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Updated: Aug 11, 2026

Fabrication and Characterization of Colorectal Cancer Organoids from SW1222 Cell Line in Ultrashort Self-Assembling Peptide Matrix
Published on: May 3, 2024
Natural Biopolymer-Based Injectable, Self-Healing Hydrogel via Self-Assembly of Pectin and Quaternized Guar Gum for
Ali Rahmatpour1, Melika Emami Kian1, Parvaneh Soleimani1
1Polymer Chemistry Research Laboratory, Faculty of Chemistry and Petroleum Sciences, Shahid Beheshti University, P.O. Box, 1983969411Tehran, Iran.
Abstract:
A biocompatible, injectable, and self-healing hydrogel was constructed via electrostatic self-assembly of anionic pectin (PEC) and cationic quaternized guar gum (QGG). The optimized PEC/QGG hydrogel (QPE5, 1:3.5 ratio) exhibited rapid gelation (1.5 min), high yield (95.7%), shear-thinning behavior (viscosity decrease from 430 to 1.7 Pa·s), and excellent self-healing with ∼90% recovery of compressive strength. Zeta potential analysis confirmed charge neutralization (+2.9 mV for QPE5), indicating strong electrostatic interactions. The hydrogel displayed pH- and enzyme-responsive degradation, with accelerated disintegration under acidic (pH 5.5) and pectinase-rich conditions. 5-Fluorouracil (5-FU) was loaded with encapsulation efficiency of ∼72% and loading efficiency of ∼15% for QPE3 formulation. Drug release was adequately described by kinetic models, with the best-fitting model depending on the release conditions. The hydrogel demonstrated excellent cytocompatibility (>80% cell viability) and hemocompatibility (<2% hemolysis), while enabling selective inhibition of CT-26 colon carcinoma cells (viability reduced to ∼40% with enzyme-triggered release). This PEC/QGG platform integrates injectability, self-healing, and colon-specific degradability, offering a promising approach for localized colorectal cancer therapy.

