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Updated: May 6, 2026

Profiling Sensitivity to Targeted Therapies in EGFR-Mutant NSCLC Patient-Derived Organoids
Published on: November 22, 2021
Novel compound PS-101 exhibits selective inhibition in non-small-cell lung cancer cell by blocking the EGFR-driven
Guo-Hai Zhang1, Le-Jing Cai, Yan-Fei Wang
1State Key Laboratory Cultivation Base for the Chemistry and Molecular Engineering of Medicinal Resources, School of Chemistry & Pharmacy, Guangxi Normal University, Guilin 541004, China.
Abstract:
This study investigated the anticancer effect of a novel compound PS-101 in human lung cancer cells. By phenotype screening, PS-101 exhibited highly selective inhibition in EGFR-overexpressed non-small cell lung cancer cells NCI-H460 and A549 while displaying no obvious toxicity to normal hepatic cell HL-7702, lung fibroblast cell WI-38, liver cancer cell BEL-7404 and gastric cancer cell MCG-803. A combination of cell viability assay, immunoblotting, and RNA interference revealed that PS-101 induced EGFR-dependent inhibition selectivity. Further studies showed that PS-101 caused cell cycle arrest at G1 phase, changed cell size, induced apoptosis and led to cell death by increasing the proportion of sub-G1 cells. Molecular mechanism studies suggested that blocking the EGFR-driven antiapoptotic pathway is essential for PS-101-induced apoptosis. The contribution of blocking the EGFR-driven antiapoptotic pathway was verified through examines abundance of likely candidate proteins and RNA interference. The root cause for increase in BAD and decrease in Bcl-2 which altogether initiated caspase-dependent apoptosis were predominantly due to down-regulation the expression of EGFR after PS-101 treatment. PS-101 strongly down-regulated the EGFR expression to trigger proapototic protein BAD increase and antiproapototic protein Bcl-2 decrease, which altogether actived effector caspase-3/9 to initiate cell apoptisis. Taken together, these results suggest that PS-101 may be a potential candidate for cancer therapy against human lung cancer.
Insights
A novel compound, PS-101, shows selective anticancer effects against EGFR-overexpressed lung cancer cells. It induces apoptosis by down-regulating EGFR, offering a potential new therapy for lung cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Non-small cell lung cancer (NSCLC) is a major cause of cancer-related deaths.
- Targeted therapies are crucial for improving NSCLC treatment outcomes.
- EGFR overexpression is a common feature in certain NSCLC subtypes.
Purpose of the Study:
- To investigate the anticancer potential of a novel compound, PS-101.
- To determine the selectivity and mechanism of action of PS-101 in lung cancer cells.
- To evaluate PS-101 as a potential therapeutic agent for EGFR-overexpressing lung cancer.
Main Methods:
- Phenotype screening and cell viability assays were used to assess PS-101's effects.
- Immunoblotting and RNA interference were employed to elucidate the molecular mechanisms.
- Cell cycle analysis and apoptosis assays were performed to evaluate cellular responses.
Main Results:
- PS-101 demonstrated high selectivity, inhibiting EGFR-overexpressing NSCLC cells (NCI-H460, A549) without toxicity to normal cells.
- PS-101 induced G1 cell cycle arrest, apoptosis, and cell death.
- The compound down-regulated EGFR expression, leading to increased BAD, decreased Bcl-2, and activation of caspase-3/9, thus inducing apoptosis.
Conclusions:
- PS-101 exhibits potent and selective anticancer activity against EGFR-overexpressing lung cancer cells.
- The mechanism involves EGFR-dependent inhibition of antiapoptotic pathways, triggering caspase-mediated apoptosis.
- PS-101 represents a promising candidate for targeted lung cancer therapy.
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