Wang Ruirui
College of Chemistry and Chemical Engineering, Qinghai Normal University, 38 Wusi West Road Xining, Xining 810008, China.
Key Laboratory of Advanced Technology and Application of Environmental Functional Materials in Qinghai, Xining 810008, China.
Gels. 2025 Apr 27;11(5):327. doi: 10.3390/gels11050327.
The development of multifunctional smart food packaging has garnered considerable attention in research. Gelatin exhibits outstanding characteristics, featuring remarkable gel strength, molecular binding affinity, excellent colloidal dispersibility, low solution viscosity, sustained dispersion stability, and significant water retention properties. Gelatin-based film is ideally suited for the developing simple, portable, and rapid pH sensors, owing to its satisfactory biocompatibility, biodegradability, biosafety, affordability, and facilitation of easy handling and usage. This paper aims to explore the challenges and opportunities relating to gelatin-based pH sensors. It begins by outlining the sources, classifications, and functional properties of gelatin, followed by an analysis of the current research landscape and future trends related to intelligent indicators and active carriers. Subsequently, potential research directions for gelatin-based pH sensors are proposed. Using a literature analysis, it can be concluded that novel gelatin-based smart packaging represents the future of food packaging. It is hoped that the paper can provide some basic information for the development and application of gelatin-based smart packaging.
多功能智能食品包装的发展在研究中已引起了相当大的关注。明胶具有出色的特性,包括显著的凝胶强度、分子结合亲和力、优异的胶体分散性、低溶液粘度、持续的分散稳定性以及显著的保水性能。基于明胶的薄膜因其令人满意的生物相容性、生物降解性、生物安全性、经济性以及便于操作和使用,非常适合用于开发简单、便携且快速的pH传感器。本文旨在探讨与基于明胶的pH传感器相关的挑战和机遇。文章首先概述了明胶的来源、分类和功能特性,接着分析了与智能指示剂和活性载体相关的当前研究状况和未来趋势。随后,提出了基于明胶的pH传感器的潜在研究方向。通过文献分析可以得出结论,新型基于明胶的智能包装代表了食品包装的未来。希望本文能够为基于明胶的智能包装的开发和应用提供一些基础信息。