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Submitted: 04 Apr 2026
Revision: 23 May 2026
Accepted: 25 May 2026
ePublished: 20 Jul 2026
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Med J Tabriz Uni Med Sciences. Inpress.
doi: 10.34172/mj.026.35311
  Abstract View: 2

Genetics

Original Article

Engineering of multifunctional nanocarriers based on biopolymers for siRNA delivery, selective targeting, and enhanced biostability in MCF-7 cell lines

Hashem Yaghoubi 1* ORCID logo, Mehran Noruzpour 2 ORCID logo

1 Department of Biology, Ard.C., Islamic Azad University, Ardabil, Iran
2 Department of Biotechnology, University of Mohaghegh Ardabili, Ardabil, Iran
*Corresponding Author: Email: yaghoubi_h@iau.ac.ir

Abstract

Background. Nanotechnology addresses the challenge of targeted drug and nucleic acid delivery to cancer cells through the design of intelligent carriers. This study was conducted to design a smart nanocarrier based on PCL/Chitosan/PEG functionalized with hyaluronic acid (HA) for the delivery of siRNA to breast cancer cells (MCF-7).

Methods. The physicochemical properties of the synthesized nanoparticles were analyzed using 1H-NMR and TGA. Zeta potential and nanoparticle size were assessed using dynamic light scattering (DLS), confirming successful synthesis.

Results. DLS analysis revealed that after loading siRNA-FAM, the size of PCPH nanoparticles increased from 201±7 nm to 294±9 nm, and that of PEI nanoparticles from 186±11 nm to 220±6 nm. Meanwhile, siRNA loading reduced the zeta potential of PCPH nanoparticles from +1.72±0.52 mV to -2.5±0.50 mV. The results showed that at neutral pH, PEI/siRNA-FAM exhibited significantly higher release than PCPH after 480 minutes, whereas in an acidic environment, both nanoparticles released siRNA-FAM at a similar rate. Cytotoxicity assessment indicated that PCPH nanoparticles carrying siRNA had significant inhibitory effects on the growth of MCF-7 cells. The results of gel electrophoresis confirmed that PCPH nanoparticles effectively interacted electrostatically with siRNA-FAM, neutralizing its negative charge and halting its migration in the gel.

Conclusion. PCL-Chitosan-PEG-HA nanoparticles serve as a biocompatible and targeted system for siRNA delivery to cancer cells, demonstrating high efficiency in targeted gene therapy.

Practical Implications. The findings of this study represent a significant step toward more personalized and effective cancer treatments using nanotechnology.


How to cite this article: Yaghoubi H, Noruzpour M. Engineering of multifunctional nanocarriers based on biopolymers for siRNA delivery, selective targeting, and enhanced biostability in MCF-7 cell lines. Med J Tabriz Uni Med Sciences. 2026;48(3): . doi: 10.34172/mj.026.35311. Persian.
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