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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.
Objectives:
Over the past two decades, great progress has been made in advancing the early detection and multimodal treatment of non-small cell lung cancer (NSCLC). However, overall cure rates and survival rates of NSCLC are still not satisfactory, and research into new therapies is needed. This study attempted to construct human Fibroblast Activation Protein-Chimeric Antigen Receptor Natural killer (NK)-92 cells (hFAP-CAR-NK-92 cells) and explore their potential therapeutic effects in NSCLC.
Methods:
Immunohistochemistry analysis was carried out to examine fibroblast activation protein (FAP) and Gasdermin E (GSDME) expression in clinical specimens of lung adenocarcinoma and squamous cell carcinoma tissue. Then the engineered hFAP-CAR-NK-92 cells efficiency was determined in vitro with lactate dehydrogenase (LDH) cytotoxicity assay and the cell morphology of A549, H226, and cancer-related fibroblast (CAF) was observed by electron microscopy. After the co-culture of target cells and effect cells, flow cytometry was employed for examining the CD107a expression in the effect cells, and western blotting was conducted for the cleavage levels of Caspase 3 and GSDME proteins in the target cells. The safety and efficacy of hFAP-CAR-NK-92 cells adoptive transfer immunotherapy in a tumor-bearing mouse were evaluated.
Results:
Clinical studies have shown FAP positivity in patients with NSCLC. Compared with A549 or H226 cells alone, FAP expression was notably raised in A549+CAF cells or H226+CAF cells in nude mice, respectively (p < 0.05). The killing efficiency of K562 cells was not significantly different between hFAP-CAR-NK-92 and NK-92 cells (p > 0.05). The hFAP-CAR-NK-92 cells presented a higher killing efficiency against the hFAP-target (A549-hFAP, H226-hFAP and CAF-hFAP) cells than the NK-92 cells (p < 0.05). The degranulation of CD107a and cleavage levels of GSDME and Caspase 3 protein in the hFAP-CAR-NK-92 group were higher than those in the NK-92 group (p < 0.05). The 300 nM Granzyme B also induced pyroptosis in hFAP- or GSDME-positive cells (p < 0.05). In vivo experiments revealed that hFAP-CAR-NK-92 cells inhibited tumor progression of hFAP-positive NSCLC (p < 0.05).
Conclusions:
In this study, we successfully constructed hFAP-CAR-NK-92 cells and confirmed that hFAP-CAR-NK-92 cells could target hFAP-positive NSCLC to inhibit the progression of NSCLC by activating the Caspase-3/GSDME pyroptosis pathway.
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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