MARATTO

other · Figshare

Targeted nanocomposite delivery system of amygdalin using chitosan/reduced graphene oxide-zinc oxide/hyaluronic acid for treatment of head and neck squamous cell carcinoma

2026Open accessAlexandria University

Abstract

Abstract Background Head and neck squamous cell carcinoma (HNSCC) is a major and growing public health problem due to its global high incidence and mortality. Most conventional treatments have adverse side effects due to lack of selectivity and targetabiliy, which has increased the demand for more precise and safe alternatives. Amygdalin (AMG) is a plant-derived cyanoglycoside with a potent anticancer effect, however, its therapeutic use remains controversial due to safety concerns. Objective Nanotechnology can improve the targeted delivery of AMG while reducing its drawbacks. This study aimed to develop a nanocomposite comprised of chitosan (CS), reduced graphene oxide (rGO), zinc oxide nanoparticles (ZnO NPs), and hyaluronic acid (HA) to serve as a nanocomposite for controlled release and targeted delivery of AMG. Methods AMG-loaded (CS/rGO-ZnO/HA) nanocomposite was prepared by the ion gelation technique using tripolyphosphate (TPP) as a crosslinker. Blank and AMG-loaded nanocomposites were characterized using FTIR, XRD, TEM, SEM, DSC, and TGA. In vitro drug release was conducted via the dialysis bag method. In vitro anticancer effect of the prepared nanocomposite was evaluated via cell viability, wound scratch, and cellular uptake assays. Results AMG-loaded nanocomposite manifested a particle size of 180.2 ± 2.13 nm with a negative surface charge of -36.5 ± 4.96 mV, high encapsulation efficiency (90.81%±1.23), and pH-dependent controlled release. Moreover, AMG-loaded nanocomposite exhibited a much lower IC50 value in comparison to free AMG when examined against A-341 cells. In addition, AMG-loaded nanocomposite demonstrated improved anti-migratory effect, associated with enhanced cellular uptake due to its active targeting potential. Conclusion AMG-loaded nanocomposite could be considered a promising targeted nanoplatform for managing head and neck squamous cell carcinoma.

Read the original research

This page summarises published work. The authoritative version sits with the publisher.

DOI: 10.6084/m9.figshare.c.8411525

Is something wrong with this record? Report it or request removal.

Discussion

Discuss this research

Have you built on this work, tried to replicate it, or seen it applied in practice? Share what you know. Verified researchers and MARATTO™ domain experts can open a discussion, and any member can reply. Contributions are reviewed before they appear.

No discussion yet. Open the first thread.