Stuparu-Cretu Mariana, Braniste Gheorghe, Necula Gina-Aurora, Stanciu Silvius, Stoica Dimitrie, Stoica Maricica
Faculty of Medicine and Pharmacy, "Dunarea de Jos" University of Galati, 35 Alexandru Ioan Cuza Street, 800010 Galati, Romania.
Cross-Border Faculty, "Dunarea de Jos" University of Galati, 111 Domneasca Street, 800201 Galati, Romania.
Foods. 2023 May 3;12(9):1882. doi: 10.3390/foods12091882.
It is a matter of common knowledge in the literature that engineered metal oxide nanoparticles have properties that are efficient for the design of innovative food/beverage packages. Although nanopackages have many benefits, there are circumstances when these materials are able to release nanoparticles into the food/beverage matrix. Once dispersed into food, engineered metal oxide nanoparticles travel through the gastrointestinal tract and subsequently enter human cells, where they display various behaviors influencing human health or wellbeing. This review article provides an insight into the antimicrobial mechanisms of metal oxide nanoparticles as essential for their benefits in food/beverage packaging and provides a discussion on the oral route of these nanoparticles from nanopackages to the human body. This contribution also highlights the potential toxicity of metal oxide nanoparticles for human health. The fact that only a small number of studies address the issue of food packaging based on engineered metal oxide nanoparticles should be particularly noted.
在文献中这是一个常识,即工程化金属氧化物纳米颗粒具有的特性对创新型食品/饮料包装的设计很有效。尽管纳米包装有许多益处,但在某些情况下这些材料能够将纳米颗粒释放到食品/饮料基质中。一旦分散到食品中,工程化金属氧化物纳米颗粒会穿过胃肠道,随后进入人体细胞,在那里它们表现出影响人类健康或福祉的各种行为。这篇综述文章深入探讨了金属氧化物纳米颗粒的抗菌机制,这对于它们在食品/饮料包装中的益处至关重要,并讨论了这些纳米颗粒从纳米包装进入人体的口服途径。这一论述还强调了金属氧化物纳米颗粒对人类健康的潜在毒性。尤其应注意的是,只有少数研究涉及基于工程化金属氧化物纳米颗粒的食品包装问题。