Current medicinal chemistry

Imatinib-loaded biodegradable hybrid nanoparticles for treating aggressive brain tumors

Updated

Abstract

The formulated hybrid nanoparticles achieved a mean vesicle diameter of 155.03 ± 2.41 nm with a high entrapment efficiency of 58.89 ± 0.5%.

  • Hybrid nanoparticles demonstrated a low polydispersity index (PDI) of 0.23 ± 0.4, indicating uniformity in size.
  • A high negative zeta potential of -23.89 ± 3.47 mV was observed, suggesting good stability in physiological conditions.
  • In vitro assays showed enhanced inhibitory effects on glioblastoma cells when treated with IMT-loaded nanoparticles compared to free IMT.
  • The nanoparticles may reduce oxidative stress in cells by decreasing reactive oxygen species (ROS).
  • XRD analysis indicated successful encapsulation of IMT, with the drug transitioning to an amorphous state, potentially improving dissolution.

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