Institute of Biophysics, Faculty of Medicine, University of Ljubljana, Vrazov trg 2, SI-1000 Ljubljana, Slovenia.
Group for Nano and Biotechnological Application, Faculty of Electrical Engineering, University of Ljubljana, Tržaška 25, SI-1000 Ljubljana, Slovenia.
Int J Mol Sci. 2022 May 31;23(11):6197. doi: 10.3390/ijms23116197.
Alongside physiochemical properties (PCP), it has been suggested that the protein corona of nanoparticles (NPs) plays a crucial role in the response of immune cells to NPs. However, due to the great variety of NPs, target cells, and exposure protocols, there is still no clear relationship between PCP, protein corona composition, and the immunotoxicity of NPs. In this study, we correlated PCP and the protein corona composition of NPs to the THP-1 macrophage response, focusing on selected toxicological endpoints: cell viability, reactive oxygen species (ROS), and cytokine secretion. We analyzed seven commonly used engineered NPs (SiO, silver, and TiO) and magnetic NPs. We show that with the exception of silver NPs, all of the tested TiO types and SiO exhibited moderate toxicities and a transient inflammatory response that was observed as an increase in ROS, IL-8, and/or IL-1β cytokine secretion. We observed a strong correlation between the size of the NPs in media and IL-1β secretion. The induction of IL-1β secretion was completely blunted in NLR family pyrin domain containing 3 (NLRP3) knockout THP-1 cells, indicating activation of the inflammasome. The correlations analysis also implicated the association of specific NP corona proteins with the induction of cytokine secretion. This study provides new insights toward a better understanding of the relationships between PCP, protein corona, and the inflammatory response of macrophages for different engineered NPs, to which we are exposed on a daily basis.
除了物理化学性质(PCP)之外,还有人提出纳米颗粒(NPs)的蛋白质冠在免疫细胞对 NPs 的反应中起着至关重要的作用。然而,由于 NPs、靶细胞和暴露方案的多样性,PCP、蛋白质冠组成与 NPs 的免疫毒性之间仍然没有明确的关系。在这项研究中,我们将 NPs 的 PCP 和蛋白质冠组成与 THP-1 巨噬细胞反应相关联,重点关注选定的毒性终点:细胞活力、活性氧(ROS)和细胞因子分泌。我们分析了七种常用的工程 NPs(SiO、银和 TiO)和磁性 NPs。我们表明,除了银 NPs 之外,所有测试的 TiO 类型和 SiO 都表现出中等毒性和短暂的炎症反应,表现为 ROS、IL-8 和/或 IL-1β细胞因子分泌增加。我们观察到在介质中 NPs 的大小与 IL-1β分泌之间存在很强的相关性。NLR 家族吡啶结构域包含 3(NLRP3)敲除 THP-1 细胞中 IL-1β 分泌的诱导完全被阻断,表明炎症小体的激活。相关性分析还表明,特定的 NP 冠蛋白与细胞因子分泌的诱导有关。这项研究为更好地理解不同工程 NPs 的 PCP、蛋白质冠和巨噬细胞炎症反应之间的关系提供了新的见解,我们每天都会接触到这些 NPs。