Dipartimento di Matematica e Fisica "Ennio De Giorgi", Università del Salento, Lecce, Italy.
Adv Exp Med Biol. 2018;1048:1-19. doi: 10.1007/978-3-319-72041-8_1.
The wide use of engineered nanomaterials in many fields, ranging from biomedical, agriculture, environment, cosmetic, urged the scientific community to understand the processes behind their potential toxicity, in order to develop new strategies for human safety. As a matter of fact, there is a big discrepancy between the increased classes of nanoparticles and the consequent applications versus their toxicity assessment. Nanotoxicology is defined as the science that studies the effects of engineered nanodevices and nanostructures in living organisms. This chapter analyzes the physico-chemical properties of the most used nanoparticles, the way they enter the living organism and their cytoxicity mechanisms at cellular exposure level. Moreover, the current state of nanoparticles risk assessment is reported and analyzed.
工程纳米材料在许多领域(包括生物医学、农业、环境、化妆品)的广泛应用促使科学界了解其潜在毒性背后的过程,以便为人类安全开发新策略。事实上,纳米粒子的种类不断增加,而与其毒性评估相比,随之而来的应用却存在很大差异。纳米毒理学被定义为研究工程纳米器件和纳米结构在生物体中的影响的科学。本章分析了最常用的纳米粒子的物理化学性质、它们进入生物体的方式以及在细胞暴露水平下的细胞毒性机制。此外,还报告和分析了纳米颗粒风险评估的现状。