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Updated: Sep 27, 2026

Magnetic and Thermal-sensitive Poly(N-isopropylacrylamide)-based Microgels for Magnetically Triggered Controlled Release
Published on: July 4, 2017
Heat-induced homogeneous dispersion-cold setting assembly strategy to construct tea polyphenols-starch functionalized
Xiaohua Huang1, Zirong Liang1, Dan Luo1
1School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, China.
Abstract:
In this study, guided by the enthalpy-entropy co-driven binding mechanism between amylose (AM) and tea polyphenols (TPs), a pH-enzyme dual-responsive controlled-release system, corn starch (CS)-TPs hydrogel-encapsulated curcumin (Cur@CS-TPs), was designed and constructed through a heat-induced homogeneous dispersion-cold setting assembly strategy. The direct use of gel precursor solution achieved a Cur embedding efficiency approaching 100% without organic solvents, ensuring operational simplicity and improved environmental sustainability. TPs and AM formed hydrophobic micro-regions through non-covalent interactions, inducing Cur self-assembly into an amorphous state, which significantly enhanced its encapsulation efficiency and solubility. In vitro release studies revealed minimal gastric release as well as sustained and targeted release in the small intestine, demonstrating pH-enzyme dual responsiveness. Furthermore, TPs endowed the hydrogel with antioxidant activity and retarded its digestion, contributing to a reduced glycemic index. The CS-TPs hydrogel represents a multifunctional delivery system that effectively stabilizes Cur and enhances its bioaccessibility.

