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Updated: Sep 7, 2025

Evaluating Autophagy Levels in Two Different Pancreatic Cell Models Using LC3 Immunofluorescence
Published on: April 28, 2023
Targeting autophagy as a therapeutic strategy against pancreatic cancer
Keisuke Yamamoto1, Dosuke Iwadate2, Hiroyuki Kato2
1Department of Gastroenterology, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8655, Japan. kyamamoto-tky@umin.ac.jp.
Abstract:
Macroautophagy (hereafter autophagy) is a catabolic process through which cytosolic components are captured in the autophagosome and degraded in the lysosome. Autophagy plays two major roles: nutrient recycling under starvation or stress conditions and maintenance of cellular homeostasis by removing the damaged organelles or protein aggregates. In established cancer cells, autophagy-mediated nutrient recycling promotes tumor progression, whereas in normal/premalignant cells, autophagy suppresses tumor initiation by eliminating the oncogenic/harmful molecules. Pancreatic ductal adenocarcinoma (PDAC) is a deadly disease that is refractory to most currently available treatment modalities, including immune checkpoint blockade and molecular-targeted therapy. One prominent feature of PDAC is its constitutively active and elevated autophagy-lysosome function, which enables PDAC to thrive in its nutrient-scarce tumor microenvironment. In addition to metabolic support, autophagy promotes PDAC progression in a metabolism-independent manner by conferring resistance to therapeutic treatment or facilitating immune evasion. Besides to cell-autonomous autophagy in cancer cells, host autophagy (autophagy in non-cancer cells) supports PDAC progression, further highlighting autophagy as a promising therapeutic target in PDAC. Based on a growing list of compelling preclinical evidence, there are numerous ongoing clinical trials targeting the autophagy-lysosome pathway in PDAC. Given the multifaceted and context-dependent roles of autophagy in both cancer cells and normal host cells, a deeper understanding of the mechanisms underlying the tumor-promoting roles of autophagy as well as of the consequences of autophagy inhibition is necessary for the development of autophagy inhibition-based therapies against PDAC.
Insights
Macroautophagy (autophagy) is crucial for cancer cell survival and progression, particularly in pancreatic ductal adenocarcinoma (PDAC). Inhibiting autophagy presents a promising therapeutic strategy for PDAC treatment.
Area of Science:
- Cell Biology
- Cancer Biology
- Molecular Biology
Background:
- Macroautophagy (autophagy) is a fundamental cellular process for degrading damaged components and recycling nutrients.
- Autophagy plays dual roles in cancer: promoting established tumors while suppressing early stages.
- Pancreatic ductal adenocarcinoma (PDAC) exhibits high autophagy-lysosome activity, crucial for its survival and treatment resistance.
Purpose of the Study:
- To elucidate the multifaceted roles of autophagy in PDAC progression.
- To investigate how autophagy contributes to PDAC's nutrient-scarce environment adaptation and therapeutic resistance.
- To highlight autophagy as a potential therapeutic target in PDAC.
Main Methods:
- Review of existing preclinical evidence on autophagy in PDAC.
- Analysis of the dual role of autophagy in cancer initiation and progression.
- Examination of both cancer cell-autonomous and host cell-mediated autophagy in PDAC.
Main Results:
- Elevated autophagy-lysosome function is a hallmark of PDAC, supporting tumor growth and survival.
- Autophagy promotes PDAC progression through metabolic support, therapeutic resistance, and immune evasion.
- Host autophagy also contributes to PDAC progression, underscoring its systemic role.
Conclusions:
- Autophagy is a critical driver of PDAC progression and therapeutic resistance.
- Targeting the autophagy-lysosome pathway is a promising strategy for PDAC treatment, with ongoing clinical trials.
- Further research into the mechanisms of autophagy's tumor-promoting roles and inhibition consequences is vital for effective therapy development.
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