Protein Nanoparticles Simultaneously Displaying TRAIL and EGFR-Binding Ligands Effectively Induce Apoptotic Cancer
Yunjung Kim1, Jiwoo Kim1, Soomin Eom1
1Department of Biological Sciences, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.
Abstract:
Lung cancer remains one of the most lethal cancers globally, with nonsmall cell lung cancer (NSCLC) representing the predominant subtype. Despite significant advancements in targeted therapies, overcoming therapeutic resistance in NSCLC remains a significant challenge, particularly in cases resistant to tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and epidermal growth factor receptor-tyrosine kinase inhibitors (EGFR-TKIs). Here, we developed target-specific, apoptosis-inducing protein nanoparticles using Aquifex aeolicus lumazine synthase (AaLS), which were engineered to simultaneously display multiple TRAIL molecules and EGFR-binding ligands, including EGFR affibody (Afb) or anti-EGFR nanobodies (7D12, 9G8, and EgB4). These nanoparticles utilize the EGFR-binding ligand to enhance selective targeting of EGFR-overexpressing lung adenocarcinoma (PC9, HCC827, A549) and squamous cell carcinoma (H226) cells, regardless of mutations within the intracellular kinase domain of EGFR, which are primarily driven by tyrosine kinase inhibitors commonly used as first-line treatments in lung cancer therapy. The codisplayed EGFR-binding ligands enhance the attachment of TRAIL-displaying protein nanoparticles to cancer cells by stabilizing interactions with EGFR, promoting cell surface clustering of TRAIL molecules and improving TRAIL engagement with death receptors (DRs). This sustained interaction significantly amplifies TRAIL-mediated apoptotic cancer cell death signaling, effectively overcoming both TRAIL and EGFR-TKI resistance in NSCLC cells. Our findings suggest that dual ligand-displaying protein nanoparticles targeting DRs and EGFR represent a promising therapeutic strategy to potentiate TRAIL efficacy and circumvent EGFR-TKI resistance in NSCLC.
Insights
New protein nanoparticles overcome resistance in non-small cell lung cancer (NSCLC) by targeting both death receptors and EGFR. This dual-targeting approach enhances TRAIL therapy and circumvents resistance to EGFR-TKIs.
Area of Science:
- Biotechnology
- Nanomedicine
- Cancer Therapy
Background:
- Non-small cell lung cancer (NSCLC) is a leading cause of cancer death globally.
- Therapeutic resistance to tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and epidermal growth factor receptor-tyrosine kinase inhibitors (EGFR-TKIs) is a major challenge in NSCLC treatment.
Purpose of the Study:
- To develop novel protein nanoparticles for targeted apoptosis induction in NSCLC.
- To engineer nanoparticles capable of overcoming resistance to TRAIL and EGFR-TKIs.
Main Methods:
- Utilized Aquifex aeolicus lumazine synthase (AaLS) to create protein nanoparticles.
- Engineered nanoparticles to display multiple TRAIL molecules and EGFR-binding ligands (affibodies or nanobodies).
- Tested nanoparticle targeting and efficacy against EGFR-overexpressing NSCLC cell lines.
Main Results:
- Codisplayed EGFR-binding ligands enhanced nanoparticle attachment and EGFR clustering.
- Improved TRAIL engagement with death receptors (DRs) leading to amplified apoptosis signaling.
- Demonstrated effective overcoming of both TRAIL and EGFR-TKI resistance in NSCLC cells.
Conclusions:
- Dual ligand-displaying protein nanoparticles targeting DRs and EGFR are a promising strategy for NSCLC.
- This approach can potentiate TRAIL efficacy and circumvent EGFR-TKI resistance.
- Further investigation into this nanomedicine platform for NSCLC treatment is warranted.
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