Related Experiment Video
Updated: Jan 17, 2026

Caenorhabditis elegans as a Model System for Discovering Bioactive Compounds Against Polyglutamine-Mediated Neurotoxicity
Published on: September 21, 2021
Stearyl amine-modified elastic cerosomes for boosting the anti-cancer activity of albendazole
Rofida Albash1, Hassan M E Azzazy2, Shaimaa Mosallam3
1Department of Pharmaceutics, College of Pharmaceutical Sciences and Drug Manufacturing, Misr University for Science and Technology, Giza, Egypt.
Background:
Albendazole (ALB), originally developed as an anthelmintic agent, has been repurposed for use in cancer therapy. In the present work, ALB was incorporated into stearyl amine (SA)-based elastic cerosomes (EC) to improve its anticancer activity.
Methods:
Stearyl amine elastic cerosomes containing albendazole (SA-EC-ALB) were formulated using the thin-film hydration method. A D-optimal experimental design was applied via Design-Expert® software (version 7) generating 19 formulations. The independent variables included SAA amount (X1), sonication time (X2), ceramide type (X3), and SAA type (X4), while the dependent variables were entrapment efficiency (EE%; Y1), particle size (PS; Y2), and polydispersity index (PDI; Y3).
Results:
The optimized SA-EC-ALB formulation, prepared with ceramide III and Pluronic L121 through sonication, achieved an entrapment efficiency (EE%) of 92.03 ± 3.53% and a particle size (PS) of 312.05 ± 9.32 nm. In-silico analysis indicated strong interactions between ALB and the vesicular components in water. Moreover, in-vivo evaluation of SA-EC-ALB antitumor activity, performed using the solid Ehrlich tumor model in adult Swiss albino male mice, demonstrated a significant reduction in tumor volume compared to the control group.
Conclusion:
Loading ALB into SA-EC could potentially induce its anticancer effects.
Related Concept Videos
Drugs that Stabilize Microtubules
Drugs that Destabilize Microtubules
Drugs for Treatment of Ulcerative Colitis in IBD

