Ranjha Muhammad Modassar Ali Nawaz, Shafique Bakhtawar, Rehman Abdur, Mehmood Arshad, Ali Ahmad, Zahra Syeda Mahvish, Roobab Ume, Singh Ajay, Ibrahim Salam A, Siddiqui Shahida Anusha
Institute of Food Science and Nutrition, University of Sargodha, Sargodha, Pakistan.
State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi, China.
Front Nutr. 2022 Jan 20;8:778155. doi: 10.3389/fnut.2021.778155. eCollection 2021.
Nanomaterials exist as potential biocompatible materials in nature and are being synthesized to provide extraordinary characteristics in various food industry sectors. Synthesis of biocompatible nanomaterials requires modification in the shape, density, and size of nanomaterials. Biocompatible nanomaterials are synthesized to reduce toxicity, decrease adverse effects in the gastrointestinal tract, and enhance immune response. Nanomaterials can target organs and tissues. Nanomaterials are found to be effectively compatible by interacting with functional foods and nutraceuticals. Applications of these nanomaterials are novel strategies in food industries such as food safety, food processing, food quality, food packaging, and food labeling. Various functions like detection of toxins and pathogens; production of biocompatible packaging; enhancement in color, flavor, and aroma; processing edible film, and sensing authenticity of food product are being accomplished with no toxicity. This review provides a systematic study on the biocompatibility of nanomaterials. It highlights the synthesis of biocompatible nanomaterials and advanced functions of these nanomaterials in the production area, processing industry, safety improvement, quality control, edible packaging films, biocompatibility, current developments, legislations and regulations for Nano-products, health and safety concerns, toxicity and public perceptions for use of nanomaterials.
纳米材料在自然界中作为潜在的生物相容性材料存在,并且正在被合成以在各个食品工业领域提供非凡的特性。生物相容性纳米材料的合成需要对纳米材料的形状、密度和尺寸进行改性。合成生物相容性纳米材料是为了降低毒性、减少胃肠道中的不良反应并增强免疫反应。纳米材料可以靶向器官和组织。人们发现纳米材料通过与功能性食品和营养保健品相互作用而具有有效的相容性。这些纳米材料的应用是食品工业中的新策略,如食品安全、食品加工、食品质量、食品包装和食品标签。各种功能,如毒素和病原体的检测;生物相容性包装的生产;颜色、风味和香气的增强;可食用薄膜的加工以及食品产品真实性的传感,都在无毒的情况下得以实现。本综述对纳米材料的生物相容性进行了系统研究。它强调了生物相容性纳米材料的合成以及这些纳米材料在生产领域、加工业、安全改进、质量控制、可食用包装薄膜、生物相容性、当前发展、纳米产品的法律法规、健康和安全问题、毒性以及纳米材料使用的公众认知等方面的先进功能。