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.

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.