator of cellular autophagy.
- Tetrandrine has potential applications in antitumor therapy and scientific research.
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