The Sperm Laboratory, College of Life Sciences, Zhejiang University, Hangzhou, 310058, PR China.
Nanomedicine (Lond). 2021 Dec;16(30):2725-2741. doi: 10.2217/nnm-2021-0165. Epub 2021 Dec 6.
Engineered nanoparticles (ENPs) are widely used in medical diagnosis and treatment, as food additives and as energy materials. ENPs may exert adverse or beneficial effects on the human body, which may be linked to interactions with biological barriers. In this review, the authors summarize the influences of four typical metal/metal oxide nanomaterials (Ag, TiO, Au, ZnO nanoparticles) on the paracellular permeability of biological barriers. Disruptions on tight junctions, adhesion junctions, gap junctions and desmosomes via complex signaling pathways, such as the MAPK, PKC and ROCK signaling pathways, affect paracellular permeability. Reactive oxygen species and cytokines underlie the mechanism of ENP-triggered alterations in paracellular permeability. This review provides the information necessary for the cautious application of nanoparticles in medicine and life sciences in the future.
工程纳米粒子(ENPs)广泛应用于医学诊断和治疗、食品添加剂和能源材料。ENPs 可能对人体产生不利或有益的影响,这可能与其与生物屏障的相互作用有关。在这篇综述中,作者总结了四种典型的金属/金属氧化物纳米材料(Ag、TiO、Au、ZnO 纳米粒子)对生物屏障的细胞旁通透性的影响。通过复杂的信号通路(如 MAPK、PKC 和 ROCK 信号通路),破坏紧密连接、黏附连接、缝隙连接和桥粒,影响细胞旁通透性。活性氧和细胞因子是 ENP 引发细胞旁通透性改变的机制。本综述为未来在医学和生命科学中谨慎应用纳米粒子提供了必要的信息。