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In Vitro and In Vivo Detection of Mitophagy in Human Cells, C. Elegans, and Mice
Published on: November 22, 2017
Amitriptyline induces mitophagy that precedes apoptosis in human HepG2 cells
Marina Villanueva-Paz1, Mario D Cordero2, Ana Delgado Pavón1
1Centro Andaluz de Biología de Desarrollo (CABD), Universidad Pablo de Olavide/CSIC/, Sevilla, Spain.
Abstract:
Systemic treatments for hepatocellular carcinoma (HCC) have been largely unsuccessful. This study investigated the antitumoral activity of Amitriptyline, a tricyclic antidepressant, in hepatoma cells. Amitriptyline-induced toxicity involved early mitophagy activation that subsequently switched to apoptosis. Amitriptyline induced mitochondria dysfunction and oxidative stress in HepG2 cells. Amitriptyline specifically inhibited mitochondrial complex III activity that is associated with decreased mitochondrial membrane potential (∆Ψm) and increased reactive oxygen species (ROS) production. Transmission electron microscopy (TEM) studies revealed structurally abnormal mitochondria that were engulfed by double-membrane structures resembling autophagosomes. Consistent with mitophagy activation, fluorescence microscopy analysis showed mitochondrial Parkin recruitment and colocalization of mitochondria with autophagosome protein markers. Pharmacological or genetic inhibition of autophagy exacerbated the deleterious effects of Amitriptyline on hepatoma cells and led to increased apoptosis. These results suggest that mitophagy acts as an initial adaptive mechanism of cell survival. However persistent mitochondrial damage induced extensive and lethal mitophagy, autophagy stress and autophagolysome permeabilization leading eventually to cell death by apoptosis. Amitriptyline also induced cell death in hepatoma cells lines with mutated p53 and non-sense p53 mutation. Our results support the hypothesis that Amitriptyline-induced mitochondrial dysfunction can be a useful therapeutic strategy for HCC treatment, especially in tumors showing p53 mutations and/or resistant to genotoxic treatments.
Insights
Amitriptyline triggers cell death in liver cancer cells by disrupting mitochondria and activating mitophagy. This process initially aids survival but ultimately leads to apoptosis, offering a potential new therapy for liver cancer, especially in p53-mutated tumors.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Systemic treatments for hepatocellular carcinoma (HCC) have limited efficacy.
- Hepatocellular carcinoma (HCC) is a significant global health concern.
- Novel therapeutic strategies are urgently needed for HCC treatment.
Purpose of the Study:
- To investigate the antitumoral activity of Amitriptyline in hepatoma cells.
- To elucidate the mechanism of Amitriptyline-induced cell death in liver cancer.
- To evaluate Amitriptyline as a potential therapeutic agent for HCC.
Main Methods:
- Hepatoma cell lines (HepG2) were treated with Amitriptyline.
- Mitochondrial function, oxidative stress, and mitophagy were assessed.
- Transmission electron microscopy (TEM) and fluorescence microscopy were utilized.
- Autophagy inhibition was employed to study its role in Amitriptyline toxicity.
Main Results:
- Amitriptyline induced mitochondrial dysfunction, including inhibition of mitochondrial complex III, decreased membrane potential, and increased reactive oxygen species (ROS).
- Early mitophagy activation was observed, acting as an adaptive survival mechanism.
- Persistent mitochondrial damage led to lethal mitophagy, autophagy stress, and apoptosis.
- Amitriptyline induced cell death in hepatoma cells with various p53 mutations.
Conclusions:
- Amitriptyline exhibits significant antitumoral activity against hepatocellular carcinoma cells.
- Mitophagy plays a dual role in Amitriptyline-induced cell death, initially adaptive then lethal.
- Amitriptyline-induced mitochondrial dysfunction represents a promising therapeutic strategy for HCC, particularly for p53-mutated or treatment-resistant tumors.
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