Development of FAP-Targeted Chimeric Antigen Receptor NK-92 Cells for Non-Small Cell Lung Cancer

Yang Fang1, Yan-Jing Wang1, Hong-Li Zhao1

  • 1Key Laboratory of Laboratory Medicine, Ministry of Education, School of Laboratory Medicine and Life Science, Wenzhou Medical University, 325005 Wenzhou, Zhejiang, China.

Discovery Medicine
|June 5, 2023
PubMed
Abstract

Insights

Researchers developed human Fibroblast Activation Protein-Chimeric Antigen Receptor Natural Killer (NK)-92 cells (hFAP-CAR-NK-92) to target non-small cell lung cancer (NSCLC). These engineered NK cells effectively inhibited NSCLC progression in vivo by activating pyroptosis.

Area of Science:

  • Immunotherapy
  • Oncology
  • Cell Biology

Background:

  • Non-small cell lung cancer (NSCLC) treatment requires novel therapeutic strategies despite advances in early detection and multimodal treatments.
  • Fibroblast Activation Protein (FAP) is expressed in NSCLC, presenting a potential target for immunotherapy.

Purpose of the Study:

  • To construct human Fibroblast Activation Protein-Chimeric Antigen Receptor Natural Killer (NK)-92 cells (hFAP-CAR-NK-92 cells).
  • To investigate the therapeutic potential of hFAP-CAR-NK-92 cells against NSCLC.

Main Methods:

  • Immunohistochemistry to assess FAP and Gasdermin E (GSDME) expression in NSCLC tissues.
  • In vitro cytotoxicity assays (LDH), electron microscopy, flow cytometry (CD107a), and western blotting (Caspase 3, GSDME) to evaluate hFAP-CAR-NK-92 cell efficacy.
  • In vivo studies in tumor-bearing mice to assess the safety and efficacy of adoptive transfer immunotherapy.

Main Results:

  • hFAP-CAR-NK-92 cells demonstrated significantly higher killing efficiency against FAP-positive NSCLC cells and cancer-associated fibroblasts (CAFs) compared to control NK-92 cells.
  • Enhanced degranulation (CD107a) and pyroptosis (cleaved Caspase 3 and GSDME) were observed in target cells treated with hFAP-CAR-NK-92 cells.
  • In vivo experiments showed that hFAP-CAR-NK-92 cell adoptive transfer significantly inhibited tumor progression in FAP-positive NSCLC models.

Conclusions:

  • Successfully constructed hFAP-CAR-NK-92 cells capable of targeting FAP-positive NSCLC.
  • hFAP-CAR-NK-92 cells inhibit NSCLC progression by activating the Caspase-3/GSDME-mediated pyroptosis pathway.
  • This engineered NK cell therapy holds promise for treating FAP-positive NSCLC.

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