生物矿化
纳米技术
生化工程
矿化(土壤科学)
仿生材料
设计要素和原则
食品工业
食品
食品加工
过程(计算)
生物技术
纳米技术的应用
食物系统
化学
食品安全
食品包装
风味
控制释放
仿生学
合成生物学
新奇的食物
食品添加剂
环境科学
基因工程
材料科学
纳米生物技术
食物运送
仿生合成
公认安全
作者
Xuelian Yin,Haifeng Wang,Huanhuan Su,Xichuang Guo,Teng Li,Qing Shen,Yuying Fu,Yun Zhai
标识
DOI:10.1111/1541-4337.70400
摘要
Biomineralization, a process wherein biomolecules precisely regulate inorganic mineral formation, has inspired nature-derived biomineralization strategies widely applied in materials science and biomedicine. In recent years, this approach has gradually made inroads into food science, offering innovative solutions to critical challenges in the food industry, including packaging, processing, safety detection, and nutrient fortification. This article systematically reviews advances in biomineralization strategies, from molecular mechanisms to food applications over the past 25 years, highlighting its contributions in: (1) intelligent packaging, (2) controlled release of functional ingredients, and (3) functional food development. Research demonstrates that the biomineralization approach, leveraging its biocompatibility, structural tunability, and green synthesis characteristics, enhances the mechanical properties and antimicrobial functions of food packaging while optimizing food texture and flavor profiles. Furthermore, organic template-regulated mineralization and physicochemical strategies have opened new avenues for targeted delivery and controlled release of bioactive components/additives. Despite persistent challenges in scaling production and safety evaluation, the deep integration of biomineralization with synthetic biology, nanotechnology, and artificial intelligence has the potential to support the transformation of the food industry toward greater efficiency, automation, and sustainability. This strategy holds significant potential for reshaping food production methodologies and providing interdisciplinary support for precision nutrition and food safety initiatives.
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