Related Experiment Video
Updated: Jun 27, 2026

A Syngeneic Pancreatic Cancer Mouse Model to Study the Effects of Irreversible Electroporation
Published on: June 8, 2018
Targeting Src reactivates pyroptosis to reverse chemoresistance in lung and pancreatic cancer models
Liangping Su1,2, Yitian Chen1,3, Cheng Huang1,2
1Guangdong Provincial Key Laboratory of Malignant Tumor Epigenetics and Gene Regulation, Guangdong-Hong Kong Joint Laboratory for RNA medicine, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou 510120, China.
Abstract:
Pancreatic and lung cancers frequently develop resistance to chemotherapy-induced cell apoptosis during the treatment, indicating that targeting nonapoptotic-related pathways, such as pyroptosis, can be an alternative cancer treatment strategy. Pyroptosis is a gasdermin-driven lytic programmed cell death triggered by inflammatory caspases when initiated by canonical or noncanonical pathways that has been recently seen as a potential therapeutic target in cancer treatment. However, overcoming chemoresistance in cancers by modulating pyroptosis has not been explored. Here, we demonstrate that β5-integrin represses chemotherapy-induced canonical pyroptosis to confer cancer chemoresistance through ASAH2-driven sphingolipid metabolic reprogramming. Clinically, high β5-integrin expression associates with poor patient prognosis and chemotherapeutic responses in cancers. In addition, chemoresistant cells in vitro fail to undergo chemotherapy-induced pyroptosis, which is controlled by β5-integrin. Mechanistically, proteomic and lipidomic analyses indicate that β5-integrin up-regulates sphingolipid metabolic enzyme ceramidase (ASAH2) expression through Src-signal transducer and activator of transcription 3 (STAT3) signaling, which then reduces the metabolite ceramide concentration and subsequent ROS production to prohibit chemotherapy-induced canonical pyroptosis. Using cancer cell lines, patient-derived tumor organoids, and orthotopic lung and pancreatic animal models, we show that administration of a Src or ceramidase inhibitor rescues the response of chemoresistant pancreatic and lung cancer cells to chemotherapy by reactivating pyroptosis in vitro and in vivo. Overall, our results suggest that pyroptosis-based therapy is a means to improve cancer treatment and warrants further investigation.
Insights
Beta-5 integrin promotes chemoresistance in pancreatic and lung cancers by suppressing pyroptosis, a programmed cell death pathway. Inhibiting beta-5 integrin or its downstream targets can restore chemotherapy sensitivity by reactivating pyroptosis.
Area of Science:
- Oncology
- Cell Biology
- Molecular Medicine
Background:
- Pancreatic and lung cancers often develop chemoresistance, limiting treatment efficacy.
- Targeting non-apoptotic cell death pathways like pyroptosis presents a potential alternative strategy for cancer therapy.
- Modulating pyroptosis to overcome chemoresistance remains an underexplored therapeutic avenue.
Purpose of the Study:
- To investigate the role of beta-5 integrin in chemoresistance of pancreatic and lung cancers.
- To elucidate the mechanism by which beta-5 integrin confers chemoresistance via pyroptosis.
- To evaluate the therapeutic potential of targeting the beta-5 integrin pathway to overcome chemoresistance.
Main Methods:
- Proteomic and lipidomic analyses to identify molecular mechanisms.
- In vitro studies using cancer cell lines.
- In vivo studies using patient-derived tumor organoids and orthotopic animal models.
- Assessment of chemotherapy-induced pyroptosis and its regulation by beta-5 integrin.
Main Results:
- High beta-5 integrin expression correlates with poor prognosis and reduced chemotherapeutic response in cancer patients.
- Beta-5 integrin represses chemotherapy-induced canonical pyroptosis in chemoresistant cancer cells.
- Beta-5 integrin upregulates ceramidase (ASAH2) via Src-STAT3 signaling, reducing ceramide and reactive oxygen species (ROS) to inhibit pyroptosis.
- Inhibition of Src or ceramidase restores pyroptosis and chemosensitivity in resistant cancer models.
Conclusions:
- Beta-5 integrin drives chemoresistance by suppressing pyroptosis through ASAH2-mediated sphingolipid metabolism reprogramming.
- Targeting beta-5 integrin or its downstream effectors can overcome chemoresistance in pancreatic and lung cancers.
- Pyroptosis-based therapeutic strategies hold promise for improving cancer treatment outcomes.
More Related Videos
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Targeted Cancer Therapies
There are several types of targeted therapies against specific...

