Zhou Huang, Ming Zhou, Baijun Ma, Hao Luo, Yucheng Jiao, Shi Yuan Chen
To overcome the challenges of volatile active agents and the limited functionality of biopolymer-based packaging, a novel synergistic strategy was devised by constructing a biomimetic “organelle-cytoplasm-cell wall” system within a chitosan/sodium alginate (CS/SA) matrix. This was achieved by simultaneously incorporating citric acid as a covalent crosslinker and porous starch (PS) pre-loaded with thymol (THY) as a sustained-release organelle. The synergistic interplay between the robust cross-linked network and the PS-THY capsules endowed the composite film (CS-c-SA/PS-THY) with exceptional comprehensive properties: a 42.23% enhancement in tensile strength, an order-of-magnitude reduction in water vapor permeability (7.11 g/(m 2 ·24h)), and a 23 °C increase in thermal decomposition temperature. Crucially, the film achieved sustained and controlled THY release that obeyed Fickian diffusion, which underpinned its potent, long-lasting antioxidant (75.82% DPPH scavenging) and antibacterial (inhibition zones >18 mm) efficacy. In practical pork preservation, the CS-c-SA/PS-THY significantly outperformed the control and the CS-c-SA/THY, effectively inhibiting microbial growth and quality deterioration to extend the shelf life by at least 4 days. This work provides a scalable and fundamental strategy for developing high-performance, sustainable active packaging. • A novel citric acid-crosslinked film with thymol-loaded porous starch. • Enhanced mechanical strength, barrier property, and sustained thymol release. • Potent antioxidant and antibacterial activity against food-borne pathogens. • Extended fresh pork shelf life by 4 days, confirming preservation efficacy.