Tyrosine Kinase Inhibitors Show Enhanced Efficacy in Cancer Treatment
Researchers from the Birla Institute of Technology and Science have developed a new approach for delivering tyrosine kinase inhibitors (TKIs), including erlotinib and gefitinib, to cancer cells with improved efficacy. The team's gum arabic-stabilized zein nanoparticles (GA-ZNPs) formulations have shown enhanced drug delivery and anticancer efficacy, offering a promising approach for targeted cancer therapy.
Key Takeaways:
- The study found that GA-ZNPs formulations exhibited particle sizes of 136.34 nm for erlotinib-GA-ZNPs and 163.65 nm for gefitinib-GA-ZNPs, with 86.4% and 82.9% encapsulation efficiencies, respectively.
- The drug-loaded GA-ZNPs demonstrated sustained release, with cumulative drug release reaching 75.8% for erlotinib and 65.7% for gefitinib over 72 hours.
- Uptake studies revealed a 2.45-2.7-fold increase in intracellular drug accumulation for GA-ZNPs formulations compared to free drugs.
- The formulations significantly enhanced the cytotoxicity of the drugs on cancer cells, reducing the IC50 of free drugs by 1.58-2.35-fold for erlotinib and 1.8-1.9-fold for gefitinib.
- Mechanistic studies revealed higher ROS generation and mitochondrial membrane depolarization in cells treated with GA-ZNPs formulations.
Statistics:
- The GA-ZNPs formulations exhibited particle sizes of 136.34 nm for erlotinib-GA-ZNPs and 163.65 nm for gefitinib-GA-ZNPs.
- The encapsulation efficiencies for erlotinib-GA-ZNPs and gefitinib-GA-ZNPs were 86.4% and 82.9%, respectively.
- The cumulative drug release for erlotinib-GA-ZNPs and gefitinib-GA-ZNPs reached 75.8% and 65.7% over 72 hours.
- The IC50 of free drugs was reduced by 1.58-2.35-fold for erlotinib and 1.8-1.9-fold for gefitinib with GA-ZNPs formulations.
Sources:
- Tyrosine kinase inhibitor-loaded zein nanoparticles with enhanced drug delivery and anticancer efficacy. International Journal of Biological Macromolecules, 2025:143898.
- Birla Institute of Technology and Science Reports Findings in Cancer (Tyrosine kinase inhibitor-loaded zein nanoparticles with enhanced drug delivery and anticancer efficacy). Nanotechnology Weekly. May 26, 2025; p 39.