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用于食品工业应用的有机-无机纳米杂化材料的创新合成方法及健康影响。

Innovative synthesis approaches and health implications of organic-inorganic Nanohybrids for food industry applications.

机构信息

Department of Biochemistry, Institute of Science, Banaras Hindu University, Varanasi 221005, India.

School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi 221005, India.

出版信息

Food Chem. 2025 Feb 1;464(Pt 3):141905. doi: 10.1016/j.foodchem.2024.141905. Epub 2024 Nov 1.

Abstract

Recent advancements in nanomaterials have significantly impacted various sectors, including medicine, energy, and manufacturing. Among these, organic/inorganic nanohybrids have emerged as transformative tools in the food industry. This review focuses on the innovative applications of these nanohybrids in food packaging, enzyme immobilization, and contamination detection. By combining organic and inorganic components, nanohybrids enable the customization of properties such as barrier performance, mechanical strength, and antimicrobial activity. Organic-inorganic nanohybrids offer promising solutions for the food industry, enhancing safety, quality, and processing efficiency. Examples include gold nanoparticles (AuNPs) used in biosensors for rapid detection of foodborne pathogens, graphene oxide (GO) nanosheets in advanced filtration membranes, and nanocellulose as a fat replacer in low-fat yogurt to improve texture and taste. Quantum dots (QDs) also aid in food traceability by detecting product authenticity. While these technologies showcase transformative potential, challenges like scalability, regulatory compliance, environmental impact, and potential toxicity must be addressed to ensure safe and sustainable adoption. However, to fully harness their benefits, it is crucial to thoroughly assess their toxicological profiles to mitigate potential adverse health effects. This necessitates comprehensive studies on their interactions with biological systems, dose-response relationships, and long-term impacts. Establishing standardized safety protocols and regulatory guidelines is essential to ensure that the utilization of these nanomaterials does not compromise human health while maximizing their advantages.

摘要

近年来,纳米材料的发展突飞猛进,对医学、能源和制造业等多个领域产生了深远影响。在这些领域中,有机/无机纳米复合材料已成为食品工业中的变革性工具。本综述重点介绍了这些纳米复合材料在食品包装、酶固定化和污染检测方面的创新应用。通过将有机和无机成分结合在一起,纳米复合材料能够定制各种特性,如阻隔性能、机械强度和抗菌活性。有机/无机纳米复合材料为食品工业提供了有前途的解决方案,提高了安全性、质量和加工效率。例如,金纳米粒子(AuNPs)用于生物传感器快速检测食源性病原体,氧化石墨烯(GO)纳米片用于先进过滤膜,纳米纤维素作为低脂酸奶中的脂肪替代品,以改善质地和口感。量子点(QDs)也有助于通过检测产品真伪来实现食品可追溯性。尽管这些技术具有变革性的潜力,但必须解决可扩展性、法规遵从性、环境影响和潜在毒性等挑战,以确保安全和可持续采用。然而,为了充分发挥它们的优势,必须彻底评估它们的毒理学特征,以减轻潜在的健康影响。这需要对它们与生物系统的相互作用、剂量反应关系和长期影响进行全面研究。建立标准化的安全协议和监管指南至关重要,以确保在最大限度地发挥这些纳米材料优势的同时,不会损害人类健康。

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