CERESResearch Repository

PEG-β-Cyclodextrin polymer-based formulation to increase the antiangiogenic activity of rutin in vivo

Loading...
Thumbnail Image

Date published

Free to read from

2026-04-02

Supervisor/s

Industry supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

Department

Course name

ISSN

0378-5173

Format

Citation

Gaetano FD, Dossi E, Cacciola A, et al., (2026) PEG-β-Cyclodextrin polymer-based formulation to increase the antiangiogenic activity of rutin in vivo. International Journal of Pharmaceutics, Volume 696, May 2026, Article number 126812

Abstract

Rutin (RTN) is a natural flavonoid with well-documented anti-angiogenic, antioxidant, anti-inflammatory, and anti-cancer properties. However, its therapeutic potential is limited by its extremely low water solubility, which results in poor and unpredictable bioavailability. To address these limitations, we developed a new formulation that complexes RTN with a soluble polymeric β-cyclodextrin (βCPCD). βCPCD is synthesized by cross-linking polyethylene glycol (PEG) and β-cyclodextrin (βCD). The high complexing capacity of βCPCD was demonstrated by a ∼ 50-fold increase in RTN solubility and complete dissolution within 60 min. These results suggest a dual encapsulation mechanism involving (i) the inclusion of RTN within the βCD cavity and (ii) the allocation of RTN within the free volume of the three-dimensional (3D) polymeric structure. The host–guest interaction was confirmed via UV–Vis titration, NMR, µ-Raman and FTIR-ATR spectroscopy analyses. The thermal stability of the lyophilized complex was assessed by TGA, and the morphology was investigated by SEM. Preliminary docking and molecular dynamics simulations were carried out considering a local scenario consisting of a single RTN and a βCD-PEG unit. The excellent biocompatibility of βCPCD in Danio rerio zebrafish embryos (survivability > 95%) and the notable enhancement of the antiangiogenic effect of the RTN complex compared to the free drug highlight the potential of βCPCD as an effective delivery system to improve RTN performance.

Description

Software description

Software language

Git repository

Keywords

Pharmacology & Pharmacy, 3214 Pharmacology and pharmaceutical sciences, Rutin, β-cyclodextrin polymer, Physical–chemical characterization, In vivo antiangiogenic activity, Zebrafish

DOI

Rights

Attribution 4.0 International

Funder/s

This work has been partially funded by the European Union (NextGeneration EU) through the MUR-PNRR project SAMOTHRACE (ECS00000022). We also acknowledge the support of the GeV-AI project (CUP I57G21000110007), in the context of the ICSC Spoke 2 Open Calls, project funded by European Union – NextGenerationEU – and National Recovery and Resilience Plan (NRRP) – Mission 4 Component 2.

Grant number

Relationships

Relationships

Resources